WO2017088610A1 - 血糖数据采集设备 - Google Patents

血糖数据采集设备 Download PDF

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Publication number
WO2017088610A1
WO2017088610A1 PCT/CN2016/102487 CN2016102487W WO2017088610A1 WO 2017088610 A1 WO2017088610 A1 WO 2017088610A1 CN 2016102487 W CN2016102487 W CN 2016102487W WO 2017088610 A1 WO2017088610 A1 WO 2017088610A1
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WO
WIPO (PCT)
Prior art keywords
blood glucose
data collection
mounting body
bottom plate
test solution
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Application number
PCT/CN2016/102487
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English (en)
French (fr)
Inventor
张贯京
Original Assignee
深圳市前海安测信息技术有限公司
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Publication date
Application filed by 深圳市前海安测信息技术有限公司 filed Critical 深圳市前海安测信息技术有限公司
Publication of WO2017088610A1 publication Critical patent/WO2017088610A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/145Measuring characteristics of blood in vivo, e.g. gas concentration, pH value; Measuring characteristics of body fluids or tissues, e.g. interstitial fluid, cerebral tissue
    • 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
    • G01N21/17Systems in which incident light is modified in accordance with the properties of the material investigated

Definitions

  • the present invention relates to the field of life health, and in particular, to a blood glucose data collection device.
  • the sugar in serum is called blood sugar, and in most cases it is glucose. Most of the energy required for cellular activities in various tissues in the body comes from glucose, so blood sugar must be maintained at a certain level to maintain the needs of various organs and tissues in the body. Normal people have a fasting blood glucose concentration of 80 to 120 mg in the morning. Fasting blood glucose levels above 130 mg are called hyperglycemia. If the blood glucose concentration exceeds 160 to 180 mg, a part of glucose is excreted in the urine to form diabetes.
  • the existing blood glucose data collection device In order to grasp the blood glucose concentration of the human body and prevent diabetes, the existing blood glucose data collection device only collects the blood glucose concentration, and does not convert the blood glucose concentration into a photoelectric signal. As a result, the collection of blood glucose data is too single, which is not conducive to the processing of blood glucose data, and reduces the efficiency of blood glucose data.
  • the main purpose of the present invention is to provide a blood glucose data collection device, which aims to solve the problem that the existing blood glucose data collection device cannot convert the blood glucose concentration into a photoelectric signal, resulting in a single product defect in blood glucose data collection.
  • the present invention provides a blood glucose data collection device, which includes a control device and a data collection fixture, and the control device is connected to the data collection fixture;
  • the data acquisition jig includes a bottom plate, and the bottom plate includes two fixing plates, wherein a surface of one fixing plate is provided with a transmitting triode, and a surface of the other fixing plate is disposed to receive a three-stage tube;
  • a mounting body is disposed between the two fixing plates, a front end of the mounting body is further provided with a first screw hole, a second screw hole is disposed at an end of the mounting body, and the first screw hole passes through a double head
  • the screw is connected to the water outlet pipe, and the second screw hole is connected to the water inlet pipe through another double-head screw;
  • the water inlet pipe is further connected to the adjustable speed water pump, the adjustable speed water pump is connected to the outlet pipe, and the outlet pipe is connected to the outlet pipe through the blood glucose test liquid container, thereby forming a water flow circuit, a blood glucose test solution container is provided with a blood glucose test solution;
  • control device is connected to the transmitting triode, the receiving three-stage pipe and the adjustable speed water pump;
  • the adjustable speed water pump extracts from the blood glucose test solution container and inputs a blood glucose test liquid having a preset blood glucose concentration value into the installation body;
  • the transmitting transistor emits infrared light of a preset wavelength, and the infrared light passes through the blood glucose test liquid in the mounting body to reach the receiving transistor;
  • the receiving three-stage tube converts the infrared light into a photoelectric signal corresponding to the preset blood glucose concentration value.
  • the fixing plate has an L-shaped structure and is perpendicular to the bottom plate.
  • the mounting body is an intermediate hollow structure, and the intermediate position of the mounting body includes a hollow space, and the two sides of the hollow space are closed by two transparent plates, and the closed hollow space is used for Contains blood glucose test solution.
  • a third screw hole is further disposed at an intermediate position of the frame of the mounting body, and the mounting body further includes a single-head screw, and the single-head screw vertically passes through the frame of the mounting body at an intermediate position of the mounting body. And fixed to the third screw hole.
