WO2018120068A1 - 可携式快筛体外检测系统 - Google Patents

可携式快筛体外检测系统 Download PDF

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Publication number
WO2018120068A1
WO2018120068A1 PCT/CN2016/113618 CN2016113618W WO2018120068A1 WO 2018120068 A1 WO2018120068 A1 WO 2018120068A1 CN 2016113618 W CN2016113618 W CN 2016113618W WO 2018120068 A1 WO2018120068 A1 WO 2018120068A1
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WIPO (PCT)
Prior art keywords
lens
image
detection system
sample
display
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PCT/CN2016/113618
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English (en)
French (fr)
Inventor
葛均
田玉昇
张凯雄
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保康特生物科技股份有限公司
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Application filed by 保康特生物科技股份有限公司 filed Critical 保康特生物科技股份有限公司
Priority to US16/473,609 priority Critical patent/US11049242B2/en
Priority to PCT/CN2016/113618 priority patent/WO2018120068A1/zh
Publication of WO2018120068A1 publication Critical patent/WO2018120068A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T7/00Image analysis
    • G06T7/0002Inspection of images, e.g. flaw detection
    • G06T7/0012Biomedical image inspection
    • G06T7/0014Biomedical image inspection using an image reference approach
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T7/00Image analysis
    • G06T7/0002Inspection of images, e.g. flaw detection
    • G06T7/0012Biomedical image inspection
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L3/00Containers or dishes for laboratory use, e.g. laboratory glassware; Droppers
    • B01L3/50Containers for the purpose of retaining a material to be analysed, e.g. test tubes
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/01Arrangements or apparatus for facilitating the optical investigation
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T2207/00Indexing scheme for image analysis or image enhancement
    • G06T2207/30Subject of image; Context of image processing
    • G06T2207/30004Biomedical image processing
    • G06T2207/30024Cell structures in vitro; Tissue sections in vitro

Definitions

  • the present invention relates to a fast screening detecting device, and more particularly to a portable fast screening external detecting system capable of knowing the physiological reaction and the degree of physiological reaction of a subject.
  • the fast screening test paper 40 is an antibody/antigen-specific immune reaction, and the result is displayed by color display, and the fast screening test paper 40 has a sample area 41, an observation area 42 and an identification label 43 respectively; the sample area 41 for accommodating any sample to be inspected, wherein the sample may be any liquid such as saliva, urine or blood, and the observation area 42 is provided with at least one test group 421 and a control group 422 for presenting As a result of the reaction, the control group 422 is a negative or positive comparison between the user and the test group 421, and indicates whether the test procedure is normal.
  • the identification label 43 is used to provide the basic test paper 40. information.
  • the above-mentioned fast screening test paper 40 can only inform the subject that the subject is negative or positive according to the result, and cannot provide more information of the subject, and thus the result of the non-grading can lead to panic of the subject and the family. Or cause unnecessary medical waste.
  • the shooting tool used in the above technical means may be a special device, such as an imaging device provided in a hospital, but the special device can be easily purchased or obtained by an ordinary person, and the test subject needs to be The hospital spends a lot of time waiting; in addition to the special device mentioned above, it can also pass a portable electronic device.
  • the portable electronic device such as a smart phone or a computer, and transmitting the display image to a computing server or a device matched with each other to obtain a detection result;
  • the shooting image is different depending on the environment, which may cause errors in interpretation.
  • the existing portable electronic device can be matched with the portable electronic device.
  • the bracket is used to assist in capturing the display image, so that the shaking of the portable electronic device can be avoided to affect the shooting result, but the operation steps are cumbersome and cause inconvenience to the user; and, different pixels of the portable electronic device, The focus distance or the brightness is different, and the captured image will also have a difference, which will cause errors in the interpretation, causing many inconveniences.
  • the Exit and Entry Administration will also deploy screening devices in order to achieve the first prevention and control before the outbreak, but the main judgment at present.
  • the method is to use the infrared body temperature detecting device to detect whether the person entering or leaving has a fever.
  • the Exit-Entry Administration will isolate the suspicious person for testing, and send the test result to the unit with the complete detecting device. For the analysis, since the detection reaction and the result interpretation need to wait for the day, the suspicious persons who are isolated may be separated by a small number of shackles, which will cause inconvenience to the people.
  • an in vitro detection system of the present invention which can be carried around, knows the reaction result, and the degree of reaction is issued.
