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Open image in new window Figure 11 Seal pressure, leakage and film thickness curves versus time.
Open image in new window Figure 7 Seal pressure, leakage rate and film thickness curves vs time.
The variation tendency of film thickness and leakage rate of CS-DGS during the change of seal pressure and rotational speed is shown in Figure 11.
It can be seen that when the seal pressure increased higher than 0.30 MPa, the seal faces open suddenly and the film thickness and leakage rate increase obviously.
As a first step, the seal pressure increased from 0 up to 0.4 MPa, and then the seal faces maintained an open state with a film thickness of 3.2 μm and leakage rate of 0.6 L/min when the seal pressure reached a steady value of 0.4 MPa.
In order to study the change of film thickness and leakage rate of CS-DGS as seal pressure and rotational speed change, the seal pressure and rotational speed are adjusted to from 0 to 0.4 MPa and from 0 to 8000 r/min, respectively.
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The cuff is designed to provide higher seal pressures than the LMA-Classic or Unique™.
This study compared the performance of air-Q with i-gel regarding airway seal pressures and ease of intubation for better function.
When compared with the Classic™ laryngeal mask airway (cLMA), the recently introduced ProSeal™ laryngeal mask airway (PLMA) has modified features to produce higher airway seal pressures and enable ventilation in circumstances where the cLMA might fail.
The seal pressures (TWP) are presented in Table 1.
The remaining three devices exhibited significantly lower seal pressures: p < 0.001 (Table 3).
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