  • the data collection fixture further comprises a water basin, a support foot, a bottom plate, a pole and a black cloth cover.
  • the support leg is disposed on a back surface of the bottom plate.
  • the support leg is a rubber-wrapped support portion.
  • the water basin is disposed below the back surface of the bottom plate and in a space supported by the support legs.
  • the strut is disposed on a front surface of the bottom plate, and the black cloth cover covers the strut to cover the data collection jig.
  • the blood glucose test solution is glucose solution.
  • the blood glucose data collecting device of the present invention adopts the above technical solution, and achieves the following technical effects: automatically adopting infrared radiation to automatically obtain a photoelectric signal corresponding to a preset blood glucose concentration, and simplify collecting blood glucose.
  • the process of data is conducive to the diversification of blood glucose data processing, raising blood sugar The efficiency of the use of data.
  • FIG. 1 is a schematic structural view of a blood glucose data collection device of the present invention
  • FIG. 2 is a schematic structural view of a mounting body in the blood glucose data collecting device of the present invention.
  • FIG. 3 is a schematic structural view of a data acquisition jig in the blood glucose data collection device of the present invention.
  • FIG. 1 is a functional architecture diagram of a preferred embodiment of a blood glucose data collection device of the present invention.
  • the blood glucose data collection device 100 includes a control device 20 and a data collection jig 50, and the control device 20 is connected to the data collection jig 50.
  • the control device 20 is configured to control the data collection fixture 50 to collect photoelectric signals corresponding to blood glucose data.
  • the data acquisition 50 fixture includes a transmitting transistor 9, a mounting body 12, a receiving tertiary tube 13, a blood glucose test solution container 15, and a adjustable speed water pump 17, wherein the mounting body 12 and the adjustable speed The water pump 17 is connected, and the adjustable speed water pump 17 is connected to the blood glucose test solution container 15.
  • the control device 20 is connected to the adjustable speed water pump 17, the transmitting transistor 9 and the receiving tertiary tube 13.
  • the data collection jig 50 includes a bottom plate 3, and the bottom plate 3 includes two fixing plates 8.
  • the two fixing plates 8 are perpendicular to the bottom plate 3, and the two fixing plates 8 are spaced apart by a predetermined distance (for example, 3 cm), and the two fixing plates 8 have an L-shaped structure.
  • a plurality of emitter transistors 9 are uniformly disposed on the surface of one fixed plate 8, and a plurality of receiving tertiary tubes 13 are uniformly disposed on the surface of the other fixed plate 8.
  • the transmitting tertiary tube 9 corresponds to the receiving tertiary tube 13 - one, that is, one transmitting transistor 9 corresponds to one receiving transistor 13 , and infrared light generated by one transmitting transistor 9 is irradiated onto a receiving transistor 13 .
  • a mounting body 12 is placed between the two fixing plates 8, and the mounting body 12 is vertically placed on the front surface of the bottom plate 3.
  • FIG. 2 is a schematic structural view of a mounting body in the blood glucose data collecting device of the present invention.
  • the mounting body 12 is an intermediate hollow structure, wherein the intermediate position of the mounting body 12 includes a hollow space 120.
  • the hollowed-out space 120 is closed on both sides by two transparent plates 10 (e.g., a polycarbonate transparent plate or a transparent glass), and the enclosed hollow space 120 is used to contain a blood glucose test solution.
  • a first screw hole 121 is disposed at a front end of the mounting body 12, and a second screw hole 122 is disposed at an end of the mounting body 12.
  • the third screw hole 123 is further disposed at an intermediate position of the frame of the mounting body 12.
  • FIG. 3 is a schematic structural view of a data acquisition jig in the blood glucose data collection device of the present invention.
  • the first screw hole 121 is connected to the water outlet pipe 14 through a double-head screw 11, and the second screw hole 122 is connected to the water inlet pipe 18 through another double-head screw 11.
  • the mounting body 12 further includes a single-headed screw 5 that vertically passes through the frame of the mounting body 12 at an intermediate position of the mounting body 12 and is fixed to the third screw hole 123.
  • the water inlet pipe 18 is also connected to the adjustable speed water pump 17, and the adjustable speed water pump 17 and the outlet pipe 16 are connected, and the outlet pipe 16 is connected to the water outlet pipe 14 through the blood glucose test liquid container 15, thereby forming a water flow circuit.