  • An object of the present invention is to provide a portable fast screening external detection system, including an external detector, which can be carried by a user, and the external detector has a closed detection environment for taking a picture. Displaying the image of the fast screening test paper after the test, and transmitting the display image to an electronic device, and performing parameter comparison and analysis with an analysis software provided in the electronic device to generate the detection result
  • the technical means of the present invention is that the in vitro detector is provided with:
  • an in vitro detector the in vitro detector having a closed environment
  • a sample box located in the external detector, the sample box has a sample insertion opening for inserting the tested fast screening test paper
  • a shooting image processor located on one side of the sample box, for capturing a display image of the tested fast screening test paper in the sample box, the shooting image processor having a lens and a plurality of An LED light source and a camera module, wherein the lens captures the result of the tested fast screening test paper in the sample box through an image capturing button; the LED light source is electrically connected to the lens to provide the lens shooting ⁇ a required light source; the camera module is electrically connected to the lens for temporarily storing a display image captured by the lens;
  • a transmission interface control processor located in the external detector, electrically connected to the image capturing processor for transmitting a display image temporarily stored in the camera module;
  • a power supply unit located in the external detector for providing power required by the external detector
  • an electronic device having an analysis software for receiving a display image of the tested fast screening test paper sent from the transmission interface control processor, and respectively generating a parameter packet and a determination data
  • the peer also receives the latest data parameters from a cloud and compares the data with the judgment data, and finally produces a test report with the physiological response of the subject and the degree of physiological response.
  • the analysis software provided in the electronic device is compared with a data parameter generated by a cloud of the present invention, thereby generating a detection report having a physiological response of the subject and a degree of physiological reaction.
  • Another object of the present invention is to provide a portable fast screening in vitro detection system, in addition to analyzing the physiological response of the subject, can also analyze the physiological response degree, to achieve early detection and early planning and early detection effect.
  • the technical means of the present invention is: providing a sample database corresponding to the analysis software in the cloud, wherein the sample database has a plurality of display images of different degrees of physiological reaction detection, and these The image result is generated by the cloud operation, and when the user opens the analysis software in the electronic device, the analysis software automatically downloads the data parameter and stores it in the analysis software; when the detection is completed, the electronic The device receives the display image transmitted by the external detector, and the analysis software generates a parameter packet having a physiological reaction parameter, a display image, and a determination data of the current detection result, and the analysis software further selects the parameter.
  • the package is transmitted to the cloud for storing and collecting data, and the test data and the data parameter are compared according to the detected type, and the detection report having a physiological reaction degree is further generated.
  • the tested fast screening test paper has a sample area, an observation area and an identification label, and the observation area is provided with at least one control group and a test group for displaying the detection result.
  • analysis software respectively identifies the test group of the observation area and the identification tag, and respectively generates the judgment data and the parameter package.
  • the cloud receives the physiological response parameter having the detection result in the parameter package and the image of the test group, and stores and collects the data.
  • the electronic device is one of a smart phone, a tablet computer, a desktop computer, and a notebook computer.
  • the transmission interface control processor performs wired transmission through a USB connection slot, and wireless transmission by Bluetooth or WIFI.
  • the external detector has a display panel on one side, and a power indicator light, a wireless connection indicator light, a sample display light, and a transmission display light are respectively disposed on the display panel.
  • the beneficial effects of the present invention are as follows:
  • the present invention can perform the analysis and comparison of the displayed image in the case of wired or wireless, and can be analyzed that the physiological reaction is negative/positive, and the physiological reaction degree can also be analyzed.
  • 1 is a schematic view of the fast screening test paper after the test according to the prior art
  • FIG. 3 is a schematic view of the internal structure of the present invention.
  • FIG. 4 is a schematic diagram of an image capture device of the present invention.
  • FIG. 5 is a schematic diagram of image capture of the present invention.
  • FIG. 6 is a schematic diagram of a sample database of the present invention.
  • FIG. 7 is a block diagram of the system of the present invention.
  • the present invention provides an in vitro detection system for portable fast screening, comprising: an external detector 10 and an electronic device 30 (refer to FIG. 7),
  • the external detector 10 is connected to the electronic device 30 by a wired or wireless connection.
  • the external detector 10 has a control panel 11 on one side thereof.
  • the control panel 11 is provided with a power button 111 and an image capture button 112.
  • the external detector 10 has a sample insertion port 12 and a USB connection slot 14.
