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谢菲尔德护理作业代写:心脏稳定
2019-10-31 01:41
这种保持心脏稳定的新方法通过给病人第二次生存的机会来改变病人的生活,因此有一些因素需要考虑,以确保身体其他器官的安全。像血液流动这样的事情,是应该仔细检查的一部分(绿色,2011)。心脏的血流可以通过超声波观察到。当心脏收缩,血液进出心脏时,血流监测仪发出高频声波。这些高频不仅可以通过超声波观察到,而且可以通过物理方程的数学来理解。最重要的一点是,临时的全人工心脏必须能够使它的血液流动适应个人的活动。例如,如果病人正在慢跑,肺部将需要更多的含氧血细胞,这意味着血液流动必须更快。在其他情况下,当病人休息时,由于没有进行任何身体活动,肺部也不需要额外的氧气,血液流动就会减慢。通过物理数学,利用下面的流量方程可以帮助计算和理解血液流动。谢菲尔德护理作业代写:心脏稳定
As this new approach to keeping a stable heart transforms patients’ lives by giving them a second chance to live, there are factors regarding the TAH that need to be considered tomato sure that the other organs in the body are kept safe. Things like blood flow, are a part of which should be carefully examined (Green, 2011). Blood flow of the heart can be observed through an ultrasound. As the heart contracts and blood is passing in and out of the heart, the blood flow monitor emits sound waves at high frequencies. Not only can these high frequencies be observed through the ultrasound, but it can also be understood through the mathematics of physics equations. One of the most crucial things is that the temporary Total Artificial Heart must be able to do it adapt its blood flow to the individual’s activity. For instance, if the patient is jogging the lungs will require more oxygenated blood cells, meaning the blood flow must be quicker. In other cases, when the patient is resting and the blood flow will slow down because no physical activity is being done and the lungs are not in need of an extra amount of oxygen. Through the mathematics of physics, using the following equations of flow rate can help to calculate and understand the blood flow
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