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首页> 外文期刊>Journal of applied physiology >Sustained preinspiratory cortical potentials during prolonged inspiratory threshold loading in humans.
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Sustained preinspiratory cortical potentials during prolonged inspiratory threshold loading in humans.

机译:在人类长期吸气阈值负荷过程中持续的吸气前皮质电位。

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Humans can program and control movements, including breathing-related movements. On the electroencephalogram (EEG), this preparation is accompanied by a low-amplitude negativity starting approximately 2.5 s before inspiration that is best known as a Bereitschaftspotential (BP). The presence of BPs has been described during the compensation of mechanical inspiratory loading, thus identifying a cortical involvement in the corresponding ventilatory behavior. The pathophysiological interpretation of this cortical involvement depends on its transient or enduring nature. This study addressed this issue by looking for BPs during sustained inspiratory loading (1 h). Nine healthy male volunteers were studied during unloaded quiet breathing and inspiratory threshold loading (with unloaded expiration). Analyses of EEG signal and ventilatory variables were used to compare beginning and end of sessions. Inspiratory threshold loading caused ventilatory modifications that persisted, unchanged, for an hour. The presence of a BP at the beginning and end of a session was the most frequent occurrence (6 of 9 cases with a 17-cmH2O threshold load; 8 of 9 cases with a 23-cmH2O load). These observations support the hypothesis that the cerebral cortex is involved in the compensation of sustained experimental inspiratory loading. How this translates to respiratory disease involving acute changes in respiratory mechanics remains to be determined.
机译:人类可以编程和控制动作,包括与呼吸有关的动作。在脑电图(EEG)上,此准备工作伴随着在吸气之前约2.5 s开始的低振幅负电性,这就是众所周知的Bereitschaftspotential(BP)。在机械吸气负荷的补偿过程中已描述了BP的存在,从而确定了皮质参与了相应的通气行为。这种皮层受累的病理生理解释取决于其短暂或持久的性质。这项研究通过寻找持续吸气负荷(1小时)期间的血压来解决这个问题。在空载安静呼吸和吸气阈值负荷(无负荷呼气)期间对9名健康男性志愿者进行了研究。脑电信号和通气变量的分析被用来比较会议的开始和结束。吸气阈值负荷导致通气变化持续一个小时,没有变化。在会话开始和结束时出现BP的频率最高(9例17 cmH2O阈值负荷中有6例; 9例23cmH2O负荷中有8例)。这些观察结果支持了大脑皮层参与持续的实验性吸气负荷补偿的假设。如何将其转化为涉及呼吸力学急性变化的呼吸系统疾病尚待确定。

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