CN2781417Y - Head camera device for viewing operation process - Google Patents
Head camera device for viewing operation process Download PDFInfo
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- CN2781417Y CN2781417Y CN200420119167.1U CN200420119167U CN2781417Y CN 2781417 Y CN2781417 Y CN 2781417Y CN 200420119167 U CN200420119167 U CN 200420119167U CN 2781417 Y CN2781417 Y CN 2781417Y
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- camera
- wireless transceiver
- operation process
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Abstract
一种用于观察手术进程的头戴式摄像装置,由一个摄像头和一个头箍构成,摄像头设置在头箍上,摄像头与一个无线收发器连接,无线收发器设置在头箍上,头箍上设置有充电电池和光电池板,摄像头的前端设置有一个可变焦距透镜组,可变焦距透镜组与一个马达驱动机构连接,马达驱动机构的信号输入端与无线收发器连接。摄像头中设置有自动测距和自动调焦机构。本实用新型利用无线收发器传递手术动态影像并遥控控制马达驱动机构,可以改变摄像头焦距,对手术细节进行观察,同时,光电池板利用手术室灯光供电,所以可以避免电缆限制和干扰手术医生的操作,具有足够电力供应。
A head-mounted camera device for observing the operation process, consisting of a camera and a headband, the camera is set on the headband, the camera is connected to a wireless transceiver, the wireless transceiver is set on the headband, and the headband A rechargeable battery and a photocell board are arranged, and a variable focal length lens group is arranged at the front end of the camera, and the variable focal length lens group is connected with a motor driving mechanism, and a signal input end of the motor driving mechanism is connected with a wireless transceiver. The camera is provided with automatic ranging and automatic focusing mechanisms. The utility model uses a wireless transceiver to transmit surgical dynamic images and remotely controls the motor drive mechanism, which can change the focal length of the camera and observe the details of the operation. At the same time, the photocell board is powered by the light of the operating room, so it can avoid cable restrictions and interfere with the operation of the surgeon. , with sufficient power supply.
Description
技术领域:Technical field:
本实用新型涉及电学,尤其涉及摄录像装置,特别是一种用于观察手术进程的头戴式摄像装置。The utility model relates to electricity, in particular to a camera and video device, in particular to a head-mounted camera device for observing the operation process.
背景技术:Background technique:
现有技术中,医院为了对手术过程进行监控及资料保存,需要对手术过程进行录像,最能全程反映手术过程和细节的摄像角度应该始终追随手术医生的视线,因此,将摄像装置安装在手术医生的头部是一个比较理想的方案。现有技术中,摄像装置的小型化已经使得头戴式摄像装置不会成为手术医生的太大的负担,但是,普通的CCD摄像头仅设置一个聚焦透镜。不能改变焦距,因此观察者难以辨别手术细节。同时,连接记录装置的电缆却会限制和干扰手术医生的操作,此外,手术经常会持续较长时间,为头戴式摄像装置供电的电池显然不能维持足够电力。In the prior art, in order to monitor the operation process and save the data, the hospital needs to record the operation process. The camera angle that can best reflect the operation process and details should always follow the sight of the surgeon. Therefore, the camera device is installed in the operation A doctor's head is an ideal option. In the prior art, the miniaturization of the camera device has made the head-mounted camera device not a great burden on the surgeon, but the common CCD camera head only has one focus lens. The focal length cannot be changed, so it is difficult for the observer to discern surgical details. At the same time, the cables connecting the recording devices can limit and interfere with the surgeon's operations. Moreover, the surgery often lasts for a long time, and the batteries that power the head-mounted cameras obviously cannot maintain enough power.
发明内容:Invention content:
本实用新型所要解决的现有技术中的技术问题是:现有技术中,头戴式摄像装置上的CCD摄像头仅设置一个聚焦透镜。不能改变焦距,因此观察者难以辨别手术细节。连接记录装置的电缆会限制和干扰手术医生的操作,同时,手术经常会持续较长时间,为头戴式摄像装置供电的电池不能维持足够电力。The technical problem in the prior art to be solved by the utility model is: in the prior art, only one focusing lens is arranged on the CCD camera on the head-mounted camera device. The focal length cannot be changed, so it is difficult for the observer to discern surgical details. Cables to the recording device can limit and interfere with the surgeon's operations, and the batteries that power the head-mounted camera can't maintain enough power as operations often last for a long time.
本实用新型为解决上述技术问题所采用的技术方案是提供一种用于观察手术进程的头戴式摄像装置,所述的这种用于观察手术进程的头戴式摄像装置由一个摄像头和一个头箍构成,所述的摄像头设置在所述的头箍上,其中,所述的摄像头的视频输出线与一个无线收发器连接,所述的无线收发器设置在所述的头箍上,所述的头箍上设置有充电电池和光电池板,所述的充电电池和光电池板的输出线均与所述的摄像头和无线收发器连接,所述的摄像头的前端设置有一个可变焦距透镜组,所述的可变焦距透镜组与一个马达驱动机构连接,所述的马达驱动机构的信号输入端与所述的无线收发器连接。The technical solution adopted by the utility model for solving the above-mentioned technical problems is to provide a head-mounted camera device for observing the operation process. The head-mounted camera device for observing the operation process consists of a camera and a The headband is composed of the camera set on the headband, wherein the video output line of the camera is connected to a wireless transceiver, and the wireless transceiver is set on the headband. The headband is provided with a rechargeable battery and a photocell board, the output lines of the rechargeable battery and the photocell board are connected to the camera and the wireless transceiver, and the front end of the camera is provided with a variable focal length lens group , the variable focal length lens group is connected with a motor drive mechanism, and the signal input end of the motor drive mechanism is connected with the wireless transceiver.
