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Room A164, Building 9, No. 199 Changjian Road, Baoshan District, Shanghai
Shanghai Jumu Medical Equipment Co., Ltd
Room A164, Building 9, No. 199 Changjian Road, Baoshan District, Shanghai
Artificial respiration emergency resuscitation ball kit assembly point delivery
1、 Equipment composition
The basic configuration of the resuscitation kit for artificial respiration includes:
Resuscitation balloon: a core gas supply component that can automatically return to its original state. It is usually made of materials such as silicone rubber and chloroprene rubber, and is available in different sizes for adults, children, infants, etc.
Inlet valve body: a component that controls the entry of gas into the balloon.
Breathing valve body: Ensure one-way gas flow to prevent patients from exhaling gas and inhaling it again.
Safety valve: prevents patients from being injured due to excessive air pressure.
In addition, the device may also be equipped with the following components:
Gas storage bag: used to store oxygen and increase oxygen supply concentration.
Nasal oxygen tube: connects to an oxygen source to provide oxygen to the patient.
Medical mask: Covering the patient's mouth and nose, establishing a seal to ensure effective gas entry into the patient's airway.
Oral pharyngeal airway: used to keep the patient's airway unobstructed.
Opener: Helps open the patient's mouth for easy insertion of a mask or airway.
Headband: used to secure the face mask and ensure sealing.
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Artificial respiration emergency resuscitation ball kit assembly point delivery
working principle
The artificial respiration resuscitation balloon kit provides positive pressure ventilation by manually squeezing the balloon. When squeezing the balloon, positive pressure is generated inside, causing the intake valve to close and pushing the breathing valve to open. Gas is then delivered into the patient's airway through the central incision of the breathing valve. When releasing the balloon, negative pressure is generated inside, and the breathing valve closes to prevent the patient's exhaled gas from flowing back. At the same time, the intake valve opens to suck oxygen from the gas storage bag into the balloon, allowing it to quickly return to its original state. The patient's exhaled gas is expelled through an independent exhalation valve.