WO2018143482A1 - 모바일 의료 장치의 포트 어셈블리 - Google Patents
모바일 의료 장치의 포트 어셈블리 Download PDFInfo
- Publication number
- WO2018143482A1 WO2018143482A1 PCT/KR2017/001003 KR2017001003W WO2018143482A1 WO 2018143482 A1 WO2018143482 A1 WO 2018143482A1 KR 2017001003 W KR2017001003 W KR 2017001003W WO 2018143482 A1 WO2018143482 A1 WO 2018143482A1
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- WIPO (PCT)
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- tray
- guide
- medical device
- biosensor
- main body
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/725—Cordless telephones
Definitions
- the present invention relates to a port assembly of a mobile medical device, and more particularly, to a port assembly of a mobile medical device capable of storing or withdrawing a biosensor for detecting a biomarker through reflected light or the like.
- mobile medical devices can measure and analyze various biomarkers such as blood sugar, blood pressure, cholesterol, etc., and are portable and easy to use, so users can easily use them at home without having to visit the hospital every time. have.
- Biomarkers that can be measured / analyzed by mobile medical devices include sugar, lactic acid, hemoglobin, triglycerides, total cholesterol, LDL cholesterol, HDL cholesterol, and a variety of biomarkers.
- Anemia, cardiovascular, gout, cancer, pregnancy, drug addiction is very diverse.
- mobile medical devices provide applications that can measure and analyze biomarkers and diseases.
- FIG. 1 is a perspective view showing a mobile medical device having a plurality of ports
- Figure 2 is a conceptual diagram showing a plurality of analysis applications implemented in the mobile medical device
- the mobile medical device 10 is a health condition or disease of the user It is a portable device for analyzing or diagnosing presence or absence.
- a first port 21 into which a biosensor 20 may be inserted is formed in a housing 200 of the mobile medical device 10, and the biosensor 20 is formed of the first port 21. It is inserted into the mobile medical device 10 through one port 21.
- the biosensor 20 is a device for measuring biometric information of a user.
- the biosensor 20 may be a strip, but is not limited thereto.
- the user can put a body fluid sample (blood body sample), such as blood, saliva, urine, etc. in the biosensor 20, the biosensor 20 in which the body fluid sample is accommodated through the first port 21
- a body fluid sample blood body sample
- the bodily fluid sample may be analyzed by inserting into the mobile medical device 10 and executing an analysis application installed in the mobile medical device 10.
- the analysis result of the mobile medical device 10 for the sample of the body fluid may determine the value of a specific biomarker (eg, the amount of glucose in the blood, the value of blood pressure, etc.), the presence or absence of a disease, or the state of health (eg, cancer). , Pregnancy check, etc.).
- a specific biomarker eg, the amount of glucose in the blood, the value of blood pressure, etc.
- the presence or absence of a disease eg, cancer
- the state of health eg, cancer
- Pregnancy check e.g.
- the mobile medical device 10 is provided with an application for analysis for each biomarker, an application 40 for measuring / analyzing glocos, and an application for measuring / analyzing hemoglobin. 50, an application 60 for measuring / analyzing LDL cholesterol, an application 70 for measuring / analyzing HDL cholesterol, an application 80 for measuring / analyzing triglycerides, and the like may be provided as an analytical application. have.
- the biosensor 20 may have a different structure, size, or measurement method depending on a target biomarker or a disease to be detected, and the mobile medical device 10 is compatible with various biosensors 20. It can have a variety of deformation structure to be.
- the second port 31 of the mobile medical device 10 has a structure that can accommodate the biosensor 30 to which the reflected light analysis method is applied.
- the second port 31 is provided in a structure (drawer structure) in which an adapter or tray is accommodated in a sliding manner in an inner space of the housing 200.
- the biosensor 30 is placed or inserted into one side of the adapter or tray is accommodated.
- the adapter or tray in which the biosensor 30 is accommodated is accommodated in the housing 200, and the biosensor 30 is measured in a dark room environment formed in the housing 200.
- the mobile medical device 10 includes a measurement module (not shown) for analyzing the biosensor 30 to which the reflected light analysis method, which is received through the second port 31, is applied to the inside of the housing 200. Can be prepared.
