WO2017107641A1 - 血糖测试数据采集系统及方法 - Google Patents

血糖测试数据采集系统及方法 Download PDF

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Publication number
WO2017107641A1
WO2017107641A1 PCT/CN2016/103040 CN2016103040W WO2017107641A1 WO 2017107641 A1 WO2017107641 A1 WO 2017107641A1 CN 2016103040 W CN2016103040 W CN 2016103040W WO 2017107641 A1 WO2017107641 A1 WO 2017107641A1
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WIPO (PCT)
Prior art keywords
control device
blood glucose
pressure
glucose test
pressure value
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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.)
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PCT/CN2016/103040
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English (en)
French (fr)
Inventor
张贯京
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Shenzhen Qianhai AnyCheck Information Technology Co Ltd
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Shenzhen Qianhai AnyCheck Information Technology Co Ltd
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Publication of WO2017107641A1 publication Critical patent/WO2017107641A1/zh
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    • 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
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2201/00Features of devices classified in G01N21/00
    • G01N2201/06Illumination; Optics
    • G01N2201/061Sources

Definitions

  • the present invention relates to the field of life health, and in particular, to a blood glucose test data acquisition system and method.
  • 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.
  • the conventional blood glucose test data is obtained by detecting a component in a blood glucose test solution (for example, glucose solution) (for example, a blood glucose test paper, or a blood glucose device of a hospital), and the detection device detects each time.
  • a blood glucose test solution for example, glucose solution
  • a blood glucose test paper for example, a blood glucose test paper, or a blood glucose device of a hospital
  • the detection device detects each time.
  • Contact with the blood glucose test solution destroys the composition of the blood glucose test solution and reduces the accuracy of the blood glucose test data.
  • the main object of the present invention is to provide a blood glucose test data acquisition system and method, which aim to solve the problem of inaccurate data in the existing blood glucose test data detection method.
  • the present invention provides a blood glucose test data collection system, the system comprising: a control device and a data collection jig, wherein the control device is connected to the data collection jig;
  • the data acquisition jig includes a pressure adjusting device, a mounting body, a transmitting triode, and a receiving triode, wherein the pressure adjusting device is connected to the mounting body, and the pressure adjusting device, the transmitting triode and the receiving triode are connected.
  • the control device To the control device;
  • control device is configured to set a preset number of pressure values, and control the pressure of the pressure adjusting device to apply a preset pressure value to the mounting body;
  • control device is configured to control the transmitting transistor to emit infrared light of a preset wavelength, and the infrared light passes through the blood glucose test liquid in the installation body to reach the receiving transistor;
  • control device is configured to control the receiving transistor to convert the infrared light into an electrical signal
  • control device is configured to acquire the electrical signal, and generate a record including the electrical signal and the pressure value
  • control device is configured to control the pressure adjustment device to adjust a pressure value to the installation body to acquire an electrical signal at the pressure value
  • control device is configured to generate a pressure value report corresponding to the blood glucose test solution according to the record.
  • the data collection fixture comprises a bottom plate, and two fixing plates are disposed on the bottom plate, and the mounting body is placed between the two fixing plates.
  • the surface of one of the fixing plates on the bottom plate is provided with the transmitting triode, and the surface of the other fixing plate is provided with the receiving triode.
  • the mounting body is an intermediate hollow structure, wherein the intermediate position of the mounting body comprises a hollow space, and the two sides of the hollow space are closed by two transparent plates, which are closed by two transparent plates.
  • the space is filled with blood glucose test solution.
  • the pressure adjusting device is disposed on two sides of the two transparent plates.
  • the adjusting screw fixing block is a hollow structure, the adjusting screw passes through the adjusting screw fixing block and is in contact with the transparent plate, and the adjusting screw is used for adjusting the application to the transparent plate.
  • Pressure value is a hollow structure, the adjusting screw passes through the adjusting screw fixing block and is in contact with the transparent plate, and the adjusting screw is used for adjusting the application to the transparent plate.
  • the scale is disposed between the adjusting screw fixing block and the adjusting screw, and the scale is provided with a plurality of scales, and each scale value on the scale corresponds to a pressure value, The scale value can obtain the pressure value that the adjustment screw applies to the transparent plate.
  • the present invention also provides a blood glucose test data collection method, which is applied to blood sugar test
  • the system 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 pressure adjusting device, a mounting body, a transmitting transistor, and a receiving transistor, wherein the pressure adjusting device is connected to the mounting body, and the pressure adjusting device, the transmitting transistor and the receiving transistor are connected To the control device, the method includes the following steps:
  • control device sets a preset number of pressure values, and controls a pressure at which the pressure adjusting device applies a preset pressure value to the mounting body;
  • control device controls the transmitting transistor to emit infrared light of a preset wavelength, and the infrared light passes through the blood glucose test liquid in the installation body to reach the receiving transistor;
  • control device controls the receiving transistor to convert the infrared light into an electrical signal
  • control device acquires the electrical signal from the receiving triode and generates a record including the electrical signal and the pressure value
  • control device controls the pressure adjustment device to adjust a pressure value to the mounting body to acquire an electrical signal at the pressure value
  • control device When all of the preset number of pressure values are tested, the control device generates a pressure value report corresponding to the blood glucose test solution according to the record.
