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A micropore plugging detection method and system, blood cell analyzer

A detection system and detection method technology, applied in the medical field, can solve problems such as high misjudgment rate, and achieve the effect of accurate and effective judgment

Active Publication Date: 2017-03-15
CHENGDU SHEN MINDRAY MEDICAL ELECTRONICS TECH RES INST +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the voltage at both ends of the micropore is greatly affected by factors such as the conductivity of the solution, temperature, liquid flow, and the physical parameters of the micropore itself. Using this method to determine whether the hole is blocked will have a very high misjudgment rate.

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  • A micropore plugging detection method and system, blood cell analyzer
  • A micropore plugging detection method and system, blood cell analyzer
  • A micropore plugging detection method and system, blood cell analyzer

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Embodiment Construction

[0062] The present invention first accurately collects the voltage at both ends of the micropore of the medical device, and then analyzes its change characteristics, detects whether the voltage signal has a sudden change and combines the moment of the sudden change, thereby eliminating the influence of external factors, and can accurately detect micropore blockage hole. The implementation process of the present invention will be described in detail below.

[0063] It should be noted that the medical equipment mentioned in the present invention can be a blood cell analyzer, or other medical equipment with micropores for detection, as long as the detection principle is to pass cells through the micropores under pressure. The resistance between the electrodes changes, so that a pulse signal proportional to the size of the cell is formed at both ends of the electrode, and the present invention is applicable to the detection of such micropores.

[0064] Take the blood analyzer as an ex...

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Abstract

The invention provides a micro hole blocking detection method, a micro hole blocking detection system and a blood cell analyzer. The system includes a micro hole voltage extraction circuit which is connected with positive and negative electrodes at two sides of a micro hole of medical equipment and is used for acquiring voltage signals between the positive and negative electrodes and recording a micro hole voltage curve formed by a plurality of voltage signals, and a micro hole voltage characteristic analysis module which is connected with the micro hole voltage extraction circuit and is used for performing characteristic analysis on the voltage signals on the micro hole voltage curve and identifying whether the voltage signals mutate, and detecting whether the micro hole is blocked or not based on a time point of mutation occurrence when the micro hole voltage characteristic analysis module identifies that the voltage signals mutate. With the micro hole blocking detection method, the micro hole blocking detection system and the blood cell analyzer provided by the embodiment of the invention adopted, whether the voltage signals mutate can be accurately judged, and therefore, whether the micro hole is blocked or not can be detected based a time point of mutation occurrence.

Description

Technical field [0001] The invention relates to the field of medical technology, in particular to a method and system for detecting micropore blockage of medical equipment, and a blood cell analyzer. Background technique [0002] Hematology analyzers use Coulter's principle to count and group blood cells. There is a small opening in the counting cell of the analyzer called a micropore. Such as figure 1 As shown, there are a pair of positive and negative electrodes on both sides of the microhole, connected to a constant current power supply. Because cells are poor conductors of electricity, when the cells in the diluted sample pass through the detection micropore under pressure, the resistance between the electrodes changes, thereby forming a pulse signal proportional to the size of the cell at both ends of the electrode. The number of pulses is equivalent to the number of cells passing through the micropores, and the amplitude of the pulses is proportional to the volume of the ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01M3/40G01N15/12
Inventor 许华明邹嘉宇
Owner CHENGDU SHEN MINDRAY MEDICAL ELECTRONICS TECH RES INST
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