- the measurement module is disposed inside the housing 200 adjacent to the second port 31, and includes a light emitting device (eg, an LED array, etc.) and a light receiving device (eg, a camera, a light) to perform reflection intensity analysis. It may have a hardware structure including a detector).
- a light emitting device eg, an LED array, etc.
- a light receiving device eg, a camera, a light
- It may have a hardware structure including a detector).
- the measurement module irradiates light to the biosensor 30 stored in the housing 200 through the light emitting device, and detects the light reflected from the biosensor 30 through the light receiving device, and the measurement module detects the light.
- the value of the target biomarker is measured from the biosensor 30 through the reflected light.
- the measurement module corrects various information (for example, information on the type of the biosensor 30, information on whether the biosensor 30 is stored, and a measured value through the detected reflected light). Calibration information) can be obtained from the biosensor 30.
- the mobile medical device 10 is for the user to directly measure a variety of biomarkers, such as blood sugar, blood pressure, cholesterol, anyone can easily store or withdraw the biosensor 30 in the housing 200 The need for rescue is raised.
- biomarkers such as blood sugar, blood pressure, cholesterol
- the present invention has been made to solve the conventional problems as described above, and an object of the present invention is to provide a port assembly of a mobile medical device having an easy storage and withdrawal structure of a biosensor for measuring various biomarkers.
- the mobile device for analyzing the health status or disease presence of the user;
- a housing provided on one surface of the mobile device and configured to create a darkroom environment therein;
- An adapter for mounting a biosensor measuring biometric information of a user and measuring a value of a target biomarker of the biosensor through light emitted from the mobile device;
- a storage module that accommodates the adapter in a sliding manner in the housing inner space. It includes.
- the adapter may include a seating unit formed at a step so that the biosensor is seated, a light emitting unit formed at one side of the seating unit so that light emitted from the mobile device passes, and light passing through the light emitting unit And a pair of reflecting portions and a light receiving portion formed in the seating portion so that the light reflected through the pair of reflecting portions is irradiated to the biosensor.
- the light emitting unit may include a diffuser hole and a pair of diffuser slits formed to be parallel to a longitudinal direction of the biosensor mounted on the seating portions at both sides of the diffuser hole.
- the pair of reflecting portions may include a first reflecting portion and a second reflecting portion, and the first reflecting portion may reflect light emitted from the light emitting portion or the second reflecting portion, and the second reflecting portion may be formed of the light receiving portion or Characterized in that the inclined at a predetermined angle to reflect the light irradiated from the first reflecting portion, characterized in that.
- the storage module may include a main body portion provided to be fixed inside the housing to create a dark room environment, a tray coupled to the adapter, and a tray accommodated in the main body portion in a sliding manner, and a tray accommodated in the main body portion. It includes a button unit for drawing out or removing.
- the button portion, the pressing member is pressed to one side or upward, the guide boss is inserted into the guide slit formed along the longitudinal direction on one surface of the tray to guide the movement of the tray, the pressing member and the guide And a connecting member for connecting the boss.
- the button unit may further include a cushioning member provided between the guide boss and the connecting member.
- the storage module may further include a restraining member configured to restrict the guide boss to fixing grooves formed at both ends of the guide slit when the tray is accommodated in the main body or withdrawn from the main body.
- the accommodating module may include a withdrawal member that automatically pulls out the tray accommodated in the main body when the pressing member moves the guide boss constrained to the first fixing groove formed at one end of the guide slit to one side. It includes more.
- the tray is pulled out from the main body portion, the guide boss is the second fixing groove when the pressing member is pressed upward
- the stripping groove is characterized in that separated from the guide slit.
- the storage module may further include a pair of guide parts provided between the main body part and the tray to guide the sliding motion of the tray.
- the storage module may further include an auxiliary guide part provided in any one of the pair of guide parts and configured of a rack and a pinion gear.
- the biosensor is easily stored or withdrawn in the housing, there is an advantage that anyone can easily and easily measure various biomarkers such as blood sugar, blood pressure, and cholesterol.
- FIG. 1 is a perspective view illustrating a mobile medical device having a plurality of ports.
