Trachea cannula capable of monitoring air bag pressure automatically

An automatic monitoring and tracheal intubation technology, applied in the field of medical devices, can solve problems such as prolonged indwelling time, large surgical trauma, and catheter indwelling failure, and achieve the effects of reducing related infection complications, reducing work intensity, and improving safety

Inactive Publication Date: 2016-01-13
THE PEOPLES HOSPITAL SHAANXI PROV
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  • Summary
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AI Technical Summary

Problems solved by technology

And some patients have poor cardiopulmonary function and a lot of respiratory secretions, which will prolong the indwelling time
It is also possible to take a neck tracheotomy and intubation so that the indwelling time can be longer, but this operation is traumatic and difficult to care for
Although endotracheal intubation initially solved the dif

Method used

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  • Trachea cannula capable of monitoring air bag pressure automatically

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Embodiment Construction

[0017] In order to make the objectives and advantages of the present invention clearer, the present invention will be further described in detail below in conjunction with embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention, but not to limit the present invention.

[0018] Such as figure 1 As shown, the embodiment of the present invention provides a tracheal intubation capable of automatically monitoring the pressure of a balloon, which includes a tube body 1, an inflatable cuff 2, an inflation tube 3, and an indicating balloon 4, and one end of the tube body 1 is used for breathing The machine end 5 is connected to the machine, and the other end is the patient end 6. An inflatable cuff 2 connected to the tube 1 is provided on the side close to the patient end 6, and the inflation tube 3 is connected to the inflatable cuff 2, indicating that the balloon 4 and The inflatable tube 3 is connected, and th...

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Abstract

The invention discloses a trachea cannula capable of monitoring air bag pressure automatically. The trachea cannula is made of antibacterial materials integrally. The tip portion of a patient end of the trachea cannula is formed by flexible body materials, namely soft PVC (polyvinyl chloride), a thin-film pressure sensor is mounted on the inner wall of an inflatable cuff, an air bag pressure monitor is connected to an inflating tube through a three-way tube, a Bluetooth module is mounted in each of the thin-film pressure sensor and the air bag pressure monitor, and the thin-film pressure sensor and the air bag pressure monitor are wirelessly communicated with a mobile terminal through the Bluetooth modules. The trachea cannula capable of monitoring the air bag pressure automatically has the advantages that the tip portion is made of the soft PVC material coated with antibacterial coatings internally and externally, so that inappropriate compression of the patient end on tissues of a human body is avoided during use of the trachea cannula, damage to human organ mucosae is reduced, and related infectious complications during tracheal catheter indwelling can be reduced; since the thin-film pressure sensor and the air bag pressure monitor are used for detecting the air bag pressure in real time, use safety is improved; the mobile terminal can obtain pressure detection data in real time.

Description

Technical field [0001] The invention relates to the field of medical equipment, in particular to a tracheal intubation capable of automatically monitoring the pressure of a balloon. Background technique [0002] Tracheal intubation is suitable for the establishment of artificial airways for patients in clinical practice, for the implementation of mechanical ventilation, surgical anesthesia, or cardiopulmonary resuscitation. The size and stability of the airbag on the tracheal intubation determine the success of the respiratory function support technology. The airtightness of the tracheal intubation and the patient's airway is the key to the positive pressure ventilation of the ventilator and the prevention of aspiration of oropharyngeal secretions. Over-inflated airbags will compress the tracheal tissues and cause ulcers or airbag ruptures. Under-inflation will cause air leakage and affect the operation of the ventilator or aspiration. At present, when most medical staff use th...

Claims

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Application Information

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IPC IPC(8): A61M16/04A61M25/10A61L29/10
Inventor 张华丽王媛杨烨赵小红郭维
Owner THE PEOPLES HOSPITAL SHAANXI PROV
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