中风后运动障碍:创新技术的可能性和自己研究的结果

E. Kostenko, L. Petrova, A. Rylsky
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摘要

介绍。本文综述了基于神经肌肉电刺激(NFES)和生物反馈(BFB)的患者感觉运动再训练方法的创新技术,这是脑卒中(BS)患者运动损伤医学康复(MR)中最有前途的方法。本文还介绍了我们自己的研究结果。本研究的目的是评估包括NFES和稳定体位控制在内的综合康复方案在慢性缺血性卒中(IS)卒中后运动功能障碍患者中使用BFB方法的有效性。材料和方法。87例慢性IS患者(女性41例,男性46例),平均年龄58.4±6.4岁。卒中持续时间为228.59±31.9天。主要组包括52例患者,他们在标准治疗方案的同时接受了NFES和bfb稳定训练。对照组为35例康复复合体未采用上述方法的患者。结果与结论。由于复杂的康复与NFES和BFB稳定的姿势训练,它已经改善了步行功能。临床效果在康复开始后3周可见,在第5周达到最大值。在医学康复中纳入以bfb为基础的方法,可使脑卒中后患者的运动和社会适应更早,受损平衡功能恢复,并与神经可塑性增加有关。
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POST-STROKE MOTOR IMPAIRMENTS: THE POSSIBILITIES OF INNOVATIVE TECHNOLOGIES AND THE RESULTS OF THE OWN RESEARCH
Introduction.The article presents an overview of innovative technologies based on methods sensomotor retraining of the patient using neuromuscular electrical stimulation (NFES) and biofeedback (BFB) as the most promising in the medical rehabilitation (MR) of motor impairment in patients with brain stroke (BS). The results of our own study are also presented.The aim of the study - an assessment of the effectiveness of a comprehensive rehabilitation program with the inclusion of NFES and stabilometric postural control using the BFB method in patients with after-stroke motor disfunction in the chronic ischemic stroke (IS).Material and methods. We examined 87 patients (41 women and 46 men) in the chronic IS, mean age 58.4±6.4 years. The stroke duration was 228.59±31.9 days. The main group included 52 patients who, along with the standard treatment regimen, underwent NFES and BFB-stabilometric training. The comparison group consisted of 35 patients whose rehabilitation complex did not include the above methods.Results and conclusion. Due to comlex rehabilitation with NFES and BFB stabilometric postural training it has been improved the function of walking. The clinical effect was noted 3 weeks after the start of rehabilitation, reaching a maximum by the 5th week. The inclusion of BFB-based methods in the medical rehabilitation leads to earlier motor and social adaptation of the after-stroke patient, restoration of the impairment balance function, which is associated with an increase in neuroplasticity.
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