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高度引起的姿势威胁会增加人体拉伸反射的动态敏感性。

Increased human stretch reflex dynamic sensitivity with height-induced postural threat.

机构信息

School of Kinesiology, University of British Columbia, Vancouver, BC, Canada.

Present address: Wallace H. Coulter Department of Biomedical Engineering, Emory University and Georgia Institute of Technology, Atlanta, GA, USA.

出版信息

J Physiol. 2018 Nov;596(21):5251-5265. doi: 10.1113/JP276459. Epub 2018 Oct 9.

Abstract

KEY POINTS

Threats to standing balance (postural threat) are known to facilitate soleus tendon-tap reflexes, yet the mechanisms driving reflex changes are unknown. Scaling of ramp-and-hold dorsiflexion stretch reflexes to stretch velocity and amplitude were examined as indirect measures of changes to muscle spindle dynamic and static function with height-induced postural threat. Overall, stretch reflexes were larger with threat. Furthermore, the slope (gain) of the stretch-velocity vs. short-latency reflex amplitude relationship was increased with threat. These findings are interpreted as indirect evidence for increased muscle spindle dynamic sensitivity, independent of changes in background muscle activity levels, with a threat to standing balance. We argue that context-dependent scaling of stretch reflexes forms part of a multisensory tuning process where acquisition and/or processing of balance-relevant sensory information is continuously primed to facilitate feedback control of standing balance in challenging balance scenarios.

ABSTRACT

Postural threat increases soleus tendon-tap (t-) reflexes. However, it is not known whether t-reflex changes are a result of central modulation, altered muscle spindle dynamic sensitivity or combined spindle static and dynamic sensitization. Ramp-and-hold dorsiflexion stretches of varying velocities and amplitudes were used to examine velocity- and amplitude-dependent scaling of short- (SLR) and medium-latency (MLR) stretch reflexes as an indirect indicator of spindle sensitivity. t-reflexes were also performed to replicate previous work. In the present study, we examined the effects of postural threat on SLR, MLR and t-reflex amplitude, as well as SLR-stretch velocity scaling. Forty young-healthy adults stood with one foot on a servo-controlled tilting platform and the other on a stable surface. The platform was positioned on a hydraulic lift. Threat was manipulated by having participants stand in low (height 1.1 m; away from edge) then high (height 3.5 m; at the edge) threat conditions. Soleus stretch reflexes were recorded with surface electromyography and SLRs and MLRs were probed with fixed-amplitude variable-velocity stretches. t-reflexes were evoked with Achilles tendon taps using a linear motor. SLR, MLR and t-reflexes were 11%, 9.5% and 16.9% larger, respectively, in the high compared to low threat condition. In 22 out of 40 participants, SLR amplitude was correlated to stretch velocity at both threat levels. In these participants, the gain of the SLR-velocity relationship was increased by 36.1% with high postural threat. These findings provide new supportive evidence for increased muscle spindle dynamic sensitivity with postural threat and provide further support for the context-dependent modulation of human somatosensory pathways.

摘要

要点

姿势威胁(体位威胁)已知可促进比目鱼肌肌腱敲击反射,但驱动反射变化的机制尚不清楚。通过检查斜坡和保持背屈伸展反射的缩放与伸展速度和幅度,作为肌肉梭动态和静态功能随高度引起的体位威胁变化的间接测量。总的来说,威胁时伸展反射更大。此外,威胁时,伸展-速度与短潜伏期反射幅度关系的斜率(增益)增加。这些发现被解释为肌肉梭动态敏感性增加的间接证据,与背景肌肉活动水平的变化无关,在站立平衡受到威胁时。我们认为,伸展反射的上下文相关缩放是多感觉调谐过程的一部分,其中平衡相关感觉信息的获取和/或处理不断被激发,以促进在具有挑战性的平衡情况下对站立平衡的反馈控制。

摘要

体位威胁增加比目鱼肌肌腱敲击(t-)反射。然而,尚不清楚 t-反射的变化是否是中枢调制、肌肉梭动态敏感性改变或梭内静态和动态致敏的综合结果。使用不同速度和幅度的斜坡和保持背屈伸展来检查短潜伏期(SLR)和中潜伏期(MLR)伸展反射的速度和幅度依赖性缩放,作为梭内敏感性的间接指标。还进行了 t-反射以复制以前的工作。在本研究中,我们研究了体位威胁对 SLR、MLR 和 t-反射幅度以及 SLR-伸展速度缩放的影响。40 名年轻健康成年人一只脚站在伺服控制的倾斜平台上,另一只脚站在稳定的表面上。平台安装在液压升降台上。通过让参与者站在低(高度 1.1 m;远离边缘)和高(高度 3.5 m;在边缘)威胁条件下来操纵威胁。使用表面肌电图记录比目鱼肌伸展反射,使用固定幅度可变速度伸展探测 SLR 和 MLR。使用线性电机进行跟腱敲击以产生 t-反射。在 40 名参与者中的 22 名中,在高威胁条件下,SLR、MLR 和 t-反射分别增加了 11%、9.5%和 16.9%。在这 22 名参与者中,SLR 幅度与两个威胁水平的伸展速度相关。在这些参与者中,随着高体位威胁,SLR-速度关系的增益增加了 36.1%。这些发现为体位威胁时肌肉梭动态敏感性增加提供了新的支持证据,并进一步支持了人类体感通路的上下文相关调制。

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