Griskova Inga, Höppner Jacqueline, Ruksenas Osvaldas, Dapsys Kastytis
Department of Biochemistry and Biophysics, Vilnius University, M. K. Ciurlionio 21, 03101 Vilnius, Lithuania.
Medicina (Kaunas). 2006;42(10):798-804.
Transcranial magnetic stimulation is a noninvasive method for stimulation of brain that is based on the ability of magnetic field to penetrate skull and brain meninges, subsequently inducing electric current in the brain tissues that produces neuronal depolarization and generation of action potentials. Moreover, transcranial magnetic stimulation has effects on neurochemical and synaptic processes in neurons. Due to its easy use and relatively fair side effects, nowadays, transcranial magnetic stimulation is widely used in neurosciences and medicine. The main areas of transcranial magnetic stimulation application are: 1) the investigation of cortical and spinal excitability, 2) the investigation of neuronal plasticity, 3) the investigation of neuronal connectivity, 4) functional mapping, and 5) the treatment of some neurological and psychiatric disorders. Transcranial magnetic stimulation alone or in combination with other noninvasive neuroimaging (PET--positron emission topography, MRI--magnetic resonance imaging) and neurofunctional (EEG--electroencephalography, ERP--event-related potentials, fMRI--functional magnetic resonance imaging) methods allows conducting research on brain functions. Thus, transcranial magnetic stimulation is suitable as a diagnostic tool in neurologic and neuropsychiatric brain research.
经颅磁刺激是一种用于刺激大脑的非侵入性方法,其基于磁场穿透颅骨和脑膜的能力,随后在脑组织中感应出电流,从而产生神经元去极化并引发动作电位。此外,经颅磁刺激对神经元中的神经化学和突触过程也有影响。由于其使用简便且副作用相对较小,如今经颅磁刺激在神经科学和医学领域得到了广泛应用。经颅磁刺激的主要应用领域包括:1)皮质和脊髓兴奋性的研究;2)神经元可塑性的研究;3)神经元连接性的研究;4)功能图谱绘制;5)某些神经和精神疾病的治疗。单独使用经颅磁刺激或与其他非侵入性神经成像(PET——正电子发射断层扫描、MRI——磁共振成像)和神经功能(EEG——脑电图、ERP——事件相关电位、fMRI——功能磁共振成像)方法相结合,能够对脑功能进行研究。因此,经颅磁刺激适合作为神经和神经精神脑研究中的一种诊断工具。