Ishiyama Y
Rinsho Byori. 1998 Sep;46(9):879-86.
This paper discusses the following routine examinations and new neurophysiological examinations that will likely be adopted in future. 1) EEG: a) The source derivation method and intracranial EEG recording method are useful for the detection of the exact focus in epileptic seizure. b) Polysomnography is applied to sleep disorders (ex. apnea syndrome). c) EEG topograph mapping and brain electric source analysis (BESA) are not only applied to neurological disorders, but also used for the detection of electrical equivalent dipole source localization. 2) Evoked potential (EP): ABR, SSEP and P-VEP by routine techniques are useful for the diagnosis of brain tumors and demyelinating diseases. Recently, event-related potential (ERP) has attracted attention in examining human recognition. 3) EMG and evoked EMG: a) MUP analysis with the template-matching method and single fiber EMG are topics of electromyography. b) M wave of evoked EMG has been used for the measurement of maximum nerve conduction velocity. Furthermore, the collision technique and microneurography can be applied to many kinds of nerves with different conduction velocities. c) The technique of magnetically stimulating the motor cortex was applied for the measurement of central motor conduction time (CMCT). 4) In the near future, neurophysiological examinations will include an EEG automatic diagnostic support system, neurophysiological network system, paperless digital EEG machine and non-invasive functional mapping with multichannel near infrared spectroscopic topography et al.
本文讨论了以下可能在未来采用的常规检查和新的神经生理学检查。1)脑电图:a)源推导方法和颅内脑电图记录方法有助于检测癫痫发作的确切病灶。b)多导睡眠图用于睡眠障碍(如呼吸暂停综合征)。c)脑电图地形图和脑电源分析(BESA)不仅应用于神经系统疾病,还用于检测电等效偶极子源定位。2)诱发电位(EP):常规技术的听觉脑干反应(ABR)、体感诱发电位(SSEP)和视觉诱发电位(P-VEP)有助于诊断脑肿瘤和脱髓鞘疾病。近年来,事件相关电位(ERP)在人类认知研究中受到关注。3)肌电图和诱发肌电图:a)模板匹配法的运动单位电位(MUP)分析和单纤维肌电图是肌电图的研究热点。b)诱发肌电图的M波已用于测量最大神经传导速度。此外,碰撞技术和微神经ography可应用于多种不同传导速度的神经。c)磁刺激运动皮层技术用于测量中枢运动传导时间(CMCT)。4)在不久的将来,神经生理学检查将包括脑电图自动诊断支持系统、神经生理学网络系统、无纸数字脑电图机和多通道近红外光谱地形图等无创功能图谱。