进一步的,所述的马达驱动机构由超声波马达驱动。Further, the motor driving mechanism is driven by an ultrasonic motor.
进一步的,所述的摄像头中设置有自动测距和自动调焦机构。Further, the camera is provided with automatic ranging and automatic focusing mechanisms.
进一步的,所述的摄像头和所述的无线收发器设置在一个盒体中,所述的盒体设置在所述的头箍上。Further, the camera and the wireless transceiver are arranged in a box, and the box is arranged on the headband.
进一步的,所述的头箍上设置有一个帽子,所述的光电池板设置在所述的帽子的外侧。Further, a hat is arranged on the headband, and the photovoltaic panel is arranged on the outside of the hat.
本实用新型与已有技术相对照,其效果是积极和明显的。本实用新型利用无线收发器传递手术动态影像并遥控控制马达驱动机构,可以改变摄像头焦距,对手术细节进行观察,同时,光电池板利用手术室灯光供电,所以可以避免电缆限制和干扰手术医生的操作,具有足够电力供应。Compared with the prior art, the utility model has positive and obvious effects. The utility model uses a wireless transceiver to transmit surgical dynamic images and remotely controls the motor drive mechanism, which can change the focal length of the camera and observe the details of the operation. At the same time, the photocell board is powered by the light of the operating room, so it can avoid cable restrictions and interfere with the operation of the surgeon. , with sufficient power supply.
附图说明:Description of drawings:
图1是本实用新型的用于观察手术进程的头戴式摄像装置的的结构示意图。FIG. 1 is a schematic structural view of a head-mounted camera device for observing the operation process of the present invention.
具体实施方式:Detailed ways:
如图1所示,本实用新型用于观察手术进程的头戴式摄像装置由一个摄像头1和一个头箍2构成,所述的摄像头1设置在所述的头箍2上,其中,所述的摄像头1的视频输出线与一个无线收发器3连接,所述的无线收发器3设置在所述的头箍1上,所述的头箍1上设置有充电电池4和光电池板5,所述的充电电池4和光电池板5的输出线均与所述的摄像头1和无线收发器2连接,所述的摄像头1的前端设置有一个可变焦距透镜组8,所述的可变焦距透镜组8与一个马达驱动机构9连接,所述的马达驱动机构9的信号输入端与所述的无线收发器2连接。As shown in Figure 1, the head-mounted camera device used to observe the operation process of the present invention is composed of a camera 1 and a headband 2, and the camera 1 is arranged on the headband 2, wherein the The video output line of the camera 1 is connected with a wireless transceiver 3, and the wireless transceiver 3 is arranged on the headband 1, and the said headband 1 is provided with a rechargeable battery 4 and a photovoltaic panel 5, so The output lines of the rechargeable battery 4 and the photovoltaic panel 5 are all connected with the camera 1 and the wireless transceiver 2, and the front end of the camera 1 is provided with a variable focal length lens group 8, and the variable focal length lens The group 8 is connected with a motor drive mechanism 9 , and the signal input end of the motor drive mechanism 9 is connected with the wireless transceiver 2 .
进一步的,所述的马达驱动机构9由超声波马达驱动。Further, the motor driving mechanism 9 is driven by an ultrasonic motor.
进一步的,所述的摄像头1中设置有自动测距和自动调焦机构。Further, the camera 1 is provided with automatic ranging and automatic focusing mechanisms.
进一步的,所述的摄像头1和所述的无线收发器2设置在一个盒体6中,所述的盒体6设置在所述的头箍2上。Further, the camera 1 and the wireless transceiver 2 are set in a box body 6 , and the box body 6 is set on the headband 2 .
进一步的,所述的头箍2上设置有一个帽子7,所述的光电池板5设置在所述的帽子7的外侧。Further, the headband 2 is provided with a hat 7 , and the photovoltaic panel 5 is arranged on the outside of the hat 7 .
Claims (5)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN200420119167.1U CN2781417Y (en) | 2004-12-30 | 2004-12-30 | Head camera device for viewing operation process |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN200420119167.1U CN2781417Y (en) | 2004-12-30 | 2004-12-30 | Head camera device for viewing operation process |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN2781417Y true CN2781417Y (en) | 2006-05-17 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN200420119167.1U Expired - Fee Related CN2781417Y (en) | 2004-12-30 | 2004-12-30 | Head camera device for viewing operation process |
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| CN (1) | CN2781417Y (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US11006093B1 (en) | 2020-01-22 | 2021-05-11 | Photonic Medical Inc. | Open view, multi-modal, calibrated digital loupe with depth sensing |
-
2004
- 2004-12-30 CN CN200420119167.1U patent/CN2781417Y/en not_active Expired - Fee Related
Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US11006093B1 (en) | 2020-01-22 | 2021-05-11 | Photonic Medical Inc. | Open view, multi-modal, calibrated digital loupe with depth sensing |
| US11166006B2 (en) | 2020-01-22 | 2021-11-02 | Photonic Medical Inc. | Open view, multi-modal, calibrated digital loupe with depth sensing |
| US11412202B2 (en) | 2020-01-22 | 2022-08-09 | Photonic Medical Inc. | Open view, multi-modal, calibrated digital loupe with depth sensing |
| US11611735B2 (en) | 2020-01-22 | 2023-03-21 | Photonic Medical Inc. | Open view, multi-modal, calibrated digital loupe with depth sensing |
| US12075019B2 (en) | 2020-01-22 | 2024-08-27 | Photonic Medical Inc. | Open view, multi-modal, calibrated digital loupe with depth sensing |
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| C19 | Lapse of patent right due to non-payment of the annual fee | ||
| CF01 | Termination of patent right due to non-payment of annual fee |