[go: up one dir, main page]

WO2004046966A1 - Dispositif de traitement d'informations icf et systeme d'utilisation d'informations icf comprenant ledit dispositif - Google Patents

Dispositif de traitement d'informations icf et systeme d'utilisation d'informations icf comprenant ledit dispositif Download PDF

Info

Publication number
WO2004046966A1
WO2004046966A1 PCT/JP2003/014701 JP0314701W WO2004046966A1 WO 2004046966 A1 WO2004046966 A1 WO 2004046966A1 JP 0314701 W JP0314701 W JP 0314701W WO 2004046966 A1 WO2004046966 A1 WO 2004046966A1
Authority
WO
WIPO (PCT)
Prior art keywords
icf
information
code
icf information
database
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/JP2003/014701
Other languages
English (en)
Japanese (ja)
Inventor
Hitoshi Watanabe
Yoshio Yokota
Jun Sugano
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Waseda University
Original Assignee
Waseda University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Waseda University filed Critical Waseda University
Priority to AU2003284409A priority Critical patent/AU2003284409A1/en
Priority to JP2004553199A priority patent/JPWO2004046966A1/ja
Publication of WO2004046966A1 publication Critical patent/WO2004046966A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management

Definitions

  • I CF information processing device and I CF information utilization system using it
  • the present invention relates to an ICF information processing apparatus and an ICF information utilization system using the same, and more particularly, to an ICF information utilization system, and more particularly, to an equipment and a building that are effectively used in an
  • the present invention relates to an ICF information processing apparatus capable of effectively utilizing ICF information for a building design apparatus that creates design drawings and design information, and an ICF information utilization system using the same.
  • ICF International Classification of Functions for Living
  • ICF personal information on the body and life in general, that is, personal information indicating the direction of health, medical care, welfare services, and social systems should be constructed based on the common rules. Therefore, if the personal information (ICF information) based on this ICF is made into a database, it can be expected to be useful in various fields such as the engineering field, the health field, the medical field, and the welfare field.
  • the equipment is not directly linked to its own physical condition and is controlled.To operate the equipment in accordance with the physical condition, manual operation by the operating means is required. Operation is required and it is troublesome. In particular, for people with some physical disabilities, it may be necessary to manage the state of the living space more strictly than for healthy people, which may lead to people with physical disabilities. However, it is a factor that makes it difficult to create a comfortable living environment. Disclosure of the invention
  • the present invention has been devised in view of the above background, and an object of the present invention is to provide an ICF information processing device that facilitates use of ICF information and an ICF information use system using the same. is there.
  • Another object of the present invention is to provide an ICF information utilization system that can provide a suitable environment for users of a building space by using ICF information.
  • the present invention relates to an ICF information processing device that performs data processing on ICF information for each individual,
  • the coding means has a language input mode for determining a corresponding ICF code by inputting a natural language representing the symptom, situation and / or disease name.
  • the code input user can select the optimal ICF code from a large number of ICF codes simply by inputting the symptom, situation and disease name of the input target person in natural language. it can. This eliminates the need for the code input user to determine the ICF code by applying the symptoms, conditions, and disease names of the input target while looking at the written document describing the ICF, greatly reducing the work of inputting the ICF code. And effectively prevent ICF code entry errors. Yes, this makes it easier to use ICF information.
  • the database is a dictionary translation database in which various data for understanding the essential meaning of each natural language are stored, and an application conversion database in which ICF codes are stored in association with the essential meaning of each natural language.
  • the language input mode includes: an understanding unit that understands the essential meaning of the input natural language based on the dictionary translation database; and an essential unit that is understood by the understanding unit based on the application conversion database. And a code selector for selecting a corresponding ICF code from the meaning.
  • the present invention provides an ICF information processing apparatus for performing data processing on ICF information for each individual,
  • a coding means for converting an individual's symptoms, conditions and Z or disease name into an ICF code using a predetermined database
  • the coding means has an imaging input mode for determining a corresponding ICF code from image data of the body. Even with such a configuration, the above-described effects can be obtained, and even if the user is not aware of the condition of the input subject, such as the symptoms, conditions, and disease names, or if an appropriate natural language cannot be found, an appropriate I You can easily find .CF code. It is also possible to store various data that can be grasped from images such as individual height data in association with individual ICF information.
  • the imaging input mode includes: a body data detection unit that detects predetermined body data based on image data obtained by an imaging device that images the outside and / or inside of the body; A code selector for determining an ICF code based on the body data,
  • the body data detection unit is provided so as to be able to convert the body data into a natural language by comparing the imaging data with a predetermined basic state,
  • the code selecting unit is configured to determine an ICF code corresponding to the body data by using a database in which the natural language and the ICF code are stored in association with each other.
  • the present invention provides a data relating to individual ICF information.
  • ICF information processing device that performs data processing
  • the system is provided with a verbalization means for converting the ICF code into a natural language indicating the individual's symptoms, conditions and Z or disease name.
  • a verbalization means for converting the ICF code into a natural language indicating the individual's symptoms, conditions and Z or disease name.
  • the database includes a basic conversion database in which words representing the meaning of each item code and each evaluation code constituting the ICF code are stored in association with each item code and each evaluation code. It includes a dictionary translation database that has a database of language meanings, synonyms, grammar, etc.,
  • the verbalization means uses the basic conversion database to convert each item code and evaluation code of the input ICF code into a phrase representing each meaning.
  • a first conversion unit, and a second conversion unit that creates a natural language by connecting the words and phrases converted by the first conversion unit based on the dictionary translation database.
  • the present invention provides an ICF information processing apparatus for performing data processing on ICF information for each individual,
  • IC Using the application-specific database in which the F code is stored in association with the use of the ICF information, and from the IC .F information stored in a predetermined location, only a part of the ICF information corresponding to the use is It has a configuration of providing data extraction means for extraction. According to such a configuration, it is possible to easily extract an ICF code necessary for the purpose of the ICF information from a large amount of ICF codes, and in this regard, the ICF information can be easily used. it can.
