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Method for rapidly detecting ion concentration in sweat

A technology of ion concentration and detection method, which is applied in the direction of measuring devices, instruments, scientific instruments, etc., can solve the problems of dehydration and fatigue of athletes who cannot respond in real time, cannot detect ion concentration in real time, and the detection results lag, etc., to achieve water absorption and removal The effect of strong ability, large detection amount and small detection error

Active Publication Date: 2018-01-26
ARMY MEDICAL UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] At present, the general method for detecting sodium and potassium ions in human sweat is to use sweat stickers or sweat collection bags to collect the sweat first, and then use ion analysis equipment to detect the ion concentration in the sweat, but in this way If it is very troublesome, and the detection takes a certain time, it will lead to a lag in the detection results, and it cannot detect the ion concentration in the sweat secreted by the human body in real time, and cannot reflect the dehydration and fatigue of the exerciser in real time. Therefore, there is an urgent need for a A kind of detection method of rapid detection ion concentration in sweat

Method used

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Embodiment 1

[0035] A detection method for quickly detecting ion concentration in sweat, comprising a sweat ion detection device, the detection device includes a casing 1 and a power supply 12, the surface of the casing 1 is provided with an electronic display screen 2 and a sweat absorption layer 3, the sweat absorption layer One side of 3 is rotatably connected with a rotating shaft 7, which is connected with a micro-motor 8, and a sweat sensor is installed on the peripheral surface of the rotating shaft 7, and the sweat sensor is electrically connected with an information collector 9, and the rotating shaft 7 is far away from the other peripheral surface of the sweat sensor. A sweat collection box 10 is provided, and a sweat removal layer 11 is housed in the sweat collection box 10, and the sweat removal layer 11 cooperates with the sweat sensor in a gap; a sodium electrode 4, a potassium electrode 5, a reference electrode 6, a micromotor 8, an information collector 9 and The electronic ...

Embodiment 2

[0047] A detection method for quickly detecting ion concentration in sweat, comprising a sweat ion detection device, the detection device includes a casing 1 and a power supply 12, the surface of the casing 1 is provided with an electronic display screen 2 and a sweat absorption layer 3, the sweat absorption layer One side of 3 is rotatably connected with a rotating shaft 7, which is connected with a micro-motor 8, and a sweat sensor is installed on the peripheral surface of the rotating shaft 7, and the sweat sensor is electrically connected with an information collector 9, and the rotating shaft 7 is far away from the other peripheral surface of the sweat sensor. A sweat collection box 10 is provided, and a sweat removal layer 11 is housed in the sweat collection box 10, and the sweat removal layer 11 cooperates with the sweat sensor in a gap; a sodium electrode 4, a potassium electrode 5, a reference electrode 6, a micromotor 8, an information collector 9 and The electronic ...

Embodiment 3

[0064] A detection method for quickly detecting ion concentration in sweat, comprising a sweat ion detection device, the detection device includes a casing 1 and a power supply 12, the surface of the casing 1 is provided with an electronic display screen 2 and a sweat absorption layer 3, the sweat absorption layer One side of 3 is rotatably connected with a rotating shaft 7, which is connected with a micro-motor 8, and a sweat sensor is installed on the peripheral surface of the rotating shaft 7, and the sweat sensor is electrically connected with an information collector 9, and the rotating shaft 7 is far away from the other peripheral surface of the sweat sensor. A sweat collection box 10 is provided, and a sweat removal layer 11 is housed in the sweat collection box 10, and the sweat removal layer 11 cooperates with the sweat sensor in a gap; a sodium electrode 4, a potassium electrode 5, a reference electrode 6, a micromotor 8, an information collector 9 and The electronic ...

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Abstract

The invention discloses a method for rapidly detecting ion concentration in sweat. Before usage, deionized water is used for cleaning a sweat adsorption layer, and a sweat removing layer is placed ina sweat collection box; before sporting, the surface of skin is covered with the sweat adsorption layer, and after skin perspiration, sweat is absorbed and collected; when a sweat sensor and the sweatadsorption layer are contacted, ion detection is carried out on the sweat of the sweat adsorption layer by the sweat sensor, the sweat is attached on the sweat sensor, a rotating shaft drives the sweat sensor to continuously rotate, and when the sweat sensor is rotated to contact with the sweat removing layer, and the sweat removing layer is capable of absorbing the sweat attached on the sweat sensor. During sporting, detection is carried out on the sweat generated by a sporter in a real-time mode, motion adjusting and electrolyte supplement are timely prompted to the sporter, and body damagedue to body electrolyte loss by copious sweating can be avoided for the sporter.

Description

technical field [0001] The invention relates to the technical field of human body secretion detection methods, in particular to a detection method for rapidly detecting ion concentration in sweat. Background technique [0002] When the human body is exercising, due to the increased heat production in the body, the sweat glands in the skin of various parts of the human body will secrete sweat, especially the forehead, neck, front and back of the trunk, waist, back of the hands and forearms and other parts; The temperature in the human body emits heat, and at the same time, it can also take away a small amount of garbage produced by the human body due to exercise. The main component of sweat is water, and some electrolytes are mixed in the water. These electrolytes are mainly sodium ions and chloride ions, and generally there are a small amount of potassium and calcium. Under long-term exercise, the sodium content in the lost sweat is generally the most, and the loss of sodiu...

Claims

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Application Information

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IPC IPC(8): G01N27/403
Inventor 易龙糜漫天张乾勇张婷陈卡秦玉
Owner ARMY MEDICAL UNIV
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