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The above requirements and considerations have led to the development of a tactile interaction device based on pressure variations.
In the following sections of this paper the design and preliminary experimental validation of a tactile HMI device, based on pressure variations, will be presented.
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The experiments based on pressure variation due to the hydrogen absorption in a stirred batch reactor point out clearly an increase of k1a at an optimum catalyst loading.
Gas liquid mass transfer in gas induced stirred reactors has been investigated by the method of physical absorption, based on pressure variation.
Hemodynamic management of critically ill patients in the ICU or high-risk patients in the operating room has paradoxically shown progress in terms of outcome after the systematic application of volume responsiveness/flow optimization based on pulse pressure variation and/or stroke volume variation during controlled, positive-pressure ventilation in patients without spontaneous respiratory efforts.
In our study, the use of the fluid protocol based on pulse pressure variation assessed using continuous non-invasive arterial pressure measurement seems to be associated with a reduction in postoperative complications and transfusion needs as compared to standard no-protocol treatment.
In conclusion, in our study the transition from standard no-protocol treatment to the fluid management protocol based on pulse pressure variation assessed by continuous non-invasive arterial pressure measurement seems to be associated with reduction of postoperative infections, of organ complications, and of transfusion needs.
We hypothesized that using a treatment algorithm based on pulse pressure variation, cardiac index trending by radial artery pulse contour analysis, and mean arterial pressure in a study group (SG), would result in reduced complications, reduced length of hospital stay and quicker return of bowel movement postoperatively in abdominal surgical patients, when compared to a control group (CG).
Goal-directed fluid therapy (GDFT) based on pulse pressure variation (PPV) was used in anaesthetized dogs undergoing abdominal surgeries.
In their study of goal directed fluid management based on pulse pressure variation monitoring during high risk surgery, they demonstrate a spectacular improvement in outcome using their monitoring and fluid management strategy.
A minimum sample size of 8 in the cadaveric study was calculated to achieve sufficient power (> 80%) based on published pressure variation data (Parsch et al. 2004) and assuming a 100 mmHg difference in the obtained median pole pressures between flanged and unflanged cups.
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