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PMID: 26650047 Published · aheadofprint English

Deep brain stimulation of the nucleus ventralis intermedius: a thalamic site of graviceptive modulation.

Baier Bernhard, Vogt Thomas, Rohde Franziska, Cuvenhaus Hannah, Conrad Julian, Dieterich Marianne

Abstract

Based on animal studies, it has been shown that the nucleus ventralis intermedius (VIM) of the thalamus plays an important role within the vestibular system. A few human studies support the vestibular role of the VIM. In this study, we aimed to test the hypothesis whether changing the stimulation status in patients with unilateral deep brain stimulation in the VIM causally modulates the vestibular system, i.e., the graviceptive vertical perception. We tested six tremor patients for tilt of subjective visual vertical (SVV) with unilateral DBS in the VIM (mean age 67 years; mean time since electrode implantation 55 months). The mean tilt of the patients during the stimulator "on" condition was 1.4° to the contraversive side [standard deviation (SD) ± 0.4°] whereas during the "off" period a mean contraversive tilt of 4.4° (SD ± 3.0°) was obtained (p = 0.02). Thus, we were able to show that otolith-dominated graviceptive vertical perception can be directly modulated by changing the status of DBS VIM stimulation, indicating that the VIM is directly involved in (contraversive) vertical perception and its thalamic pathways.

Keywords
Deep brain stimulation Thalamus VIM Vestibular system
MeSH 主题词
Aged Deep Brain Stimulation Female Gravity Sensing/physiology Humans Male Tremor/physiopathology Ventral Thalamic Nuclei/physiology Vestibule, Labyrinth/physiology
Article Info
Journal
Brain structure & function
Abbr.
Brain Struct Funct
Published
0000-00-00
Indexed
2015-12-09
Updated
2015-12-10
Language
English
Country/Region
Germany
NLM ID
101282001
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