Surgical nursing anesthesia equipment for rapidly treating anesthesia accidents
An accident and surgery technology, applied in the direction of respirator, breathing mask, etc., can solve the problems of misoperation, cumbersome, increased risk of respiratory arrest patients, etc., to achieve the effect of easy implementation, simple structure, and avoiding further deterioration of accidents
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Embodiment 1
[0032] Such as figure 1 As shown, the main body of this embodiment is a breathing mask 3, and the breathing mask 3 is used to form a breathing zone 8 between the back of the patient's face and the patient's nose and mouth. In order to ensure the sealing of the breathing area 8 and prevent the anesthesia gas passing into the breathing area 8 and the components of the anesthetic gas in the patient's exhalation from escaping and diffusing from the breathing area 8, the breathing mask 3 in this embodiment is also provided with an elastic fixing belt 1 and sealing strip 2. The breathing mask 3 is buckled and fixed on the patient's head through the elastic fixing band 1 to avoid falling off, and the sealing strip 2 is used to maintain the isolation state of the breathing zone 8 from the outside atmosphere.
[0033] The breathing mask 3 is sequentially provided with an oxygen tube 4 inserted into the breathing zone 8 , an anesthesia tube 5 , a suction tube 6 and a waste gas tube 7 f...
Embodiment 2
[0045] The technical solution of this embodiment is basically the same as that of Embodiment 1, so no detailed description of the drawings is provided. The difference from Embodiment 1 is that the anesthesia stoma 16 corresponding to the oxygen tube 4 in this embodiment is set on the anesthesia trachea 5 The anesthesia stomata 16 corresponding to the suction tube 6 are closer to the position of the breathing zone 8, and the anesthesia stomata 16 corresponding to the suction tube 6 are longer in length. Through the above technical solution, the respiratory arrest recorded in Example 1 is driven by the pressure pump to move the third piston 29 to the left, the air suction actuator first slides out from the corresponding anesthesia air hole 16 and the air suction end cover is opened first 22. The oxygen actuator rod 30 slides out from the corresponding anesthesia gas hole 16 and then opens the oxygen end cover 13. Through the above arrangement, the elastic negative pressure ball ...
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