Feasibility of Two Novel Interactive Software Modules for the Rehabilitation of Patients With Neuromuscular Upper Limb Impairments Using the YouGrabber Training System - the KAYO Study Protocol
试验速览
- 阶段
- 不适用
- 状态
- 撤回
- 主要终点
- cARAT
研究概览
简要总结
Introduction: In the recent past, medical training systems using virtual reality (VR) have been introduced to neurorehabilitation to train motor function deficits in patients. The usage of VR-based training systems is based on the evidence of neuroplasticity, which is responsible for recovery of patients suffering from motor dysfunction. Such systems are increasingly used to encourage purposeful limb movements in a VR environment and its efficacy has been found comparable with conventional therapeutic intervention. VR training systems, e.g. the YouGrabber® (YG), will increasingly also be used at home. Therefore, it is essential to integrate valid and reliable assessment tools to monitor the recovery process.
Objectives: The aim of the clinical study is to evaluate the usability, feasibility and validity of the digital version of the ActionResearchArmTest (d-ARAT) using the YG system as a platform. Additionally, the feasibility and usability of the implementation of two rehabilitation measures that only recently became integral part of neurorehabilitation, e.g. Action Observation (AO) and Motor Imagery (MI), into the YG training software will be evaluated. Patients & methods: This observational study is designed as a single-arm trial for testing the assessment software including pre- to post rehabilitation comparison of a training involving AO and MI. Therefore, 75 adult patients with Parkinson's disease, MS, Stroke, traumatic brain injury or Guillain-Barré syndrome will be included. 30 out of the 75 patients will take part in the 4-week training on the enhanced VR-based system with a total of 16 training sessions of 45 min each. Primary outcomes will be the score on the System Usability Scale (SUS) and the ARAT as well as the d-ARAT scores. Secondary outcomes will be hand dexterity (Box-and-Block Test), upper limb activities of daily living (CAHAI) and quality of life (EQ-5D-5L).
Hypothesis: The study was designed to evaluate the d-ARAT and the training software modules for the YG system. Currently AO and MI specific tasks are being integrated and the ARAT subscales will be implemented on the basis of the redesigned glove equipped with new sensors. The results are expected to give recommendations for necessary modifications. They might also contribute knowledge concerning the application of AO and MI tasks within VR training.
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
- 否
入选标准
- •Patients with motor function impairments of one or both upper limbs caused by Parkinson's disease, MS, Stroke, traumatic brain injury or Guillain-Barré syndrome
- •Able to sit in a normal chair without armrests
- •Able to score at least one in the Box and Block Test (BBT)
- •Comprehend German
- •Informed Consent as documented by signature
排除标准
- •Wrist-, hand- or finger contractures or an unconsolidated upper limb fracture
- •Severe cognitive deficits: Mini-Mental-Status-Test (MMSE) ≤ 20
- •Severe spatial-visual disorders, e.g. severe visual neglect
- •History of epileptic seizures triggered by visual stimuli (e.g. television, video games) within the last six months
- •Enrolment of the investigator, his/her family members, employees and other dependent persons
- •Full score in the Chedoke Arm and Hand Activity Inventory (CAHAI) assessment
- •Brain pacemaker
结局指标
主要结局
cARAT
时间窗: 17 weeks
Score on the conventional Action Research Arm Test
dARAT
时间窗: 17 weeks
score on the digital ARAT
SUS
时间窗: 15 weeks
System Usability Scale questionnaire
次要结局
- EQ-5D-5L(17 weeks)
- PGIC(11 weeks)
- BBT(17 weeks)
- CAHAI(17 weeks)
研究者
Frank Behrendt
Principal Investigator
Reha Rheinfelden