  • the sample insertion port 12 and the USB connection slot 14 are respectively disposed on different surfaces of the external detector 10.
  • the inspection panel 13 is provided with a power indicator lamp 131, a wireless connection indicator 132, a sample display indicator 133, a transmission indicator 134, etc., to remind the user whether the external detector 10 is a situation in which it is activated and operated;
  • the electronic device 30 can be a smart phone, a tablet computer, a desktop computer, and a notebook Computer, etc.
  • the external detector 10 is a closed environment, and includes a sample box 15, a photographing image processor 16, a transmission interface control processor 17, and a power supply unit 18.
  • a tested fast screening test paper 40' can be inserted into the sample box 15 from the sample insertion opening 12, and the tested fast screening test paper 40' has a sample area 41, an observation area 42 and An identification tag 43 (see FIG. 1), the structure of which is as described in the prior art; when the tested fast screening test paper 40' contacts a sample provided at the end of the sample box 15 The sensor 151A, the sample display lamp 133 of the inspection panel 13 is activated, so that the user knows whether the tested fast screening test paper 40' is correctly placed, and the image capture can be started.
  • the image capturing processor 16 is disposed on one side of the sample box 15 and electrically connected to the image capturing button 112.
  • the image capturing button 112 controls the captured image processor 16 to capture the inside of the sample box 15.
  • the result of the tested fast screening test paper 40' is used to generate a display Image 1611 (see FIG.
  • the transmission interface control processor 17 can be wireless Bluetooth transmission or wifi transmission, or
  • the USB connection slot 14 electrically connected for wired transmission, the action described above is the power supply required for the electronic components provided by the power supply unit 18, and the power supply unit 18 is activated by the power button 111, and
  • the power unit 18 can be a rechargeable power source or a one-time power source, and the rechargeable power source can also be connected to an external power source for charging through the USB connection slot 14.
  • the captured image processor 16 has a lens 161, a plurality of LED light sources 162, and a camera module 163.
  • the lens 161 faces the sample box 15 and passes the image.
  • the capture button 112 controls the shooting of the lens 161, and the distance between the lens 161 and the sample box 15 is about 8 mm.
  • the LED light sources 162 are electrically connected to the two sides of the lens 161 for providing the lens.
  • the camera 161 is electrically connected to the camera module 163, and the display image 1611 is temporarily stored therein, and the display image 1611 includes the observation area 42 and the identification tag 43.
  • the transmission interface control processor 17 is electrically connected to the captured image processor 16 and receives the display image 1611 outputted by the captured image processor 16 directly by wireless or wired.
  • the display image 1611 is outputted to the electronic device 30 for analysis, and the transmission display lamp 134 of the viewing panel 13 is activated (see FIG. 2).
  • the electronic device 30 has an analysis software 31.
  • the electronic device 30 receives the display image 1611 transmitted by the external detector 10.
  • Analysis software 3 After the display image 1611 image is de-backed, denoised, and sharpened, a parameter packet 311 and a determination data 312 are generated.
  • the parameter packet 311 includes the signal of the identification tag 43 and the image of the test group 421. And passed to the cloud 20 of the present invention, and the determination data 312 is generated by the image of the test group 421.
  • the cloud 20 is provided with a sample database 21 corresponding to the analysis software 31.
  • the sample database 21 has a plurality of display images 1611 of different degrees of physiological reaction detection. Because the degree of physiological reaction is different, the concentration of the component to be detected in the sample will be different, so the result presented on the tested fast screening test paper 40' will also have different depths and different distinctions, through the cloud 20 operation After that, a data parameter 211 is generated.
  • the analysis software 31 automatically downloads the latest data parameter 211 from the cloud 20, so that when the electronic device 30 is located The comparison of the test results can still be performed in the case of wireless.
  • the cloud 20 after receiving the parameter packet 311 transmitted from the analysis software 31, the cloud 20 according to the physiological response parameter in the parameter package 311 and the image of the test group 421 ( Please refer to FIG. 5 for classification and archiving of data. If the provided image is new, the sample database 21 is updated, and a new data parameter 211 is generated for download by the analysis software 31; The data 312 and the data parameter 211 perform quantitative comparison analysis of the parameters according to the type and degree of detection, thereby generating a detection report 32 having the physiological response of the subject and the degree of physiological reaction.
  • the in vitro detection system of the present invention captures the display image 1611 of the tested fast screening test paper 40' in the closed environment by the external detector 10, without affecting the image due to differences in environment or shooting equipment.
