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CN201039978Y - Capsule endoscope - Google Patents

Capsule endoscope Download PDF

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Publication number
CN201039978Y
CN201039978Y CNU2007201195835U CN200720119583U CN201039978Y CN 201039978 Y CN201039978 Y CN 201039978Y CN U2007201195835 U CNU2007201195835 U CN U2007201195835U CN 200720119583 U CN200720119583 U CN 200720119583U CN 201039978 Y CN201039978 Y CN 201039978Y
Authority
CN
China
Prior art keywords
capsule endoscope
radio
optical lens
rfid
housing
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.)
Expired - Lifetime
Application number
CNU2007201195835U
Other languages
Chinese (zh)
Inventor
张晓峰
韩新华
郑琪
刘丹宁
孟庆文
乔宝龙
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.)
Hangzhou ET Medical Technology Co., Ltd.
Original Assignee
HANGZHOU ET MEDICAL TECHNOLOGY Co Ltd
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 HANGZHOU ET MEDICAL TECHNOLOGY Co Ltd filed Critical HANGZHOU ET MEDICAL TECHNOLOGY Co Ltd
Priority to CNU2007201195835U priority Critical patent/CN201039978Y/en
Application granted granted Critical
Publication of CN201039978Y publication Critical patent/CN201039978Y/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model relates to a capsule endoscope comprising a capsule-shaped shell, a transparent and sealed optical front end housing which is arranged on the front end of the shell, an imaging system in the shell which can take pictures of the celom, an illuminating system which can light the internal part of the celom, a power supply system, a picture transmission system and a wireless awakening sleeping system, wherein, the wireless awakening sleeping system consists of a radio receiver of low power consumption in the shell and an awakening sleeping controller outside the shell which is matching with the low power consumption radio receiver by a wireless signal, thus each system working situation of the capsule endoscope can be controlled by the awakening sleeping controller outside the body. As the radio receiver of low power consumption can control each systematic working situation of the capsule endoscope by the sufferer body-working outside awakening sleeping controller, for example, when the capsule endoscope is positioned in the part in which the care is no need, the all system or part system will be in a resting state to save power energy, thus the power consumption can be reduced.

