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Updated: Jun 6, 2026

Assessment of Neuromuscular Function Using Percutaneous Electrical Nerve Stimulation
Published on: September 13, 2015
Estimation of ankle joint angle from peroneal and tibial electroneurograms based on muscle spindle model
Chou-Ching K Lin1, Ming-Shaung Ju, Ching-Chao Chan
1Department of Neurology, National Cheng Kung University Hospital, 138 Sheng Li Road, Tainan 70403, Taiwan, ROC. cxl45@mail.ncku.edu.tw
Abstract:
The main goal of this study was to develop a new method of estimating the angle of the passively stretched ankle joint, based on structural muscle spindle models of the tibial and peroneal electroneurograms (ENG). Passive ramp-and-hold and alternating stretches of the ankle joint were performed in a rabbit. Simultaneously, two cuff electrodes were used to record the ENGs of peroneal and tibial nerves. Based on the two ENGs and the joint angle trajectory, two muscle spindle models were constructed and their inverse models were integrated to compute angle estimates. The model parameters were optimized. The performance of our approach was compared with those of the adaptive neuro-fuzzy inference system and artificial neural network model. The results revealed that our model had a better performance of estimating the ankle joint angle in large-range movements and smaller tracking errors. This study provides a new estimation algorithm to extract the joint angle from the information conveyed in a nerve.