- FIG. 2 is a conceptual diagram illustrating a plurality of analysis applications implemented in the mobile medical device of FIG. 1.
- FIG 3 is a perspective view showing the front of the port assembly of the mobile medical device according to an embodiment of the present invention.
- Figure 4 is a perspective view showing the back of the port assembly of the mobile medical device according to an embodiment of the present invention.
- FIG 5 and 6 are perspective views showing the adapter constituting the port assembly of the mobile medical device according to an embodiment of the present invention.
- FIG. 7 is a plan view of the adapter of FIGS. 5 and 6.
- FIGS. 5 and 6 are front views of the adapter of FIGS. 5 and 6.
- FIG. 9 is a perspective view illustrating a housing module constituting the port assembly of the mobile medical device according to an embodiment of the present invention.
- FIG. 10 and 11 are perspective views showing the bottom surface of the tray of the storage module of FIG.
- FIG. 12 is a bottom view of the tray of the accommodation module of FIG. 9.
- FIG. 12 is a bottom view of the tray of the accommodation module of FIG. 9.
- FIG. 13 is a front view illustrating a tray of the storage module of FIG. 9.
- FIG. 14 is a front view illustrating a button part configuring the storage module of FIG. 9.
- FIG 3 and 4 are perspective views showing the front and rear of the port assembly of the mobile medical device according to an embodiment of the present invention, with reference to this will be described in detail the configuration of the port assembly.
- the port assembly of the mobile medical device includes a mobile device 100, a housing (not shown), an adapter 300, and a storage module 400, and includes various biomarkers.
- a biosensor for measuring is easily stored in or taken out of the housing.
- the mobile device 100 is a portable device that analyzes a user's health status or disease, and is provided with a display that provides various information on the front side, and a dark room environment therein for detecting the biomarker through reflected light.
- a housing is provided. Here, the housing is omitted in order to clearly express the structure of the adapter 300 and the storage module 400 to be described later.
- the adapter 300 is a configuration for measuring the value of the target biomarker of the biosensor through the light emitted from the mobile device 100 is mounted a biosensor for measuring the biometric information of the user.
- the accommodating module 400 is configured to accommodate the adapter 300 in a sliding manner in an inner space of the housing. According to an embodiment of the present invention, the user easily stores or extracts the biosensor directly into the housing. can do.
- FIG 5 and 6 are perspective views showing the adapter constituting the port assembly of the mobile medical device according to an embodiment of the present invention
- Figures 7 and 8 are a plan view and a front view showing the adapter.
- the adapter 300 is coupled to a tray 420 constituting the storage module 400 (see FIG. 9), is stored in or taken out of the housing, a seating part 310, It includes a light emitting unit 320, 322, a reflecting unit 330 and a light receiving unit 340.
- the seating part 310 is formed at a step so that the biosensor is seated on the upper surface of the adapter 300, and the light emitting parts 320 and 322 are seated part 310 so that light emitted from the mobile device passes. It is formed on one side of.
- the light emitting parts 320 and 322 are formed of a diffuser hole 320 and a diffuser slit 322, and the diffuser slit 322 is formed at both sides of the diffuser hole 320.
- a pair is formed to be parallel to the longitudinal direction of the biosensor seated on the seating portion 310.
- the diffuser hole 320 and the diffuser slit 322 is preferably a diffuser disposed in front of the light source to diffuse the light.
- holes and slits through which light emitted from the mobile device passes are formed in the housing, and when the adapter 300 is accommodated in an inner space of the housing, the holes and slits formed in the housing are formed in the light emitting unit 320. , 322 and the diffuser hole 320 and the diffuser slit 322 are disposed to face each other.
- holes and slits formed in the housing are more than diffuser holes 320 and diffuser slits 322, which are light emitting parts 320 and 322, in order to transmit light emitted from the mobile device to the reflector 330. Relatively larger ones are preferred.
- the diffuser holes 320 and the diffuser slits 322, which are the light emitting parts 320 and 322, are disposed in the housing.
- the strip sensor seated on the seating portion 310 may be slidably accommodated into the inner space of the housing up to a point included in the inner circumferential region of the formed hole and slit.