Description

A kind of capsule endoscope
Technical field
This utility model relates to capsule endoscope.
Background technology
Existing capsule endoscope comprises a capsule shape housing, the housing front end is provided with the optical front-end lid of transparent sealing, is provided with the imaging system that can take the body intracavity figure in the housing, can sends the illuminator of illumination light working flare intracavity portion, the power-supply system and the image delivering system of power supply.Capsule endoscope starts before the patient is oral.Because imaging system and image delivering system in the capsule endoscope all carry out work in whole process, so consumed power is huge, and the energy of battery is limited, can't finish as a rule whole gastral shooting.This is difficult to colon etc. is taken inspection with regard to causing easily clinically, might cause mistaken diagnosis.
The utility model content
This utility model provides a kind of capsule endoscope, can not finish the technical problem that whole digestive tract is taken to solve existing capsule endoscope because of imaging system and image delivering system all carry out the huge electric energy finite energy of consumption in operation in whole process.
In order to solve above technical problem, the technical scheme that this utility model is taked is:
A kind of capsule endoscope, comprise a capsule shape housing, the housing front end is provided with the optical front-end lid of transparent sealing, be provided with the imaging system that to take the body intracavity figure in the housing, can send the illuminator of illumination light working flare intracavity portion, the power-supply system and the image delivering system of power supply, it is characterized in that, also comprise the radio wakeup sleep system, the radio wakeup sleep system comprises and is positioned at the intravital low-consumption wireless of described shell electricity receiver and is positioned at that housing is outer to wake the sleep controller with low-consumption wireless electricity receiver up by what the wireless signal coupling was connected, controls the duty of each system in the capsule endoscope by external waking up the controller of sleeping.
Also comprise radio-frequency recognition system, radio-frequency recognition system comprises and is arranged at the intravital RFID tag of shell and is positioned at outer RF identification (RFID) label reader that is connected by radio-frequency match with RFID tag of housing, by the position of the detected RF identification of RF identification (RFID) label reader (RFID) label capsule endoscope is implemented accurate location.
Be provided with the optical lens group in the described imaging system, the optical lens group has more than three or three, and the optical lens group more than three or three is arranged by the angular way of broadening one's vision.
Described optical lens group has three, and three optical lens groups are arranged according to leg-of-mutton mode.
Described optical lens group has the very-short-reach focal length.
After having adopted technique scheme, owing to increased the radio wakeup sleep system, low-consumption wireless electricity receiver wherein can be controlled by the duty of waking each system in the sleep controller capsule endoscope up in the external work of patient, each system is all or part of to be in resting state and non-consume electric power as making during at the position that does not need to be concerned about when capsule endoscope, can not finish the technical problem that whole digestive tract is taken thereby solved existing capsule endoscope because of imaging system and image delivering system all carry out the huge electric energy finite energy of consumption in operation in whole process.Secondly, owing to increased radio-frequency recognition system, also can implement accurate location to capsule endoscope by the position of the detected RF identification of the RF identification in the radio-frequency recognition system (RFID) label reader (RFID) label.At last, owing to adopted the optical lens group more than three or three, can really realize the observation in the full visual field of 360 degree.
Description of drawings
Fig. 1 is a cross-sectional view of the present utility model.
Fig. 2 is an optics protecgulum of the present utility model end front view.
Fig. 3 this utility model utilizes radio wakeup sleep system work principle figure.
Fig. 4 is that this utility model utilizes radio-frequency recognition system work principle figure.
The specific embodiment
As Fig. 1, shown in 2, a kind of capsule endoscope 30, comprise a capsule shape housing 11, housing 11 front ends are provided with the optics protecgulum 1 of transparent sealing, be provided with the imaging system that to take the body intracavity figure in the housing 11, can send the illuminator of illumination light working flare intracavity portion, power-supply system 7 to imaging system and illuminator power supply, image delivering system 10, the radio wakeup sleep system, radio-frequency recognition system and microprocessor 6, wherein imaging system and illuminator are collectively referred to as image capturing system, image capturing system and image delivering system 10 are collectively referred to as image acquisition transmission system 25, illuminator comprises white light LEDs 2 and infrared light LED13, be provided with visible light optical lens group 3 in the imaging system, infrared light optical lens group 14, lens bracket 4, visible light CMOS image sensor 5 and infrared light CMOS image sensor 12, the radio wakeup sleep system comprises the low-consumption wireless electricity receiver 17 that is positioned at housing 11 and is positioned at that housing 11 is outer to mate the controller 18 of sleeping that