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WO2016062112A1 - 弹性检测的方法、装置和系统 - Google Patents

弹性检测的方法、装置和系统 Download PDF

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Publication number
WO2016062112A1
WO2016062112A1 PCT/CN2015/081919 CN2015081919W WO2016062112A1 WO 2016062112 A1 WO2016062112 A1 WO 2016062112A1 CN 2015081919 W CN2015081919 W CN 2015081919W WO 2016062112 A1 WO2016062112 A1 WO 2016062112A1
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Prior art keywords
elastic
data center
cloud data
detecting device
elasticity
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English (en)
French (fr)
Inventor
邵金华
孙锦
段后利
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Wuxi Hisky Medical Technologies Co Ltd
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Wuxi Hisky Medical Technologies Co Ltd
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B8/00Diagnosis using ultrasonic, sonic or infrasonic waves
    • A61B8/08Clinical applications
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/05Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fields; Measuring using microwaves or radio waves
    • A61B5/055Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fields; Measuring using microwaves or radio waves involving electronic [EMR] or nuclear [NMR] magnetic resonance, e.g. magnetic resonance imaging
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B6/00Apparatus or devices for radiation diagnosis; Apparatus or devices for radiation diagnosis combined with radiation therapy equipment
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B6/00Apparatus or devices for radiation diagnosis; Apparatus or devices for radiation diagnosis combined with radiation therapy equipment
    • A61B6/02Arrangements for diagnosis sequentially in different planes; Stereoscopic radiation diagnosis
    • A61B6/03Computed tomography [CT]
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B8/00Diagnosis using ultrasonic, sonic or infrasonic waves
    • A61B8/44Constructional features of the ultrasonic, sonic or infrasonic diagnostic device
    • A61B8/4411Device being modular
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B8/00Diagnosis using ultrasonic, sonic or infrasonic waves
    • A61B8/48Diagnostic techniques
    • A61B8/485Diagnostic techniques involving measuring strain or elastic properties

Definitions

  • the invention relates to the technical field of medical instruments, in particular to a method, device and system for elastic detection.
  • the elasticity of biological tissues is closely related to the biological characteristics of the lesions, and has important reference value for the diagnosis process of diseases.
  • traditional medical imaging modalities including X-ray imaging, ultrasound imaging, magnetic resonance imaging (MRI), computed tomography (CT), etc.
  • MRI magnetic resonance imaging
  • CT computed tomography
  • Elastography the elastic imaging technology has been rapidly developed. This technology can obtain the quantitative information of the elastic distribution within the organization, make up for the deficiency of traditional medical imaging modality, and has very important clinical value and broad application prospects.
  • Elastography is a technique for quantitatively detecting tissue elastic modulus.
  • the basic principle is to apply an internal (including own) or external dynamic/static/quasi-static excitation to the tissue. Under the action of physical laws such as elastic mechanics and biomechanics, the tissue will produce a response. Due to the different elastic coefficients (stress/strain) of different tissues (including normal and pathological tissues), the strain is different after being pressed by external force. The change of the amplitude of the echo signal before and after compression is converted into an image to visually display the elasticity of the tissue through the color of the image, thereby locating the lesion.
  • This technique can provide quantitative values of tissue elasticity.
  • Tissue elastography can effectively identify the benign and malignant nature of solid tumors, and has high specificity and sensitivity for the diagnosis of malignant lesions.
  • Current research has shown that this technique has unique advantages in the qualitative and quantitative diagnosis of deep vein thrombosis, benign breast lesions, small breast mass, prostate cancer, malignant tumor, thyroid cancer and liver fibrosis.
  • the existing elastic detecting device can only obtain the elastic detecting information of the currently detected patient, and cannot share the elastic detecting information.
  • the invention provides a method, a device and a system for elastic detection, which realize sharing of elasticity detection information.
  • the present invention provides the following technical solutions:
  • An elastic detection method comprising:
  • Step 1 Obtaining the elasticity detection information of the patient using the elastic detecting device
  • Step 2 The elasticity detecting device uploads the elasticity detection information to a cloud data center;
  • Step 3 The cloud data center receives and saves the elasticity detection information for sharing.
