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Changes in muscle sympathetic nerve activity and vascular responses evoked in the spinotrapezius muscle of the rat by systemic hypoxia

机译:系统性缺氧引起的大鼠斜方肌肌肉交感神经活动和血管反应的变化

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摘要

Non-technical summaryHitherto, activity in sympathetic vasoconstrictor nerves that supply arterial vessels of skeletal muscle has been deduced from recordings made on mixed nerves that may be supplying skin, muscle or other tissue. We describe new methodology that allows direct recordings from nerve fibres on the surface of arterial vessels of muscle. The impulses occurred irregularly, but with rhythms that reflected heart rate and breathing rate. When oxygen levels in the blood were progressively lowered (hypoxia), muscle sympathetic nerve activity progressively increased from an average impulse frequency of 0.2 to one of 0.62 per second. Simultaneously, heart rate and respiratory rate increased, while our recordings of blood flow into the muscle showed that the arterial vessels dilated. We deduce that hypoxia causes an increase in the activity of the sympathetic nerves that supply muscle blood vessels that is mainly dependent on the stimulus for breathing, but their normal vasoconstrictor effect is overcome by local dilator influences.
机译:迄今为止,已经从可能供应皮肤,肌肉或其他组织的混合神经上的录音推导了供应骨骼肌动脉的交感性血管收缩神经的活动。我们描述了一种新的方法,该方法可以从肌肉动脉血管表面的神经纤维直接记录。冲动不规则地发生,但是具有反映心率和呼吸率的节律。当血液中的氧气水平逐渐降低(缺氧)时,肌肉交感神经活动逐渐从平均脉冲频率0.2增至每秒0.62。同时,心率和呼吸率增加,而我们对流入肌肉的血流的记录表明动脉血管扩张。我们推断缺氧会导致供应肌肉血管的交感神经活动增加,而交感神经的活动主要取决于呼吸刺激,但通过局部扩张器的影响可以克服其正常的血管收缩作用。

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