  • FIG. 1 is a schematic plan view showing the structure of a blood glucose test data acquisition system of the present invention
  • FIG. 2 is a schematic plan view showing a planar structure of a mounting body in a blood glucose test data acquisition system of the present invention
  • FIG. 4 is a flow chart of a preferred embodiment of the blood glucose test data collection method of the present invention.
  • FIG. 1 is a schematic plan view showing a preferred embodiment of a blood glucose test data acquisition system of the present invention.
  • the blood glucose test data collection system 100 includes an outlet pipe 6, a adjustable speed water pump 7, an inlet pipe 10, a control device 15, and a data collection jig 50, wherein the adjustable speed water pump 7 and the The data acquisition fixture 50 is connected.
  • the control device 15 is coupled to the data acquisition fixture 50.
  • the control device 15 is configured to control the data collection fixture 50 to collect blood glucose test data.
  • the data collection jig 50 includes a variable speed water pump 7, a bottom plate 8, a mounting body 9, a transmitting transistor 11 and a receiving transistor 12.
  • the installation body 9 is connected to the adjustable speed water pump 7 through an outlet pipe 6 and an inlet pipe 10, and the adjustable speed water pump 7, the transmitting transistor 11 and the receiving transistor 12 are connected to the control device 15.
  • the outlet pipe 6, the adjustable speed water pump 7, and the inlet pipe 10 may be omitted.
  • Two fixing plates 4 are disposed on the bottom plate 8.
  • the two fixing plates 4 are perpendicular to the bottom plate 8, and the two fixing plates 4 are spaced apart by a predetermined distance (for example, 3 cm), and the fixing plate 4 has an L-shaped structure.
  • a plurality of emitter transistors 11 are uniformly disposed on the surface of one fixed plate 4, and a plurality of receiving transistors 12 are uniformly disposed on the surface of the other fixed plate 4.
  • the transmitting transistor 11 corresponds to the receiving transistor 12, that is, one transmitting transistor 11 corresponds to one receiving transistor 12, and infrared light generated by one transmitting transistor 11 is irradiated onto a receiving transistor 12.
  • the transmitting transistor 11 and the receiving transistor 12 are both connected to the control device 15.
  • FIG. 2 is a schematic plan view showing the mounting body of the blood glucose test data acquisition system of the present invention.
  • the mounting body 9 is an intermediate hollow structure, wherein the middle position of the mounting body 9
  • the space includes a hollow space 90.
  • the hollow space 90 is closed on both sides by two transparent plates 5 (for example, a polycarbonate transparent plate or a transparent glass), and a space enclosed by the two transparent plates 5 is used for containing a blood glucose test solution.
  • a first screw hole 91 is disposed at a front end of the mounting body 9.
  • a second screw hole 92 is disposed at an end of the mounting body 9.
  • a third screw hole 93 is further disposed at an intermediate position of the frame of the mounting body 9.
  • the mounting body 9 further includes a single-head screw (not shown in FIG.
  • the single-head screw passes through the mounting body 9 and is fixed to the third screw hole 93, and the single-head screw is twisted.
  • the blood glucose test solution in the mounting body 9 can be discharged from the third screw hole 93.
  • the first screw hole 91 is connected to the water outlet pipe 6 (for example, by a double-headed screw), and the second screw hole 92 is connected to the water inlet pipe 10 by (for example, another double-headed screw).
  • the first screw hole 91 and the second screw hole 92 are also omitted.
  • the bottom plate 8 is further provided with a pressure adjusting device, and the pressure adjusting device is disposed on both sides of the two transparent plates 5 and connected to the transparent plate 5.
  • the pressure adjusting device is for pressing the transparent plate 5.
  • the pressure adjusting means can adjust the pressure value with the transparent plate 5.
  • the pressure adjusting device includes an adjusting screw 1 , a scale 2 and an adjusting screw fixing block 3 which are disposed on both sides of the two transparent plates 5 .
  • the adjusting screw fixing block 3 is a hollow structure, and the adjusting screw 1 passes through the adjusting screw fixing block 3 and is in contact with the transparent plate 5.
  • the adjusting screw 1 is used for adjusting a pressure value applied to the transparent plate 5, specifically, the adjusting screw 1 is moved toward the transparent plate 5 to press the transparent plate 5, and the adjusting screw 1 The pressure applied to the transparent plate 5 is increased, and if the adjusting screw 1 is moved in the opposite direction to the transparent plate 5 to loose the transparent plate 5, the adjusting screw 1 is applied to the transparent plate 5 The pressure is reduced.
