Solmaz Bilgehan, Özyurt Mustafa Görkem, Ata Demir Berk, Akçimen Fulya, Shabsog Mohammed, Türker Kemal Sıtkı, Dalçik Hakkı, Algin Oktay, Başak Ayşe Nazlı, Özgür Merve, Çavdar Safiye
Department of Neurosurgery, Istanbul Education and Research Hospital, Istanbul, Turkey.
Department of Physiology, School of Medicine, Koç University, Istanbul, Turkey.
J Clin Neurosci. 2018 Aug;54:69-76. doi: 10.1016/j.jocn.2018.06.001. Epub 2018 Jun 12.
Mirror movements are unintended movements occurring on one side of the body that mirror the contralateral voluntary ones. It has been proposed that mirror movements occur due to abnormal decussation of the corticospinal pathways. Using detailed multidisciplinary approach, we aimed to enlighten the detailed mechanism underlying the mirror movements in a case subject who is diagnosed with mirror movements of the hands and we compared the findings with the unaffected control subjects. To evaluate the characteristics of mirror movements, we used several techniques including whole exome sequencing, computed tomography, diffusion tensor imaging and transcranial magnetic stimulation. Computed tomography showed the absence of a spinous process of C5, fusion of the body of C5-C6 vertebrae, hypoplastic dens and platybasia of the posterior cranial fossa. A syrinx cavity was present between levels C3-C4 of the spinal cord. Diffusion tensor imaging of the corticospinal fibers showed disorganization and minimal decussations at the lower medulla oblongata. Transcranial magnetic stimulation showed that motor commands were distributed to the motor neuron pools on the left and right sides of the spinal cord via fast-conducting corticospinal tract fibers. Moreover, a heterozygous missense variation in the deleted in colorectal carcinoma gene has been observed. Developmental absence of the axonal guidance molecules or their receptors may result in abnormalities in the leading of the corticospinal fibers. Clinical evaluations and basic neuroscience techniques, in this case, provide information for this rare disease and contribute to our understanding of the normal physiology of bimanual coordination.
镜像运动是指身体一侧出现的非自主性运动,这些运动与对侧的自主运动相对应。有人提出,镜像运动是由于皮质脊髓束通路的异常交叉所致。我们采用详细的多学科方法,旨在阐明一名被诊断为手部镜像运动的病例中镜像运动的详细机制,并将研究结果与未受影响的对照受试者进行比较。为了评估镜像运动的特征,我们使用了多种技术,包括全外显子组测序、计算机断层扫描、扩散张量成像和经颅磁刺激。计算机断层扫描显示C5棘突缺如、C5-C6椎体融合、齿状突发育不全以及后颅窝扁平颅底。脊髓C3-C4水平之间存在一个空洞。皮质脊髓纤维的扩散张量成像显示在延髓下部纤维紊乱且交叉极少。经颅磁刺激显示运动指令通过快速传导的皮质脊髓束纤维分布到脊髓左右两侧的运动神经元池。此外,还观察到结直肠癌缺失基因中的一个杂合错义变异。轴突导向分子或其受体的发育缺失可能导致皮质脊髓纤维导向异常。在这个病例中,临床评估和基础神经科学技术为这种罕见疾病提供了信息,并有助于我们理解双手协调的正常生理过程。