Publication | Open Access
Unraveling the cellular and molecular mechanisms of repetitive magnetic stimulation
90
Citations
43
References
2013
Year
Repetitive Magnetic StimulationNeuromodulation TherapiesMagnetic ResonanceBiomedical EngineeringStructural PlasticityMagnetic FieldSocial SciencesNeural PlasticityStimulation DeviceNeuromodulationNeurologyTranscranial StimulationRtms-induced Neural PlasticityRtms-based TherapiesNeurostimulationBrain StimulationNervous SystemCell BiologySynaptic PlasticityNeurophysiologyPhysiologyElectrophysiologyNeuroscienceCentral Nervous SystemBrain ElectrophysiologyMedicine
Despite numerous clinical studies, which have investigated the therapeutic potential of repetitive transcranial magnetic stimulation (rTMS) in various brain diseases, our knowledge of the cellular and molecular mechanisms underlying rTMS-based therapies remains limited. Thus, a deeper understanding of rTMS-induced neural plasticity is required to optimize current treatment protocols. Studies in small animals or appropriate in vitro preparations (including models of brain diseases) provide highly useful experimental approaches in this context. State-of-the-art electrophysiological and live-cell imaging techniques that are well established in basic neuroscience can help answering some of the major questions in the field, such as (i) which neural structures are activated during TMS, (ii) how does rTMS induce Hebbian plasticity, and (iii) are other forms of plasticity (e.g., metaplasticity, structural plasticity) induced by rTMS? We argue that data gained from these studies will support the development of more effective and specific applications of rTMS in clinical practice.
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