wakes up that is connected with low-consumption wireless electricity receiver by wireless signal, by the external duty of waking each system in sleep controller 18 and the low-consumption wireless electricity receiver 17 control capsule endoscopes up, radio-frequency recognition system comprises and is arranged at the RFID tag 29 in the housing 11 and is positioned at RF identification (RFID) label readers 26 that housing 11 is connected by radio-frequency match with RFID tag 29 outward, by the position of RF identification (RFID) label reader 26 detected RF identification (RFID) labels 29 capsule endoscope is implemented accurate location.Visible light and infrared light optical lens group respectively have three, arrange according to leg-of-mutton mode respectively.Can certainly be for more than three, as arranging around mode, the optical lens group has the very-short-reach focal length to the optical lens group more than three by the angle of broadening one's vision.
As shown in Figure 3, low-consumption wireless electricity receiver 17 is based on the production technology of Low-Power CMOS, and framework and operating frequency by the optimal design wireless receiver further reduce the work power consumption.The low power dissipation design characteristics comprise high-gain low noise amplifier (Low Noise Amplifier), on-off keying modulation (On-Off Key) detector, Manchester's code.Low-consumption wireless electricity receiver 17 is avoided the phase mutual interference by using wireless tender's working frequency different with wireless image transfer of data in the image capturing system.Operation principle: start image acquisition transmission system 25 flow processs, when image acquisition transmission system 25 is in the low-power consumption resting state, wake sleep controller 18 wakes clock signal 20 up at low duty ratio (low duty cycle) control up and start down regularly 19 low-consumption wireless electricity receiver 17, whether detection antenna 15 receives the radio wakeup signal of extraneous specific coding.If do not detect the radio wakeup signal of specific coding, wake sleep controller 18 up and close low-consumption wireless electricity receiver 17 and save the energy, wait for that the next one wakes the clock cycle up and repeats above flow process.If, detect the radio wakeup signal of specific coding, wake sleep controller 18 up and send to image acquisition transmission system 25 and start image acquisition signal 23, the normal image acquisition of image acquisition transmission system 25 beginnings.Closing image acquiring and transmission system 25 flow processs, when image acquisition transmission system 25 is in normal image acquisition state, wake sleep controller 18 wakes clock signal 20 up at low duty ratio (low duty cycle) control up and start down regularly 19 low-consumption wireless electricity receiver 17, whether detection antenna 15 receives the radio sleep signal of extraneous specific coding.If do not detect the radio sleep signal of specific coding, image acquisition transmission system 25 is in normal image acquisition state.If, detect the radio sleep signal of specific coding, wake sleep controller 18 up and send to image acquisition transmission system 25 and stop image acquisition signal 24, image acquisition transmission system 25 stops normal image acquisition, and closing image collection transmission relevant device is saved the energy.
Among Fig. 3 15 for antenna, 16 for the Antenna Impedance Matching assembly, 17 for low-consumption wireless electricity receiver, 18 for waking the sleep controller up, 19 for the radio receiver enabling signal, 20 for wake up clock signal, 21 for the low-power consumption agitator, 22 for power supply and power management assembly, 23 be that system start-up image acquisition signal, 24 is an image acquisition transmission system for system stops image acquisition signal, 25.
RF identification (Radio Frequency Identification, RFID) as shown in Figure 4, being one utilizes radiofrequency signal to realize that by space coupling (alternating magnetic field or electromagnetic field) contactless information transmission and the information of passing through to be transmitted reach the technology of identifying purpose.The capsule endoscope that has RF identification (RFID) label, both can help capsule endoscope production, detect, circulation and the management that stores, also can under the support of computer-controlled external radio-frequency identification (RFID) label reader, finish the intravital accurate location that has the capsule endoscope of RF identification (RFID) label to the patient, and then the image that capsule endoscope is gathered is corresponding one by one in the position of human body with capsule endoscope, and diagnostic message more accurately and effectively is provided.The location operation principle is: when the capsule endoscope 30 that has RF identification (RFID) label is mobile in patient's digestive tract, produce induction according to 29 electromagnetic fields 28 that produce together with nearest external radio-frequency identification (RFID) label reader coil 27 of its RF identification of carrying (RFID) label of Faradic electricity magnetic induction principle (Faraday ' s principle of magneticinduction), and by label internal circuit canned data electromagnetic field 28 is modulated, corresponding in vitro RF identification (RFID) label reader 26 changes the information that RF identification (RFID) label carries that identifies by measuring electromagnetic field.RF identification (RFID) label reader communicates information to RF identification (RFID) label reader recording controller 32 via RF identification (RFID) label reader Data Control bus 31, thereby finishes the real-time positioning to the capsule endoscope 30 that has RF identification (RFID) label.