  • the blood glucose test solution container 15 is filled with a blood glucose test solution.
  • the control device 20 is connected to the transmitting transistor 9 via a first data line 7 and to the receiving tertiary tube 13 via a second data line 19.
  • the data collection jig 50 further includes a water basin 1, a plurality of support legs 2 (for example, four), a bottom plate 3, a plurality of support bars 4 (for example, two), and black.
  • Cloth cover 6 As shown in FIG. 3, the data collection jig 50 further includes a water basin 1, a plurality of support legs 2 (for example, four), a bottom plate 3, a plurality of support bars 4 (for example, two), and black.
  • a plurality of support legs 2 are disposed on the back surface of the bottom plate 3, and the support legs 2 are used to provide support for the bottom plate 3 to be laid flat on the ground floor.
  • the support leg 2 in order to avoid slippage, is a rubber-wrapped support portion. Further, each of the support legs 2 is contoured so that the bottom plate 3 can be smoothly placed on the ground.
  • the support leg 2 is disposed at an edge position of the bottom plate 3.
  • the water basin 1 is placed on the ground and below the back surface of the bottom plate, and is located in a space supported by the support legs 2. Below the third screw hole 123 is the water basin 1.
  • a plurality of struts 4 are disposed on the front surface of the bottom plate 3, and the struts 4 are perpendicular to the front surface of the bottom plate 3.
  • the strut 4 is covered with a black cloth cover 6 to cover the data collection jig 50.
  • the strut 4 is covered with a black cloth cover 6 to cover the data collection jig 50, and a dark room is formed for experiment.
  • the adjustable speed water pump 17 extracts a blood glucose test solution having a preset blood glucose concentration value from the blood glucose test solution container 15, and inputs the extracted blood sugar test liquid into the mounting body 12 through the water inlet pipe 18.
  • the control device 20 activates the adjustable speed water pump 17, and controls the adjustable speed water pump 17 to perform a blood glucose test solution for extracting a preset blood glucose concentration value according to a preset pumping speed.
  • the blood glucose test solution is a glucose solution.
  • the transmitting transistor 9 is configured to emit infrared light of a preset wavelength. Specifically, the control device 20 controls the transmitting transistor 9 to emit infrared light of a preset wavelength, and the infrared light passes through the mounting body.
  • the blood glucose test solution in 12 reaches the receiving transistor 13.
  • the infrared light of the predetermined wavelength is infrared light of 1400 nm. After the infrared light is generated, the blood glucose test solution passing through the transparent plate 10 and the mounting body 12 reaches the receiving transistor 13.
  • the receiving tertiary tube 13 converts the infrared light into a photoelectric signal.
  • the control device 20 is configured to control the receiving tertiary tube 13 to convert the infrared light into a photoelectric signal.
  • the receiving tertiary tube 13 is a photoelectric converter that converts infrared light into a photoelectric signal.
  • the control device 20 is configured to acquire the photoelectric signal, and generate a record including the photoelectric signal and the preset blood glucose concentration value, and save the storage medium (for example, a hard disk) of the control device 20 And other storage media). It should be noted that, if there are a plurality of receiving tertiary tubes 13, and each receiving transistor 13 generates a photoelectric signal, the average photoelectric signals of the plurality of receiving tertiary tubes 13 are calculated, and the control device 20 generates A record comprising the average photoelectric signal and the predetermined blood glucose concentration value.
  • the control device 20 is configured to remind the tester to release the blood glucose test solution of the preset blood glucose concentration value in the mounting body 12, and replace the blood glucose test solution in the blood glucose test solution container 15 with other preset blood glucose concentration values. Blood sugar test solution. It should be noted that the control device 20 reminds the tester by means of light or voice. The tester twists the single-head screw 5 so that the blood glucose test liquid in the mounting body 12 flows into the water basin 1 through the third screw hole 123.
  • the control device 20 is configured to filter out the range of the photoelectric signals corresponding to the range of the normal blood sugar level of the human body from all the records.