  • the elasticity detection information includes mechanism information using the elasticity detecting device, identification information of the elasticity detecting device, identity information of the patient, and elasticity detection value information.
  • Step 4 The client obtains the elasticity detection information of the cloud data center.
  • the step 3 is further: the cloud data center stores the elasticity detection information in a database for the client to acquire.
  • the step 2 further includes: the client and/or the third direction uploading data to the cloud data center, where the third party is a data terminal and/or a data center other than the elastic detecting device and the client;
  • the method further includes:
  • Step 31 The cloud data center feeds back data to the elastic detecting device.
  • Step 32 The elasticity detecting device receives data fed back by the cloud data center.
  • the step 2 further includes a step 21: the elastic detecting device encrypts the elasticity detection information
  • the step 3 is further: the cloud data center receives the elasticity detection information and decrypts and saves the information.
  • step 4 includes:
  • Step 41 The cloud data center encrypts the elastic detection information and sends it to the guest. Account
  • Step 42 The client decrypts and receives the received elasticity detection information.
  • the method further includes the step 22: the cloud data center performs identity authentication on the elastic detecting device, and assigns corresponding authority to the elastic detecting device;
  • the method further includes the step 33: the cloud data center performs identity authentication on the client, and assigns the corresponding authority to the client.
  • An elastic detecting device comprising:
  • An elastic detection module for acquiring elasticity detection information of the patient
  • the remote transmission module is configured to upload the elasticity detection information to the cloud data center.
  • the remote transmission module is further configured to receive data fed back by the cloud data center;
  • the elastic detecting device further includes:
  • an encryption module configured to encrypt the elasticity detection information.
  • An elastic detection system includes the above-mentioned elastic detecting device and a cloud data center connected to the elastic detecting device via a network.
  • the elastic detection system further includes a client, and the client is connected to the cloud data center through a network.
  • the client includes a computer, a mobile phone, and/or a tablet (PAD), and the cloud data center is a server, and the network includes an Internet (Internet), a wireless local area network (WLAN), and a general packet radio network (GPRS). ), third generation mobile communication network (3G) and/or fourth generation mobile communication network (4G).
  • Internet Internet
  • WLAN wireless local area network
  • GPRS general packet radio network
  • 3G third generation mobile communication network
  • 4G fourth generation mobile communication network
  • the elastic detecting device acquires the elasticity detecting information of the patient and uploads it to the cloud data center for sharing, so that people (including hospitals, doctors, patients, etc.) can receive data from the cloud.
  • the center obtains the elasticity detection information, and realizes the sharing of the elasticity detection information.
  • Flexible detection information sharing enables patients to easily obtain their own flexible detection information through the client to understand their physical condition; the hospital can obtain a large number of patient's elastic detection information, track patient detection, and target patients. Detection, there is Effectively improve the treatment effect; cloud data center can conduct scientific research based on a large number of elastic detection information to promote the development of medical undertakings.
  • FIG. 1 is a schematic flow chart of an elastic detecting method of the present invention
  • FIG. 2 is a schematic structural view of an elastic detecting device of the present invention
  • FIG. 3 is a schematic structural view of an elastic detecting system of the present invention.
  • the present invention provides a method for detecting elasticity, as shown in FIG. 1, comprising:
  • Step 1 Obtaining the elasticity detection information of the patient using the elastic detecting device
  • the elastic detecting device is generally in the form of a structure, for example, an elastic detecting probe, an elastic detecting host and corresponding software;
  • Step 2 The elastic detecting device uploads the elastic detection information to the cloud data center;
  • the elastic detection device can upload the elastic detection information to the cloud data center through a network (including but not limited to the Internet, WLAN, GPRS, 3G, 4G);
  • Step 3 The cloud data center receives and saves the elasticity detection information for sharing
  • the cloud data center receives and stores the data uploaded by the elastic detection device for sharing, and the cloud data center links with the external network through the network, where the network refers to any network that can be linked to the cloud data center, such as the Internet, GPRS, wireless network, etc. ;
  • the cloud data center can receive data uploaded by multiple elastic detection devices to form a big data platform
  • the elastic detection information includes mechanism information using the elastic detecting device, identification information of the elastic detecting device, identity information of the patient, and elasticity detection value information, and the above-mentioned institutions are medical institutions and health service institutions including hospitals. Wait.