- the reflector 330 is provided with a pair to reflect the light passing through the light emitters 320 and 322, and is composed of a first reflector 321 and a second reflector 322.
- the light receiving portion 340 is formed in the seating portion 310 such that light reflected through the pair of reflecting portions 330 is irradiated to the biosensor.
- the first reflector 331 reflects light emitted from the light emitters 320 and 322 or the second reflector 332, and the second reflector 332.
- the first reflecting unit 331 and The second reflector 332 may be disposed at various angles.
- the reflectance of the adapter 300 is greater when the reflectance of the material constituting the adapter 300 is compared with the material constituting the strip sensor seated on the seating part 310. It is preferable. That is, when the light reflectance of the adapter 300 is greater than that of the strip sensor, analysis of biomarkers such as biometric information in a dark room environment may be much easier.
- FIG. 9 is a perspective view showing a storage module constituting the port assembly of the mobile medical device according to an embodiment of the present invention
- Figures 10 and 11 are a perspective view showing the bottom surface of the tray of the storage module
- Figure 12 is a tray of the storage module 13 is a front view showing a tray of the storage module
- FIG. 14 is a front view showing a button part constituting the storage module.
- the storage module 400 includes a main body 410, a tray 420, a button 430, a restraining member 440, a drawing member 450, and a guide part 460. And an auxiliary guide part 470.
- the main body 410 is provided to be fixed inside the housing to provide a space for creating a dark room environment, and may be formed of a plate to surround the outside of the tray 420, the tray 420 is the adapter Coupled with the 300 is stored in the body portion 410 in a sliding manner, or is withdrawn from the body portion 410.
- a guide slit 422 is formed on one surface of the tray 420 along its length direction, and the guide boss 434 constituting the button part is inserted into the guide slit 422 to move the tray 420. To guide.
- Fixing grooves 424 are formed at both ends of the guide slit 422, and the guide boss 434 is formed at one end of the guide slit 422 when the tray 420 is accommodated in the main body.
- the guide boss 434 is located in the first fixing groove 424a and the guide boss 434 is located in the second fixing groove 424b formed at the other end of the guide slit 422 when the tray 420 is withdrawn from the main body. (See FIGS. 11 and 12).
- a stripping groove 426 is formed at the other end of the guide slit 422 so as to face the second fixing groove 424b, and the guide boss 434 is guided through the stripping groove 426. 422).
- the tray 420 may be removed from the main body 410, and a detailed operation thereof will be described later.
- the button part 430 is configured to draw out or remove the tray 420 accommodated in the main body 410, and as shown in FIGS. 13 and 14, the pressing member 432, the guide boss 434, and the like. And a connecting member 436 and a cushioning member 438.
- the pressing member 432 may be pressed by the user one side or upward, the guide boss 434 is inserted into the guide slit 422 to guide the movement of the tray 420.
- the connecting member 436 connects the pressing member 432 and the guide boss 434, and the shock absorbing member 438 is provided between the guide boss 434 and the connecting member 436 and the guide.
- the boss 434 and the guide slit 422 are preferably provided with a spring to facilitate insertion and removal.
- the restraining member 440 has the first fixing groove 424a or the second fixing groove 424b when the tray 420 is accommodated in the main body 410 or withdrawn from the main body 410. Constrain the guide boss 434 to, it is preferably provided with a spring to provide a restraining force.
- the extraction member 450 has one side of the guide boss 434 in which the pressing member 432 is constrained to the first fixing groove 424a while the tray 420 is accommodated in the main body 410. In order to release the restraint by moving to, the tray 420 accommodated in the main body 410 is automatically drawn out. According to an embodiment of the present invention, at least one or more bottom surfaces of the tray 420 are provided. It is preferably provided with a spring to provide the in-output.
- the user In order to accommodate the tray 420 drawn out from the main body 410 into the main body 410, the user directly presses one surface of the tray 420.
- the guide boss 434 is constrained to the second fixing groove 424b by the restraining force of the restraining member 440, and the user Presses one surface of the tray 420, the guide boss 434 is released along the inclined surface of the second fixing groove 424b, and the movement of the tray 420 in the receiving direction
- the first fixing groove 424a is constrained by the restraining member 440.