  • the adjusting screw 1 is a step screw, and the scale 2 is disposed between the adjusting screw fixing block 3 and the adjusting screw 1.
  • the scale 2 is provided with a plurality of scales, and each scale value on the scale 2 corresponds to A pressure value by which the pressure value applied by the adjusting screw 1 to the transparent plate 5 can be obtained. Furthermore, the adjusting screw 1 is connected to the control device 15.
  • FIG. 3 is a schematic diagram showing the planar structure of a data acquisition jig in the blood glucose test data acquisition system of the present invention.
  • the inlet pipe 10 is connected to the adjustable speed water pump 7, and the adjustable speed water pump 7 and the outlet pipe 6 are connected to form a a water flow circuit 7 for twitching the blood glucose test solution in the mounting body 9 to flow the blood glucose test solution.
  • the control device 15 is connected to the transmitting transistor 11 via a first data line 14 and to the receiving transistor 12 via a second data line 13.
  • the test is performed in a dark room, for example, the data collection jig 50 is covered with a black cloth cover to form a dark room.
  • control device 15 is configured to control the adjustable speed water pump 7 to extract the blood glucose test solution, so that the blood glucose test solution is in a flowing state.
  • the control device 15 activates the adjustable speed water pump 7 and controls the adjustable speed water pump 7 to cause the blood glucose test solution to flow in the mounting body 9 according to a preset pumping speed. status.
  • the blood glucose test solution is a glucose solution
  • the blood glucose level in the glucose solution is the same as the blood sugar level in the human blood. That is to say, blood glucose test data is collected by simulating blood to the human body by the glucose solution.
  • the control device 15 controls the pressure regulating device to apply a pressure of a preset pressure value to the mounting body 9.
  • the control device 15 controls the transmitting transistor 11 to emit infrared light of a preset wavelength, and the infrared light passes through the blood glucose test liquid in the mounting body 9 to reach the receiving transistor 12.
  • 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 5 and the mounting body 9 reaches the receiving transistor 12.
  • the control device 15 is configured to control the receiving transistor 12 to convert the infrared light into an electrical signal.
  • the receiving transistor 12 is a photoelectric converter that can convert an optical signal into an electrical signal.
  • the control device 15 is configured to generate a record including the electrical signal and the preset pressure value, and save the storage medium (for example, a storage medium such as a hard disk) of the control device 15. It should be noted that, if there are multiple receiving transistors 12, and each receiving transistor 12 generates an electrical signal, the control device 15 calculates an average electrical signal of the plurality of receiving transistors 12, and generates a stroke including Recording of the average electrical signal and the preset pressure value.
  • the storage medium for example, a storage medium such as a hard disk
  • the control device 15 is configured to adjust a pressure value applied to the transparent plate 5 by the pressure adjusting device . It should be noted that the control device 15 controls the adjusting screw 1 to adjust the pressure value applied to the transparent plate 5.
  • the control device 15 is configured to generate a pressure value report corresponding to the blood glucose test solution according to the record. Specifically, when the pressure value corresponds to an electrical signal after the test is completed, the record has a plurality of records, and all the records are integrated to generate a pressure value report corresponding to the blood glucose test solution.
  • the pressure value report corresponding to the blood glucose test solution includes blood glucose test solution concentration values, a preset number of pressure values, and an electrical signal corresponding to each pressure value. It should be noted that the concentration value of the blood glucose test solution has been determined and input to the control device 15 before the test is started.
  • the present invention also provides a blood glucose test data collection method.
  • FIG. 4 is a flow chart of a preferred embodiment of the blood glucose test data collection method of the present invention.
  • the blood glucose test data acquisition method is applied to the blood glucose test data collection system shown in FIG. 1, and the method includes the following steps:
  • Step S10 The control device 15 sets a preset number (for example, three hundred) of pressure values, and controls the pressure adjusting device to apply a preset pressure value to the mounting body 9. Specifically, set three hundred pressure values from fifty Newtons to three hundred and fifty Newtons. The control device 15 controls the adjustment screw 1 to apply a predetermined pressure value (e.g., fifty Newtons) to the transparent plate 5 of the mounting body 9.
  • a preset number for example, three hundred
  • the control device 15 controls the adjustment screw 1 to apply a predetermined pressure value (e.g., fifty Newtons) to the transparent plate 5 of the mounting body 9.
  • Step S11 The control device 15 controls the transmitting transistor 11 to emit infrared light of a preset wavelength, and the infrared light passes through the blood glucose test solution in the mounting body 9 to reach the receiving transistor 12.
  • Step S12 The control device 15 controls the receiving transistor 12 to convert the infrared light into an electrical signal.
  • Step S13 The control device 15 acquires the electrical signal and generates a record including the electrical signal and the pressure value.