  • the elastic detecting device acquires a patient
  • the elasticity detection information is uploaded to the cloud data center for sharing, so that people (including hospitals, doctors, patients, etc.) can obtain the elasticity detection information from the cloud data center, and realize the sharing of the elasticity detection information.
  • Flexible detection information sharing enables patients to easily obtain their own flexible detection information through the client to understand their physical condition; the hospital can obtain a large number of patient's elastic detection information, track patient detection, and target patients. Detection, effective to improve the treatment effect; cloud data center can conduct scientific research based on a large number of flexible detection information to promote the development of medical undertakings.
  • the method further includes:
  • Step 4 The client obtains the elastic detection information of the cloud data center.
  • the client can access the cloud data center through the web server or the APP for any tool that can connect to the network, such as a computer, a mobile phone, a PAD, etc., to realize the sharing of the elastic detection information; of course, the elastic detection device can also directly detect the elasticity through the network.
  • the information is sent to the client, and the sharing of the elastic detection information can also be realized.
  • Step 3 is further: the cloud data center stores the elastic detection information in the database for the client to acquire.
  • Storing the elastic detection information in the database enables the cloud data center to manage the elastic detection information more conveniently, so that the client can obtain the flexible detection information more conveniently.
  • step 2 may further include: uploading data by the client and/or the third direction cloud data center, where the third party may be a data terminal and/or a data center other than the elastic detecting device and the client;
  • the patient can use the client to upload personal data to the cloud data center to update the user information;
  • the cloud data center can also receive information sent by a third party, that is, the cloud data center has a third-party data receiving interface, and the third party refers to a data detecting terminal and/or a data center other than the elastic detecting device and the client, which can be a hospital or a certain Some cooperative data centers, etc., the data provided to the cloud data center may be information such as patient information, pathological cases of some diseases, and the like.
  • step 4 it may further include:
  • Step 31 The cloud data center feeds back data to the elastic detecting device.
  • Step 32 The elastic detecting device receives the data fed back by the cloud data center;
  • the doctor can use the elastic detection device to receive the data fed back by the cloud data center, and the feedback data includes the status information of whether the elastic detection information is successfully uploaded, etc., and can accurately determine whether the elastic detection information is successfully uploaded.
  • step 2 further includes step 21: the elastic detecting device encrypts the elasticity detecting information
  • Step 3 is further: the cloud data center receives the elastic detection information and decrypts and saves;
  • the elastic detection device encrypts the elastic detection information and then uploads it to the cloud data center, thereby ensuring the security of data transmission between the elastic detection device and the cloud data center, and avoiding leakage of patient privacy.
  • step 4 includes:
  • Step 41 The cloud data center encrypts the elastic detection information and sends the information to the client.
  • Step 42 The client decrypts and receives the received elasticity detection information.
  • the cloud data center encrypts the elastic detection information and then sends it to the client, ensuring the security of data transmission between the client and the cloud data center, and further avoiding leakage of patient privacy.
  • the method further includes the step 22: the cloud data center performs identity authentication on the elastic detecting device, and assigns corresponding authority to the elastic detecting device;
  • Step 32 further includes step 33: the cloud data center authenticates the client, and assigns the corresponding authority to the client;
  • the cloud data center is generally connected to a plurality of elastic detecting devices and clients. These elastic detecting devices may belong to the same hospital or may belong to multiple hospitals, and the client may be used by a patient or may be used by a doctor. In this way, it is necessary to authenticate the elastic detection device and the client, and assign different permissions;
  • the elastic detecting device has the functions of uploading elastic detection information, viewing the elastic detection information uploaded by itself, and viewing the flexible detection information authorized by the patient.
