Interactive cardiopulmonary resuscitation teaching assistant device

An interactive and resuscitative technology, which is applied in teaching models, educational tools, and simulation devices for space navigation conditions, etc., can solve the problems of no interactive teaching or practice function, no teaching mode provided, and no "unblocked airway" to achieve Validate the effects of educational outcomes
CN107945601AInactive Publication Date: 2018-04-20曾繁治 +1

Patent Information

Authority / Receiving Office
CN · China
Current Assignee / Owner
曾繁治
Publication Date
2018-04-20
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention discloses an interactive cardiopulmonary resuscitation teaching assistant device. The device comprises a CPR (cardiopulmonary resuscitation) human body operation platform and a CPR interactive teaching module which are wirelessly connected with each other through Bluetooth; the CPR human body operation platform may include a human body model unit, a plurality of sensing element unitsand a central processing unit; and the CPR interactive teaching module includes a wireless transmission unit and an interactive interface unit. A user can independently operate the device at the absence of the aid of professionals; the user can practice cardiopulmonary resuscitation repeatedly fast, accurately and skillfully with vivid and easy-to-understand videos, clear prompts and immediatelyfed back operation data; and the device can be set to be a teaching, practice or exam mode, so as to truly verify educational results.
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Description

technical field

[0001] The invention relates to an interactive cardiopulmonary resuscitation teaching aid device. Background technique

[0002] Knowing the previous case, please refer to the teaching system and method of "cardiopulmonary resuscitation" No. 103100652 in Taiwan, China, which includes an audio-visual input module, an image processing module, a guidance module, and an output module; wherein the image input module is used for detection and capture Get the dynamic image of the user when performing the chest compression step to generate a plurality of state image signals; the image processing module is coupled to the image input module to receive and process the obtained state image signals, and after performing analysis and calculation, these state images are processed The signal is converted into a posture signal, and then the posture signal is integrated and transformed into a trajectory signal; the guidance module is coupled to the image processing module, and ...

Claims

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