- the guide boss 434 may be released from the second fixing groove 424b even with a small force of the user when the tray 420 is drawn out.
- the fixing groove 424b is formed to have a gentle inclined surface, and when the tray 420 is accommodated, the first fixing groove 424a may be sufficiently restrained from being automatically drawn out by the drawing member 450. It is formed to have a steep inclined surface (see Fig. 11).
- the user presses the pressing member 432 to one side.
- the guide boss 434 is constrained to the first fixing groove 424a by the restraining force of the restraining member 440.
- the guide boss 434 is released from the first fixing groove 424a through the connecting member 436, the extraction direction of the tray 420
- the second fixing groove 424a is constrained by the restraining member 440 as it moves.
- the drawing member 450 automatically pulls out the tray 420 even if the user presses the pressing member 432 to one side. That is, in order to withdraw the tray 420, the guide boss 434 only needs to be released from the first fixing groove 424a.
- the guide boss 434 is constrained to the second fixing groove 424b by the restraining force of the restraining member 440, and the user Guides the pressing member 432 upwardly, the guide boss 434 moves downward through the connecting member 436 (see FIG. 14), and the guide boss 434 is the guide slit 422.
- the user may directly pull the tray 420 to remove the main body 410 from the main body 410.
- the guide boss 434 moves downward through the connecting member 436 and at the same time the second fixing groove 424b.
- the guide boss 434 is separated from the guide slit 422 through the stripping groove 426 formed to face the second fixing groove 424b. That is, the guide boss 434 is separated without the interference of the guide slit 422 by the stripping groove 426, thereby smoothly removing the tray 420.
- the buffer member 438 is provided with a spring between the guide boss 434 and the connecting member 436, the interference between the guide boss 434 and the guide slit 422 to some extent occurs. Even if it can be separated or combined smoothly.
- a pair of guide portion 460 is provided between the body portion 410 and the tray 420 to guide the sliding movement of the tray 420
- the auxiliary guide portion 470 is a pair of It is provided in any one of a guide part, and consists of a rack and pinion gear.
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Abstract
Description
Claims (12)
- 사용자의 건강 상태 또는 질병 유무를 분석하는 모바일 기기;상기 모바일 기기의 일면에 마련되고, 그 내부에 암실 환경을 조성하는 하우징;사용자의 생체 정보를 측정하는 바이오 센서가 안착되며, 상기 모바일 기기로부터 조사되는 광을 통해 상기 바이오 센서의 타겟 바이오마커의 값을 측정하는 어댑터; 및상기 어댑터를 상기 하우징 내부 공간에 슬라이딩 방식으로 수납하는 수납 모듈을 포함하는 모바일 의료 장치의 포트 어셈블리.
- 제1항에 있어서,상기 어댑터는,상기 바이오 센서가 안착되도록 단차 형성되는 안착부와,상기 모바일 기기로부터 조사되는 광이 통과되도록 상기 안착부의 일측에 형성되는 발광부와,상기 발광부를 통과한 광을 반사시키는 한 쌍의 반사부와,상기 한 쌍의 반사부를 통해 반사되는 광이 상기 바이오 센서로 조사되도록 상기 안착부에 형성되는 수광부를 포함하는 모바일 의료 장치의 포트 어셈블리.
- 제2항에 있어서,상기 발광부는,디퓨저 홀과,상기 디퓨저 홀 양측에서 상기 안착부에 안착된 바이오 센서의 길이 방향과 평행하도록 형성되는 한 쌍의 디퓨저 슬릿을 포함하는 모바일 의료 장치의 포트 어셈블리.
- 제2항에 있어서,상기 한 쌍의 반사부는 제1반사부와 제2반사부로 구성되며,상기 제1반사부는 상기 발광부 또는 상기 제2반사부로부터 조사되는 광을 반사하고, 상기 제2반사부는 상기 수광부 또는 상기 제1반사부로부터 조사되는 광을 반사하도록 각각 소정 각도로 경사지게 마련되는 것을 특징으로 하는 것을 특징으로 하는 모바일 의료 장치의 포트 어셈블리.