  • the authority of the elastic detecting device can be customized according to the actual situation;
  • the client is divided into a doctor and a patient.
  • the authority of the doctor is based on the hospital and the cloud.
  • the data center is set up together, and the personal rights of different doctors are also different; in general, the patient can access the patient's own flexible detection information and upload personal information.
  • the patient can also customize the permissions according to the actual situation, each patient has Have your own permissions.
  • the present invention provides an elastic detecting device 7, as shown in FIG. 2, comprising:
  • the elasticity detecting module 71 is configured to acquire elasticity detection information of the patient
  • the remote transmission module 72 is configured to upload the elasticity detection information to the cloud data center; the remote transmission module 72 can include a hardware interface circuit and corresponding software.
  • the elastic detecting device 7 of the present invention adds a remote transmitting module 72 to the conventional elastic detecting device, which enables sharing of the elastic detecting information.
  • the remote transmission module 72 is further configured to receive data fed back by the cloud data center;
  • the doctor can use the elasticity detecting device 7 to receive the data fed back by the cloud data center, and the feedback data includes state information of whether the elastic detection information is successfully uploaded, etc., and can accurately determine whether the elastic detection information is successfully uploaded;
  • the elastic detecting device 7 further includes:
  • the encryption module 73 is configured to encrypt the elasticity detection information.
  • the encryption module 73 of the elasticity detecting device 7 encrypts the elasticity detection information and uploads it to the cloud data center, thereby ensuring the security of data transmission between the elastic detection device and the cloud data center, and avoiding leakage of patient privacy.
  • the present invention provides an elastic detecting system, as shown in FIG. 3, comprising the above-described elastic detecting device 7 and a cloud data center 8 connected to the elastic detecting device 7 via a network.
  • the elastic detecting device 7 acquires the elasticity detecting information of the patient and uploads it to the cloud data center 8, and the person can obtain the elastic detecting information from the cloud data center 8 to realize The sharing of elastic detection information.
  • Flexible detection information sharing enables patients to easily obtain their own flexible detection information through the client to understand their physical condition; the hospital can obtain a large number of patient's elastic detection information, track patient detection, and target patients. Detection, effective to improve the treatment effect; cloud data center can conduct scientific research based on a large number of flexible detection information to promote the development of medical undertakings.
  • the elastic detection system further includes a client 9, and the client 9 is connected to the cloud data center 8 through a network.
  • the shared data can be obtained from the cloud data center in various manners.
  • the elastic detection information is obtained from the cloud data center by using the client, and the flexible detection information is conveniently shared.
  • the client 9 may include a computer, a mobile phone, and/or a tablet (PAD), etc.
  • the cloud data center 8 is a server.
  • the server includes a general server, a large server, and/or a cloud server, and the network includes the Internet (Internet) and wireless.
  • WLAN Local area network
  • GPRS general packet radio network
  • 3G third generation mobile communication network
  • 4G fourth generation mobile communication network
  • the flexible detection system of the present invention has various types of clients, including various terminal devices commonly used in the market, and uses various commonly used network connections, thereby making the system compatible and having high scalability.