  • the data extraction means when inputting the use of the ICF information, specifies a ICF code corresponding to the use based on the use-specific database, and an ICF specified by the code specification unit. And a command creation unit that requests the extraction of ICF information on the code.
  • an ICF information utilization system A data center having an ICF database storing ICF information of each individual,
  • the data center is configured to receive the ICF information input by the ICF information processing device, record and / or update the ICF information in the ICF database, and In response to a request from the device, a part or all of the ICF information stored in the ICF database is transmitted to the ICF information processing device.
  • ICF information processing device In response to a request from the device, a part or all of the ICF information stored in the ICF database is transmitted to the ICF information processing device.
  • the present invention provides an ICF information utilization system using an ICF information processing device for performing data processing on individual ICF information, which is arranged in a predetermined building space.
  • the equipment is controlled based on the ICF information data processed by the ICF information processing device.
  • the equipment is controlled based on the ICF information on all health conditions and environmental conditions of the individual, so that the equipment is automatically controlled according to its own condition,
  • it is not necessary to manually operate the equipment, and a suitable environment can be provided to users of the building space.
  • even those with some physical disabilities can easily manage the state of the living space in a sever manner, making it easy to create a comfortable living environment.
  • the ICF information is read by a reading unit provided in the architectural space
  • the equipment includes operating means for giving a predetermined operation or change to a part or the whole thereof, and the reading And a control means for receiving the ICF information read by the section and controlling the operating means according to the contents of the ICF information.
  • the equipment can be controlled using the IC card storing the ICF information as a data medium.
  • the present invention provides an ICF information utilization system using an ICF information processing device that performs data processing on individual ICF information, wherein the ICF information processing device performs data processing. It is provided with a building design device that incorporates the obtained ICF information, and this building design device is provided to be able to create a design drawing and Z or design information suitable for the user's situation based on the ICF information. It has a configuration. According to such a configuration, it is possible to form, from the ICF information, a design drawing and design information of a building adapted to the physical condition of the user and the like. This can contribute to providing a suitable environment.
  • the architectural design apparatus includes: a storage unit in which the ICF information is stored in association with the information on the architectural correspondence; and a correspondence determination for determining the architectural correspondence from the incorporated ICF information based on the storage means.
  • the ICF information is extracted from a data center having an ICF database storing the ICF information of each individual, and the ICF information stored in the data center.
  • a configuration including an ICF information processing device provided to equipment or a building design device can also be adopted.
  • ICF information processing device provided to equipment or a building design device.
  • the processing of the ICF information is performed by an ICF information processing device separate from the data center, it is possible to effectively prevent a reduction in the processing capacity of the data center.
  • I CF means the International Classification of Functions of Living adopted by the World Health Organization (WHO), and “I CF Code” means the code defined by the I CF I do.
  • I CF information is composed of I CF code. Means personal information.
  • Fig. 1 is a schematic configuration diagram of the ICF information utilization system according to the first embodiment
  • Fig. 2 is a diagram for explaining the concept of the ICF code
  • Fig. 3 is a schematic diagram for explaining the contents stored in the ICF database.
  • Fig. 4 is a block diagram for explaining the configuration of the coding means
  • Fig. 5 is a block diagram for explaining the configuration of the language input mode
  • Fig. 6 is a block diagram for explaining the contents stored in the application conversion database.
  • Figure, Figure 7 is a configuration diagram for explaining the configuration of the intermediate input mode
  • Figure 8 is a table showing the item table
  • Figure 9 is a table showing the evaluation table
  • Figure 10 is a description of the configuration of the disassembly input mode FIG.
  • FIG. 11 is a block diagram for explaining the configuration of the imaging input mode
  • FIG. 12 is a block diagram for explaining the configuration of the verbalization unit
  • FIG. 13 is a block diagram of the data extraction unit.
  • the configuration diagram for explanation Figure 14 Fig. 15 is a schematic configuration diagram of the ICF information utilization system according to the second embodiment
  • Fig. 16 is a schematic diagram of the ICF information utilization system according to the third embodiment. It is a block diagram. BEST MODE FOR CARRYING OUT THE INVENTION
  • FIG. 1 shows a schematic configuration diagram of the ICF information utilization system according to the first embodiment.
  • an ICF information use system 10 is connected to a data center 11 in which ICF information of each individual is stored, and is connected to the data center 11 via a communication network 12. It comprises an ICF information processing device 13 for inputting / outputting ICF information and the like, and predetermined equipment 15 controlled based on the ICF information output from the data center 11.
  • the data center 11 includes an ICF database 17 that stores the ICF information on an individual basis, and a known communication unit 1 that transmits and receives the ICF information of the ICF database 17 to and from the ICF information processing device 13. 8 and is provided.
  • 1 code ⁇ is composed of an item code T representing a predetermined classification item, and an evaluation code V added after each item code T and representing an evaluation of the item code T. I have.
  • Item code T is a 4- to 6-digit code consisting of a combination of alphabets and numbers. Currently, about 1500 types are set. The first digit of the item code T on the leftmost side in Fig. 2 is the component code T1, which is classified into four types for each component and is expressed in alphabet. One of four types of characters, “b”, “s”, “d”, and “e”, is applied to the component code T1. Specifically, “b” means the physical and mental functions, that is, the components related to the physiological functions (including psychological functions) of the body system, and “sj” means the body structure, that is, the organs, limbs and their constituent parts. “D” means a component related to human activities and participation in society, and “ej” means an environmental factor, that is, a physical environment outside humans. It means a component related to factors that make up the social environment.
  • the second to sixth digits located on the right side of FIG. 2 of such a component code T1 are all represented by numerals, and the second digit is a first-level code obtained by subdividing the content of each component code T1.
  • the second and third digits are a second level code T3 obtained by subdividing the contents of the first level code T2.
  • the fifth digit is a third level code T4 obtained by subdividing the contents of each second level code T3, and the sixth digit is a subdivided content of each third level code T4.
  • the evaluation code V is a code expressing the result of evaluating the various items specified by the item code T from the viewpoints of 1 to 5 by a numeral (including a symbol such as “ten”).
  • each viewpoint is evaluated by a one-digit number (a symbol such as “ten” may be added) according to a certain evaluation criterion, and the number of viewpoints is determined by the component code T 1. It varies from one to another, but there is at least one.
