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临床试验/NCT05909839
NCT05909839招募中不适用

The STEREO-DBS Study: 7-Tesla MRI Brain Network Analysis for Deep Brain Stimulation in Essential Tremor

Academisch Medisch Centrum - Universiteit van Amsterdam (AMC-UvA)1 个研究点 分布在 1 个国家目标入组 500 人开始时间: 2023年6月9日最近更新:
适应症

试验速览

阶段
不适用
状态
招募中
入组人数
500
试验地点
1
主要终点
Essential Tremor Rating Assessment Scale (TETRAS)

研究概览

简要总结

Rationale: Deep brain stimulation (DBS) of the thalamus is an effective surgical treatment for the patients with advanced essential tremor, despite optimal pharmacological treatment. However, individual improvement after DBS remains variable and 20% of patients experience side effects. To date, DBS-electrode placement and settings in the highly connected thalamus are based on 1,5-Tesla or 3-Tesla MR-images. These low resolution and solely structural modalities are unable to visualize the multiple brain networks to this small nucleus and prevent electrode activation directed at its cortical projections. By using structural 7-Tesla MRI (7T MRI) connectivity to visualize (malfunctioning) brain networks, DBS-electrode placement and activation can be individualized.

Objective: Primary objective of the study is to determine whether visualisation of cortical projections originating in the thalamus and the position of the DBS electrode relative to these projections using 7T MRI improves tremor as measured by the clinically validated Essential Tremor Rating Assessment Scale after six months of DBS.

Secondary outcomes are: disease related daily functioning, adverse effects, operation time, quality of life, patient satisfaction with treatment outcome and patient evaluation of treatment burden.

Study design: The study will be a single center prospective observational study.

Study population: Enrollment will be ongoing from June 2023. Intervention (if applicable): No intervention will be applied. Application of 7T MRI for DBS is standard care and outcome scores used will be readily accessible from the already existing advanced electronic DBS database.

Main study parameters/endpoints: The primary outcome measure is the change in motor symptoms as measured by the disease-specific Essential Tremor Rating Assessment Scale (TETRAS). This is measured after 6 months of DBS as part of standard care. The secondary outcome measures are the Amsterdam Linear Disability Score for functional health status, Quality of Life in Essential Tremor Questionnaire, patient satisfaction with the treatment, patient evaluation of treatment burden, operating time, hospitalization time, change of tremor medication, side effects and complications.

Nature and extent of the burden and risks associated with participation, benefit and group relatedness: The proposed observational research project involves treatment options that are standard care in daily practice. The therapies will not be combined with other research products. Participation in this study constitutes negligible risk according to NFU criteria for human research.

详细描述

INTRODUCTION AND RATIONALE

Deep brain stimulation (DBS) is an effective treatment in essential tremor (ET), a slowly progressive neurological disorder. The effect of DBS relies on the modulation of malfunctioning brain networks by delivering electrical pulses within the thalamus. However, individual improvement after DBS remains variable and 20% of patients experience side effects. By using structural 7-Tesla magnetic resonance imaging (7T MRI) connectivity to visualize malfunctioning networks, DBS-electrode placement and activation can be individualized.

Current DBS-electrode placement and settings in the highly connected thalamus are based on 1.5-Tesla or 3-Tesla MR-images. These low resolution modalities are unable to visualize the multiple brain networks to this small nucleus and prevent electrode activation directed at its cortical projections. Integrated structural (7T MRI) network maps will enable brain network-based and patient-specific DBS, improving motor symptoms and quality of life.

Since the 1980s, DBS for ET was targeting the thalamus, a deep-seated grey matter brain nucleus. Current emphasis in the field of DBS is on neural networks rather than separate nuclei in the brain. Several studies showed ET to arise from pathological network activity in cerebellar-thalamic-cortical projections; dentato-rubro-thalamic-tract. In recent years several DBS groups reported about using MRI to visualize thalamic connectivity and the dentato-rubro-thalamic tract, in DBS for ET.

The thalamus is part of multiple large brain networks. DBS is effective in improving tremor and quality of life for ET patients only by modulating its motor network. For improving DBS placement and activation, it is essential to understand the networks and the modulatory effect of stimulation. Thus far, visualization of these networks was limited due to low resolution and the lack of structural connectivity (visualising -cerebellar-thalamic-cortical projections using diffusion weighted MRI and probabilistic connectivity).

研究设计

研究类型
Observational
观察模型
Cohort
时间视角
Prospective

入排标准

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

入选标准

  • Age > 18 years
  • Idiopathic essential tremor who underwent DBS

排除标准

  • Legally incompetent adults
  • No written informed consent

结局指标

主要结局

Essential Tremor Rating Assessment Scale (TETRAS)

时间窗: June 2023 - June 2033

The amount of decrease in motor symptoms indicated by change in the disease-specific Essential Tremor Rating Assessment Scale (TETRAS) after six months of deep brain stimulation. The TETRAS scores are between 0 and 64; higher scores indicating worse (more severe) tremor symptoms.

次要结局

  • Global Impression of Change(June 2023 - June 2033)
  • The Amsterdam Linear Disability Score for functional health status(June 2023 - June 2033)
  • Quality of Life in Essential Tremor Questionnaire(June 2023 - June 2033)
  • EQ-5D-5L(June 2023 - June 2033)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Maarten Bot

Principal Investigator

Academisch Medisch Centrum - Universiteit van Amsterdam (AMC-UvA)

研究点 (1)

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