Bonanno Mirjam, De Nunzio Alessandro Marco, Quartarone Angelo, Militi Annalisa, Petralito Francesco, Calabrò Rocco Salvatore
IRCCS Centro Neurolesi "Bonino-Pulejo", Via Palermo, SS 113, C. da Casazza, 98123 Messina, Italy.
Department of Research and Development, LUNEX International University of Health, Exercise and Sports, Avenue du Parc des Sports, 50, 4671 Differdange, Luxembourg.
Bioengineering (Basel). 2023 Jun 30;10(7):785. doi: 10.3390/bioengineering10070785.
When brain damage occurs, gait and balance are often impaired. Evaluation of the gait cycle, therefore, has a pivotal role during the rehabilitation path of subjects who suffer from neurological disorders. Gait analysis can be performed through laboratory systems, non-wearable sensors (NWS), and/or wearable sensors (WS). Using these tools, physiotherapists and neurologists have more objective measures of motion function and can plan tailored and specific gait and balance training early to achieve better outcomes and improve patients' quality of life. However, most of these innovative tools are used for research purposes (especially the laboratory systems and NWS), although they deserve more attention in the rehabilitation field, considering their potential in improving clinical practice. In this narrative review, we aimed to summarize the most used gait analysis systems in neurological patients, shedding some light on their clinical value and implications for neurorehabilitation practice.
当发生脑损伤时,步态和平衡往往会受到损害。因此,在患有神经系统疾病的患者的康复过程中,步态周期评估起着关键作用。步态分析可以通过实验室系统、非穿戴式传感器(NWS)和/或可穿戴式传感器(WS)来进行。利用这些工具,物理治疗师和神经科医生对运动功能有了更客观的测量方法,并且可以尽早规划量身定制的特定步态和平衡训练,以取得更好的效果并改善患者的生活质量。然而,这些创新工具大多用于研究目的(尤其是实验室系统和NWS),尽管考虑到它们在改善临床实践方面的潜力,它们在康复领域应得到更多关注。在这篇叙述性综述中,我们旨在总结神经科患者中最常用的步态分析系统,阐明它们的临床价值以及对神经康复实践的意义。