Massager with cardiac resuscitation pressing function and massage table

A cardiac resuscitation and massager technology, applied in operating table, medical science, artificial respiration, etc., can solve the problems of laborious pressing method and missing the best treatment time, and achieve the effect of avoiding left and right shaking, stable work, and alleviating the pain of patients.

Inactive Publication Date: 2018-11-16
高正春
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the face of sudden diseases such as cardiac arrest, it is necessary to perform cardiopulmonary resuscitation immediately. Chest compression is to increase the intrathoracic pressure during cardiopulmonary resuscitation or directly squeeze the heart to generate blood flow. Supplemented with proper ventilation, a considerable amount o

Method used

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  • Massager with cardiac resuscitation pressing function and massage table
  • Massager with cardiac resuscitation pressing function and massage table
  • Massager with cardiac resuscitation pressing function and massage table

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0030] Such as figure 1 As shown, this embodiment provides a massager 2 with the function of cardiopulmonary resuscitation, including a housing 4, a driving mechanism 5 and a pressing part 6. The driving mechanism 5 is located inside the housing 4 and communicates with the first sliding rod 51 The pressing part 6 outside the housing 4 is connected, and the driving mechanism 5 includes a fixed wheel 53 and a sliding wheel 54 passing through the hexagonal shaft 52, and a first transmission wheel 56 and a cam 57 fixed on the first rotating shaft 55. The hexagonal shaft 52 is drivingly connected to the first motor 59 on the side of the fixed wheel 53, the hexagonal shaft 52 is arranged parallel to the first rotating shaft 55, the sliding wheel 54 is engaged with the first transmission wheel 56, and the cam 57 It is arranged at the front end of the first rotating shaft 55 , and the upper end of the first sliding rod 51 is provided with a follower 58 cooperating with the cam 57 .

Embodiment 2

[0032] Such as figure 1 and 4 As shown, this embodiment provides a massager 2 with the function of cardiopulmonary resuscitation, including a housing 4, a driving mechanism 5 and a pressing part 6. The driving mechanism 5 is located inside the housing 4 and communicates with the first sliding rod 51 The pressing part 6 outside the housing 4 is connected, and the driving mechanism 5 includes a fixed wheel 53 and a sliding wheel 54 passing through the hexagonal shaft 52, and a first transmission wheel 56 and a cam 57 fixed on the first rotating shaft 55. The hexagonal shaft 52 is drivingly connected to the first motor 59 on the side of the fixed wheel 53, the hexagonal shaft 52 is arranged parallel to the first rotating shaft 55, the sliding wheel 54 is engaged with the first transmission wheel 56, and the cam 57 It is arranged at the front end of the first rotating shaft 55 , and the upper end of the first sliding rod 51 is provided with a follower 58 cooperating with the cam ...

Embodiment 3

[0034] Such as Figure 2-4 As shown, this embodiment provides a massager 2 with the function of cardiopulmonary resuscitation, including a housing 4, a driving mechanism 5 and a pressing part 6. The driving mechanism 5 is located inside the housing 4 and communicates with the first sliding rod 51 The pressing part 6 outside the housing 4 is connected, and the driving mechanism 5 includes a fixed wheel 53 and a sliding wheel 54 passing through the hexagonal shaft 52, and a first transmission wheel 56 and a cam 57 fixed on the first rotating shaft 55, so The hexagonal shaft 52 is drivingly connected to the first motor 59 on the side of the fixed wheel 53, the hexagonal shaft 52 is arranged parallel to the first rotating shaft 55, the sliding wheel 54 is engaged with the first transmission wheel 56, and the cam 57 It is arranged at the front end of the first rotating shaft 55 , and the upper end of the first sliding rod 51 is provided with a follower 58 cooperating with the cam 5...

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PUM

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Abstract

The invention provides a massager with a cardiac resuscitation pressing function. The massager includes a shell, a drive mechanism and a press part; the drive mechanism is located in the shell and connected with the press part outside the shell through a first slide rod, and the drive mechanism includes a fixed wheel, a sliding wheel, a first transmission wheel and a cam, wherein the fixed wheel and the sliding wheel pass through a six-rowed shaft, and the first transmission and the cam are fixed on a first rotating shaft. The six-rowed shaft is on one side of the fixed wheel and in drive connection with a first motor, the six-rowed shaft is parallel to the first rotating shaft, the sliding wheel is meshed with the first transmission wheel, the cam is arranged at the front end of the firstrotating shaft, and the upper end of the first sliding rod is provided with a driven member cooperated with the cam. The invention further provides a massage table which includes a massage table body, a fixing belt and the massager with the cardiac resuscitation pressing function. According to the scheme, the structure is simple, the automation degree is high, and performance is stable.

Description

technical field [0001] The invention relates to the technical field of medical equipment, in particular to a massager and a massage table with a cardiac resuscitation pressing function. Background technique [0002] In modern society, people's work and life are under great pressure, and they are often in a state of fatigue and sub-health, which in turn leads to various strain diseases of bones, joints, muscles, nerves, various civilized diseases (such as obesity, high blood pressure), and even cardiovascular diseases. Sudden illness. In the face of sudden diseases such as cardiac arrest, it is necessary to perform cardiopulmonary resuscitation immediately. Chest compression is to increase the intrathoracic pressure during cardiopulmonary resuscitation or directly squeeze the heart to generate blood flow. Supplemented with proper ventilation, a considerable amount of oxygen can be provided to the brain or other vital organs for electrical defibrillation. Chest compressions a...

Claims

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Application Information

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IPC IPC(8): A61G13/00A61G13/10A61H31/00
CPCA61G13/009A61G13/10A61H31/00
Inventor 高正春
Owner 高正春
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