Bromm B, Lorenz J
Institute for Physiology, University Hospital Eppendorf, Hamburg, Germany.
Electroencephalogr Clin Neurophysiol. 1998 Oct;107(4):227-53. doi: 10.1016/s0013-4694(98)00075-3.
Neurophysiological techniques for the evaluation of pain in humans have made important advances in the last decade. A number of features of neuroanatomy and physiology of nociception qualifies pain as a multidimensional phenomenon which is rather unique among the sensory systems and which poses a number of technical and procedural requirements for its appropriate diagnostic assessment. Various stimulation techniques to induce defined pain in humans and used in combination with the methodology of evoked electrical brain potentials and magnetic fields are presented. Most recent knowledge gathered from scalp topography and dipole source analysis of pain-relevant evoked potentials and fields is discussed. Particular emphasis is put upon laser-evoked potentials and their application for diagnosis, pathophysiological description and monitoring of patients with neurological disorders and abnormal pain states. Future perspectives in this growing field of research are discussed briefly.
在过去十年中,用于评估人类疼痛的神经生理学技术取得了重要进展。伤害感受的神经解剖学和生理学的一些特征使疼痛成为一种多维现象,这在感觉系统中相当独特,并且对其进行适当的诊断评估提出了许多技术和程序要求。本文介绍了用于在人类中诱发特定疼痛并与诱发脑电和磁场方法结合使用的各种刺激技术。讨论了从头皮地形图以及与疼痛相关的诱发电位和场的偶极子源分析中获得的最新知识。特别强调了激光诱发电位及其在神经系统疾病和异常疼痛状态患者的诊断、病理生理学描述和监测中的应用。简要讨论了这个不断发展的研究领域的未来前景。