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临床试验/NCT00755339
NCT00755339已完成不适用

Understanding the Anatomy and Physiology of the Sensory Experience and Its Role in Generating Tics in Tourette Syndrome

National Institute of Neurological Disorders and Stroke (NINDS)1 个研究点 分布在 1 个国家目标入组 54 人开始时间: 2008年9月15日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
54
试验地点
1
主要终点
Inhibition of the sensory experience frequency and intensity.

研究概览

简要总结

This study will investigate the sensation that many people with Tourette syndrome (TS) experience before they have a motor tic. It will also test whether blocking the sensation causes the tic to stop.

People between 18 and 65 years of age with TS who have at least once tic involving an arm may be eligible for this 3-part study. Those enrolled may participate in all parts or in part 1 or part 2. Those who choose to participate in part 3 must first complete part 2. All must stop taking medication for TS and any other medication that may affect the brain for at least 1 week before the study.

Part 1

After numbing the skin or muscles of the arm or leg where a pre-tic sensation is experienced, the response of the nerves will be tested by asking subjects to rate the strength of the sensation after a pinprick and by stimulating the nerves with small electrical shocks. Then, over the course of approximately one hour, subjects will report pre-tic sensations while their motor tics are counted. The onset of each tic will be identified with EMG, a test using electrodes on the skin to indicate the activity of the muscles.

Part 2

Subjects brain waves are recorded using magnetoencephalography (MEG) while they are experiencing tics andpre-tic sensory experiences. MEG is a test that records magnetic field changes produced by brain activity. Subjects sit in a chair under a dome containing magnetic field detectors. They watch a clock and report the time a sensory experience starts. Tics are recorded with EMG. Later, a standard MRI of the brain (scan using a magnetic field and radio waves) is done to see which parts of the brain produced the activity recorded with MEG.

Part 3

Repetitive transcranial magnetic stimulation (rTMS) is used to try to stop the pre-tic sensations. For TMS, the subject sits in a chair. A wire coil is held on the subject s scalp, and a brief electrical current is passed through the coil, creating a magnetic pulse that stimulates a region of the brain. The goal of this stimulation is to reduce the sensory experience that precedes a tic in one region of the body. During stimulation, the subject hears a click and may feel a pulling sensation on the skin under the coil. There may be a twitch in the muscles of the face, arm or leg. This study uses a pattern of repeated pulses delivered in short bursts. Following each train of pulses, the effect of the stimulation on sensation will be tested by asking the subject to rate the strength of a pinprick and of a vibration. In addition, the nerves are stimulated with small shocks to evaluate the effect of the TMS on nerve activity. To determine the effect of TMS on the pre-tic sensation, subjects are asked to watch a clock and report when they are having a sensory experience. The effect on motor tics will be evaluated by using EMG to indicate the tics.

详细描述

Objectives:

We will investigate whether the sensory experience that precedes motor tics in Tourette syndrome is generated in the peripheral nervous system and whether it may result from altered sensory gating, and whether it is necessary to generate motor tics.

Study Population:

We will study 100 subjects. Thirty-five individuals with a diagnosis of Tourette syndrome who can describe a sensory experience preceding their tics, and 10 who deny a sensory prodrome for a total of 45 subjects. We will also study 55 Healthy volunteers ages 18-65..

Design: A Two-Part Study

研究设计

研究类型
Observational
时间视角
Prospective

入排标准

年龄范围
18 Years 至 65 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • 未提供

排除标准

  • 未提供

结局指标

主要结局

Inhibition of the sensory experience frequency and intensity.

次要结局

  • The relationship between inhibition of sensory and motor experiences; and detecting and localizing an electromagnetic signal corresponding to the sensory experience.

研究者

研究点 (1)

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