  • the user can carry the external detector 10 with him or her, and then perform the detection; and after the captured image processor 16 captures the display image 1611, the processor 17 can be controlled by the transmission interface.
  • the display image 1611 is transmitted to the electronic device 30 for analysis of the result, which can save a program for the user to upload data by itself; and the external detection system passes the analysis software 31 in the electronic device 30 to determine the cloud 20
  • the data parameter 211 is downloaded, so that the analysis and comparison of the display image 1611 can be performed in the case of wired or wireless.
  • the physiological reaction degree can also be analyzed and suggestions can be provided. Early detection of the effects of early prevention and planning.

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Abstract

一种可携式快筛的体外检测系统,包括:一体外检测器(10)以及一电子装置(30),该体外检测器(10)具有一封闭环境,内设有一检体盒(15),用以插入一受测后的快筛试纸(40');一拍摄图像处理器(16),分别具有一镜头(161)、多个LED光源(162)以及一相机模块(163),该镜头(161)通过一影像撷取钮(112)撷取该检体盒(15)内的受测后的快筛试纸(40')的结果;这些LED光源(162)与该镜头(161)电性连接,用以提供该镜头(161)拍摄时所需的光源;该相机模块(163)与该镜头(161)电性连接,用以暂时储存该镜头(161)所拍摄的显示影像(1611);一传输接口控制处理器(17),用以传送该显示影像(1611)至该电子装置(30),通过该电子装置(30)内具有的一分析软件(31)与自云端(20)所下载的资料参数(211)进行比对,以产生一受测者的生理反应以及生理反应程度的检测报告(32),达到早期发现早期预防及规划的目的。

Description

可携式快筛体外检测系统
技术领域
[0001] 本发明涉及一种快筛检测装置, 尤指一种可以实吋得知受测者生理反应以及生 理反应程度的可携式快筛体外检测系统。
背景技术
[0002] 随着检测技术不断进步, 市面上有许多可实吋得知结果的快筛检测装置或一快 筛试纸 40, 如验孕棒或流感快筛试纸等, 请参阅图 1所示, 该快筛试纸 40是利用 抗体 /抗原特异性免疫反应, 通过颜色的呈现以显示结果, 而该快筛试纸 40上分 别具有一样品区 41、 一观察区 42以及一辨识标签 43; 该样品区 41用以容置任何 欲受检的检体, 其中, 该检体可为唾液、 尿液或血液等任何液体, 该观察区 42 内至少设有一测试组 421以及一对照组 422, 用以呈现反应的结果, 该对照组 422 是供使用者与该测试组 421结果进行阴性或阳性的比对, 以及显示此次检测程序 是否正常, 该辨识标签 43是用以提供该快筛试纸 40的基本信息。
[0003] 上述的该快筛试纸 40根据结果仅能告知受测者为阴性或阳性, 无法提供受测者 更多信息, 如此不能分级的检测结果, 可能导致受测者及家人身心灵恐慌, 或 是造成不必要的医疗浪费。