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Abstract

一种弹性检测的方法、装置(7)和系统,弹性检测的方法包括:使用弹性检测装置(7)获取病人的弹性检测信息;弹性检测装置(7)将弹性检测信息上传到云端数据中心(8);云端数据中心(8)接收并保存弹性检测信息,以进行共享。弹性检测的方法、装置(7)和系统实现了弹性检测信息的共享。

Description

弹性检测的方法、装置和系统 技术领域
本发明涉及医疗器械技术领域,特别是指一种弹性检测的方法、装置和系统。
背景技术
生物组织的弹性与病灶的生物学特性紧密相关,对于疾病的诊断过程具有重要的参考价值。然而,包括X射线成像、超声成像、磁共振成像(MRI)、计算机断层扫描(CT)等在内的传统医学成像模态都不能直接提供弹性这一组织的基本力学属性的信息。近年来,弹性成像(Elastography)技术得到了迅速的发展,该技术能够获得组织内部的弹性分布的定量信息,弥补了传统医学成像模态的不足,具有非常重要的临床价值和广阔的应用前景。
弹性成像技术是一种定量检测组织弹性模量的技术。其基本原理是对组织施加一个内部(包括自身的)或外部的动态/静态/准静态的激励,在弹性力学、生物力学等物理规律作用下,组织将产生一个响应。由于不同组织(包括正常和病理组织)的弹性系数(应力/应变)不同,在受到外力压迫后其应变大小也不同。将受压前后回波信号移动幅度的变化转化为图像,以通过图像的色彩直观显示组织的弹性大小,从而定位病变。该技术可以提供组织弹性的定量数值。
组织弹性成像可有效鉴别实质性肿瘤的良恶性,对于恶性病变诊断具有较高的特异性和敏感性。目前的研究已表明,该技术在深静脉血栓、乳腺良性病变、乳腺小肿块性质、前列腺癌、恶性肿瘤、甲状腺癌及肝纤维化等的定性和定量诊断上具有独特优势。
现有弹性检测装置只能获取当前检测的病人的弹性检测信息,不能够实现弹性检测信息的共享。
发明内容
本发明提供一种弹性检测的方法、装置和系统,实现了弹性检测信息的共享。
为解决上述技术问题,本发明提供技术方案如下:
一种弹性检测方法,包括:
步骤1:使用弹性检测装置获取病人的弹性检测信息;
步骤2:所述弹性检测装置将所述弹性检测信息上传到云端数据中心;
步骤3:所述云端数据中心接收并保存所述弹性检测信息,以进行共享;
其中,所述弹性检测信息包括使用所述弹性检测装置的机构信息、所述弹性检测装置的识别信息、病人的身份信息和弹性检测值信息。
进一步的,还包括:
步骤4:客户端获取所述云端数据中心的弹性检测信息;
所述步骤3进一步为:所述云端数据中心将所述弹性检测信息存储到数据库中,以供所述客户端进行获取。
进一步的,所述步骤2还包括:所述客户端和/或第三方向所述云端数据中心上传数据,所述第三方为弹性检测装置和客户端之外的数据终端和/或数据中心;
所述步骤3之后,步骤4之前还包括:
步骤31:所述云端数据中心向所述弹性检测装置反馈数据;
步骤32:所述弹性检测装置接收所述云端数据中心反馈的数据。
进一步的,所述步骤1之后,步骤2之前还包括步骤21:所述弹性检测装置将所述弹性检测信息进行加密;
所述步骤3进一步为:所述云端数据中心接收所述弹性检测信息并进行解密并保存。
进一步的,所述步骤4包括:
步骤41:所述云端数据中心对所述弹性检测信息进行加密并发送到客 户端;
步骤42:所述客户端对接收到的弹性检测信息进行解密查看。
进一步的,所述步骤21之后还包括步骤22:所述云端数据中心对所述弹性检测装置进行身份认证,并对所述弹性检测装置分配相应的权限;
所述步骤32之后还包括步骤33:所述云端数据中心对所述客户端进行身份认证,并对所述客户端分配相应的权限。
一种弹性检测装置,包括:
弹性检测模块,用于获取病人的弹性检测信息;
远程传输模块,用于将所述弹性检测信息上传到云端数据中心。
进一步的,所述远程传输模块还用于接收所述云端数据中心反馈的数据;
所述弹性检测装置还包括:
加密模块,用于将所述弹性检测信息进行加密。
一种弹性检测系统,包括上述弹性检测装置、与所述弹性检测装置通过网络连接的云端数据中心。
进一步的,所述弹性检测系统还包括客户端,所述客户端与所述云端数据中心通过网络连接。
进一步的,所述客户端包括电脑、手机和/或平板电脑(PAD),所述云端数据中心为服务器,所述网络包括互联网(Internet)、无线局域网络(WLAN)、通用分组无线网(GPRS)、第三代移动通信网络(3G)和/或第四代移动通信网络(4G)。
本发明具有以下有益效果:
与现有技术相比,本发明的弹性检测方法中,弹性检测装置获取病人的弹性检测信息并将其上传到云端数据中心进行共享,使人们(包括医院、医生、病人等)可以从云端数据中心获取到该弹性检测信息,实现了弹性检测信息的共享。弹性检测信息共享可以使病人能够方便的通过客户端来获取自己的弹性检测信息,了解自己的身体状况;医院可以得到大量的病人的弹性检测信息,跟踪病人检测情况,有针对性的对病人进行检测,有 效的提高治疗效果;云端数据中心可以依据大量的弹性检测信息进行科学研究,促进医疗事业的发展。
附图说明
图1为本发明的弹性检测方法的流程示意图;
图2为本发明的弹性检测装置的结构示意图;
图3为本发明的弹性检测系统的结构示意图。
具体实施方式
为使本发明的实施例要解决的技术问题、技术方案和优点更加清楚,下面将结合附图及具体实施例进行详细描述。
一方面,本发明提供一种弹性检测方法,如图1所示,包括:
步骤1:使用弹性检测装置获取病人的弹性检测信息;
弹性检测装置为本领域的通常结构形式即可,例如由弹性检测探头、弹性检测主机和相应的软件组成;
步骤2:弹性检测装置将弹性检测信息上传到云端数据中心;
弹性检测装置可以通过网络(包括但不限于Internet、WLAN、GPRS、3G、4G)将弹性检测信息上传到云端数据中心;
步骤3:云端数据中心接收并保存弹性检测信息,以进行共享;
云端数据中心接收并保存由弹性检测装置上传的数据,以进行共享,云端数据中心通过网络与外部链接,这里的网络指一切可以链接到云端数据中心的网络,如互联网、GPRS、无线网等等;
云端数据中心可以接收多台弹性检测装置上传的数据,从而形成一个大数据平台;
其中,所述弹性检测信息包括使用所述弹性检测装置的机构信息、弹性检测装置的识别信息、病人的身份信息和弹性检测值信息等,上述机构为包括医院在内的医疗机构、健康服务机构等。
与现有技术相比,本发明的弹性检测方法中,弹性检测装置获取病人 的弹性检测信息并将其上传到云端数据中心,以进行共享,使人们(包括医院、医生、病人等)可以从云端数据中心获取到该弹性检测信息,实现了弹性检测信息的共享。弹性检测信息共享可以使病人能够方便的通过客户端来获取自己的弹性检测信息,了解自己的身体状况;医院可以得到大量的病人的弹性检测信息,跟踪病人检测情况,有针对性的对病人进行检测,有效的提高治疗效果;云端数据中心可以依据大量的弹性检测信息进行科学研究,促进医疗事业的发展。
作为本发明的一种改进,还包括:
步骤4:客户端获取云端数据中心的弹性检测信息;
客户端可以为任何可以连接网络的工具,如电脑、手机、PAD等等,通过web服务器端或者APP访问云端数据中心,实现弹性检测信息的共享;当然弹性检测装置也可以直接通过网络将弹性检测信息发送到客户端,也可以实现弹性检测信息的共享。
步骤3进一步为:云端数据中心将弹性检测信息存储到数据库中,以供客户端进行获取。
将弹性检测信息存储到数据库中,能够使云端数据中心更方便的对弹性检测信息进行管理,使客户端更方便的获取弹性检测信息。
进一步的,步骤2还可以包括:客户端和/或第三方向云端数据中心上传数据,第三方可为弹性检测装置和客户端之外的数据终端和/或数据中心;
病人可以使用客户端向云端数据中心上传个人资料,以实现对用户信息的更新;
云端数据中心还可以接收第三方发送的信息,即云端数据中心有第三方数据接收接口,第三方指的是弹性检测装置和客户端之外的数据终端和/或数据中心,可以是医院、某些合作的数据中心等,提供给云端数据中心的数据可以是病人信息、一些病症病理病例等信息。