  • Step S14 The control device 15 determines whether the preset number of pressure values are all tested. If the predetermined number of pressure values are not tested, the flow proceeds to step S15. If the predetermined number of pressure values are all tested, the flow proceeds to step S16. Specifically, if the preset number of tests has not been reached (for example, three hundred times), the flow advances to step S15. Otherwise, if the preset number of tests is reached (for example, three hundred times), the flow advances to step S16. When the test is completed, the control device 15 acquires multiple records. , wherein each record includes an electrical signal and a record of a preset blood glucose concentration value.
  • Step S15 The control device 15 controls the pressure adjusting device to adjust the pressure value to the mounting body 9, and then the flow returns to the step S11.
  • Step S16 The control device 15 generates a pressure value report corresponding to the blood glucose test solution according to the record.
  • the record has a plurality of records, and all the records are integrated to generate a pressure value report corresponding to the blood glucose test solution.
  • the blood pressure test solution corresponding to the blood glucose test solution includes blood glucose test solution concentration values, a preset number of pressure values, and an electrical signal corresponding to each pressure value.
  • the blood glucose test data acquisition system and method of the present invention adopts the above technical solution, and achieves the following technical effects: automatically obtaining blood glucose test data by using infrared light irradiation under pressure state, Improve the accuracy of blood glucose test data collection.

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Abstract

一种血糖测试数据采集系统及方法,该系统包括:控制设备(15)及数据采集治具(50),所述控制设备(15)用于控制所述采集治具(50)以获得血糖测试数据。所述数据采集治具(50)发射预设波长的红外光以穿过血糖测试液;所述数据采集治具(50)将所述红外光转换成电信号;所述控制设备(15)获取所述电信号,并生成一笔包括所述电信号与该压力值的记录;当所述预设数量的压力值全部测试完成,所述控制设备(15)生成血糖测试液对应的压力值报告。该系统在压力状态下通过采用红外光照射的方式自动获取血糖测试数据,提高了血糖测试数据采集的准确性。

Description

发明名称:血糖测试数据釆集系统及方法
技术领域
[0001] 本发明涉及生命健康领域, 尤其涉及一种血糖测试数据采集系统及方法。
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。
[0003] 及吋掌握人体血糖浓度能够及吋预防糖尿病, 一般而言, 由于个体的差异, 为 了确保血糖浓度的准确性, 获得血糖浓度后需要与血糖测试数据进行比较以判 断血糖浓度是否合格。