  • the evaluation code V is the evaluation content from the first viewpoint in order from the left side in Fig. 2.
  • First evaluation code VI indicating (first evaluation), second evaluation code V2 indicating evaluation contents from the second viewpoint (second evaluation), second evaluation code V2 indicating evaluation contents from the third viewpoint (third evaluation) (3) Evaluation code V3, fourth evaluation code V4 indicating the evaluation content from the fourth viewpoint (fourth evaluation), and fifth evaluation code V5 indicating the evaluation content from the fifth viewpoint (fifth evaluation) .
  • the ICF database 17 stores, for each individual, each item code T of the ICF and each evaluation code V corresponding to the item code T.
  • the communication network 12 is constituted by an Internet communication network, but is not limited to this.
  • Other data communication networks such as a wired communication network, a wireless communication network, a satellite communication network, etc. Any configuration is possible as long as data communication can be performed in both directions between the device and the ICF information processing device 13.
  • the ICF information processing device 13 refers to the ICF database 17 of the data center 11 and inquires or changes ICF information using SQL (Structured Query Language) terms and the like, and analyzes ICF information. Various processes can be performed by computer.
  • SQL Structured Query Language
  • the ICF information processing apparatus 13 performs data processing on ICF information for each individual.
  • a processing section 20 for processing ICF information and an execution of the processing section 20 A storage unit 21 in which various databases used for the processing are stored; an input unit 22 such as a keyboard and a mouse for instructing the processing unit 20; a liquid crystal display or a CRT display on which a predetermined display is displayed when the processing unit 20 is executed.
  • the display unit 23 includes a display unit 23 such as a display, and a known communication unit 25 that performs various types of data communication between the data center 11 and the processing unit 20.
  • the processing unit 20 includes a coding unit 29 that converts an individual's symptoms and situations into ICF code C, a linguistic unit 30 that converts the ICF code C into a natural language indicating the individuals' symptoms and situations, and data.
  • Data extraction means 31 for extracting only a part of the ICF information from the ICF information stored in the center 11, and authentication means 27 for performing a predetermined authentication when processing the ICF information by each of these means 29 to 31 27 It is configured to include:
  • the coding means 29 selects an appropriate ICF code C from the current symptoms and conditions of the target individual (hereinafter referred to as “input target”) when inputting the ICF information. Then, the ICF code C is transmitted from the communication unit 25 to the data center 11. That is, as shown in FIG. 4, the coding means 29 is a language input mode 34 that determines a corresponding ICF code C by inputting a natural language representing a symptom, situation, etc. of the input subject. Intermediate input mode 35 that determines the ICF code C by artificially selecting from a predetermined number of natural languages that represent the symptoms, situations, etc. of the input subject, and items that constitute the ICF code C By sequentially selecting words representing the meanings of the code T and the evaluation code V (see Fig. 2), the decomposition input mode 36 that determines the ICF code C and the input An imaging input mode 37 for determining a corresponding ICF code C from image data is provided.
  • the language input mode 34 corresponds to the understanding unit 39 for understanding the essential meaning of the input natural language and the essential meaning understood by the understanding unit 39.
  • the comprehension section 39 which is provided with a code selection section 40 for selecting an ICF code C, uses the dictionary translation database 42 stored in the storage section 21 to read the input natural language. The meaning can be inferred or determined.
  • the dictionary translation database 42 used here is a database in which various kinds of data for inferring or deciding the essential meaning, for example, the meaning of each natural language (word, phrase), synonyms, grammar, etc. .
  • the code selecting unit 40 uses the application conversion database 43 stored in the storage unit 21 to store the item code T and the evaluation code corresponding to the essential meaning of the natural language analogized by the understanding unit 39. C (see Figure 2). As shown in FIG. 6, the application conversion database 43 used here stores the essential meaning of each natural language in association with the ICF code. In other words, here, various essential meanings, item terms and phrases representing various items, evaluation terms and phrases representing the evaluation of the item terms and phrases, and item codes T and V are associated with each other. Is remembered.
  • the understanding unit 39 recognizes from the dictionary translation database 42 that the input sentence has an essential meaning of “difficulty walking independently on standing”.
  • the item term phrase is “thigh structure” and the evaluation term phrases are “severe structural disorder”, “all defects”, and “both sides” according to the application conversion database 43 of FIG.
  • the item code “s7500” corresponding to the item term and the evaluation code “3.1.3” corresponding to the evaluation term are determined. Accordingly, the ICF code C corresponding to Mr. A's symptom in this case is identified as "s7500. 3.1.3".
  • the language input mode 34 can be interactive. That is, a question sentence is displayed on the display unit 23, and a data entry person is provided so as to be able to input a sentence or a word along with the question sentence, or is provided so as to be able to select an answer.
  • the essential meaning is easily specified.
  • the intermediate input mode 35 is set so that the data input user can select an appropriate one from the essential meanings stored in the application conversion database 43 of FIG. 6 and thereby determine the ICF code C. Have been. That is, as shown in FIG. 7, the intermediate input mode 35 has the above-mentioned essential meaning that the input operation of the input unit 22 causes a catch. And a code selection unit 40 shared with a language input mode 34 (see FIG. 5).
  • the candidate selecting unit 46 narrows down the essential meanings of the candidates by using predetermined items set according to the symptoms and situations of the input target person as keys.
  • the data entrant determines that the physical structure has been impaired, and based on the judgment, based on the judgment, the substance that corresponds to the impairment of the relevant physical structure Display all meanings on the display unit 23. Then, the data entry person finds and identifies the relevant essential meaning, “difficulty walking on its own when standing”.
  • the essential meaning specified by the candidate selection unit 46 is converted into the corresponding ICF code C by the code selection unit 40, as in the case of the language input mode 34 described above.
  • the decomposition input mode 36 is set so that the data input person can determine the ICF code C using the basic conversion database 44 stored in the storage unit 21.
  • the item table T of FIG. 8 in which the item codes T correspond to the contents thereof and the evaluation table 50 of FIG. 9 in which the evaluation codes V correspond to the contents of the evaluation viewpoints It is configured.
  • the item's table 49 contains a major division corresponding to the component code T 1 (see FIG. 2), which is the first digit of the item code T, and subdivides the major division into the first level code T. (2), a subsection corresponding to the second level code T3 by subdividing the subsection, and an auxiliary section corresponding to the third level code T4 by subdividing the subsection.
  • the item term and the item term and the item code T corresponding to the item term and phrase on a one-to-one basis are stored.
  • the evaluation table 50 stores the above-described large section and each of the evaluation codes V1 to V5 in association with each other.