步骤3之后,步骤4之前还可以包括:
步骤31:云端数据中心向弹性检测装置反馈数据;
步骤32:弹性检测装置接收云端数据中心反馈的数据;
医生可以使用弹性检测装置接收云端数据中心反馈的数据,反馈的数据包括弹性检测信息是否上传成功的状态信息等,可以准确判断弹性检测信息是否上传成功。
作为本发明的另一种改进,步骤1之后,步骤2之前还包括步骤21:弹性检测装置将弹性检测信息进行加密;
步骤3进一步为:云端数据中心接收弹性检测信息并进行解密并保存;
弹性检测装置将弹性检测信息进行加密后再上传到云端数据中心,保证了弹性检测装置与云端数据中心之间数据传输的安全性,避免病人隐私的泄露。
相应的,步骤4包括:
步骤41:云端数据中心对弹性检测信息进行加密并发送到客户端;
步骤42:客户端对接收到的弹性检测信息进行解密查看;
云端数据中心对弹性检测信息进行加密后再发送到客户端,保证了客户端与云端数据中心之间数据传输的安全性,进一步的避免病人隐私的泄露。
作为本发明的再一种改进,步骤21之后还包括步骤22:云端数据中心对弹性检测装置进行身份认证,并对弹性检测装置分配相应的权限;
步骤32之后还包括步骤33:云端数据中心对客户端进行身份认证,并对客户端分配相应的权限;
云端数据中心一般会连接有多个弹性检测装置和客户端,这些弹性检测装置可能属于同一家医院,也可能属于多家医院,并且,客户端可能是病人在使用,也可能是医生在使用,这样,就需要对弹性检测装置和客户端进行身份认证,并分配不同的权限;
一般的,弹性检测装置具有上传弹性检测信息,查看自己上传的弹性检测信息以及查看病人授权的弹性检测信息等功能,当然,弹性检测装置的权限可依据实际情况进行权限定制;
客户端分为医生端和病人端,其中,医生端的权限依据该医院与云端 数据中心共同设定,不同医生的个人权限也有所不同;一般的,病人端可以访问病人自己的弹性检测信息和上传个人资料,当然,病人端也可依据实际情况进行权限定制,每个病人都有自己的权限。
另一方面,与上述方法相对应,本发明提供一种弹性检测装置7,如图2所示,包括:
弹性检测模块71,用于获取病人的弹性检测信息;
远程传输模块72,用于将弹性检测信息上传到云端数据中心;该远程传输模块72可以包括硬件接口电路和相应的软件。
与现有技术相比,本发明的弹性检测装置7在传统的弹性检测装置上增加了远程传输模块72,能够实现弹性检测信息的共享。
进一步的,远程传输模块72还用于接收云端数据中心反馈的数据;
医生可以使用弹性检测装置7接收云端数据中心反馈的数据,反馈的数据包括弹性检测信息是否上传成功的状态信息等,可以准确判断弹性检测信息是否上传成功;
弹性检测装置7还包括:
加密模块73,用于将弹性检测信息进行加密;
弹性检测装置7的加密模块73将弹性检测信息进行加密后再上传到云端数据中心,保证了弹性检测装置与云端数据中心之间数据传输的安全性,避免病人隐私的泄露。
再一方面,本发明提供一种弹性检测系统,如图3所示,包括上述的弹性检测装置7、与弹性检测装置7通过网络连接的云端数据中心8。
与现有技术相比,本发明的弹性检测系统中,弹性检测装置7获取病人的弹性检测信息并将其上传到云端数据中心8,人们可以从云端数据中心8获取到该弹性检测信息,实现了弹性检测信息的共享。弹性检测信息共享可以使病人能够方便的通过客户端来获取自己的弹性检测信息,了解自己的身体状况;医院可以得到大量的病人的弹性检测信息,跟踪病人检测情况,有针对性的对病人进行检测,有效的提高治疗效果;云端数据中心可以依据大量的弹性检测信息进行科学研究,促进医疗事业的发展。
进一步的,弹性检测系统还包括客户端9,客户端9与云端数据中心8通过网络连接。
本实用新型的弹性检测系统中,可以通过各种方式从云端数据中心获取共享数据,优选的,使用客户端从云端数据中心获取到该弹性检测信息,方便的实现了弹性检测信息的共享。