  • the photoelectric signal range is used to determine whether blood sugar in the human blood is in a normal range. Specifically, the human blood is input into the mounting body 12 to obtain a photoelectric signal corresponding to the human blood, and if the photoelectric signal corresponding to the human blood is within the photoelectric signal range, the human blood is indicated. The blood glucose level is in the normal range. Otherwise, if the photoelectric signal corresponding to the human blood is not within the photoelectric signal range, it indicates that the blood sugar level of the human blood is in an abnormal range, and the control device 20 reminds the user that the blood sugar is abnormal.
  • the blood glucose data collecting device of the present invention adopts the above technical solution, and achieves the following technical effects: automatically adopting infrared radiation to automatically obtain a photoelectric signal corresponding to a preset blood glucose concentration, and simplify collecting blood glucose.
  • the data process is conducive to the diversification of blood glucose data processing and improves the efficiency of blood glucose data use.

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Abstract

一种血糖数据采集设备(100),包括控制装置(20)及数据采集治具(50),所述控制装置(20)与所述数据采集治具(50)连接;所述数据采集治具(50)包括发射三极管(9)、接收三级管(13)、安装本体(12)及可调速水泵(17),所述可调速水泵(17)与所述导出管(16)连接;所述控制装置(20)与所述发射三极管(9)、接收三级管(13)及可调速水泵(17)连接,所述控制装置(20)通过所述数据采集治具(50)采集血糖数据对应的光电信号。该血糖数据采集设备(100)可以采用红外线照射的方式自动获取预设血糖浓度对应的光电信号,简化采集血糖数据的过程,提高了血糖数据采集的效率。

Description

说明书 发明名称:血糖数据釆集设备
技术领域
[0001] 本实用新型涉及生命健康领域, 尤其涉及一种血糖数据采集设备。
背景技术
[0002] 血清中的糖称为血糖, 绝大多数情况下都是葡萄糖。 体内各组织细胞活动所需 的能量大部分来自葡萄糖, 所以血糖必须保持一定的水平才能维持体内各器官 和组织的需要。 正常人在清晨空腹血糖浓度为 80〜120毫克。 空腹血糖浓度超过 130毫克称为高血糖。 如果血糖浓度超过 160〜180毫克, 就有一部分葡萄糖随尿 排出, 形成糖尿。
[0003] 及吋掌握人体血糖浓度能够及吋预防糖尿病, 然而, 现有血糖数据采集装置仅 仅采集所述血糖浓度, 并没有将所述血糖浓度转换成光电信号。 如此一来, 对 血糖数据的采集过于单一, 不利于血糖数据的处理, 降低了血糖数据的使用效 率。
技术问题
