Efficiency evaluation system for noninvasive ventilation equipment

A technology of ventilation equipment and evaluation system, applied in the direction of educational appliances, instruments, teaching models, etc., can solve the problems of patients' discomfort, aggravate local force, affect the comfort of non-invasive ventilation, etc., and achieve the effect of improving authenticity

Inactive Publication Date: 2017-01-11
BEIHANG UNIV
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  • Abstract
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AI Technical Summary

Problems solved by technology

However, due to various factors such as technical limitations, design, and individual differences, some non-invasive ventilation equipment may make patients feel uncomfortable during ventilation
In the process of non-invasive ventilation, the user needs to wear the interface device of the non-invasive ventilation equipment on the head and face. To ensure the ventilation effect, the fixing belt of the interface device usually needs to be tightened, which will generate local pressure on the h

Method used

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  • Efficiency evaluation system for noninvasive ventilation equipment
  • Efficiency evaluation system for noninvasive ventilation equipment
  • Efficiency evaluation system for noninvasive ventilation equipment

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Embodiment Construction

[0056] The specific implementation manners of the present invention will be further described in detail below in conjunction with the accompanying drawings.

[0057] Such as figure 1 As shown, the present invention provides a non-invasive ventilation equipment ergonomics evaluation system 01, the system includes a human body three-dimensional head model 09, a simulated trachea 05, an active simulated lung 07 and a processing unit 08, one end of the simulated trachea 05 and a three-dimensional head model 09 The internal oral and nasal passages are connected, and the other end is connected with the active simulated lung 07; the three-dimensional head model 09 includes a three-layer structure, which is a hard skeleton layer 02, a pressure sensor layer 03 and an elastic coating layer 04 from the inside to the outside. . A flow sensor 06 is provided on the simulated trachea 05, which can detect the actual ventilation volume entering the active simulated lung. The pressure sensor ...

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Abstract

The invention relates to an efficiency evaluation system for noninvasive ventilation equipment. The system comprises a human three-dimensional head model, a simulated trachea, an active simulated lung and a processing unit, wherein one end of the simulated trachea is communicated with a month-nose channel in the three-dimensional head model, and the other end is communicated with the active simulated lung; the three-dimensional head model comprises a hard skeleton layer, a pressure sensor layer and an elastic cladding in sequence from inside to outside; a flow sensor for detecting actual flow entering the active simulated lung is arranged on the simulated trachea; the pressure sensor layer, the flow sensor and the active simulated lung are all communicated with the processing unit. The efficiency evaluation system for noninvasive ventilation equipment evaluates the comfort and the ventilation effectiveness when human face wears the noninvasive ventilation equipment in combination with the three-dimensional anatomic structure feature of human head and the real breathing condition of lungs, and finally evaluates the efficiency of the equipment, thereby providing a help for setting and ventilation mode of the noninvasive ventilation equipment.

Description

technical field [0001] The invention belongs to the field of equipment detection, and in particular relates to a non-invasive ventilation equipment work efficiency evaluation system, which is used to detect the comfort of the head and face and the effectiveness of ventilation of the wearer of the non-invasive ventilation equipment during use. Background technique [0002] Non-invasive ventilation is an effective means of life protection and disease treatment. In clinical practice, the incidence of respiratory diseases is increasing year by year, and the proportion of respiratory diseases such as chronic obstructive pulmonary disease and sleep apnea syndrome continues to increase. Non-invasive ventilation has become an effective treatment method. For high-altitude flight protection, non-invasive positive pressure ventilation is required to ensure the oxygen supply of the pilot's body. Many users need long-term non-invasive ventilation for life support and chronic disease tre...

Claims

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Application Information

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IPC IPC(8): G09B23/28
CPCG09B23/28
Inventor 乔惠婷李一鸣赵清李德玉丁立
Owner BEIHANG UNIV
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