  • the data entry person can determine the ICF code C by manually selecting the corresponding item term and evaluation term from the basic conversion database 44. It is like that. That is, the decomposition input mode As shown in FIG. 10, as shown in FIG. 10, based on the phrase presentation unit 51 that presents candidate item terms and evaluation terms and phrases on the display units 2 and 3, and the 'basic conversion database 44' A code selector 52 for determining the ICF code C.
  • the term presentation unit 51 uses the respective sections of the item table 49 (see FIG. 8) as a key to narrow down the item terms and phrases by the data entry person himself, and to execute the evaluation table 50 (FIG. 9). ), The evaluation terms / phrases corresponding to the narrowed item terms / phrases are presented to the data entry person, so that the data entry person can narrow down the evaluation terms / phrases.
  • the data entrant selects “Severe Structural Disorder” as the first evaluation to evaluate the degree of disability, and “Total Deficiency” as the second evaluation to evaluate the structure Then, “both sides” is selected as the third evaluation for evaluating the site of the disorder, and these are input through the input unit 22. '
  • the corresponding ICF code C is specified from the item term and the evaluation term selected by the data entry person by the basic conversion database 44.
  • the item term was selected and input as “structure of large moon retreat”, and the evaluation terms were selected as “severe structural disorder”, “all defects”, and “both sides”.
  • the corresponding ICF code C “s750.0.3.1.3.3” is specified based on the item tape holder 49 and the evaluation table 50 in FIGS. 8 and 9. You.
  • the ICF code C specified here is transmitted to the data center 11 (see FIG. 1) as in the case of the language input mode 34 and the intermediate input mode 35 described above, and is stored in the ICF database 17. Is stored in Mr.
  • the imaging input mode 37 is a body that detects body data of the input subject based on image data obtained by the imaging device 55 that captures the body of the input subject.
  • the ICF code C is determined based on the data detector 57 and the body data from the body data detector 57, and the code selection shared with the decomposition input mode 36 (see FIG. 10) is performed.
  • the body data detection unit 57 detects various body data by comparing with a predetermined basic state in addition to the height data of the person who is imaged by the imaging data from the imaging device 55.
  • the physical data can be converted into natural language. Examples of the basic state here include the image of the input target person and various numerical values stored in the data center 11 before the input of the ICF code.
  • the body data detection unit 57 compares the image data with the basic state, and uses the image-to-language conversion database 45 stored in the storage unit 21 to determine the above-mentioned items based on the difference on the generated image. Determine terms and evaluation terms.
  • the code selection section 52 uses the item term and the evaluation term determined by the body data detection section 57 to calculate the item table 49 of the basic conversion database 44 (FIG. 8) and the evaluation table 50 (FIG. 9) are used to convert to ICF code C.
  • the body data detection unit 57 converts the image data with Mr. A's data before the traffic accident in the basic state. In comparison, it is determined that both thighs are now missing. Then, depending on the state, from the image-to-language conversion database 45, the item term is selected as “thigh structure” and the evaluation terms are “severe structural disorder”, “all defects”, and “both sides”, respectively. Is done. Then, the corresponding ICF code "s750.0.3.1.3.3" is specified by the code selection unit 52 based on the basic conversion database 44. The ICF code C specified in this manner is transmitted to the data center 11 as described above, together with the height data, image data, and the like detected by the body data detection unit.
  • the imaging device 55 captures the inside of the body such as an X-ray imaging device, an ultrasonic imaging device, and an optical fiber imaging device, in addition to cameras such as a CCD camera for imaging the outside of the body. Possible devices can also be used.
  • the coding means 29 is composed of the language input mode 34, the intermediate input mode 35, the decomposition input mode 36, and the imaging input mode 37. Alternatively, it may be composed of one to three modes.
  • the encoding means 29 it is also possible to link the encoding means 29 with a database storing the International Classification of Diseases 10th Edition (ICD-10).
  • ICD-10 International Classification of Diseases 10th Edition
  • the disease name is added to the ICF code C so that it can be displayed on the display unit 23, and by inputting the disease name in the input unit 22, the corresponding ICF code C can be determined from the disease name. Good to do.
  • the verbalization means 30 is used, for example, when it is desired to recognize the contents of a predetermined ICF code C in a natural language. As shown in FIG. 12, the verbalization means 30 uses the basic conversion database 44 to convert each item code and each evaluation code into an item term phrase and an evaluation term phrase. And a second conversion unit 61 that uses the dictionary translation database 42 to form a predetermined sentence by connecting the item terms and evaluation terms and phrases converted by the first conversion unit 60. It is configured.
  • the first conversion capital 60 is based on a predetermined ICF code transmitted from the data center 11 (see FIG. 1) or input from the input unit 22, and is used as an item table 49 in the basic conversion database 44.
  • the evaluation table see FIG. 8
  • the evaluation table 50 see FIG. 9
  • the corresponding item term and evaluation term can be extracted. For example: When the ICF code is “s750.0.3.1.3”, the first conversion unit 60 starts from the “s750” part and uses the item table 49 according to the item term phrase. Is identified as the “thigh structure”, while the evaluation terms and phrases from the section “3.1.3” are evaluated by the evaluation tape 50 as “severe structural disorders”, “all defects”, “ Both sides "are specified.
  • the second conversion unit 61 the words “thigh structure”, “severe structural disorder”, “all defects”, and “both sides” specified by the first conversion unit 60
  • the thigh structure is converted into a sentence stating that the structure of the thigh is a severe structural obstacle that results in total loss of both sides, and the sentence is displayed on the display unit 23. .
  • the verbalization means 30 extracts the corresponding essential meaning from the ICF code C by using the application conversion database 43 (see FIG. 6) used in the coding means 29, and displays the essential meaning on the display unit. 23 may be displayed.
  • the coding means 29 and the linguistic means 30 described above are conversions between the ICF code C and Japanese, the present invention is not limited to this, and the conversion between the ICF code C and other foreign languages is not limited to this. It can be a conversion or a conversion between ICF code C and multiple natural languages.
  • the data extracting means 31 is set so as to extract necessary ICF information from the data center 11 according to the use of the ICF information. That is, as shown in FIG. 13, the data extracting means 31 includes a code specifying unit that specifies the item code T (see FIG. 2) in accordance with the use of the ICF information input through the input unit 22. 63, a command creation unit 64 that requests the data center 11 (see Fig. 1) to transmit ICF information related to the item code T identified by the code identification unit 63, and a command sent from the data center 11. And a transmission unit 66 for transmitting the ICF information of the buffer unit 65 to the outside.
  • a code specifying unit that specifies the item code T (see FIG. 2) in accordance with the use of the ICF information input through the input unit 22.
  • a command creation unit 64 that requests the data center 11 (see Fig. 1) to transmit ICF information related to the item code T identified by the code identification unit 63, and a command sent from the data center 11.
