Kim Jong Moon, Tay Matthew Rong Jie, Rajeswaran Deshan Kumar, Tham Shuen-Loong, Lui Wen Li, Kong Keng He
Department of Rehabilitation Medicine, Tan Tock Seng Hospital Rehabilitation Centre, Singapore.
NeuroRehabilitation. 2021;49(4):565-572. doi: 10.3233/NRE-210257.
Early muscle changes are believed to occur in patients with stroke. However, there are insufficient data on the changes in muscle mass and architecture of these patients.
This study investigates differences in ultrasound-derived muscle architecture parameters of the hemiplegic upper and lower limbs in patients with subacute stroke.
This is a prospective observational study, which recruited 40 adult patients who had experienced a first ever unilateral stroke (ischemic or hemorrhagic), with a duration of < 1 month post stroke. The brachialis, vastus lateralis and medial gastrocnemius on both the hemiplegic and normal side were evaluated via ultrasound. We recorded clinical variables including Motricity Index, Modified Ashworth Scale (MAS) and Functional Independence Measure (FIM)-walk.
We found reduced mean muscle thickness (p < 0.001) and increased echo intensity (p < 0.001) in the brachialis muscle, increased echo intensity (p = 0.002) in the vastus lateralis muscle, and reduced muscle thickness (p < 0.001) with increased echo intensity (p < 0.001) in the medial gastrocnemius muscle compared to the normal side. There were no significant correlations between ultrasound findings and Motricity Index.
We report changes in ultrasound-derived muscle architecture in the hemiplegic limbs of patients with subacute stroke, with consistent findings of decreased muscle mass and increased echo intensity.
人们认为中风患者会出现早期肌肉变化。然而,关于这些患者肌肉质量和结构变化的数据不足。
本研究调查亚急性中风患者偏瘫上下肢超声衍生肌肉结构参数的差异。
这是一项前瞻性观察性研究,招募了40名首次发生单侧中风(缺血性或出血性)且中风后病程<1个月的成年患者。通过超声评估偏瘫侧和正常侧的肱肌、股外侧肌和腓肠肌内侧头。我们记录了临床变量,包括运动指数、改良Ashworth量表(MAS)和功能独立性测量(FIM)-步行。
与正常侧相比,我们发现肱肌平均肌肉厚度降低(p<0.001)且回声强度增加(p<0.001),股外侧肌回声强度增加(p = 0.002),腓肠肌内侧头肌厚度降低(p<0.001)且回声强度增加(p<0.001)。超声检查结果与运动指数之间无显著相关性。
我们报告了亚急性中风患者偏瘫肢体超声衍生肌肉结构的变化,一致发现肌肉质量下降和回声强度增加。