How Paretic and Non-Paretic Ankle Muscles Contract during Walking in Stroke Survivors: New Insight Using Novel Wearable Ultrasound Imaging and Sensing Technology
"> Figure 1
<p>The wearable ultrasound imaging and sensing system.</p> "> Figure 2
<p>Changes in (<b>A</b>) average TA muscle thickness, (<b>B</b>) average MG muscle thickness, (<b>C</b>) mechanomyography (MMG) signal of TA muscle, (<b>D</b>) MMG signal of MG muscle, (<b>E</b>) electromyography (EMG) signal of TA muscle and (<b>F</b>) electromyography (EMG) signal of MG muscle of nine participants in a gait cycle (solid and dashed blue/orange lines indicate the mean and the standard deviation of nine participants, respectively; solid vertical gray lines indicate the typical gait events/phases of stroke survivors [<a href="#B11-biosensors-12-00349" class="html-bibr">11</a>]).</p> "> Figure 3
<p>Changes in paretic and non-paretic TA and MG muscle morphological characteristics in different gait events/phases during walking in one participant.</p> ">
Abstract
:1. Introduction
2. Materials and Methods
2.1. Participants
2.2. Wearable Ultrasound Imaging and Sensing System
2.3. Procedure
2.4. Data and Statistical Analysis
3. Results
3.1. Test–Retest Reliability Result
3.2. Two-Way Repeated ANOVA Result
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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No. | Gender | Cause of Stroke | Age | Weight (kg) | Height (cm) | Paretic Leg | BBS Score (0–56) |
---|---|---|---|---|---|---|---|
1 | F | Hemorrhagic | 60 | 75.2 | 154.0 | Left | 31 |
2 | M | Ischemic | 68 | 66.9 | 168.0 | Right | 48 |
3 | M | Ischemic | 53 | 78.7 | 172.4 | Left | 49 |
4 | F | Hemorrhagic | 55 | 55.5 | 156.5 | Right | 51 |
5 | F | Hemorrhagic | 63 | 51.0 | 150.3 | Right | 52 |
6 | F | Hemorrhagic | 39 | 49.1 | 155.3 | Right | 53 |
7 | M | Hemorrhagic | 55 | 63.0 | 166.0 | Right | 55 |
8 | M | Ischemic | 61 | 54.8 | 152.0 | Left | 56 |
9 | F | Ischemic | 63 | 58.2 | 163.0 | Right | 56 |
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Lyu, P.-Z.; Zhu, R.T.-L.; Ling, Y.T.; Wang, L.-K.; Zheng, Y.-P.; Ma, C.Z.-H. How Paretic and Non-Paretic Ankle Muscles Contract during Walking in Stroke Survivors: New Insight Using Novel Wearable Ultrasound Imaging and Sensing Technology. Biosensors 2022, 12, 349. https://doi.org/10.3390/bios12050349
Lyu P-Z, Zhu RT-L, Ling YT, Wang L-K, Zheng Y-P, Ma CZ-H. How Paretic and Non-Paretic Ankle Muscles Contract during Walking in Stroke Survivors: New Insight Using Novel Wearable Ultrasound Imaging and Sensing Technology. Biosensors. 2022; 12(5):349. https://doi.org/10.3390/bios12050349
Chicago/Turabian StyleLyu, Pei-Zhao, Ringo Tang-Long Zhu, Yan To Ling, Li-Ke Wang, Yong-Ping Zheng, and Christina Zong-Hao Ma. 2022. "How Paretic and Non-Paretic Ankle Muscles Contract during Walking in Stroke Survivors: New Insight Using Novel Wearable Ultrasound Imaging and Sensing Technology" Biosensors 12, no. 5: 349. https://doi.org/10.3390/bios12050349
APA StyleLyu, P. -Z., Zhu, R. T. -L., Ling, Y. T., Wang, L. -K., Zheng, Y. -P., & Ma, C. Z. -H. (2022). How Paretic and Non-Paretic Ankle Muscles Contract during Walking in Stroke Survivors: New Insight Using Novel Wearable Ultrasound Imaging and Sensing Technology. Biosensors, 12(5), 349. https://doi.org/10.3390/bios12050349