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中枢指令在高强度等长运动期间肌肉交感神经活动增加对收缩肌肉的作用

The Role of Central Command in the Increase in Muscle Sympathetic Nerve Activity to Contracting Muscle During High Intensity Isometric Exercise.

作者信息

Boulton Daniel, Taylor Chloe E, Green Simon, Macefield Vaughan G

机构信息

School of Science and Health, Western Sydney University, Sydney, NSW, Australia.

Neuroscience Research Australia, Sydney, NSW, Australia.

出版信息

Front Neurosci. 2021 Dec 2;15:770072. doi: 10.3389/fnins.2021.770072. eCollection 2021.

Abstract

We previously demonstrated that muscle sympathetic nerve activity (MSNA) increases to contracting muscle as well as to non-contracting muscle, but this was only assessed during isometric exercise at ∼10% of maximum voluntary contraction (MVC). Given that high-intensity isometric contractions will release more metabolites, we tested the hypothesis that the metaboreflex is expressed in the contracting muscle during high-intensity but not low-intensity exercise. MSNA was recorded continuously via a tungsten microelectrode inserted percutaneously into the right common peroneal nerve in 12 participants, performing isometric dorsiflexion of the right ankle at 10, 20, 30, 40, and 50% MVC for 2 min. Contractions were immediately followed by 6 min of post-exercise ischemia (PEI); 6 min of recovery separated contractions. Cross-correlation analysis was performed between the negative-going sympathetic spikes of the raw neurogram and the ECG. MSNA increased as contraction intensity increased, reaching mean values (± SD) of 207 ± 210 spikes/min at 10% MVC ( = 0.04), 270 ± 189 spikes/min at 20% MVC ( < 0.01), 538 ± 329 spikes/min at 30% MVC ( < 0.01), 816 ± 551 spikes/min at 40% MVC ( < 0.01), and 1,097 ± 782 spikes/min at 50% MVC ( < 0.01). Mean arterial pressure also increased in an intensity-dependent manner from 76 ± 3 mmHg at rest to 90 ± 6 mmHg ( < 0.01) during contractions of 50% MVC. At all contraction intensities, blood pressure remained elevated during PEI, but MSNA returned to pre-contraction levels, indicating that the metaboreflex does not contribute to the increase in MSNA to contracting muscle even at these high contraction intensities.

摘要

我们之前证明,肌肉交感神经活动(MSNA)在肌肉收缩以及未收缩时均会增加,但这仅在最大自主收缩(MVC)约10%的等长运动期间进行了评估。鉴于高强度等长收缩会释放更多代谢产物,我们测试了这样一个假设,即代谢反射在高强度而非低强度运动期间在收缩肌肉中表现出来。通过经皮插入12名参与者右侧腓总神经的钨微电极连续记录MSNA,参与者以10%、20%、30%、40%和50%MVC进行右侧踝关节等长背屈,每次收缩2分钟。收缩后紧接着进行6分钟的运动后缺血(PEI);两次收缩之间间隔6分钟的恢复时间。对原始神经图中负向交感神经尖峰与心电图进行互相关分析。MSNA随着收缩强度的增加而增加,在10%MVC时达到平均值(±标准差)207±210次/分钟(P = 0.04),20%MVC时为270±189次/分钟(P < 0.01),30%MVC时为538±329次/分钟(P < 0.01),40%MVC时为816±551次/分钟(P < 0.01),50%MVC时为1,097±782次/分钟(P < 0.01)。平均动脉压也以强度依赖的方式从静息时的76±3 mmHg增加到50%MVC收缩期间的90±6 mmHg(P < 0.01)。在所有收缩强度下,PEI期间血压仍保持升高,但MSNA恢复到收缩前水平,这表明即使在这些高收缩强度下,代谢反射也不会导致MSNA对收缩肌肉的增加产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fe1/8675906/05a67826de4a/fnins-15-770072-g001.jpg

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