[0004] 本实用新型的主要目的在于提供一种血糖数据采集设备, 旨在解决现有血糖数 据采集装置无法将血糖浓度转换为光电信号而导致血糖数据采集单一的产品缺 陷。
问题的解决方案
技术解决方案
[0005] 为实现上述目的, 本实用新型提供了一种血糖数据采集设备, 该血糖数据采集 设备包括控制装置及数据采集治具, 所述控制装置与所述数据采集治具连接; [0006] 所述数据采集治具包括底板, 该底板上包括两个固定板, 其中, 一个固定板的 表面设置发射三极管, 另一个固定板的表面设置接收三级管;
[0007] 所述两个固定板之间放置安装本体, 所述安装本体的前端还设置第一螺孔, 所 述安装本体的末端设置第二螺孔, 所述第一螺孔通过一个双头螺杆与出水管连 接, 所述第二螺孔通过另外一个双头螺杆与进水管连接; [0008] 所述进水管还与可调速水泵连接, 所述可调速水泵与所述导出管连接, 导出管 通过血糖测试液容器与所述出水管连接, 从而形成一个水流回路, 所述血糖测 试液容器中装有血糖测试液;
[0009] 所述控制装置与所述发射三极管、 接收三级管连接及可调速水泵连接;
[0010] 所述可调速水泵从所述血糖测试液容器中抽取并输入预设血糖浓度值的血糖测 试液至所述安装本体内;
[0011] 所述发射三极管发射预设波长的红外光, 所述红外光穿过所述安装本体内的血 糖测试液到达所述接收三极管; 及
[0012] 所述接收三级管将所述红外光转换成所述预设血糖浓度值对应的光电信号。
[0013] 优选的, 所述固定板为 L形结构, 并垂直于所述底板。
[0014] 优选的, 所述安装本体为中间镂空结构, 所述安装本体的中间位置包括镂空的 空间, 所述镂空的空间两侧由两块透明板封闭, 由封闭后的镂空的空间用于装 有血糖测试液。
优选的, 所述安装本体的边框的中间位置还设置第三螺孔, 所述安装本体还包 括单头螺杆, 该单头螺杆在所述安装本体的中间位置垂直穿过所述安装本体的 边框并固定于所述第三螺孔。
[0016] 优选的, 所述数据采集治具还包括水盆、 支撑脚、 底板、 支杆及黑布罩。
[0017] 优选的, 所述支撑脚设置于所述底板的背面。
[0018] 优选的, 所述支撑脚为橡胶包裹的支撑部。
[0019] 优选的, 所述水盆设置于所述底板背面的下方及所述支撑脚支撑起的空间内。
[0020] 优选的, 所述支杆设置于所述底板的正面, 所述黑布罩覆盖在所述支杆上以遮 住所述数据采集治具。
[0021] 优选的, 所述血糖测试液是葡萄糖液。
发明的有益效果
有益效果
[0022] 相较于现有技术, 本实用新型所述血糖数据采集设备采用了上述技术方案, 达 到了如下技术效果: 采用红外线照射的方式自动获取预设血糖浓度对应的光电 信号, 简化采集血糖数据的过程, 有利于血糖数据处理的多样化, 提高了血糖 数据的使用效率。
对附图的简要说明
附图说明
[0023] 图 1是本实用新型血糖数据采集设备的结构示意图;
[0024] 图 2是本实用新型血糖数据采集设备中安装本体的结构示意图;
[0025] 图 3是本实用新型血糖数据采集设备中数据采集治具的结构示意图。
[0026] 本实用新型目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步说 明。
实施该发明的最佳实施例
本发明的最佳实施方式
[0027] 为更进一步阐述本实用新型为达成上述目的所采取的技术手段及功效, 以下结 合附图及较佳实施例, 对本实用新型的具体实施方式、 结构、 特征及其功效进 行细说明。 应当理解, 本实用新型所描述的具体实施例仅仅用以解释本实用新 型, 并不用于限定本实用新型。
[0028] 参考图 1所示, 图 1是本实用新型血糖数据采集设备较佳实施例的功能架构图。
在本实施例中, 所述血糖数据采集设备 100包括控制装置 20及数据采集治具 50, 所述控制装置 20与所述数据采集治具 50连接。 所述控制装置 20用于控制所述数 据采集治具 50, 以采集血糖数据对应的光电信号。
[0029] 所述数据采集 50治具包括发射三极管 9、 安装本体 12、 接收三级管 13、 血糖测 试液容器 15及可调速水泵 17, 其中, 所述安装本体 12与所述可调速水泵 17连接 , 所述可调速水泵 17与所述血糖测试液容器 15连接, 所述控制装置 20与所述可 调速水泵 17、 发射三极管 9及接收三级管 13连接。