[0004] 检测吋若待测物所含受检的抗原 /抗体浓度较低, 导致受测后的快筛试纸结果 不易被肉眼辨识, 因而产生错误判断及认知, 而现有技术预解决此问题都需通 过额外且非固定的方式, 撷取该受测后的快筛试纸 40'的影像, 再通过特定装置 进行分析, 进一步产生结果, 如此利用额外且非固定方式撷取受测后的影像易 造成影像撷取的不稳定性, 进而提供给受测者错误的信息, 造成不必要的恐慌 技术问题
[0005] 然而, 上述的技术手段所使用的拍摄工具可为一特殊装置, 如医院内所设有的 影像设备, 但该特殊装置非一般人能轻易购买或取得, 且检测吋受测者需在医 院花费大量吋间等待; 除前述的该特殊装置外, 另可通过一可携式电子装置, 进行该受测后的快筛试纸的显示影像撷取, 该可携式电子装置如智能型手机或 计算机等, 并将该显示影像传送至运算服务器或相互搭配的设备, 才可得到检 测结果; 在利用该可携式电子装置拍摄吋, 因处于幵放空间进行拍摄, 其拍摄 影像根据环境的不同而有所差异, 可能导致判读上的误差, 现有可搭配稳定该 可携式电子装置的支架, 以协助拍摄该显示影像, 如此虽可避免该可携式电子 装置的晃动而影响拍摄结果, 但操作步骤繁琐, 造成使用者的不便; 并且, 不 同的该可携式电子装置的画素、 对焦距离或感亮度都不同, 拍摄出来的影像也 会有所落差, 进而导致判读上也会产生误差, 造成许多不便。
[0006] 并且, 现有结合影像分析的筛检装置, 但其设备庞大且所费不菲, 非一般人所 能负担, 且该装置为了可以准确运算, 需要有对应的系统及软件相互配合, 因 此在传送显示影像及分析上往往需要许多吋间, 丧失实吋的功能。
[0007] 鉴于现在交通工具的发达, 人们常通往世界各地, 在出入海关吋, 出入境管理 局也会配置筛检装置, 为了在疫情发生前做到第一道防治, 而目前主要的判断 方式为, 利用红外线体温检测装置, 检测进出的人有无发烧, 若要更进一步的 筛检, 出入境管理局会将可疑人士隔离以进行检测, 并将检测结果送至有完整 检测装置的单位进行分析, 由于检测反应以及结果判读都需要等待吋间, 故被 隔离的可疑人士可能会被隔离数小吋不等, 如此将造成民众的不便。
[0008] 为了解决上述的问题, 故而幵发出本发明的一种可随身携带、 实吋知道反应结 果以及反应程度的体外检测系统。
问题的解决方案
技术解决方案
[0009] 本发明的目的在于提供一种可携式快筛的体外检测系统, 包括一体外检测器, 使使用者可随身携带, 且该体外检测器内具有封闭的检测环境, 用以拍摄一受 测后的快筛试纸的显示影像, 并实吋将该显示影像传送至一电子装置, 通过该 电子装置内设有的一分析软件与其进行参数比对及分析, 以实吋产生检测结果
[0010] 为达上述目的, 本发明的技术手段即在于, 该体外检测器内设有:
[0011] 一体外检测器, 该体外检测器具有一封闭环境; [0012] 一检体盒, 位于该体外检测器中, 该检体盒具有一检体插入口, 用以插入该受 测后的快筛试纸;
[0013] 一拍摄图像处理器, 位于该检体盒的一侧, 用以撷取该检体盒内受测后的快筛 试纸的显示影像, 该拍摄图像处理器分别具有一镜头、 多个 LED光源以及一相机 模块, 其中, 该镜头通过一影像撷取钮撷取该检体盒内的受测后的快筛试纸结 果; 这些 LED光源与该镜头电性连接, 用以提供该镜头拍摄吋所需的光源; 该相 机模块与该镜头电性连接, 用以暂吋储存该镜头所拍摄的一显示影像;
[0014] 一传输接口控制处理器, 位于该体外检测器中, 与该拍摄图像处理器电性连接 , 用以传送暂吋储存在该相机模块内的显示影像;
[0015] 一电源单元, 位于该体外检测器中, 用以提供该体外检测器所需的电源; 以及
[0016] 一电子装置, 其内具有一分析软件, 用以接收自该传输接口控制处理器所传来 的该受测后的快筛试纸的显示影像, 并分别产生一参数包以及一判断数据, 同 吋也接收来自一云端的最新的资料参数, 并与该判断数据进行比对分析, 最终 产生一具有受测者的生理反应以及生理反应程度的检测报告。
[0017] 通过该电子装置内具有的该分析软件, 与一本发明的云端所产生的一资料参数 进行比对, 借以产生一具有受测者的生理反应以及生理反应程度的检测报告。
[0018] 本发明的另一目的在于提供一种可携式快筛的体外检测系统, 除可分析受测者 的生理反应外, 还可分析其生理反应程度, 达到早期发现早期预防及规划的效 果。