  • a transmission unit 66 for
  • the code specifying unit 63 determines the item code T using the ICF database 68 for each application stored in the storage unit 21. That is, the item code T of the ICF code C is stored in the ICF database 68 for each use in association with the use of the ICF information.
  • the code identification section 63 can determine the item code T corresponding to the input use. For example, when an individual B goes to a restaurant, if the user inputs “Restaurant” for the purpose of the ICF information in the input section 22, the code identifying section 63 outputs the information from the ICF database 68 for each application. Select multiple item codes T corresponding to "restaurants".
  • the selected item code T is information required by the restaurant when Mr. B goes to the restaurant, such as information on food allergies and physical disabilities.
  • the command creating unit 64 adds the evaluation code V to the item code T specified by the code specifying unit 63 from the ICF information of a predetermined individual out of the ICF information stored in the data center 11. Create a command so that ICF code C can be extracted. For example, in the case described above, of the ICF information of Mr. B stored in the data center 11, item code T related to information such as food allergy and physical disability, and evaluation code V indicating the evaluation for the item code T Create a command to extract the ICF code c consisting of
  • the command created by the command creation unit 64 is transmitted from the communication unit 25 to the data center 11 (see FIG. 1) via the authentication means 27. Then, in accordance with the command, the data center 11 extracts desired ICF information from the ICF information stored in the ICF database 17 and transmits it to the ICF information processing device 13. Then, the ICF information received by the communication unit 25 of the ICF information processing device 13 is stored in the buffer unit 65 and then transmitted to the transmission unit 66.
  • the transmission unit 66 is configured to transmit the ICF information transmitted from the data center 11 to a predetermined device.
  • the recording device 7 stores the ICF information in a predetermined medium. It is designed to be transmitted to 0.
  • the recording device 70 is not particularly limited, but may be a known reader / writer that stores the ICF information from the buffer unit 65 in the IC card 72.
  • the ICF information stored in the IC card 72 is information for controlling the equipment 15 (see FIG. 1) to which the ICF information is used, as described later.
  • a reading device capable of reading predetermined biometric information is built in the IC card 72, and the read biometric information matches the biometric information stored in the IC card 72 in advance.
  • a personal authentication function that enables writing and reading of ICF information to and from the IC card 72 may be provided. In this way, even if the IC card 72 is lost, the risk of being misused by others can be greatly reduced.
  • the biometric information can be exemplified by fingerprint information, retina information, iris information, voiceprint information, and handwriting information.
  • the ICF information from the transmission unit 66 is transferred to a predetermined transfer center.
  • the ICF information may be distributed from there to the locations related to each application, and the equipment 15 at each location may be controlled. It is also possible to transfer the ICF information from the transmission unit 66 to a mobile terminal (not shown) such as a mobile phone or PDA.
  • the transferred ICF information is stored in the portable terminal, and the ICF information from the portable terminal is transmitted to the equipment 15 via the transfer center 1, whereby the equipment is transmitted.
  • the coding means 29, the linguistic means 30 and the data extraction means 31 as described above make the input from the input unit 22 a voice input, and through a predetermined voice recognition device. The various processes described above may be performed.
  • the authentication means 27 can perform personal authentication using the above-mentioned IC card 72 provided with a personal authentication function. That is, before performing the processing of the ICF information, a biological information reading device (not shown) built in the IC card 72 reads the biological information. When the information matches the biological information stored in the card 72, the use of the ICF information processing device 13 is permitted. Such permission may be restricted to allow only the processing of the individual's ICF information, as in the case of use by an individual stored in the IC card 72, or may be limited to use by a doctor or the like. However, there is no limit.
  • the authentication means 27 may be of a type that performs authentication based on the user ID password input to the ICF information processing apparatus 13. That is, in this case, if the user ID or password input to the ICF information processing apparatus 13 matches the user ID or password stored in the ICF information processing apparatus 13 in advance, the ICF information processing apparatus 13 Is allowed to be used.
  • the ICF information processing apparatus 13 includes all the coding means 29, the linguistic means 30, and the data extraction means 31, but only one or two of these means. It can also be set as the structure.
  • the storage unit 21 can be provided in a predetermined center (not shown) outside the ICF information processing device 13 to share data without providing the storage unit 21 in the ICF information processing device 13.
  • the equipment 15 includes operating means 74 (motor, cylinder, electric circuit, etc.) for giving a predetermined operation or change to a part or the whole thereof, and the IC card 72. And a control means 75 for controlling the operation means 74 in accordance with the contents of the ICF information stored in the storage means.
  • the equipment 15 include equipment and equipment disposed in a predetermined architectural space. Specifically, there are lighting equipment, air conditioning equipment, blinds, doors, furniture, vanities, kitchens, washing machines, toilets, system paths, speakers and guide lights for public facilities, etc.
  • control by the control means 75 will be described using the house 80 shown in FIG. 14 as a specific example.
  • the house 80 includes a lighting device 81 suspended from a ceiling 80A, an air conditioner 82 held above a wall 80B, a table device 83 provided in a room 80C, And a blind device 84 provided on the indoor side of the window W formed on the wall 80B.
  • These devices 81 to 84 correspond to the equipment 15 described above.
  • Each of the devices 81 to 84 here is electrically connected to a reading unit 87 that reads the ICF information stored in the IC card 72, and the ICF information read by the reading unit 87 is used. It is transmitted to each control means 74.
  • the connection between each of the devices 81 to 84 and the reading unit 87 is not particularly limited, and wired or wireless connection using a power line, infrared rays, Bluetooth, or the like can be adopted.
  • the illumination device 81 can adjust the intensity, quality, and color contrast of the illumination light according to the received ICF information. For example, if the ICF information related to visual impairment is applied to the S control means 75, unlike the supply of illumination light to healthy persons, the provision of light or contrast that has a bad effect on visually impaired persons should be avoided as much as possible. Illumination light is supplied indoors.
  • the air conditioner 82 can adjust the temperature, humidity, wind direction, and dust in the room according to the received ICF information. For example, if ICF information related to hypertension is given to the control means 75, a sudden increase in blood pressure will cause vascular rupture, so that the room temperature should be controlled so that the temperature change outside the room does not become sudden. Become ICF information related to hypertension. a sudden increase in blood pressure will cause vascular rupture, so that the room temperature should be controlled so that the temperature change outside the room does not become sudden. Become