[0004] 然而, 以往的血糖测试数据是通过对血糖测试液 (例如, 葡萄糖液) 中的成分 进行检测 (例如, 血糖试纸、 或医院的血糖设备) 来得到, 而所述检测设备每 一次检测要与血糖测试液接触, 破坏了血糖测试液的成分, 降低了血糖测试数 据的准确性。
技术问题
[0005] 本发明的主要目的在于提供一种血糖测试数据采集系统及方法, 旨在解决现有 的血糖测试数据检测方式中数据不准确的问题。
问题的解决方案
技术解决方案
[0006] 为实现上述目的, 本发明提供了一种血糖测试数据采集系统, 该系统包括: 控 制设备及数据采集治具, 所述控制设备与所述数据采集治具连接;
[0007] 所述数据采集治具包括压力调节装置、 安装本体、 发射三极管、 接收三极管, 其中, 所述压力调节装置与所述安装本体连接, 所述压力调节装置、 发射三极 管及接收三极管均连接至所述控制设备;
[0008] 所述控制设备用于设置预设数量的压力值, 并控制所述压力调节装置对所述安 装本体施加一个预设压力值的压力; [0009] 所述控制设备用于控制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;
[0010] 所述控制设备用于控制所述接收三极管将所述红外光转换成电信号;
[0011] 所述控制设备用于获取所述电信号, 并生成一笔包括所述电信号与该压力值的 记录;
[0012] 所述控制设备用于控制所述压力调节装置调整对所述安装本体的压力值, 以在 该压力值下获取电信号; 及
[0013] 当所述预设数量的压力值全部测试完成, 所述控制设备用于根据所述记录生成 血糖测试液对应的压力值报告。
[0014] 优选的, 所述数据采集治具包括底板, 所述底板上设置两个固定板, 所述两个 固定板之间放置所述安装本体。
[0015] 优选的, 所述底板上其中一个固定板的表面设置所述发射三极管, 另一个固定 板的表面设置所述接收三极管。
[0016] 优选的, 所述安装本体为中间镂空结构, 其中, 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, 由两块透明板封闭的空 间装有血糖测试液。
[0017] 优选的, 所述压力调节装置设置于所述两块透明板的两侧。
[0018] 优选的, 所述压力调节装置包括设置于所述两块透明板两侧的调节螺丝及调节 螺丝固定块。
[0019] 优选的, 所述调节螺丝固定块为中空结构, 所述调节螺丝穿过所述调节螺丝固 定块并与所述透明板接触, 所述调节螺丝用于调节施加于所述透明板的压力值
[0020] 优选的, 所述调节螺丝固定块与所述调节螺丝之间设置所述刻度尺, 该刻度尺 上设置多个刻度, 所述刻度尺上每个刻度值对应一个压力值, 通过所述刻度值 可以获得所述调节螺丝施加给所述透明板的压力值。
[0021] 优选的, 所述控制设备通过第一数据线与所述发射三极管连接, 并通过第二数 据线与所述接收三极管连接。
[0022] 另一方面, 本发明还提供一种血糖测试数据采集方法, 该方法应用于血糖测试 数据采集系统中, 该系统包括控制设备及数据采集治具, 所述控制设备与所述 数据采集治具连接;
[0023] 所述数据采集治具包括压力调节装置、 安装本体、 发射三极管、 接收三极管, 其中, 所述压力调节装置与所述安装本体连接, 所述压力调节装置、 发射三极 管及接收三极管均连接至所述控制设备, 该方法包括如下步骤:
[0024] 所述控制设备设置预设数量的压力值, 并控制所述压力调节装置对所述安装本 体施加一个预设压力值的压力;
[0025] 所述控制设备控制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;
[0026] 所述控制设备控制所述接收三极管将所述红外光转换成电信号;
[0027] 所述控制设备从所述接收三极管获取所述电信号, 并生成一笔包括所述电信号 与该压力值的记录;
[0028] 所述控制设备控制所述压力调节装置调整对所述安装本体的压力值, 以在该压 力值下获取电信号; 及
[0029] 当所述预设数量的压力值全部测试完成, 所述控制设备根据所述记录生成血糖 测试液对应的压力值报告。
发明的有益效果
有益效果
[0030] 相较于现有技术, 本发明所述血糖测试数据采集系统及方法采用了上述技术方 案, 达到了如下技术效果: 在压力状态下通过采用红外光照射的方式自动获取 血糖测试数据, 提高了血糖测试数据采集的准确性。
对附图的简要说明
附图说明
[0031] 图 1是本发明血糖测试数据采集系统的平面结构示意图;
[0032] 图 2是本发明血糖测试数据采集系统中安装本体的平面结构示意图;
[0033] 图 3是本发明血糖测试数据采集系统中数据采集治具的平面结构示意图;
[0034] 图 4是本发明血糖测试数据采集方法的较佳实施例的流程图。
[0035] [0036] 本发明目的的实现、 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
[0037] 为更进一步阐述本发明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, 对本发明的具体实施方式、 结构、 特征及其功效进行详细说 明。 应当理解, 本发明所描述的具体实施例仅仅用以解释本发明, 并不用于限 定本发明。
[0038] 参考图 1所示, 图 1是本发明血糖测试数据采集系统较佳实施例的平面结构示意 图。 在本实施例中, 所述血糖测试数据采集系统 100包括出水管 6、 可调速水泵 7 、 进水管 10、 控制设备 15及数据采集治具 50, 其中, 所述可调速水泵 7与所述数 据采集治具 50连接。 所述控制设备 15与所述数据采集治具 50连接。 所述控制设 备 15用于控制所述数据采集治具 50, 以采集血糖测试数据。
