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The Effect of mechanical resistive loading on optimal respiratory signals and breathing patterns under added dead space and CO2 breathing

机译:在增加的死区和CO2呼吸下,机械阻力负荷对最佳呼吸信号和呼吸方式的影响

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Current study aims to investigate how the respiratory resistive loading affects the behaviour of the optimal chemical-mechanical respiratory control model, the respiratory signals and breathing pattern are optimized under external dead space loading and CO2 breathing. The respiratory control was modelled to include a neuro-muscular drive as the control output to derive the waveshapes of instantaneous airflow, lung volume profiles, and breathing pattern, including total/alveolar ventilation, breathing frequency, tidal volume, inspiratory/expiratory duration, duty cycle, and arterial CO2 pressure. The simulations were performed under various respiratory resistive loads, including no load, inspiratory resistive load, expiratory resistive load, and continuous resistive load. The dead space measurement was described with Gray’s derivation, and simulation results were studied and compared with experimental findings.
机译:当前的研究旨在调查呼吸阻力负荷如何影响最佳化学机械呼吸控制模型的行为,在外部死空间负荷和CO2呼吸下优化呼吸信号和呼吸方式。对呼吸控制进行建模,包括神经肌肉驱动作为控制输出,以得出瞬时气流,肺容量分布和呼吸模式的波形,包括总/肺泡通气,呼吸频率,潮气量,吸气/呼气时间,工作量循环和动脉CO2压力。在各种呼吸阻力负荷下进行了仿真,包括无负荷,吸气阻力负荷,呼气阻力负荷和连续阻力负荷。用Gray推导描述了死区测量,并研究了模拟结果并将其与实验结果进行了比较。

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