进一步的,客户端9可以包括电脑、手机和/或平板电脑(PAD)等,云端数据中心8为服务器,服务器包括普通服务器、大型服务器和/或云端服务器等,网络包括互联网(Internet)、无线局域网络(WLAN)、通用分组无线网(GPRS)、第三代移动通信网络(3G)和/或第四代移动通信网络(4G)等。本发明的弹性检测系统的客户端的种类多样,包括市面上常用的各种终端设备,使用各种常用的网络连接,从而使得系统的兼容性好,有较高的可扩容性。
以上所述是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明所述原理的前提下,还可以作出若干改进和润饰,这些改进和润饰也应视为本发明的保护范围。

Claims (11)

  1. 一种弹性检测方法,其特征在于,包括:
    步骤1:使用弹性检测装置获取病人的弹性检测信息;
    步骤2:所述弹性检测装置将所述弹性检测信息上传到云端数据中心;
    步骤3:所述云端数据中心接收并保存所述弹性检测信息,以进行共享;
    其中,所述弹性检测信息包括使用所述弹性检测装置的机构信息、所述弹性检测装置的识别信息、病人的身份信息和弹性检测值信息。
  2. 根据权利要求1所述的弹性检测方法,其特征在于,还包括:
    步骤4:客户端获取所述云端数据中心的弹性检测信息;
    所述步骤3进一步为:所述云端数据中心将所述弹性检测信息存储到数据库中,以供所述客户端进行获取。
  3. 根据权利要求2所述的弹性检测方法,其特征在于,所述步骤2还包括:所述客户端和/或第三方向所述云端数据中心上传数据,所述第三方为弹性检测装置和客户端之外的数据终端和/或数据中心;
    所述步骤3之后,步骤4之前还包括:
    步骤31:所述云端数据中心向所述弹性检测装置反馈数据;
    步骤32:所述弹性检测装置接收所述云端数据中心反馈的数据。
  4. 根据权利要求3中所述的弹性检测方法,其特征在于,所述步骤1之后,步骤2之前还包括步骤21:所述弹性检测装置将所述弹性检测信息进行加密;
    所述步骤3进一步为:所述云端数据中心接收所述弹性检测信息并进行解密并保存。
  5. 根据权利要求4中所述的弹性检测方法,其特征在于,所述步骤4包括:
    步骤41:所述云端数据中心对所述弹性检测信息进行加密并发送到客户端;
    步骤42:所述客户端对接收到的弹性检测信息进行解密查看。
  6. 根据权利要求5中所述的弹性检测方法,其特征在于,所述步骤21之后还包括步骤22:所述云端数据中心对所述弹性检测装置进行身份认证,并对所述弹性检测装置分配相应的权限;
    所述步骤32之后还包括步骤33:所述云端数据中心对所述客户端进行身份认证,并对所述客户端分配相应的权限。
  7. 一种弹性检测装置,其特征在于,包括:
    弹性检测模块,用于获取病人的弹性检测信息;
    远程传输模块,用于将所述弹性检测信息上传到云端数据中心。
  8. 根据权利要求7所述的弹性检测装置,其特征在于,所述远程传输模块还用于接收所述云端数据中心反馈的数据;
    所述弹性检测装置还包括:
    加密模块,用于将所述弹性检测信息进行加密。
  9. 一种弹性检测系统,其特征在于,包括权利要求7或8所述的弹性检测装置、与所述弹性检测装置通过网络连接的云端数据中心。
  10. 根据权利要求9所述的弹性检测系统,其特征在于,所述弹性检测系统还包括客户端,所述客户端与所述云端数据中心通过网络连接。
  11. 根据权利要求10所述的弹性检测系统,其特征在于,所述客户端包括电脑、手机和/或平板电脑(PAD),所述云端数据中心为服务器,所述网络包括互联网(Internet)、无线局域网络(WLAN)、通用分组无线网(GPRS)、第三代移动通信网络(3G)和/或第四代移动通信网络(4G)。
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