[0019] 为达上述目的, 本发明的技术手段在于: 在该云端内设有一与该分析软件相互 对应的样品数据库, 该样品数据库中具有多种不同程度的生理反应检测的显示 影像, 而这些检测影像结果通过该云端运算产生该资料参数, 当用户幵启该电 子装置内的分析软件吋, 该分析软件会自动下载该资料参数, 并储存于该分析 软件中; 当检测完成吋, 该电子装置接收自该体外检测器所传输的显示影像, 通过该分析软件将分别产生一具有生理反应参数、 显示影像的参数包, 以及一 本次检测结果的判断数据, 该分析软件进一步会将该参数包传送至该云端, 以 进行数据的储存及收集, 同吋该判断数据与该资料参数将根据检测的类别进行 反应程度的比对, 进一步产生具有生理反应程度的该检测报告。 [0020] 其中, 该受测后的快筛试纸上分别具有一样品区、 一观察区以及一辨识标签, 该观察区内至少设有一对照组以及一测试组, 用以显示检测结果。
[0021] 其中, 该分析软件分别辨识该观察区的测试组以及该辨识标签, 分别产生该判 断数据以及该参数包。
[0022] 其中, 该云端会接收该参数包内具有检测结果的生理反应参数以及该测试组的 影像, 并进行数据的储存及收集。
[0023] 其中, 该电子装置为智能型手机、 平板计算机、 桌面计算机以及笔记本电脑中 的其中一种。
[0024] 其中, 该传输接口控制处理器分别通过一 USB连接槽进行有线传输, 以及蓝牙 或 WIFI进行无线传输。
[0025] 其中, 该体外检测器的一面上具有一显示面板, 其上分别设有一电源显示灯、 一无线连接指示灯、 一检体显示灯以及一传输显示灯。
发明的有益效果
有益效果
[0026] 本发明的有益效果为: 本发明在有线或无线的情况下都可进行该显示影像的分 析比对, 除可得知生理反应为阴性 /阳性外, 也可分析其生理反应程度并提供建 议, 达到早期发现早期预防及规划的效果。
对附图的简要说明
附图说明
[0027] 图 1为现有技术该受测后的快筛试纸示意图;
[0028] 图 2为本发明的外观示意图;
[0029] 图 3为本发明的内部结构示意图;
[0030] 图 4为本发明的影像捕获设备示意图;
[0031] 图 5为本发明的影像撷取示意图;
[0032] 图 6为本发明的样品数据库示意图;
[0033] 图 7为本发明的系统方块图;
[0034] 图 8为本发明的分析流程图。
[0035] 附图标记说明 [0036] (现有技术)
[0037] 40 快筛试纸
[0038] 40'受测后的快筛试纸
[0039] 41 样品区
[0040] 42 观察区
[0041] 421 测试组
[0042] 422对照组
[0043] 43 辨识标签
[0044] (本发明)
[0045] 10 体外检测器
[0046] 11 控制面板
[0047] 111 电源钮
[0048] 112影像撷取钮
[0049] 12 检体插入口
[0050] 13 检视面板
[0051] 131 电源显示灯
[0052] 132无线连接指示灯
[0053] 133 检体显示灯
[0054] 134传输显示灯
[0055] 14 USB连接槽
[0056] 15 检体盒
[0057] 151 检体传感器
[0058] 16 拍摄图像处理器
[0059] 161 镜头
[0060] 1611显示影像
[0061] 162 LED光源
[0062] 163 相机模块
[0063] 17 传输接口控制处理器 [0064] 18 电源单元
[0065] 20 云端
[0066] 21 样品数据库
[0067] 211 资料参数
[0068] 30 电子装置
[0069] 31 分析软件
[0070] 311 参数包
[0071] 312判断数据
[0072] 32 检测报告
[0073] 40'受测后的快筛试纸
[0074] 41 样品区
[0075] 42 观察区
[0076] 421 测试组
[0077] 422对照组
[0078] 43 辨识标签。
实施该发明的最佳实施例
本发明的最佳实施方式
[0079] 为便于贵审査员能对本发明的技术手段及运作过程有更进一步的认识与了解, 现举例配合附图, 详细说明如下。
[0080] 请参阅图 2、 图 3所示, 本发明提供一种可携式快筛的体外检测系统, 包括: 一 体外检测器 10以及一电子装置 30(请参阅图 7所示), 该体外检测器 10与该电子装 置 30通过有线或无线的方式连接, 其中, 该体外检测器 10的一面具有一控制面 板 11, 该控制面板 11上设有一电源钮 111以及一影像撷取钮 112, 该体外检测器 1 0上具有一检体插入口 12以及一 USB连接槽 14, 该检体插入口 12以及该 USB连接 槽 14, 分别设于不同面上, 该体外检测器 10的顶面上具有一检视面板 13, 该检 视面板 13上设有一电源显示灯 131、 一无线连接指示灯 132、 一检体显示灯 133以 及一传输显示灯 134等, 用以提醒使用者该体外检测器 10是否有被启动以及运作 的状况; 该电子装置 30可为智能型手机、 平板计算机、 桌面计算机以及笔记本 电脑等。
