Xu Jiang, Lopez Alejandro J, Hoque Maruf M, Borich Michael R, Kesar Trisha M
Department of Rehabilitation Medicine, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Division of Physical Therapy, Department of Rehabilitation Medicine, Emory University, Atlanta, GA, United States.
Front Integr Neurosci. 2022 Jan 7;15:777741. doi: 10.3389/fnint.2021.777741. eCollection 2021.
Sensorimotor control is modulated through complex interactions between descending corticomotor pathways and ascending sensory inputs. Pairing sub-threshold transcranial magnetic stimulation (TMS) with peripheral nerve stimulation (PNS) modulates the Hoffmann's reflex (H-reflex), providing a neurophysiologic probe into the influence of descending cortical drive on spinal segmental circuits. However, individual variability in the timing and magnitude of H-reflex modulation is poorly understood. Here, we varied the inter-stimulus interval (ISI) between TMS and PNS to systematically manipulate the relative timing of convergence of descending TMS-induced volleys with respect to ascending PNS-induced afferent volleys in the spinal cord to: (1) characterize effective connectivity between the primary motor cortex (M1) and spinal circuits, mediated by both direct, fastest-conducting, and indirect, slower-conducting descending pathways; and (2) compare the effect of individual-specific vs. standard ISIs. Unconditioned and TMS-conditioned H-reflexes (24 different ISIs ranging from -6 to 12 ms) were recorded from the soleus muscle in 10 able-bodied individuals. The magnitude of H-reflex modulation at individualized ISIs (earliest facilitation delay or EFD and individual-specific peak facilitation) was compared with standard ISIs. Our results revealed a significant effect of ISI on H-reflex modulation. ISIs eliciting earliest-onset facilitation (EFD 0 ms) ranged from -3 to -5 ms across individuals. No difference in the magnitude of facilitation was observed at EFD 0 ms vs. a standardized short-interval ISI of -1.5 ms. Peak facilitation occurred at longer ISIs, ranging from +3 to +11 ms. The magnitude of H-reflex facilitation derived using an individual-specific peak facilitation was significantly larger than facilitation observed at a standardized longer-interval ISI of +10 ms. Our results suggest that unique insights can be provided with individual-specific measures of top-down effective connectivity mediated by direct and/or fastest-conducting pathways (indicated by the magnitude of facilitation observed at EFD 0 ms) and other descending pathways that encompass relatively slower and/or indirect connections from M1 to spinal circuits (indicated by peak facilitation and facilitation at longer ISIs). By comprehensively characterizing the temporal profile and inter-individual variability of descending modulation of spinal reflexes, our findings provide methodological guidelines and normative reference values to inform future studies on neurophysiological correlates of the complex array of descending neural connections between M1 and spinal circuits.
感觉运动控制通过下行皮质运动通路和上行感觉输入之间的复杂相互作用进行调节。将阈下经颅磁刺激(TMS)与外周神经刺激(PNS)配对可调节霍夫曼反射(H反射),为探究下行皮质驱动对脊髓节段回路的影响提供了一种神经生理学探针。然而,人们对H反射调节的时间和幅度的个体差异了解甚少。在这里,我们改变了TMS和PNS之间的刺激间隔(ISI),以系统地操纵下行TMS诱发的冲动与上行PNS诱发的传入冲动在脊髓中汇聚的相对时间,目的是:(1)表征初级运动皮层(M1)与脊髓回路之间的有效连接,这种连接由直接的、传导速度最快的和间接的、传导速度较慢的下行通路介导;(2)比较个体特异性ISI与标准ISI的效果。在10名身体健全的个体中,记录了比目鱼肌的未条件化和TMS条件化H反射(24种不同的ISI,范围从-6到12毫秒)。将个体特异性ISI(最早易化延迟或EFD以及个体特异性峰值易化)时的H反射调节幅度与标准ISI进行了比较。我们的结果显示ISI对H反射调节有显著影响。个体间引发最早易化(EFD为0毫秒)的ISI范围为-3到-5毫秒。在EFD为0毫秒时与标准化短间隔ISI为-1.5毫秒时,未观察到易化幅度的差异。峰值易化出现在较长的ISI时,范围为+3到+11毫秒。使用个体特异性峰值易化得出的H反射易化幅度显著大于在标准化长间隔ISI为+10毫秒时观察到的易化幅度。我们的结果表明,由直接和/或传导速度最快的通路介导的自上而下有效连接的个体特异性测量(由EFD为0毫秒时观察到 的易化幅度表示)以及包含从M1到脊髓回路相对较慢和/或间接连接的其他下行通路(由峰值易化和较长ISI时的易化表示)可以提供独特的见解。通过全面表征脊髓反射下行调节的时间特征和个体间变异性,我们的研究结果提供了方法学指南和规范参考值,为未来关于M1与脊髓回路之间复杂下行神经连接阵列的神经生理学相关性的研究提供参考。