  • the table device 83 is driven by an electric cylinder 74 (actuating means). It is provided so that it can move up and down 3 A, and the height of the top plate 83 A is adjusted according to the received ICF information. For example, if ICF information indicating that it is difficult to walk independently is given to the control means 75, the holder of the IC card 72 using the table device 83 will be required to use the device in a wheelchair.
  • the operating means 74 is controlled so that the height of the top plate 83 A is possible.
  • the same control can be applied to a vanity table in which the height of the wash bowl is electrically variable and a kitchen in which the height of the counter is electrically variable.
  • the blind device 84 is provided with an open area of the flap 84A variably provided by an electric actuator 74 (operating means), and the open area is adjusted according to the received ICF information. For example, when ICF information related to visual impairment is given to the control means 7 and 5, it acts to adjust the use of natural light from the outside so as to minimize the adverse effect on the visually impaired. I have.
  • the facilities for the elderly, nursing care insurance, care homes, group homes, special elderly nursing homes, excellent rental housing for the elderly, short stay facilities, medical treatment facilities, private facilities It can also be applied to architectural spaces used by a specific majority, such as paid nursing homes, nursing homes for the elderly, schools, and work spaces.
  • the above control shall be used for public facilities such as city halls, public halls, public halls, theaters, and other public facilities, restaurants and other restaurants, airports, hospitals, museums, and other unspecified large numbers. You can also.
  • ICF information of each user is statistically processed so that an environment suitable for all users can be provided. It is good to control indoor facilities and equipment. For example, at airports and the like, if statistical processing of users' ICF information reveals that many people who are blind will use it, it is advisable to operate voice guidance facilities that facilitate guidance within the airport.
  • the presence of the ICF information processing apparatus 13 makes it possible to easily use ICF information in various fields.
  • the control of the equipment and devices existing in the building space is performed based on the ICF information, it is possible to simplify the predetermined building space to a state where the personal information of the user is reflected in detail. It has the effect of cutting.
  • the ICF information utilization system 90 is different from the first embodiment in that a building design device 92 such as CAD is provided instead of the equipment 15.
  • the other configuration is substantially the same as the first embodiment.
  • the ICF information utilization system 90 incorporates ICF information from the ICF information processing device 13 into the architectural design device 92, and the architectural design device 92 uses the ICF information to utilize the ICF information.
  • the building can be designed to meet the requirements.
  • the architectural design device 92 reads ICF information recorded on a medium such as an IC card 72 and creates a design drawing or design information of a building based on the ICF information. That is, the architectural design device 92 stores the architectural information from the ICF information stored in the IC card 72 based on the storage means 94 in which the ICF information is stored in association with the architectural correspondence.
  • a display section 97 such as a CRT display.
  • Architectural responses such as “Adoption of sliding doors and folding doors” and “Attention to the position of flush fittings” are stored.
  • ICF code C of “b21002.3” which means severe visual impairment
  • the display size and contrast must be devised.” “The display object is placed at eye level. Architectural correspondence such as "do”.
  • a set of the ICF code C constituting the symptom is determined.
  • the predetermined architectural correspondence is stored. For example, overload of ICF codes such as “bl300.2” and “bl340.2”, which indicate the possibility of systemic lupus erythematosus (SLE), an autoimmune disease, can cause overwork and direct sunlight. Since the cold worsens the symptoms, “cutting ultraviolet rays in the room”, “environment controlled so as not to lower the room temperature excessively”, “conductor structure that avoids wasting energy for indoor movement” Architectural measures such as “making facilities barrier-free” are stored.
  • the correspondence determining means 95 extracts related architectural correspondences from the ICF information stored in the IC card '72 by using the storage means 94.
  • the reflection means 96 is, for example, a correspondence display function of displaying the architectural correspondence extracted by the correspondence determination means 95 on the display unit 97, and displaying the architectural correspondence on the architectural drawing on the display unit 97.
  • Correspondence reflection function and an alarm function that requests correction of the drawing if the design drawing created by the designer does not conform to the architectural correspondence extracted by the correspondence determination means It is comprised including.
  • the same effects as those of the first embodiment can be obtained, and the necessary architectural measures are required when designing a building space adapted to the elderly and the disabled. Can be surely reflected.
  • the ICF information use system 100 differs from the ICF information utilization system 100 in that the mobile phone 102 has various functions of the ICF information device 13 of the first embodiment. Has features.
  • the functions of the processing unit 20 and the storage unit 21 in the present S example are executed by a CPU (Central Processing Unit) and a memory built in the mobile phone 102.
  • a CPU Central Processing Unit
  • the input section 22 is constituted by dial buttons (not shown), and the display section 23 is constituted by a display (not shown) for displaying telephone numbers, characters and the like.
  • the communication unit 25 corresponds to a known unit for realizing the communication function of the mobile phone 102.
  • the authentication means 27 corresponds to various known authentication functions built in the mobile phone 102. '
  • Examples of the imaging device 55 include a CCD camera built in the mobile phone 102 and a control unit (not shown) thereof.
  • the function of the transmission unit 66 (see FIG. 13) constituting the data extraction unit 31 is such that the data communication unit 104 that enables infrared communication (IrDA communication) is used.
  • IrDA communication infrared communication
  • the above-mentioned ICF information extracted by the data extracting means 31 is directly transmitted from the data communication section 104 to the control means 75 of the equipment 15 by infrared communication, whereby the equipment The operation of 15 is controlled as described above. Therefore, in the present embodiment, the recording device 70 such as a reader / writer and the IC card 72 (see FIG. 1) become unnecessary, and the card reading section 87 shown in FIG. 14 becomes unnecessary. .
  • a predetermined radio wave is transmitted and received.
  • other communication means such as Bluetooth can be used.
  • the IC card 72 becomes unnecessary, and recently, a mobile phone 102 that many people always carry is available.
  • the function of the IC card 72 storing its own ICF information can be provided, and the ICF information can be expected to be more effectively used in many fields and places.
  • the mobile phone 102 is used in the third embodiment, the mobile phone 102 can be applied to other mobile terminals as long as the same operation and effect can be obtained.
  • the second embodiment can be replaced with a mode in which the mobile phone 102 has various functions of the ICF information device 13 as in the third embodiment.
  • each unit of the device according to the present invention is not limited to the illustrated configuration example, and various modifications are possible as long as substantially the same operation is achieved.
  • the present invention can be used as a personal information handling system applied to various fields such as the engineering field, the health field, the medical field, and the welfare field.