[0030] 具体地说, 所述数据采集治具 50包括底板 3, 该底板 3上包括两个固定板 8。 其 中, 两个固定板 8垂直于所述底板 3, 所述两个固定板 8之间间隔预设距离 (例如 , 3厘米) , 所述两个固定板 8为 L形结构。 进一步地, 一个固定板 8的表面均匀 设置多个发射三极管 9, 另一个固定板 8的表面均匀设置多个接收三级管 13。 所 述发射三级管 9与所述接收三级管 13—一对应, 即一个发射三极管 9对应一个接 收三极管 13, 一个发射三极管 9产生的红外光照射到一个接收三极管 13上。 [0031] 所述两个固定板 8之间放置安装本体 12, 该安装本体 12垂直放置于所述底板 3的 正面。
[0032] 参考图 2所示, 图 2是本实用新型血糖数据采集设备中安装本体的结构示意图。
[0033] 如图 2所示, 所述安装本体 12为中间镂空结构, 其中, 所述安装本体 12的中间 位置包括镂空的空间 120。 所述镂空的空间 120两侧由两块透明板 10 (例如, 聚 碳酸酯透明板或透明玻璃) 封闭, 由封闭后的镂空的空间 120用于装有血糖测试 液。 所述安装本体 12的前端还设置第一螺孔 121, 所述安装本体 12的末端设置第 二螺孔 122, 所述安装本体 12的边框的中间位置还设置第三螺孔 123。
[0034] 参考图 3所示, 图 3是本实用新型血糖数据采集设备中数据采集治具的结构示意 图。
[0035] 进一步地, 如图 1所示, 所述第一螺孔 121通过一个双头螺杆 11与出水管 14连接 , 所述第二螺孔 122通过另外一个双头螺杆 11与进水管 18连接。 所述安装本体 12 还包括单头螺杆 5, 该单头螺杆 5在所述安装本体 12的中间位置垂直穿过所述安 装本体 12的边框并固定于所述第三螺孔 123。 所述进水管 18还与可调速水泵 17连 接, 可调速水泵 17和导出管 16连接, 导出管 16通过血糖测试液容器 15与所述出 水管 14连接, 从而形成一个水流回路, 所述血糖测试液容器 15中装有血糖测试 液。 所述控制装置 20通过第一数据线 7与所述发射三极管 9连接, 并通过第二数 据线 19与接收三级管 13连接。
[0036] 如图 3所示, 所述数据采集治具 50还包括水盆 1、 多个支撑脚 2 (例如, 四个) 、 底板 3、 多个支杆 4 (例如, 两个) 及黑布罩 6。
[0037] 所述底板 3的背面设置多个支撑脚 2, 所述支撑脚 2用于为所述底板 3平放于地面 吋提供支撑。 在本实施例中, 为了避免打滑, 所述支撑脚 2为橡胶包裹的支撑部 。 此外, 每个支撑脚 2等高, 从而使得所述底板 3能够平稳地放置于地面。 所述 支撑脚 2设置于所述底板 3的边缘位置。
[0038] 所述水盆 1放置于地面且位于所述底板背面的下方, 并位于所述支撑脚 2支撑起 的空间内。 所述第三螺孔 123的下方为所述水盆 1。
[0039] 所述底板 3的正面设置多个支杆 4, 所述支杆 4垂直于所述底板 3的正面。 所述支 杆 4上覆盖黑布罩 6以遮住所述数据采集治具 50。 为了防止环境光对血糖测试的 影响, 所述支杆 4上覆盖黑布罩 6以遮住所述数据采集治具 50, 形成暗室进行实 验。
[0040] 所述可调速水泵 17从血糖测试液容器 15中抽取预设血糖浓度值的血糖测试液, 并通过进水管 18将抽取的血糖测试液输入安装本体 12内。 所述控制装置 20启动 所述可调速水泵 17, 并控制所述可调速水泵 17按照预设抽水速度进行抽取预设 血糖浓度值的血糖测试液。 需要说明的是, 所述血糖测试液是为葡萄糖液。
[0041] 所述发射三极管 9用于发射预设波长的红外光, 具体地, 所述控制装置 20控制 所述发射三极管 9发射预设波长的红外光, 所述红外光穿过所述安装本体 12内的 血糖测试液到达所述接收三极管 13。 具体而言, 所述预设波长的红外光为 1400 纳米的红外光。 所述红外光产生后, 穿过所述透明板 10及所述安装本体 12内的 血糖测试液到达所述接收三极管 13。
[0042] 所述接收三级管 13将所述红外光转换成光电信号, 具体地, 所述控制装置 20用 于控制所述接收三级管 13将所述红外光转换成光电信号。 在本实施例中, 所述 接收三级管 13为光电转换器, 该光电转换器可以将红外光转换成光电信号。
[0043] 所述控制装置 20用于获取所述光电信号, 并生成一笔包括所述光电信号与该预 设血糖浓度值的记录, 并保存于所述控制装置 20的存储介质 (例如, 硬盘等存 储介质) 。 需要说明的是, 若所述接收三级管 13为多个, 每个接收三极管 13都 产生一个光电信号, 则计算所述多个接收三级管 13的平均光电信号, 所述控制 装置 20生成一笔包括所述平均光电信号与该预设血糖浓度值的记录。
