Impact of Spinal Manipulation on Cortical Drive to Upper and Lower Limb Muscles

被引:31
|
作者
Haavik, Heidi [1 ]
Niazi, Imran Khan [1 ,2 ]
Jochumsen, Mads [2 ]
Sherwin, Diane [3 ]
Flavel, Stanley [1 ]
Tuerker, Kemal S. [4 ]
机构
[1] New Zealand Coll Chiropract, Ctr Chiropract Res, Auckland 1060, New Zealand
[2] Aalborg Univ, Dept Hlth Sci & Technol, Ctr Sensory Motor Interact, DK-9220 Aalborg, Denmark
[3] Chirofit, Private Practice, 32a Normanby Rd, Auckland 1024, New Zealand
[4] Koc Univ, Sch Med, TR-34450 Istanbul, Turkey
关键词
transcranial magnetic stimulation; movement related cortical potential; neural adaptations; SOMATOSENSORY-EVOKED-POTENTIALS; MOVEMENT-RELATED POTENTIALS; TRANSCRANIAL MAGNETIC STIMULATION; SUPPLEMENTARY MOTOR AREA; INPUT-OUTPUT PROPERTIES; SUBCLINICAL NECK PAIN; LOW-BACK-PAIN; CERVICAL-SPINE; SENSORIMOTOR INTEGRATION; MEDIAN NERVE;
D O I
10.3390/brainsci7010002
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
This study investigates whether spinal manipulation leads to changes in motor control by measuring the recruitment pattern of motor units in both an upper and lower limb muscle and to see whether such changes may at least in part occur at the cortical level by recording movement related cortical potential (MRCP) amplitudes. In experiment one, transcranial magnetic stimulation input-output (TMS I/O) curves for an upper limb muscle (abductor pollicus brevis; APB) were recorded, along with F waves before and after either spinal manipulation or a control intervention for the same subjects on two different days. During two separate days, lower limb TMS I/O curves and MRCPs were recorded from tibialis anterior muscle (TA) pre and post spinal manipulation. Dependent measures were compared with repeated measures analysis of variance, with p set at 0.05. Spinal manipulation resulted in a 54.5% +/- 93.1% increase in maximum motor evoked potential (MEPmax) for APB and a 44.6% +/- 69.6% increase in MEPmax for TA. For the MRCP data following spinal manipulation there were significant difference for amplitude of early bereitschafts-potential (EBP), late bereitschafts potential (LBP) and also for peak negativity (PN). The results of this study show that spinal manipulation leads to changes in cortical excitability, as measured by significantly larger MEPmax for TMS induced input-output curves for both an upper and lower limb muscle, and with larger amplitudes of MRCP component post manipulation. No changes in spinal measures (i.e., F wave amplitudes or persistence) were observed, and no changes were shown following the control condition. These results are consistent with previous findings that have suggested increases in strength following spinal manipulation were due to descending cortical drive and could not be explained by changes at the level of the spinal cord. Spinal manipulation may therefore be indicated for the patients who have lost tonus of their muscle and/or are recovering from muscle degrading dysfunctions such as stroke or orthopaedic operations and/or may also be of interest to sports performers. These findings should be followed up in the relevant populations.
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页数:15
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