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In ARDS patients, it was recently shown that a long period during which inspired tidal gas is in contact with resident alveolar gas, mean distribution time, MDT, as well as a high end inspiratory flow, EIF, immediately before interruption of inspiration augment exchange of C02 by reduction of airway and alveolar dead space.
An additional concept was that related to mean distribution time, which is particularly important at high respiratory rates.
By incorporating the concept of mean distribution time in the simulation, this factor was brought under control.
Mean distribution time (MDT) and end-inspiratory flow (EIF) influence of CO2 exchange, as expressed with a simple equation.
This time is expressed in terms of mean distribution time (MDT), which is the time available for distribution and diffusion of inspired tidal gas within resident alveolar gas.
TI, TP, and SHAPE affect mean distribution time (MDT), that is, time available for distribution and diffusion of inspired tidal gas with resident alveolar gas [ 6- 8].
Similar(46)
On the up-sloping roofs, this pressure pattern is observed in the time-averaged mean distribution as well as during the occurrence instant of a peak total uplifting force on the roof.
The numerical results, which include the statistical properties of pollutant dispersion, e.g. mean concentration distributions, time-evolution and three-dimensional spreads of the pollutant, are then compared to wind-tunnel (WT) measurements.
The quantities, like residence time distribution, mean residence time, cumulative distribution function, variance and skewness, are used to characterize the configuration under investigation.
Finally, the probability of catastrophic failure is estimated based on the histogram of (pre-fault) control command distributions, mean time between failure of the individual servos, and missed detection and false alarm rates.
The mixing characteristics of the GLR have been investigated by measuring the mean residence time distribution and the recirculation ratio.
Related(20)
average distribution time
mean diffusion time
mean allocation time
mean retention time
mean germination time
mean panel time
mean residence time
mean distribution catch
mean response time
mean distribution width
mean distribution v
mean transit time
mean survival time
mean distribution volume
mean distribution {mu
mean dissolution time
mean catheterization time
mean time time
mean distribution pattern
mean circulation time
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