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Mapping human brain activity in vivo.

机译:在体内绘制人脑活动图。

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摘要

A wide range of structural and functional techniques now exists to map the human brain in health and disease. These approaches span the gamut from external tomographic imaging devices (positron-emission tomography, single photon-emission computed tomography, magnetic resonance imaging, computed tomography), to surface detectors (electroencephalography, magnetoencephalography, transcranial magnetic stimulation), to measurements made directly on the brain's surface or beneath it (intrinsic signal imaging, electrocorticography). The noninvasive methods have been combined to provide unique and previously unavailable insights into the macroscopic organization of the functional neuroanatomy of human vision, sensation, hearing, movement, language, learning, and memory. All methods have been applied to patients with neurologic, neurosurgical, and psychiatric disease and have provided a rapidly expanding knowledge of the pathophysiology of diseases such as epilepsy, cerebrovascular disease, neoplasms, neurodegenerative diseases, mental illness, and addiction states. In addition, these new methods have become a mainstay of preoperative surgical planning and the monitoring of pharmacologic or surgical (transplantation) interventions. Most recently, the ability to observe the reorganization of the human nervous system after acute injury, such as occurs with cerebral infarction or head trauma, or in the course of a progressive degenerative process such as Alzheimer's or Parkinson's disease, may provide new insights and methods in the rapidly expanding field of neurorehabilitation. Our newfound ability to generate maps and databases of human brain development, maturation, skill acquisition, aging, and disease states is both an exciting and formidable task.
机译:现在,存在各种各样的结构和功能技术,可以在健康和疾病中绘制人脑图。这些方法涵盖了从外部断层成像设备(正电子发射断层成像,单光子发射计算机断层扫描,磁共振成像,计算机断层扫描)到表面检测器(脑电图,脑磁图,经颅磁刺激)的范围,以及直接在脑电图上进行测量的范围。大脑的表面或其下方(本征信号成像,皮质脑电图)。结合了非侵入性方法,可以为人类视觉,感觉,听觉,运动,语言,学习和记忆的功能神经解剖学的宏观组织提供独特且以前无法获得的见解。所有方法已应用于患有神经病,神经外科疾病和精神病的患者,并提供了对疾病的病理生理学的快速扩展的知识,例如癫痫,脑血管疾病,肿瘤,神经退行性疾病,精神疾病和成瘾状态。此外,这些新方法已成为术前手术计划和药理或手术(移植)干预措施监测的主要手段。最近,观察急性损伤后,例如脑梗塞或头部外伤,或在进行性退化过程(例如阿尔茨海默氏病或​​帕金森氏病)过程中观察人类神经系统重组的能力,可能提供新的见解和方法。在神经康复领域迅速发展。我们具有生成人脑发育,成熟,技能习得,衰老和疾病状态的地图和数据库的新能力,既是令人兴奋又艰巨的任务。

著录项

  • 期刊名称 California Medicine
  • 作者

    J C Mazziotta;

  • 作者单位
  • 年(卷),期 1994(161),3
  • 年度 1994
  • 页码 273–278
  • 总页数 6
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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