[0081] 请参阅图 2、 3所示, 该体外检测器 10内为一封闭环境, 设有一检体盒 15、 一拍 摄图像处理器 16、 一传输接口控制处理器 17以及一电源单元 18, 其中, 一受测 后的快筛试纸 40'可自该检体插入口 12插入该检体盒 15内, 而该受测后的快筛试 纸 40'具有一样品区 41、 一观察区 42以及一辨识标签 43(请参阅图 1所示), 其结构 如现有技术中所描述; 当该受测后的快筛试纸 40'接触到该检体盒 15—端所设有 的一检体传感器 151吋, 该检视面板 13的检体显示灯 133会被启动, 如此使用者 将知道该受测后的快筛试纸 40'是否有正确放入, 且可以幵始进行影像的撷取, 该拍摄图像处理器 16设于该检体盒 15的一侧, 与该影像撷取钮 112电性连接, 通 过该影像撷取钮 112控制该拍摄图像处理器 16撷取该检体盒 15内的受测后的快筛 试纸 40'的结果, 用以产生一显示影像 1611(请参阅图 5所示), 并将该显示影像 11 61传送至该传输接口控制处理器 17, 该传输接口控制处理器 17可为无线的蓝牙 传输或 wifi传输, 也可通过与之电性连接的该 USB连接槽 14进行有线传输, 上述 所描述的动作是通过该电源单元 18提供给这些电子组件所需的电源, 并借由该 电源钮 111启动该电源单元 18, 并且, 该电源单元 18可为充电式电源或一次性电 源, 充电式电源还可通过该 USB连接槽 14连接外部电源进行充电。
[0082] 请参阅图 3至图 5所示, 该拍摄图像处理器 16分别具有一镜头 161、 多个 LED光 源 162以及一相机模块 163, 该镜头 161对着该检体盒 15, 通过该影像撷取钮 112 控制该镜头 161的拍摄, 且该镜头 161与该检体盒 15间的距离约为 8 mm, 在该镜 头 161的两侧电性连接有这些 LED光源 162, 用以提供该镜头 161拍照吋所需的光 源, 该镜头 161又与该相机模块 163电性连接, 并将该显示影像 1611暂吋储存于 其中, 而该显示影像 1611包括该观察区 42以及该辨识标签 43。
[0083] 请参阅图 7所示, 该传输接口控制处理器 17与该拍摄图像处理器 16电性连接, 并接收自该拍摄图像处理器 16所输出的显示影像 1611, 直接借由无线或有线的 方式将该显示影像 1611输出至该电子装置 30内进行分析, 同吋该检视面板 13的 传输显示灯 134会被启动 (请参阅图 2所示)。
[0084] 请参阅图 5、 图 7以及图 8所示, 该电子装置 30内具有一分析软件 31, 当检测完 成吋, 该电子装置 30接收该体外检测器 10所传输的显示影像 1611, 该分析软件 3 1对该显示影像 1611影像进行去背、 去噪声以及清晰度处理后, 分别产生一参数 包 311以及一判断数据 312, 该参数包 311内包括该辨识标签 43的信号以及该测试 组 421的影像, 并传递至一本发明的云端 20, 而该判断数据 312是由测试组 421的 影像所产生的。
[0085] 请参阅图 6、 图 7所示, 该云端 20内设有一与该分析软件 31相对应的样品数据库 21, 该样品数据库 21中具有多种不同程度的生理反应检测的显示影像 1611, 因 生理反应程度不同, 其检体中欲检测成分的浓度也会有所不同, 所以呈现在该 受测后的快筛试纸 40'上的结果也会有深浅不同的区分, 通过该云端 20运算后, 会产生一资料参数 211, 当使用者在有线环境下打幵该电子装置 30, 该分析软件 31会自动自该云端 20下载最新的该资料参数 211, 如此, 当该电子装置 30处在无 线情况下仍然可进行检测结果的比对。