[0039] 所述数据采集治具 50包括可调速水泵 7、 底板 8、 安装本体 9、 发射三极管 11及 接收三极管 12。 其中, 所述安装本体 9通过出水管 6及进水管 10与所述可调速水 泵 7连接, 所述可调速水泵 7、 发射三极管 11及接收三极管 12均与所述控制设备 1 5连接。 在其它实施例中, 所述出水管 6、 可调速水泵 7及进水管 10可以省略。
[0040] 所述底板 8上设置两个固定板 4。 其中, 两个固定板 4垂直于所述底板 8, 所述两 个固定板 4之间间隔预设距离 (例如, 3厘米) , 所述固定板 4为 L形结构。 进一 步地, 一个固定板 4的表面均匀设置多个发射三极管 11, 另一个固定板 4的表面 均匀设置多个接收三极管 12。 所述发射三极管 11与所述接收三极管 12—一对应 , 即一个发射三极管 11对应一个接收三极管 12, 一个发射三极管 11产生的红外 光照射到一个接收三极管 12上。 所述发射三极管 11及接收三极管 12均与所述控 制设备 15连接。
[0041] 所述两个固定板 4之间放置安装本体 9, 该安装本体 9垂直放置于所述底板 8的正 面。
[0042] 参考图 2所示, 图 2是本发明血糖测试数据采集系统中安装本体的平面结构示意 图。
[0043] 如图 2所示, 所述安装本体 9为中间镂空结构, 其中, 所述安装本体 9的中间位 置包括镂空的空间 90。 所述镂空的空间 90两侧由两块透明板 5 (例如, 聚碳酸酯 透明板或透明玻璃) 封闭, 由两块透明板 5封闭的空间用于装有血糖测试液。 所 述安装本体 9的前端还设置第一螺孔 91, 所述安装本体 9的末端设置第二螺孔 92 , 所述安装本体 9的边框的中间位置还设置第三螺孔 93。 此外, 所述安装本体 9 还包括单头螺杆 (图 2中未示出) , 该单头螺杆穿过所述安装本体 9并固定于所 述第三螺孔 93, 拧幵所述单头螺杆, 则可以将所述安装本体 9内的血糖测试液从 所述第三螺孔 93排出。 进一步地, 所述第一螺孔 91 (例如, 通过一个双头螺杆 ) 与出水管 6连接, 所述第二螺孔 92通过 (例如, 另外一个双头螺杆) 与进水管 10连接。 在其它实施例中, 若所述出水管 6、 可调速水泵 7及进水管 10省略, 则 第一螺孔 91、 第二螺孔 92也省略。
[0044] 进一步地, 如图 1所示, 所述底板 8上还设置压力调节装置, 所述压力调节装置 设置于所述两块透明板 5的两侧, 并与所述透明板 5连接。 所述压力调节装置用 于挤压所述透明板 5。 在本实施例中, 所述压力调节装置可以调节与透明板 5的 压力值。
[0045] 在本实施例中, 所述压力调节装置包括设置于所述两块透明板 5两侧的调节螺 丝 1、 刻度尺 2及调节螺丝固定块 3。 其中, 所述调节螺丝固定块 3为中空结构, 所述调节螺丝 1穿过所述调节螺丝固定块 3并与所述透明板 5接触。 所述调节螺丝 1用于调节施加于所述透明板 5的压力值, 具体地说, 所述调节螺丝 1向所述透明 板 5方向移动以挤压所述透明板 5, 则所述调节螺丝 1施加给所述透明板 5的压力 增大, 若所述调节螺丝 1向所述透明板 5相反方向移动以松幵所述透明板 5, 则所 述调节螺丝 1施加给所述透明板 5的压力减少。 所述调节螺丝 1是台阶螺丝, 所述 调节螺丝固定块 3与所述调节螺丝 1之间设置刻度尺 2, 该刻度尺 2上设置多个刻 度, 所述刻度尺 2上每个刻度值对应一个压力值, 通过所述刻度值可以获得所述 调节螺丝 1施加给所述透明板 5的压力值。 此外, 所述调节螺丝 1与所述控制设备 15连接。
[0046] 参考图 3所示, 图 3是本发明血糖测试数据采集系统中数据采集治具的平面结构 示意图。
[0047] 所述进水管 10与可调速水泵 7连接, 可调速水泵 7和出水管 6连接, 从而形成一 个水流回路, 所述可调速水泵 7用于抽动所述安装本体 9中的血糖测试液以使所 述血糖测试液流动。
[0048] 所述控制设备 15通过第一数据线 14与所述发射三极管 11连接, 并通过第二数据 线 13与接收三极管 12连接。
[0049] 为了防止环境光对血糖测试的影响, 所述测试在暗室中进行, 例如, 所述数据 采集治具 50上覆盖黑布罩以形成暗室。
[0050] 此外, 所述控制设备 15用于控制所述可调速水泵 7抽取血糖测试液, 以使所述 血糖测试液处于流动状态。
[0051] 具体地说, 所述控制设备 15启动所述可调速水泵 7, 并控制所述可调速水泵 7按 照预设抽水速度使得所述血糖测试液在所述安装本体 9内处于流动状态。 需要说 明的是, 所述血糖测试液是为葡萄糖液, 该葡萄糖液中的血糖值与人体血液中 的血糖值相同。 也就是说, 通过所述葡萄糖液来模拟对人体血液从而实行采集 血糖测试数据。
[0052] 所述控制设备 15控制所述压力调节装置以对所述安装本体 9施加预设压力值的 压力。
[0053] 所述控制设备 15控制所述发射三极管 11发射预设波长的红外光, 所述红外光穿 过所述安装本体 9内的血糖测试液到达所述接收三极管 12。 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 5及所 述安装本体 9内的血糖测试液到达所述接收三极管 12。