- 제1항에 있어서,상기 수납 모듈은,상기 하우징의 내부에 고정되도록 마련되어 암실 환경을 조성하는 본체부와,상기 어댑터와 결합되고, 슬라이딩 방식으로 상기 본체부에 수납되는 트레이와,상기 본체부에 수납된 트레이를 인출 또는 탈거하는 버튼부를 포함하는 모바일 의료 장치의 포트 어셈블리.
- 제5항에 있어서,상기 버튼부는,일측 또는 상향으로 가압되는 가압 부재와,상기 트레이의 일면에 그 길이 방향을 따라 형성되는 가이드 슬릿에 삽입되어 상기 트레이의 이동을 안내하는 가이드 보스와,상기 가압 부재와 상기 가이드 보스를 연결하는 연결 부재를 포함하는 모바일 의료 장치의 포트 어셈블리.
- 제6항에 있어서,상기 버튼부는,상기 가이드 보스와 상기 연결 부재 사이에 마련되는 완충 부재를 더 포함하는 모바일 의료 장치의 포트 어셈블리.
- 제6항에 있어서,상기 수납 모듈은,상기 트레이가 상기 본체부에 수납 또는 상기 본체부로부터 인출 상태인 경우, 상기 가이드 슬릿의 양단에 각각 형성되는 고정홈에 상기 가이드 보스를 구속시키는 구속 부재를 더 포함하는 모바일 의료 장치의 포트 어셈블리.
- 제8항에 있어서,상기 수납 모듈은,상기 가압 부재가 상기 가이드 슬릿의 일단에 형성된 제1고정홈에 구속된 상기 가이드 보스를 일측으로 이동시키는 경우, 상기 본체부에 수납된 트레이를 자동으로 인출하는 인출 부재를 더 포함하는 모바일 의료 장치의 포트 어셈블리.
- 제8항에 있어서,상기 가이드 슬릿의 타단에 형성된 제2고정홈에 대향하도록 탈거홈이 형성되고,상기 트레이가 상기 본체부로부터 인출 상태인 경우, 상기 가압 부재의 상향 가압 시 상기 가이드 보스가 상기 제2고정홈에서 상기 탈거홈으로 이동되어 상기 가이드 슬릿으로부터 분리되는 것을 특징으로 하는 모바일 의료 장치의 포트 어셈블리.
- 제5항에 있어서,상기 수납 모듈은,상기 본체부와 상기 트레이 사이에 마련되고, 상기 트레이의 슬라이딩 운동을 안내하는 한 쌍의 가이드부를 더 포함하는 모바일 의료 장치의 포트 어셈블리.
- 제11항에 있어서,상기 수납 모듈은,상기 한 쌍의 가이드부 중 어느 하나에 마련되고, 랙 및 피니언 기어로 구성되는 보조 가이드부를 더 포함하는 모바일 의료 장치의 포트 어셈블리.
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WO2014107364A1 (en) * | 2013-01-04 | 2014-07-10 | The Board Of Trustees Of The University Of Illinois | Smartphone biosensor |
KR101445508B1 (ko) * | 2010-10-15 | 2014-09-26 | 에프. 호프만-라 로슈 아게 | 터치 스크린 디스플레이를 구비한 핸드헬드 당뇨병 매니저 |
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JP5262551B2 (ja) * | 2008-10-14 | 2013-08-14 | パナソニック株式会社 | 血液検査装置 |
KR101445508B1 (ko) * | 2010-10-15 | 2014-09-26 | 에프. 호프만-라 로슈 아게 | 터치 스크린 디스플레이를 구비한 핸드헬드 당뇨병 매니저 |
JP2015533211A (ja) * | 2012-09-05 | 2015-11-19 | ジェナ、シドハントJENA, Sidhant | モバイル・デバイスを使用した可搬式の医療用診断システム及び方法 |
WO2014107364A1 (en) * | 2013-01-04 | 2014-07-10 | The Board Of Trustees Of The University Of Illinois | Smartphone biosensor |
KR20160108622A (ko) * | 2015-03-02 | 2016-09-20 | (주) 비비비 | 탈착 가능한 소켓 및 이를 포함하는 의료 장치 |
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