Claims (5)

1. capsule endoscope, comprise a capsule shape housing, the housing front end is provided with the optical front-end lid of transparent sealing, be provided with the imaging system that to take the body intracavity figure in the housing, can send the illuminator of illumination light working flare intracavity portion, the power-supply system and the image delivering system of power supply, it is characterized in that, also comprise the radio wakeup sleep system, the radio wakeup sleep system comprises and is positioned at the intravital low-consumption wireless of described shell electricity receiver and is positioned at that housing is outer to wake the sleep controller with low-consumption wireless electricity receiver up by what the wireless signal coupling was connected, controls the duty of each system in the capsule endoscope by external waking up the controller of sleeping.
2. capsule endoscope as claimed in claim 1, it is characterized in that, also comprise radio-frequency recognition system, radio-frequency recognition system comprises and is arranged at the intravital RFID tag of shell and is positioned at outer RF identification (RFID) label reader that is connected by radio-frequency match with RFID tag of housing, by the position of the detected RF identification of RF identification (RFID) label reader (RFID) label capsule endoscope is implemented accurate location.
3. capsule endoscope as claimed in claim 1 or 2 is characterized in that, is provided with the optical lens group in the described imaging system, and the optical lens group has more than three or three, and the optical lens group more than three or three is arranged by the angular way of broadening one's vision.
4. capsule endoscope as claimed in claim 3 is characterized in that, described optical lens group has three, and three optical lens groups are arranged according to leg-of-mutton mode.
5. capsule endoscope as claimed in claim 3 is characterized in that, described optical lens group has the very-short-reach focal length.
CNU2007201195835U 2007-04-17 2007-04-17 Capsule endoscope Expired - Lifetime CN201039978Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2007201195835U CN201039978Y (en) 2007-04-17 2007-04-17 Capsule endoscope

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2007201195835U CN201039978Y (en) 2007-04-17 2007-04-17 Capsule endoscope

Publications (1)

Publication Number Publication Date
CN201039978Y true CN201039978Y (en) 2008-03-26

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Family Applications (1)

Application Number Title Priority Date Filing Date
CNU2007201195835U Expired - Lifetime CN201039978Y (en) 2007-04-17 2007-04-17 Capsule endoscope

Country Status (1)

Country Link
CN (1) CN201039978Y (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102362208A (en) * 2009-03-24 2012-02-22 富士胶片株式会社 capsule endoscope
CN104840176A (en) * 2014-02-19 2015-08-19 光峰科技股份有限公司 Digestive tract inspection system and control method thereof
CN104840175A (en) * 2014-02-19 2015-08-19 光峰科技股份有限公司 Digestive tract inspection device with disposable endoscope and control method thereof

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102362208A (en) * 2009-03-24 2012-02-22 富士胶片株式会社 capsule endoscope
US8526112B2 (en) 2009-03-24 2013-09-03 Fujifilm Corporation Capsule endoscope
CN102362208B (en) * 2009-03-24 2014-06-04 富士胶片株式会社 capsule endoscope
CN104840176A (en) * 2014-02-19 2015-08-19 光峰科技股份有限公司 Digestive tract inspection system and control method thereof
CN104840175A (en) * 2014-02-19 2015-08-19 光峰科技股份有限公司 Digestive tract inspection device with disposable endoscope and control method thereof

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C56 Change in the name or address of the patentee

Owner name: SHENZHEN ET MEDICAL TECHNOLOGY CO., LTD.

Free format text: FORMER NAME: SHENZHEN ENERGY TECHNOLOGY, INC.

CP01 Change in the name or title of a patent holder

Address after: 4, Guangdong 518057, Shenzhen, Nanshan District science and Technology Park, Sunny Hill, two clean Sunshine Garden

Patentee after: Shenzhen ET Medical Technology Co., Ltd.

Address before: 4, Guangdong 518057, Shenzhen, Nanshan District science and Technology Park, Sunny Hill, two clean Sunshine Garden

Patentee before: Hangzhou ET Medical Technology Co., Ltd.

C56 Change in the name or address of the patentee

Owner name: SHENZHEN ENERGY TECHNOLOGY, INC.

Free format text: FORMER NAME: SHENZHEN ET MEDICAL TECHNOLOGY CO., LTD.

CP01 Change in the name or title of a patent holder

Address after: 4, Guangdong 518057, Shenzhen, Nanshan District science and Technology Park, Sunny Hill, two clean Sunshine Garden

Patentee after: Hangzhou ET Medical Technology Co., Ltd.

Address before: 4, Guangdong 518057, Shenzhen, Nanshan District science and Technology Park, Sunny Hill, two clean Sunshine Garden

Patentee before: Shenzhen ET Medical Technology Co., Ltd.

CX01 Expiry of patent term
CX01 Expiry of patent term

Granted publication date: 20080326