Applications of Repetitive Transcranial Magnetic Stimulation to Improve Upper Limb Motor Performance After Stroke: A Systematic Review

被引:25
作者
Safdar, Afifa [1 ]
Smith, Marie-Claire [2 ]
Byblow, Winston D. [2 ]
Stinear, Cathy M. [1 ]
机构
[1] Univ Auckland, Dept Med, Private Bag 92019, Auckland 1142, New Zealand
[2] Univ Auckland, Dept Exercise Sci, Auckland, New Zealand
关键词
stroke; noninvasive brain stimulation; transcranial magnetic stimulation; theta burst stimulation; motor evoked potentials; THETA-BURST STIMULATION; NEUROMUSCULAR ELECTRICAL-STIMULATION; INTENSIVE OCCUPATIONAL-THERAPY; NONINVASIVE BRAIN-STIMULATION; DORSAL PREMOTOR CORTEX; SHAM-CONTROLLED TRIAL; LOW-FREQUENCY RTMS; HZ; INTERHEMISPHERIC INHIBITION; UNAFFECTED HEMISPHERE;
D O I
10.1177/15459683231209722
中图分类号
R74 [神经病学与精神病学];
学科分类号
100204 [神经病学];
摘要
Background Noninvasive brain stimulation (NIBS) is a promising technique for improving upper limb motor performance post-stroke. Its application has been guided by the interhemispheric competition model and typically involves suppression of contralesional motor cortex. However, the bimodal balance recovery model prompts a more tailored application of NIBS based on ipsilesional corticomotor function. Objective To review and assess the application of repetitive transcranial magnetic stimulation (rTMS) protocols that aimed to improve upper limb motor performance after stroke. Methods A PubMed search was conducted for studies published between 1st January 2005 and 1st November 2022 using rTMS to improve upper limb motor performance of human adults after stroke. Studies were grouped according to whether facilitatory or suppressive rTMS was applied to the contralesional hemisphere. Results Of the 492 studies identified, 70 were included in this review. Only 2 studies did not conform to the interhemispheric competition model, and facilitated the contralesional hemisphere. Only 21 out of 70 (30%) studies reported motor evoked potential (MEP) status as a biomarker of ipsilesional corticomotor function. Around half of the studies (37/70, 53%) checked whether rTMS had the expected effect by measuring corticomotor excitability (CME) after application. Conclusion The interhemispheric competition model dominates the application of rTMS post-stroke. The majority of recent and current studies do not consider bimodal balance recovery model for the application of rTMS. Evaluating CME after the application rTMS could confirm that the intervention had the intended neurophysiological effect. Future studies could select patients and apply rTMS protocols based on ipsilesional MEP status.
引用
收藏
页码:837 / 849
页数:13
相关论文
共 92 条
[1]
Priming sensorimotor cortex to enhance task-specific training after subcortical stroke [J].
Ackerley, Suzanne J. ;
Stinear, Cathy M. ;
Barber, P. Alan ;
Byblow, Winston D. .
CLINICAL NEUROPHYSIOLOGY, 2014, 125 (07) :1451-1458
[2]
Combining Theta Burst Stimulation With Training After Subcortical Stroke [J].
Ackerley, Suzanne J. ;
Stinear, Cathy M. ;
Barber, P. Alan ;
Byblow, Winston D. .
STROKE, 2010, 41 (07) :1568-1572
[3]
Effects of low-frequency repetitive transcranial magnetic stimulation on upper extremity motor recovery and functional outcomes in chronic stroke patients: A randomized controlled trial [J].
Askin, Ayhan ;
Tosun, Aliye ;
Demirdal, Umit Secil .
SOMATOSENSORY AND MOTOR RESEARCH, 2017, 34 (02) :102-107
[4]
Efficacy of Coupling Repetitive Transcranial Magnetic Stimulation and Physical Therapy to Reduce Upper-Limb Spasticity in Patients With Stroke: A Randomized Controlled Trial [J].
Barros Galvao, Silvana Carla ;
Costa dos Santos, Rebeka Borba ;
dos Santos, Priscila Borba ;
Cabral, Maria Eduarda ;
Monte-Silva, Katia .
ARCHIVES OF PHYSICAL MEDICINE AND REHABILITATION, 2014, 95 (02) :222-229
[5]
Enhanced motor function and its neurophysiological correlates after navigated low-frequency repetitive transcranial magnetic stimulation over the contralesional motor cortex in stroke [J].
Bashir, Shahid ;
Vernet, Marine ;
Najib, Umer ;
Perez, Jennifer ;
Alonso-Alonso, Miguel ;
Knobel, Mark ;
Yoo, Woo-Kyoung ;
Edwards, Dylan ;
Pascual-Leone, Alvaro .
RESTORATIVE NEUROLOGY AND NEUROSCIENCE, 2016, 34 (04) :677-689
[6]
Beghi E, 2019, LANCET NEUROL, V18, P357, DOI [10.1016/S1474-4422(18)30454-X, 10.1016/S1474-4422(19)30034-1, 10.1016/S1474-4422(18)30443-5]
[7]
The Role of Contralesional Dorsal Premotor Cortex after Stroke as Studied with Concurrent TMS-fMRI [J].
Bestmann, Sven ;
Swayne, Orlando ;
Blankenburg, Felix ;
Ruff, Christian C. ;
Teo, James ;
Weiskopf, Nikolaus ;
Driver, Jon ;
Rothwell, John C. ;
Ward, Nick S. .
JOURNAL OF NEUROSCIENCE, 2010, 30 (36) :11926-11937
[8]
Blesneag A V, 2015, J Med Life, V8, P378
[9]
Targeting interhemispheric inhibition with neuromodulation to enhance stroke rehabilitation [J].
Boddington, L. J. ;
Reynolds, J. N. J. .
BRAIN STIMULATION, 2017, 10 (02) :214-222
[10]
Biomarkers of stroke recovery: Consensus-based core recommendations from the Stroke Recovery and Rehabilitation Roundtable [J].
Boyd, Lara A. ;
Hayward, Kathryn S. ;
Ward, Nick S. ;
Stinear, Cathy M. ;
Rosso, Charlotte ;
Fisher, Rebecca J. ;
Carter, Alexandre R. ;
Leff, Alex P. ;
Copland, David A. ;
Carey, Leeanne M. ;
Cohen, Leonardo G. ;
Basso, D. Michele ;
Maguire, Jane M. ;
Cramer, Steven C. .
INTERNATIONAL JOURNAL OF STROKE, 2017, 12 (05) :480-493