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Tremor, Limb clinical trials

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NCT ID: NCT04815382 Recruiting - Parkinson Disease Clinical Trials

Effects of a Dynamic Upper Limb Orthosis in Patients With Parkinson's Disease

Start date: January 1, 2021
Phase: N/A
Study type: Interventional

This is a randomized controlled clinical trial aimed at Parkinson's disease patients. Its objective is to evaluate the effects of a dynamic upper limb orthosis to achieve maximum hand functionality, reducing tremor and rigidity

NCT ID: NCT03136341 Recruiting - Tremor, Limb Clinical Trials

A Cross Over Pilot Study of Abobotulinum Toxin A (Dysport) as a Treatment for Task-dependent Upper Limb Tremor

Start date: December 4, 2018
Phase: Phase 4
Study type: Interventional

Task-dependent upper limb tremor is a disorder that frequently impairs patients' function and quality of life. Few studies exist that quantify the improvements in motor performance and disability with botulinum toxin (injections). The study team aims to perform an exploratory pilot trial using toxin Type A (Dysport) in 25 patients with task-dependent upper limb tremor, to refine quantitative measures of performance using blinded video analysis, demonstrate efficacy and tolerability of injections, and provide power calculations for a potential future multi-centered double blinded clinical trial.

NCT ID: NCT02585583 Recruiting - Tremor, Limb Clinical Trials

Deep Brain Frameless Radiosurgery for Drug Resistant Invalidating Tremor. Dose Escalation Pilot Study

PRDBRS2
Start date: May 2015
Phase: N/A
Study type: Interventional

The gamma knife radiosurgical thalamotomy to treat many movement disorders is recently becoming a new and well defined treatment paradigm. The CyberKnife if compared to the frame-based radiosurgery, is a pain free procedure which offers the advantage of a better patient's compliance by avoiding local anaesthesia and the discomfort due to wearing the frame for the period of time needed for the whole procedure. Unfortunately the subtle but substantial differences about the 3D dose distribution and the dose fall-off features between GK and CK made mandatory investigations about the effectiveness and the safety when the cyberknife is used. Particularly the minimum effective and safety dose have to be defined yet A previous study (NCT02095600) failed in demonstrating the efficacy of 75 Gy, 80 Gy, 90 Gy. The aim of the present study is to investigate about the effectiveness of 100 Gy, 120 Gy, 130 Gy and 140 Gy. The safety and the targeting methodology will be also in investigated.