[0044] 所述控制装置 20用于提醒测试人员放掉所述安装本体 12内的预设血糖浓度值的 血糖测试液, 并在所述血糖测试液容器 15中更换为其它预设血糖浓度值的血糖 测试液。 需要说明的是, 所述控制装置 20通过灯光或语音的方式提醒测试人员 。 所述测试人员拧幵所述单头螺杆 5, 使得所述安装本体 12内的血糖测试液通过 第三螺孔 123流入所述水盆 1内。
[0045] 所述控制装置 20用于从所有记录中筛选出人体正常血糖值的范围所对应的光电 信号范围。 所述光电信号范围用于判断人体血液中的血糖是否处于正常范围。 具体地说, 将人体血液输入到安装本体 12内, 获得该人体血液对应的光电信号 , 若该人体血液对应的光电信号处于所述光电信号范围内, 则表明人体血液的 血糖值处于正常范围。 否则, 若该人体血液对应的光电信号没有处于所述光电 信号范围内, 则表明人体血液的血糖值处于不正常范围, 所述控制装置 20提醒 该用户血糖不正常。
[0046] 以上仅为本实用新型的较佳实施例, 并非因此限制本实用新型的专利范围, 凡 是利用本实用新型说明书及附图内容所作的等效结构或等效功能变换, 或直接 或间接运用在其他相关的技术领域, 均同理包括在本实用新型的专利保护范围 内。
工业实用性
[0047] 相较于现有技术, 本实用新型所述血糖数据采集设备采用了上述技术方案, 达 到了如下技术效果: 采用红外线照射的方式自动获取预设血糖浓度对应的光电 信号, 简化采集血糖数据的过程, 有利于血糖数据处理的多样化, 提高了血糖 数据的使用效率。

Claims

权利要求书
[权利要求 1] 一种血糖数据采集设备, 其特征在于, 该血糖数据采集设备包括控制 装置及数据采集治具, 所述控制装置与所述数据采集治具连接; 所述 数据采集治具包括底板, 该底板上包括两个固定板, 其中, 一个固定 板的表面设置发射三极管, 另一个固定板的表面设置接收三级管; 所 述两个固定板之间放置安装本体, 所述安装本体的前端还设置第一螺 孔, 所述安装本体的末端设置第二螺孔, 所述第一螺孔通过一个双头 螺杆与出水管连接, 所述第二螺孔通过另外一个双头螺杆与进水管连 接; 所述进水管还与可调速水泵连接, 所述可调速水泵与所述导出管 连接, 导出管通过血糖测试液容器与所述出水管连接, 从而形成一个 水流回路, 所述血糖测试液容器中装有血糖测试液; 所述控制装置与 所述发射三极管、 接收三级管连接及可调速水泵连接; 所述可调速水 泵从所述血糖测试液容器中抽取并输入预设血糖浓度值的血糖测试液 至所述安装本体内; 所述发射三极管发射预设波长的红外光, 所述红 外光穿过所述安装本体内的血糖测试液到达所述接收三极管; 及所述 接收三级管将所述红外光转换成所述预设血糖浓度值对应的光电信号 如权利要求 1所述的血糖数据采集设备, 其特征在于, 所述固定板为 L形结构, 并垂直于所述底板。
如权利要求 1所述的血糖数据采集设备, 其特征在于, 所述安装本体 为中间镂空结构, 所述安装本体的中间位置包括镂空的空间, 所述镂 空的空间两侧由两块透明板封闭, 由封闭后的镂空的空间用于装有血 糖测试液。
如权利要求 3所述的血糖数据采集设备, 其特征在于, 所述安装本体 的边框的中间位置还设置第三螺孔, 所述安装本体还包括单头螺杆, 该单头螺杆在所述安装本体的中间位置垂直穿过所述安装本体的边框 并固定于所述第三螺孔。
如权利要求 1所述的血糖数据采集设备, 其特征在于, 所述数据采集 治具还包括水盆、 支撑脚、 底板、 支杆及黑布罩。
[权利要求 6] 如权利要求 5所述的血糖数据采集设备, 其特征在于, 所述支撑脚设 置于所述底板的背面。
[权利要求 7] 如权利要求 6所述的血糖数据采集设备, 其特征在于, 所述支撑脚为 橡胶包裹的支撑部。
[权利要求 8] 如权利要求 5所述的血糖数据采集设备, 其特征在于, 所述水盆设置 于所述底板背面的下方及所述支撑脚支撑起的空间内。
[权利要求 9] 如权利要求 5所述的血糖数据采集设备, 其特征在于, 所述支杆设置 于所述底板的正面, 所述黑布罩覆盖在所述支杆上以遮住所述数据采 集治具。
[权利要求 10] 如权利要求 1至 9任意一项所述的血糖数据采集设备, 其特征在于, 所 述血糖测试液是葡萄糖液。
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