[0086] 请再参阅图 7、 图 8所示, 该云端 20接收自该分析软件 31传送的参数包 311后, 会依据该参数包 311内具有的生理反应参数以及该测试组 421的影像 (请参阅图 5所 示)进行数据的分类及归档, 若所提供的影像为新的, 该样品数据库 21则会进行 更新, 产生新的该资料参数 211供该分析软件 31下载; 同吋该判断数据 312与该 资料参数 211依据检测的类别以及程度进行参数的定量比对分析, 即可产生一具 有受测者生理反应以及生理反应程度的检测报告 32。
工业实用性
[0087] 本发明的体外检测系统通过该体外检测器 10在封闭环境中撷取该受测后的快筛 试纸 40'的显示影像 1611, 无须担心因环境或拍摄设备的不同, 而影响影像撷取 的结果, 因此使用者可将该体外检测器 10随身携带, 随吋随地进行检测; 并且 , 该拍摄图像处理器 16撷取该显示影像 1611后, 可实吋通过该传输接口控制处 理器 17将该显示影像 1611传送至该电子装置 30进行结果的分析, 可节省用户自 行上传数据的程序; 并且, 该体外检测系统通过该电子装置 30内的该分析软件 3 1会定吋自该云端 20下载该资料参数 211, 因此在有线或无线的情况下都可进行 该显示影像 1611的分析比对, 除可得知生理反应为阴性 /阳性外, 也可分析其生 理反应程度并提供建议, 达到早期发现早期预防及规划的效果。
[0088] 但以上所述者, 仅为本发明的较佳实施例而已, 当不能以此限定本发明的专利 保护范围; 因此, 凡依本发明权利要求书及发明说明书内容所作的简单的等效 变化与修饰, 都应仍属于本发明专利涵盖的范围内。

Claims

权利要求书
[权利要求 1] 一种可携式快筛的体外检测系统, 其特征在于, 包括:
一体外检测器, 该体外检测器具有一封闭环境; 一检体盒, 位于该体外检测器中, 且具有一检体插入口, 用以插入一 受测后的快筛试纸;
一拍摄图像处理器, 位于该检体盒的一侧, 分别具有一镜头、 多个 L ED光源以及一相机模块, 其中, 该镜头通过一影像撷取钮撷取该检 体盒内的受测后的快筛试纸的结果; 这些 LED光源与该镜头电性连接 , 用以提供该镜头拍摄吋所需的光源; 该相机模块与该镜头电性连接 , 用以暂吋储存该镜头所拍摄的显示影像;
一传输接口控制处理器, 位于该体外检测器中, 用以传送暂吋储存于 该相机模块内的显示影像;
一电源单元, 位于该体外检测器中, 用以提供这些电子组件所需的电 源; 以及
一电子装置, 其内具有一分析软件, 用以接收自该传输接口控制处理 器所传来的该受测后的快筛试纸的显示影像, 并分别产生一参数包以 及一判断数据, 同吋也接收来自一云端的最新的资料参数, 并与该判 断数据进行比对分析, 最终产生一具有受测者的生理反应以及生理反 应程度的检测报告。
[权利要求 2] 如权利要求 1所述的体外检测系统, 其特征在于, 该云端内建有一与 该分析软件相互对应的样品数据库, 该样品数据库中具有多种不同程 度的生理反应检测的显示影像, 并将这些显示影像通过运算、 分类产 生该资料参数。
[权利要求 3] 如权利要求 2所述的体外检测系统, 其特征在于, 该受测后的快筛试 纸上分别具有一样品区、 一观察区以及一辨识标签, 该观察区内至少 设有一对照组以及一测试组, 用以显示检测结果。
[权利要求 4] 如权利要求 3所述的体外检测系统, 其特征在于, 该分析软件分别辨 识该观察区的测试组以及该辨识标签, 分别产生该判断数据以及该参 数包。
[权利要求 5] 如权利要求 4所述的体外检测系统, 其特征在于, 该云端会接收该参 数包内具有检测结果的生理反应参数以及该测试组的影像, 并进行数 据的储存及收集。
[权利要求 6] 如权利要求 1所述的体外检测系统, 其特征在于, 该电子装置为智能 型手机、 平板计算机、 桌面计算机以及笔记本电脑中的其中一种。
[权利要求 7] 如权利要求 1所述的体外检测系统, 其特征在于, 该传输接口控制处 理器分别通过一 USB连接槽进行有线传输, 以及蓝牙或 WIFI进行无 线传输。
[权利要求 8] 如权利要求 1所述的体外检测系统, 其特征在于, 该体外检测器的一 面上具有一显示面板, 其上分别设有一电源显示灯、 一无线连接指示 灯、 一检体显示灯以及一传输显示灯。
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CN110161024B (zh) * 2019-06-06 2021-11-02 深圳市科迈爱康科技有限公司 检测试纸、检测试纸的使用方法和试纸盒

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