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Both central command and exercise pressor reflex activate cardiac sympathetic nerve activity in decerebrate cats

机译:中枢命令和运动加压反射都可激活去脑猫的心脏交感神经活动

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摘要

Both static and dynamic exercise are known to increase cardiac pump function as well as arterial blood pressure. Feedforward control by central command and feedback control by the exercise pressor reflex are thought to be the neural mechanisms causing these effects during exercise. It remains unknown as to how each mechanism activates cardiac sympathetic nerve activity (CSNA) during exercise, especially at its onset. Thus we examined the response of CSNA to stimulation of the mesencephalic locomotor region (MLR, i.e., central command) and to static muscle contraction of the triceps surae muscles or stretch of the calcaneal tendon in decerebrate cats. We found that MLR stimulation immediately increased CSNA, which was followed by a gradual increase in heart rate, mean arterial pressure, and ventral root activity in a stimulus intensity-dependent manner. The latency of the increase in CSNA from the onset of MLR stimulation ranged from 67 to 387 ms. Both static contraction and tendon stretch also rapidly increased CSNA. Their latency from the development of tension in response to ventral root stimulation ranged from 78 to 670 ms. These findings suggest that both central command and the muscle mechanoreflex play a role in controlling cardiac sympathetic outflow at the onset of exercise.
机译:已知静态和动态运动都会增加心脏泵功能以及动脉血压。通过中央命令进行前馈控制和通过运动加压反射进行反馈控制被认为是造成运动过程中这些效应的神经机制。至于每种机制如何在运动中,尤其是在发作时激活心脏交感神经活动(CSNA),仍是未知的。因此,我们检查了CSNA对中脑运动区域(MLR,即中央命令)的刺激和对三头肌肱三头肌的静态肌肉收缩或跟骨肌腱的拉伸的响应。我们发现,MLR刺激立即增加CSNA,然后以刺激强度依赖性方式逐渐增加心率,平均动脉压和腹根活动。从MLR刺激发作开始CSNA升高的潜伏期为67到387 ms。静态收缩和肌腱拉伸​​也迅速增加了CSNA。他们因腹侧根刺激而产生张力的潜伏期为78到670毫秒。这些发现表明运动开始时中枢命令和肌肉机械反射都在控制心脏交感神经流出中起作用。

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