[0054] 所述控制设备 15用于控制所述接收三极管 12将所述红外光转换成电信号。 在本 实施例中, 所述接收三极管 12为光电转换器, 该光电转换器可以将光信号转换 成电信号。
[0055] 所述控制设备 15用于生成一笔包括所述电信号与该预设压力值的记录, 并保存 于所述控制设备 15的存储介质 (例如, 硬盘等存储介质) 。 需要说明的是, 若 所述接收三极管 12为多个, 每个接收三极管 12都产生一个电信号, 则所述控制 设备 15计算所述多个接收三极管 12的平均电信号, 并生成一笔包括所述平均电 信号与该预设压力值的记录。
[0056] 所述控制设备 15用于通过所述压力调节装置调整施加给所述透明板 5的压力值 。 需要说明的是, 所述控制设备 15控制所述调节螺丝 1调整施加给所述透明板 5 的压力值。
[0057] 所述控制设备 15用于根据所述记录生成血糖测试液对应的压力值报告。 具体地 说, 当测试完成后, 每个压力值对应一个电信号, 则所述记录有多笔, 对所有 记录进行整合以生成血糖测试液对应的压力值报告。 所述血糖测试液对应的压 力值报告包括血糖测试液的浓度值、 预设数量的压力值、 及每个压力值对应的 电信号等血糖测试数据。 需要说明的是, 所述血糖测试液的浓度值在测试幵始 之前就已经确定并输入至所述控制设备 15中。
[0058] 本发明还提供了一种血糖测试数据采集方法。
[0059] 如图 4所示, 图 4是本发明血糖测试数据采集方法的较佳实施例的流程图。 在本 实施例中, 所述血糖测试数据采集方法应用于如图 1所示的血糖测试数据采集系 统中, 该方法包括以下步骤:
[0060] 步骤 S10: 所述控制设备 15设置预设数量 (例如, 三百个) 的压力值, 并控制 所述压力调节装置对所述安装本体 9施加一个预设压力值的压力。 具体地说, 设 置从五十牛顿到三百五十牛顿之间三百个压力值。 所述控制设备 15控制所述调 节螺丝 1对所述安装本体 9的透明板 5施加一个预设压力值 (例如, 五十牛顿) 的 压力。
[0061] 步骤 S11 : 所述控制设备 15控制所述发射三极管 11发射预设波长的红外光, 所 述红外光穿过所述安装本体 9内的血糖测试液到达所述接收三极管 12。
[0062] 步骤 S12: 所述控制设备 15控制所述接收三极管 12将所述红外光转换成电信号
[0063] 步骤 S13: 所述控制设备 15获取所述电信号, 并生成一笔包括所述电信号与该 压力值的记录。
[0064] 步骤 S14: 所述控制设备 15判断所述预设数量的压力值是否全部测试完成。 若 所述预设数量的压力值没有测试完成, 流程进入步骤 S15。 若所述预设数量的压 力值全部测试完成, 流程进入步骤 S16。 具体地说, 若没有到达预设测试次数 ( 例如, 三百次) , 则流程进入步骤 S15。 否则, 若达到预设测试次数 (例如, 三 百次) , 则流程进入步骤 S16。 当测试完成吋, 所述控制设备 15获取了多笔记录 , 其中, 每笔记录包括一个电信号与一个预设血糖浓度值的记录。
[0065] 步骤 S15: 所述控制设备 15控制所述压力调节装置调整对所述安装本体 9的压力 值, 之后流程返回步骤 Sl l。
[0066] 步骤 S16: 所述控制设备 15根据所述记录生成血糖测试液对应的压力值报告。
具体地说, 当测试完成后, 每个压力值对应一个电信号, 则所述记录有多笔, 对所有记录进行整合以生成血糖测试液对应的压力值报告。 所述血糖测试液对 应的压力值报告包括血糖测试液的浓度值、 预设数量的压力值、 及每个压力值 对应的电信号等血糖测试数据。
[0067] 以上仅为本发明的较佳实施例, 并非因此限制本发明的专利范围, 凡是利用本 发明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, 均同理包括在本发明的专利保护范围内。
工业实用性
[0068] 相较于现有技术, 本发明所述血糖测试数据采集系统及方法采用了上述技术方 案, 达到了如下技术效果: 在压力状态下通过采用红外光照射的方式自动获取 血糖测试数据, 提高了血糖测试数据采集的准确性。

Claims

权利要求书
[权利要求 1] 一种血糖测试数据采集系统, 其特征在于, 该系统包括: 控制设备及 数据采集治具, 所述控制设备与所述数据采集治具连接; 所述数据采 集治具包括压力调节装置、 安装本体、 发射三极管、 接收三极管, 其 中, 所述压力调节装置与所述安装本体连接, 所述压力调节装置、 发 射三极管及接收三极管均连接至所述控制设备; 所述控制设备用于设 置预设数量的压力值, 并控制所述压力调节装置对所述安装本体施加 一个预设压力值的压力; 所述控制设备用于控制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; 所述控制设备用于控制所述接收三极管将所述红 外光转换成电信号; 所述控制设备用于获取所述电信号, 并生成一笔 包括所述电信号与该压力值的记录; 所述控制设备用于控制所述压力 调节装置调整对所述安装本体的压力值, 以在该压力值下获取电信号 ; 及当所述预设数量的压力值全部测试完成, 所述控制设备用于根据 所述记录生成血糖测试液对应的压力值报告。
[权利要求 2] 如权利要求 1所述的血糖测试数据采集系统, 其特征在于, 所述数据 采集治具包括底板, 所述底板上设置两个固定板, 所述两个固定板之 间放置所述安装本体。
