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Auditory biofeedback during walking reduces foot contact pressure in a patient with congenital insensitivity to pain

机译:行走过程中的听觉生物反馈可降低先天性疼痛敏感性患者的足部接触压力

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Hereditary sensory and autonomic neuropathy (HSAN) includes genetic disorders that involve various sensory and autonomic dysfunctions. HSAN types 4 and 5 (HSAN-4 and -5) are characterized by congenital insensitivity to pain and thermal sensation. Orthopedic problems in HSAN-4 and -5 include destructive injuries. Studies on gait have shown greater speed and higher heel contact angular velocity in the patients compared to controls. Such a “banging gait” may be the result of insensitivity to pain, and may be a cause of their injuries. To help prevent injuries, we are exploring the use of our novel auditory feedback device (Auditory Foot) that converts foot contact pressure into sound. In this paper, we report an immediate beneficial effect of auditory feedback in a participant with congenital insensitivity to pain. The participant was a 12-year-old girl with HSAN-4. We mounted the Auditory Foot device on both her feet and measured her foot pressure during gait as she walked on a treadmill. The peak pressure during the participant's gait decreased in both feet when auditory feedback was switched on. Patients with congenital insensitivity to pain tend to walk in a “banging” way; increasing their awareness of their foot contact may improve their gait.
机译:遗传性感觉和自主神经病(HSAN)包括涉及多种感觉和自主神经功能障碍的遗传性疾病。 HSAN 4和5型(HSAN-4和-5)的特征是先天性对疼痛和热感不敏感。 HSAN-4和-5中的骨科问题包括破坏性伤害。关于步态的研究表明,与对照组相比,患者的步速更高,脚跟接触角速度更高。这种“敲打步态”可能是对疼痛不敏感的结果,并且可能是造成伤害的原因。为帮助防止伤害,我们正在探索使用新型听觉反馈设备(听觉足),该设备将足部接触压力转换为声音。在本文中,我们报告了先天性对疼痛不敏感的参与者听觉反馈的即时有益效果。参加者是一名HSAN-4的12岁女孩。我们在她的两只脚上都安装了听觉足装置,并在步态中在她走在跑步机上时测量了她的脚压力。打开听觉反馈后,参与者步态中的峰值压力在两只脚都下降了。先天性对疼痛不敏感的患者倾向于以“敲打”的方式行走。增加他们对脚接触的认识可能会改善步态。

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