Landscapes

  • Engineering & Computer Science (AREA)
  • Business, Economics & Management (AREA)
  • Strategic Management (AREA)
  • Entrepreneurship & Innovation (AREA)
  • Human Resources & Organizations (AREA)
  • Operations Research (AREA)
  • Economics (AREA)
  • Marketing (AREA)
  • Data Mining & Analysis (AREA)
  • Quality & Reliability (AREA)
  • Tourism & Hospitality (AREA)
  • Physics & Mathematics (AREA)
  • General Business, Economics & Management (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Information Retrieval, Db Structures And Fs Structures Therefor (AREA)

Abstract

L'invention concerne un système (10) d'utilisation d'informations ICF comprenant un centre (11) de données dans lequel sont stockées des informations ICF sur chaque individu, un dispositif (13) de traitement d'informations ICF connecté au centre (11) de données via un réseau de communication d'entrée/sortie d'informations ICF du centre (11) d'informations, et un dispositif prédéterminé (15) commandé en fonction des informations ICF de sortie du centre (11) de données. Le dispositif (13) de traitement des informations ICF comprend des moyens (29) de codage convertissant les symptômes et l'état d'un individu en code IFC (C), des moyens (30) de langage convertissant le code ICF (C) en un langage naturel indiquant les symptômes et l'état d'un individu, et des moyens (31) d'extraction de données servant à extraire seulement certaines informations ICF des informations ICF stockées dans le centre (11) de données.
PCT/JP2003/014701 2002-11-20 2003-11-19 Dispositif de traitement d'informations icf et systeme d'utilisation d'informations icf comprenant ledit dispositif Ceased WO2004046966A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
AU2003284409A AU2003284409A1 (en) 2002-11-20 2003-11-19 Icf information processing device and icf information use system using the same
JP2004553199A JPWO2004046966A1 (ja) 2002-11-20 2003-11-19 Icf情報処理装置及びこれを用いたicf情報利用システム

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
JP2002336071 2002-11-20
JP2002-336070 2002-11-20
JP2002-336071 2002-11-20
JP2002336070 2002-11-20

Publications (1)

Publication Number Publication Date
WO2004046966A1 true WO2004046966A1 (fr) 2004-06-03

Family

ID=32328327

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2003/014701 Ceased WO2004046966A1 (fr) 2002-11-20 2003-11-19 Dispositif de traitement d'informations icf et systeme d'utilisation d'informations icf comprenant ledit dispositif

Country Status (3)

Country Link
JP (1) JPWO2004046966A1 (fr)
AU (1) AU2003284409A1 (fr)
WO (1) WO2004046966A1 (fr)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101222091B1 (ko) * 2011-07-14 2013-01-14 고려대학교 산학협력단 건강 분류 항목을 이용한 소셜 네트워크 서비스 제공 방법 및 장치
KR101264273B1 (ko) * 2010-11-22 2013-05-22 고려대학교 산학협력단 생활, 장애 및 건강 분류 정보를 이용한 응용 서비스 제공 방법 및 장치
CN110870763A (zh) * 2019-06-27 2020-03-10 上海慧敏医疗器械有限公司 鼻口共鸣比测量和视听反馈技术的鼻共鸣康复仪器及方法

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6908977B2 (ja) * 2016-07-22 2021-07-28 株式会社トプコン 医療情報処理システム、医療情報処理装置及び医療情報処理方法

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH04195465A (ja) * 1990-11-28 1992-07-15 Hitachi Ltd 電子カルテシステムの入力支援方式
JP2000298696A (ja) * 1999-04-15 2000-10-24 Mitsubishi Electric Corp 医療情報用データマイニングエンジン補助装置および医療情報用データマイニングエンジン補助方法
JP2001187044A (ja) * 2000-11-20 2001-07-10 Toshiba Corp 画像収集装置
JP2001216338A (ja) * 2000-01-31 2001-08-10 Sekisui Chem Co Ltd 設計支援システム
JP2001349744A (ja) * 2000-06-09 2001-12-21 Oki Electric Ind Co Ltd 歩行者支援情報提供システム
JP2002144771A (ja) * 2000-11-14 2002-05-22 Sekisui House Ltd 高齢者・障害者配慮住宅の設計事例集

