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Optimization of the Neural Muscular Drive and Respiratory Signals under Dead Space Loading and CO_2 Inhalation

机译:死空间负荷下神经肌肉驱动和呼吸信号的优化,CO_2吸入

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In this paper, we simulate the effect of imposed external dead space by examining the optimized neural muscular drive and respiratory signals, including, airflow and lung volume profiles. To study the effect of external dead space loading, the measurement model by Gray is used and human respiratory control simulator based on an optimal respiratory control mechanism is implemented. The respiratory control simulations are performed with external dead space loading (0, 0.4 and 0.8 l) under rest and CO_2 inhalation of 3% to 7%. The waveshaping of both the imposed external dead space and CO_2 inhalation on the respiratory waveforms are studied.
机译:在本文中,我们通过检查优化的神经肌肉驱动和呼吸信号来模拟施加的外部死区的效果,包括气流和肺体积剖面。为研究外部死区加载的影响,利用灰色测量模型,并实现了基于最佳呼吸控制机制的人类呼吸控制模拟器。呼吸控制模拟在静静脉下的外部死空间载荷(0,0.4和0.8L)进行,CO_2吸入为3%至7%。研究了施加在呼吸波形上施加的外部死区和CO_2吸入的波浪。

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