Suppr超能文献

突触前抑制并不介导落地时比目鱼肌H反射幅度的降低。

Presynaptic Inhibition Does not Mediate Reduced Soleus H-Reflex Amplitudes During Drop Landings.

作者信息

Soter Kevin, Hahn Daniel, Grosprêtre Sidney

机构信息

School of Medicine and Surgery, Università Degli Studi di Milano-Bicocca, Milan, Italy.

Human Movement Science, Faculty of Sport Science, Ruhr-Universität Bochum, Bochum, Germany.

出版信息

Scand J Med Sci Sports. 2025 Sep;35(9):e70131. doi: 10.1111/sms.70131.

Abstract

During drop landings, shortly after ground contact, spinal excitability is decreased. This decrease, as measured by soleus H-reflex, has been presumed, but not proven, to originate from presynaptic inhibition, facilitated by the descending drive from supraspinal centers. Therefore, the aim of this study was to examine presynaptic inhibition during the flight and landing phases of drop landings. Fifteen participants received peripheral nerve stimulations during quiet stance and pre (PRE) and post (POST) ground contact of 40 cm drop landings. Stimulations during drop landings were timed to elicit soleus H-reflexes 30-0 ms PRE and 30-60 ms POST landings, respectively. Presynaptic inhibition was assessed by conditioning the soleus H-reflex with femoral nerve stimulations, eliciting H-reflex heteronymous facilitation (H) and common fibular nerve stimulations, eliciting H-reflex D1 inhibition (H). Conditioned soleus H-reflex amplitudes were normalized to maximal M-waves (M) and compared with the unconditioned H-reflexes (H) during quiet stance, PRE, and POST. EMG of soleus, medial gastrocnemius, tibialis anterior, and vastus medialis as well as hip, knee, and ankle joint angles were measured throughout drop landings and quiet stance. H POST was significantly smaller than PRE (-8.5% M, p = 0.016). Facilitation and inhibition were observed in quiet stance (H-H: +7.8% M, p < 0.001; H-H: -9.5%M, p = 0.003), but not during PRE or POST (all p = 1.000). Both paradigms were effective in quiet stance, but not during drop landings, suggesting that the decreased soleus H-reflex POST is not due to ongoing presynaptic inhibition. Instead, reduced motoneuron excitability may indicate other underlying mechanisms.

摘要

在下落着地过程中,与地面接触后不久,脊髓兴奋性会降低。这种降低通过比目鱼肌H反射来测量,据推测(但尚未得到证实)是由脊髓上中枢的下行驱动促进的突触前抑制引起的。因此,本研究的目的是检查下落着地的飞行和着陆阶段的突触前抑制。15名参与者在安静站立时以及40厘米下落着地的地面接触前(PRE)和接触后(POST)接受外周神经刺激。下落着地期间的刺激时间分别设定为在着陆前30 - 0毫秒和着陆后30 - 60毫秒引发比目鱼肌H反射。通过用股神经刺激对比目鱼肌H反射进行条件化来评估突触前抑制,引发H反射异源易化(H),并用腓总神经刺激,引发H反射D1抑制(H)。将条件化的比目鱼肌H反射幅度相对于最大M波(M)进行归一化,并与安静站立、PRE和POST期间的非条件化H反射(H)进行比较。在整个下落着地和安静站立过程中测量比目鱼肌、内侧腓肠肌、胫骨前肌和股内侧肌的肌电图以及髋、膝和踝关节角度。POST时的H明显小于PRE(-8.5% M,p = 0.016)。在安静站立时观察到易化和抑制(H - H:+7.8% M,p < 0.001;H - H:-9.5% M,p = 0.003),但在PRE或POST期间未观察到(所有p = 1.000)。两种模式在安静站立时有效,但在下落着地期间无效,这表明POST时比目鱼肌H反射降低并非由于持续的突触前抑制。相反,运动神经元兴奋性降低可能表明存在其他潜在机制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验