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH04195465A (ja) * 1990-11-28 1992-07-15 Hitachi Ltd 電子カルテシステムの入力支援方式
JP2000298696A (ja) * 1999-04-15 2000-10-24 Mitsubishi Electric Corp 医療情報用データマイニングエンジン補助装置および医療情報用データマイニングエンジン補助方法
JP2001216338A (ja) * 2000-01-31 2001-08-10 Sekisui Chem Co Ltd 設計支援システム
JP2001349744A (ja) * 2000-06-09 2001-12-21 Oki Electric Ind Co Ltd 歩行者支援情報提供システム
JP2002144771A (ja) * 2000-11-14 2002-05-22 Sekisui House Ltd 高齢者・障害者配慮住宅の設計事例集
JP2001187044A (ja) * 2000-11-20 2001-07-10 Toshiba Corp 画像収集装置

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
SHAKAI: "Kokusai seikatsu kino bunrui kokusai shogai bunrui kaiteiban", ENGOKYOKU SHOGAI HOKEN FUKUSHIBU KIKAKUKA, 5 August 2002 (2002-08-05), MINISTRY OF HEALTH, LABOUR AND WELFARE, XP002979105, Retrieved from the Internet <URL:http://www.mhlw.go.jp/houdou/2002/08/h0805-1.html> [retrieved on 20040218] *

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101264273B1 (ko) * 2010-11-22 2013-05-22 고려대학교 산학협력단 생활, 장애 및 건강 분류 정보를 이용한 응용 서비스 제공 방법 및 장치
KR101222091B1 (ko) * 2011-07-14 2013-01-14 고려대학교 산학협력단 건강 분류 항목을 이용한 소셜 네트워크 서비스 제공 방법 및 장치
WO2013009024A3 (fr) * 2011-07-14 2013-04-11 고려대학교 산학협력단 Procédé et système de fourniture d'un service d'application utilisant des informations de catégorie de santé
CN110870763A (zh) * 2019-06-27 2020-03-10 上海慧敏医疗器械有限公司 鼻口共鸣比测量和视听反馈技术的鼻共鸣康复仪器及方法
CN110870763B (zh) * 2019-06-27 2023-05-16 上海慧敏医疗器械有限公司 鼻口共鸣比测量和视听反馈技术的鼻共鸣康复仪器及方法

Also Published As

Publication number Publication date
AU2003284409A1 (en) 2004-06-15
JPWO2004046966A1 (ja) 2006-03-16

Similar Documents

Publication Publication Date Title
Horsburgh Jr Healing by design
Eastman Building type basics for senior living
Jones et al. Making our offices universally accessible: guidelines for physicians
Khalil Exploring inclusiveness in green hotels for sustainable development in Egypt
Balaceanu et al. Developing a Smart Toilet System for ageing people and persons with disabilities
WO2004046966A1 (fr) Dispositif de traitement d&#39;informations icf et systeme d&#39;utilisation d&#39;informations icf comprenant ledit dispositif
Reid Accessibility and usability of the physical housing environment of seniors with stroke
Nowakowski et al. Designing movement space for elderly and disabled people in the construction law in selected countries
Russell et al. Identifying barriers in the home environment among urban community-dwelling older adults with functional difficulty: a multi-method pilot study
Sayed et al. The Readiness of Accommodation Facilities to Provide Accessible Tourist Experiences in Cairo, Egypt
Fallah et al. Identifying barriers and problems of physical environment in older adults’ homes: An ergonomic approach
Mattie et al. Development of an integrated staircase lift for home access
Scott-Webber et al. Life-span design in the near environment
Ahasan et al. Ergonomics of living environment for the people with special needs
Sanford The physical environment and home health care
Nimmol et al. Guidelines for Physical Environment and Facilities to Serve Elderly Tourists in Riverside Bungalows: A Case Study of Samut Songkhram Province
Boydell Best Practice in Housing Design for Seniors' Supportive Housing
Engineer Immersive physical environment: office interiors and preparedness
Goodacre et al. Enabling older people to stay at home: How adaptable are existing properties?
Boby et al. Well-being in indoor public spaces of tertiary hospitals post coronavirus disease 2019 in Delhi and Rotterdam, a Salutogenic approach
Malakasis Guests and Hosts in an Athens Public Hospital: Hospitality as Lens for Analyzing Migrants’ Health Care
KR20090067299A (ko) 의료 복합 센터 및 의료 종합 서비스 제공 시스템
Ruiz et al. Working with the ALS community to advance innovative housing and technology solutions
Vyas et al. “I can't swing a cat in here”: Towards Smart, Accessible Homes for People with Paraplegia
Jardine The psychology of waiting: designing for satisfaction in emergency department waiting environments

Legal Events

Date Code Title Description
AK Designated states

Kind code of ref document: A1

Designated state(s): AE AG AL AM AT AU AZ BA BB BG BR BY BZ CA CH CN CO CR CU CZ DE DK DM DZ EC EE EG ES FI GB GD GE GH GM HR HU ID IL IN IS JP KE KG KP KR KZ LC LK LR LS LT LU LV MA MD MG MK MN MW MX MZ NI NO NZ OM PG PH PL PT RO RU SC SD SE SG SK SL SY TJ TM TN TR TT TZ UA UG US UZ VC VN YU ZA ZM ZW

AL Designated countries for regional patents

Kind code of ref document: A1

Designated state(s): BW GH GM KE LS MW MZ SD SL SZ TZ UG ZM ZW AM AZ BY KG KZ MD RU TJ TM AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IT LU MC NL PT RO SE SI SK TR BF BJ CF CG CI CM GA GN GQ GW ML MR NE SN TD TG

121 Ep: the epo has been informed by wipo that ep was designated in this application
WWE Wipo information: entry into national phase

Ref document number: 2004553199

Country of ref document: JP

122 Ep: pct application non-entry in european phase