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Convexity Jensens inequality and benefits of noisy mechanical ventilation

机译:凸性詹森不等式和嘈杂的机械通气的好处

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摘要

Mechanical ventilators breathe for you when you cannot or when your lungs are too sick to do their job. Most ventilators monotonously deliver the same-sized breaths, like clockwork; however, healthy people do not breathe this way. This has led to the development of a biologically variable ventilator—one that incorporates noise. There are indications that such a noisy ventilator may be beneficial for patients with very sick lungs. In this paper we use a probabilistic argument, based on Jensen's inequality, to identify the circumstances in which the addition of noise may be beneficial and, equally important, the circumstances in which it may not be beneficial. Using the local convexity of the relationship between airway pressure and tidal volume in the lung, we show that the addition of noise at low volume or low pressure results in higher mean volume (at the same mean pressure) or lower mean pressure (at the same mean volume). The consequence is enhanced gas exchange or less stress on the lungs, both clinically desirable. The argument has implications for other life support devices, such as cardiopulmonary bypass pumps. This paper illustrates the benefits of research that takes place at the interface between mathematics and medicine.
机译:当您不能呼吸或肺部不适而无法工作时,机械呼吸机会为您呼吸。大多数呼吸机单调地进行相同大小的呼吸,例如发条。但是,健康的人不会这样呼吸。这导致了生物可变呼吸机的发展,这种呼吸机具有噪声。有迹象表明,这种嘈杂的呼吸机可能对肺部非常不适的患者有益。在本文中,我们使用基于詹森不等式的概率论来确定添加噪声可能是有益的情况,而同样重要的是,噪声可能没有好处的情况同样重要。使用肺中气道压力与潮气量之间的关系的局部凸度,我们表明,在低音量或低压下添加噪声会导致较高的平均体积(在相同的平均压力下)或较低的平均压力(在相同的压力下)平均音量)。结果是增强的气体交换或减少的肺部压力,这在临床上都是希望的。该论点对其他生命支持设备(例如心肺旁路泵)有影响。本文阐述了在数学和医学之间的接口上进行研究的好处。

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