[权利要求 3] 如权利要求 2所述的血糖测试数据采集系统, 其特征在于, 所述底板 上其中一个固定板的表面设置所述发射三极管, 另一个固定板的表面 设置所述接收三极管。
[权利要求 4] 如权利要求 2所述的血糖测试数据采集系统, 其特征在于, 所述安装 本体为中间镂空结构, 其中, 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, 该封闭的空间装有血糖 测试液。
[权利要求 5] 如权利要求 4所述的血糖测试数据采集系统, 其特征在于, 所述压力 调节装置设置于所述两块透明板的两侧。
[权利要求 6] 如权利要求 5所述的血糖测试数据采集系统, 其特征在于, 所述压力 调节装置包括设置于所述两块透明板两侧的调节螺丝及调节螺丝固定 块。
如权利要求 6所述的血糖测试数据采集系统, 其特征在于, 所述调节 螺丝固定块为中空结构, 所述调节螺丝穿过所述调节螺丝固定块并与 所述透明板接触, 所述调节螺丝用于调节施加于所述透明板的压力值 如权利要求 6所述的血糖测试数据采集系统, 其特征在于, 所述调节 螺丝固定块与所述调节螺丝之间设置所述刻度尺, 该刻度尺上设置多 个刻度, 所述刻度尺上每个刻度值对应一个压力值, 通过所述刻度值 可以获得所述调节螺丝施加给所述透明板的压力值。
如权利要求 1所述的血糖测试数据采集系统, 其特征在于, 所述控制 设备通过第一数据线与所述发射三极管连接, 并通过第二数据线与所 述接收三极管连接。
一种血糖测试数据采集方法, 其特征在于, 该方法应用于血糖测试数 据采集系统中, 该系统包括控制设备及数据采集治具, 所述控制设备 与所述数据采集治具连接; 所述数据采集治具包括压力调节装置、 安 装本体、 发射三极管、 接收三极管, 其中, 所述压力调节装置与所述 安装本体连接, 所述压力调节装置、 发射三极管及接收三极管均连接 至所述控制设备, 该方法包括如下步骤: 所述控制设备设置预设数量 的压力值, 并控制所述压力调节装置对所述安装本体施加一个预设压 力值的压力; 所述控制设备控制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; 所述控制设备控制所述接收三极管将所述红外光转换成电信号; 所述控制设备从所述接收三极管获取所述电信号, 并生成一笔包括所 述电信号与该压力值的记录; 所述控制设备控制所述压力调节装置调 整对所述安装本体的压力值, 以在该压力值下获取电信号; 及当所述 预设数量的压力值全部测试完成, 所述控制设备根据所述记录生成血 糖测试液对应的压力值报告。
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CN205209954U (zh) * 2015-11-28 2016-05-04 深圳市前海安测信息技术有限公司 血糖数据采集设备
CN105433953A (zh) * 2015-11-28 2016-03-30 深圳市前海安测信息技术有限公司 基于光电信号的血糖数据采集系统及方法
CN105784591A (zh) * 2015-12-26 2016-07-20 深圳市前海安测信息技术有限公司 血糖测试数据采集系统及方法
CN205246522U (zh) * 2015-12-26 2016-05-18 深圳市前海安测信息技术有限公司 血糖测试数据采集设备

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6149588A (en) * 1998-12-25 2000-11-21 Mitsui Mining & Smelting Co., Ltd. Blood sugar value measuring method and apparatus
CN1420350A (zh) * 2001-11-16 2003-05-28 清华大学 智能微损血糖仪测量方法及其装置
CN101605493A (zh) * 2006-09-25 2009-12-16 格鲁夫设备有限公司 三个二极管的光桥系统
CN103076307A (zh) * 2012-12-28 2013-05-01 北京汇冠触摸技术有限公司 一种透光率检测装置
CN105784591A (zh) * 2015-12-26 2016-07-20 深圳市前海安测信息技术有限公司 血糖测试数据采集系统及方法

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6149588A (en) * 1998-12-25 2000-11-21 Mitsui Mining & Smelting Co., Ltd. Blood sugar value measuring method and apparatus
CN1420350A (zh) * 2001-11-16 2003-05-28 清华大学 智能微损血糖仪测量方法及其装置
CN101605493A (zh) * 2006-09-25 2009-12-16 格鲁夫设备有限公司 三个二极管的光桥系统
CN103076307A (zh) * 2012-12-28 2013-05-01 北京汇冠触摸技术有限公司 一种透光率检测装置
CN105784591A (zh) * 2015-12-26 2016-07-20 深圳市前海安测信息技术有限公司 血糖测试数据采集系统及方法

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