Gerhalter Teresa, Müller Christina, Maron Elke, Thielen Markus, Schätzl Teresa, Mähler Anja, Schütte Till, Boschmann Michael, Herzer René, Spuler Simone, Gazzerro Elisabetta
Muscle Research Unit, Charité-Universitätsmedizin Berlin, Berlin, Germany.
Experimental and Clinical Research Center, a joint Cooperation between the Max Delbrück Center for Molecular Medicine in the Helmholtz Association and the Charité-Universitätsmedizin Berlin, Berlin, Germany.
Front Physiol. 2023 Jan 26;14:1057592. doi: 10.3389/fphys.2023.1057592. eCollection 2023.
In the field of non-treatable muscular dystrophies, promising new gene and cell therapies are being developed and are entering clinical trials. Objective assessment of therapeutic effects on motor function is mandatory for economical and ethical reasons. Main shortcomings of existing measurements are discontinuous data collection in artificial settings as well as a major focus on walking, neglecting the importance of hand and arm movements for patients' independence. We aimed to create a digital tool to measure muscle function with an emphasis on upper limb motility. : suMus provides a custom-made App running on smartwatches. Movement data are sent to the backend of a suMus web-based platform, from which they can be extracted as CSV data. Fifty patients with neuromuscular diseases assessed the pool of suMus activities in a first orientation phase. suMus performance was hence validated in four upper extremity exercises based on the feedback of the orientation phase. We monitored the arm metrics in a cohort of healthy volunteers using the suMus application, while completing each exercise at low frequency in a metabolic chamber. Collected movement data encompassed average acceleration, rotation rate as well as activity counts. Spearman rank tests correlated movement data with energy expenditure from the metabolic chamber. Our novel application "suMus," sum of muscle activity, collects muscle movement data plus Patient-Related-Outcome-Measures, sends real-time feedback to patients and caregivers and provides, while ensuring data protection, a long-term follow-up of disease course. The application was well received from the patients during the orientation phase. In our pilot study, energy expenditure did not differ between overnight fasted and non-fasted participants. Acceleration ranged from 1.7 ± 0.7 to 3.2 ± 0.5 m/sec with rotation rates between 0.9 ± 0.5 and 2.0 ± 3.4 rad/sec. Acceleration and rotation rate as well as derived activity counts correlated with energy expenditure values measured in the metabolic chamber for one exercise (r = 0.58, < 0.03). In the analysis of slow frequency movements of upper extremities, the integration of the suMus application with smartwatch sensors characterized motion parameters, thus supporting a use in clinical trial outcome measures. Alternative methodologies need to complement indirect calorimetry in validating accelerometer-derived energy expenditure data.
在不可治疗的肌肉萎缩症领域,有前景的新基因和细胞疗法正在研发中,并已进入临床试验阶段。出于经济和伦理原因,对运动功能的治疗效果进行客观评估是必不可少的。现有测量方法的主要缺点是在人工环境中进行不连续的数据收集,并且主要侧重于步行,而忽视了手部和手臂运动对患者独立性的重要性。我们旨在创建一种数字工具来测量肌肉功能,重点关注上肢运动能力。suMus提供了一款在智能手表上运行的定制应用程序。运动数据被发送到基于网络的suMus平台的后端,可以从中提取为CSV数据。50名神经肌肉疾病患者在第一个定向阶段评估了suMus活动库。因此,根据定向阶段的反馈,在四项上肢运动中验证了suMus的性能。我们使用suMus应用程序在一组健康志愿者中监测手臂指标,同时在代谢室中以低频完成每项运动。收集的运动数据包括平均加速度、旋转速率以及活动计数。Spearman秩检验将运动数据与代谢室的能量消耗相关联。我们的新型应用程序“suMus”,即肌肉活动总和,收集肌肉运动数据以及患者相关结局测量数据,向患者和护理人员发送实时反馈,并在确保数据保护的同时,对疾病进程进行长期随访。该应用程序在定向阶段受到了患者的好评。在我们的初步研究中,过夜禁食和未禁食的参与者之间的能量消耗没有差异。加速度范围为1.7±0.7至3.2±0.5米/秒,旋转速率在0.9±0.5至2.0±3.4弧度/秒之间。加速度、旋转速率以及由此得出的活动计数与一项运动在代谢室中测量的能量消耗值相关(r = 0.58,<0.03)。在上肢慢频率运动的分析中,suMus应用程序与智能手表传感器的集成表征了运动参数,从而支持其在临床试验结局测量中的应用。在验证加速度计得出的能量消耗数据时,需要其他方法来补充间接量热法。