4.4 Article

Neuronal responses to tactile stimuli and tactile sensations evoked by microstimulation in the human thalamic principal somatic sensory nucleus (ventral caudal)

期刊

JOURNAL OF NEUROPHYSIOLOGY
卷 115, 期 5, 页码 2421-2433

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/jn.00611.2015

关键词

amputation; dystonia; neurophysiology; spinal transection; single neuron recordings; ventral posterior thalamus

资金

  1. Eli Lilly Corporation
  2. National Institute of Neurological Disorders and Stroke [NS38493]
  3. Johns Hopkins Neurosurgical Pain Research Institute

向作者/读者索取更多资源

The normal organization and plasticity of the cutaneous core of the thalamic principal somatosensory nucleus (ventral caudal, Vc) have been studied by single-neuron recordings and microstimulation in patients undergoing awake stereotactic operations for essential tremor (ET) without apparent somatic sensory abnormality and in patients with dystonia or chronic pain secondary to major nervous system injury. In patients with ET, most Vc neurons responded to one of the four stimuli, each of which optimally activates one mechanoreceptor type. Sensations evoked by microstimulation were similar to those evoked by the optimal stimulus only among rapidly adapting neurons. In patients with ET, Vc was highly segmented somatotopically, and vibration, movement, pressure, and sharp sensations were usually evoked by microstimulation at separate sites in Vc. In patients with conditions including spinal cord transection, amputation, or dystonia, RFs were mismatched with projected fields more commonly than in patients with ET. The representation of the border of the anesthetic area (e.g., stump) or of the dystonic limb was much larger than that of the same part of the body in patients with ET. This review describes the organization and reorganization of human Vc neuronal activity in nervous system injury and dystonia and then proposes basic mechanisms.

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