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整脊脊柱推拿可改变经颅磁刺激诱导的I波兴奋性,并缩短皮质静息期。

Chiropractic spinal manipulation alters TMS induced I-wave excitability and shortens the cortical silent period.

作者信息

Haavik Heidi, Niazi Imran Khan, Jochumsen Mads, Uginčius Paulius, Sebik Oğuz, Yılmaz Gizem, Navid Muhammad Samran, Özyurt Mustafa Görkem, Türker Kemal S

机构信息

Centre for Chiropractic Research, New Zealand College of Chiropractic, Auckland, New Zealand.

Centre for Chiropractic Research, New Zealand College of Chiropractic, Auckland, New Zealand; SMI, Department of Health Science and Technology, Aalborg University, Denmark; Health & Rehabilitation Research Institute, Auckland University of Technology, Auckland, New Zealand.

出版信息

J Electromyogr Kinesiol. 2018 Oct;42:24-35. doi: 10.1016/j.jelekin.2018.06.010. Epub 2018 Jun 19.

Abstract

The objective of this study was to construct peristimulus time histogram (PSTH) and peristimulus frequencygram (PSF) using single motor unit recordings to further characterize the previously documented immediate sensorimotor effects of spinal manipulation. Single pulse transcranial magnetic stimulation (TMS) via a double cone coil over the tibialis anterior (TA) motor area during weak isometric dorsiflexion of the foot was used on two different days in random order; pre/post spinal manipulation (in eighteen subjects) and pre/post a control (in twelve subjects) condition. TA electromyography (EMG) was recorded with surface and intramuscular fine wire electrodes. Three subjects also received sham double cone coil TMS pre and post a spinal manipulation intervention. From the averaged surface EMG data cortical silent periods (CSP) were constructed and analysed. Twenty-one single motor units were identified for the spinal manipulation intervention and twelve single motor units were identified for the control intervention. Following spinal manipulations there was a shortening of the silent period and an increase in the single unit I-wave amplitude. No changes were observed following the control condition. The results provide evidence that spinal manipulation reduces the TMS-induced cortical silent period and increases low threshold motoneurone excitability in the lower limb muscle. These finding may have important clinical implications as they provide support that spinal manipulation can be used to strengthen muscles. This could be followed up on populations that have reduced muscle strength, such as stroke victims.

摘要

本研究的目的是使用单运动单位记录构建刺激后时间直方图(PSTH)和刺激后频率图(PSF),以进一步描述先前记录的脊柱手法治疗即时感觉运动效应的特征。在足部轻度等长背屈期间,通过双锥形线圈对胫前肌(TA)运动区进行单脉冲经颅磁刺激(TMS),在两天内随机顺序进行;脊柱手法治疗前后(18名受试者)和对照前后(12名受试者)。使用表面电极和肌内细丝电极记录TA肌电图(EMG)。三名受试者在脊柱手法治疗干预前后还接受了假双锥形线圈TMS。从平均表面EMG数据构建并分析皮质静息期(CSP)。在脊柱手法治疗干预中识别出21个单运动单位,在对照干预中识别出12个单运动单位。脊柱手法治疗后静息期缩短,单运动单位I波幅增加。在对照条件下未观察到变化。结果提供了证据,表明脊柱手法治疗可减少TMS诱导的皮质静息期,并增加下肢肌肉中低阈值运动神经元的兴奋性。这些发现可能具有重要的临床意义,因为它们支持脊柱手法治疗可用于增强肌肉。这可以在肌肉力量降低的人群中进行后续研究,如中风患者。

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