Miznerova Barbora, Reissigova Jindra, Vasa Libor, Frank Jakub, Hudec Michael, Rodina Lubomir, Herynkova Anna, Havlik Jan, Tintera Jaroslav, Rydlo Jan, Ibrahim Ibrahim, O'Leary Valerie B, Cerna Marie, Jurickova Iva, Pokorna Marketa, Philipp Tom, Hlinovska Jana, Stetkarova Ivana, Rasova Kamila
Department of Rehabilitation and Sports Medicine, Second Medical Faculty, Charles University and University Hospital Motol, Prague, Czech Republic.
Department of Rheumatology and Physiotherapy, Third Faculty of Medicine, Charles University and Thomayer University Hospital, Prague, Czech Republic.
BMJ Open. 2025 Jan 9;15(1):e088046. doi: 10.1136/bmjopen-2024-088046.
Upper limb (UL) impairment is common in people with multiple sclerosis (pwMS), and functional recovery of the UL is a key rehabilitation goal. Technology-based approaches, like virtual reality (VR), are increasingly promising. While most VR environments are task-oriented, our clinical approach integrates neuroproprioceptive 'facilitation and inhibition' (NFI) principles. To advance this, we developed immersive VR software based on NFI principles targeting UL function and sit-to-stand ability. This study aims to evaluate the effectiveness of this VR therapy compared with conventional NFI-based physical therapy in pwMS. Our study uniquely applies advanced imaging techniques, along with biological molecular assessments, to explore adaptive processes induced by VR rehabilitation.
This double-arm, randomised, assessor-blinded, controlled trial runs over 2 months (1 hour, 2 times per week). PwMS with mild to severe disability will receive either VR therapy or real-world physical therapy. Primary outcomes include the nine-hole peg test, box and block test, handgrip strength, tremor and five times sit-to-stand test. Secondary measures include the Multiple Sclerosis Impact Scale, the 5-level EQ-5D questionnaire and kinematic analysis. Adaptive processes will be monitored using imaging techniques (functional MRI and tractography), molecular genetic methods (long non-coding RNAs) and immune system markers (leukocytes, dendritic cells). The International Classification of Functioning, Disability and Health brief set for MS will map the bio-psycho-social context of participants.
This project and its amendments were approved by the Ethics Committee of the Institute for Clinical and Experimental Medicine and Thomayer Hospital (1983/21+4772/21 (G-21-02) and the Ethics Committee of Kralovske Vinohrady University Hospital (EK-VP/38/0/2021) in Prague, Czechia (with single enrolment). The findings of this project will be disseminated through scientific publications, conferences, professional networks, public engagement, educational materials and stakeholder briefings to ensure a broad impact across clinical, academic and public domains.
clinicaltrials.gov (NCT04807738).
上肢功能障碍在多发性硬化症患者中很常见,上肢功能恢复是关键的康复目标。基于技术的方法,如虚拟现实(VR),前景越来越广阔。虽然大多数VR环境以任务为导向,但我们的临床方法整合了神经本体感觉的“促进和抑制”(NFI)原则。为了推进这一方法,我们基于NFI原则开发了针对上肢功能和坐立能力的沉浸式VR软件。本研究旨在评估这种VR疗法与传统的基于NFI的物理疗法相比,对多发性硬化症患者的有效性。我们的研究独特地应用了先进的成像技术以及生物分子评估,以探索VR康复诱导的适应性过程。
这项双臂、随机、评估者盲法、对照试验为期2个月(每周2次,每次1小时)。中重度残疾的多发性硬化症患者将接受VR疗法或现实世界的物理疗法。主要结局包括九孔插板试验、方块搭积木试验、握力、震颤和五次坐立试验。次要指标包括多发性硬化症影响量表、5级EQ-5D问卷和运动学分析。将使用成像技术(功能磁共振成像和纤维束成像)、分子遗传学方法(长链非编码RNA)和免疫系统标志物(白细胞、树突状细胞)监测适应性过程。MS的国际功能、残疾和健康简表将描绘参与者的生物心理社会背景。
本项目及其修正案已获得布拉格捷克共和国临床与实验医学研究所和托马耶尔医院伦理委员会(1983/21+4772/21(G-21-02))以及克拉洛夫斯基维诺赫拉迪大学医院伦理委员会(EK-VP/38/0/2021)的批准(单次入组)。本项目的研究结果将通过科学出版物、会议、专业网络、公众参与、教育材料和利益相关者简报进行传播,以确保在临床、学术和公共领域产生广泛影响。
clinicaltrials.gov(NCT04807738)