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  1. NTU Theses and Dissertations Repository
  2. 電機資訊學院
  3. 資訊網路與多媒體研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/21002
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dc.contributor.advisor洪一平
dc.contributor.authorTing-Wei Chiuen
dc.contributor.author邱婷蔚zh_TW
dc.date.accessioned2021-06-08T03:14:57Z-
dc.date.copyright2017-02-16
dc.date.issued2017
dc.date.submitted2017-02-08
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[4] M. Chen, B. Huang, and Y. Xu, 'Intelligent shoes for abnormal gait detection,' in Robotics and Automation, 2008. ICRA 2008. IEEE International Conference on, pp. 2019-2024, 2008.
[5] N. Abaid, P. Cappa, E. Palermo, M. Petrarca, and M. Porfiri, 'Gait detection in children with and without hemiplegia using single-axis wearable gyroscopes,' PLoS One, vol. 8, p. e73152, 2013.
[6] J. Han, H. S. Jeon, B. S. Jeon, and K. S. Park, 'Gait detection from three dimensional acceleration signals of ankles for the patients with Parkinson’s disease,' in Proceedings of the IEEE The International Special Topic Conference on Information Technology in Biomedicine, Ioannina, Epirus, Greece, 2006.
[7] J. Thalen, M. Marin-Perianu, and P. Havinga, 'SensorShoe: Mobile Gait Analysis for Parkinson's Disease Patients,' in UbiComp 2007 Workshop Proceedings, Innsbruck, Austria, pp. 187-191, 2007.
[8] F. Casamassima, A. Ferrari, B. Milosevic, L. Rocchi, and E. Farella, 'Wearable audio-feedback system for gait rehabilitation in subjects with Parkinson's disease,' in Proceedings of the 2013 ACM conference on Pervasive and ubiquitous computing adjunct publication, pp. 275-278, 2013.
[9] P. Shull, K. Lurie, M. Shin, T. Besier, and M. Cutkosky, 'Haptic gait retraining for knee osteoarthritis treatment,' in 2010 IEEE Haptics Symposium, pp.409-416, 2010.
[10] P. B. Shull, R. Shultz, A. Silder, J. L. Dragoo, T. F. Besier, M. R. Cutkosky, and S. L. Delp., 'Toe-in gait reduces the first peak knee adduction moment in patients with medial compartment knee osteoarthritis,' Journal of biomechanics, vol. 46, pp. 122-128, 2013.
[11] P. B. Shull, A. Silder, R. Shultz, J. L. Dragoo, T. F. Besier, S. L. Delp, and M. R. Cutkosky, 'Six‐week gait retraining program reduces knee adduction moment, reduces pain, and improves function for individuals with medial compartment knee osteoarthritis,' Journal of Orthopaedic Research, vol. 31, pp. 1020-1025, 2013.
[12] D. A. James, N. Davey, and T. Rice, 'An accelerometer based sensor platform for insitu elite athlete performance analysis,' in Sensors, 2004. Proceedings of IEEE, pp. 1373-1376, 2004.
[13] Y. Wahab and N. A. Bakar, 'Gait analysis measurement for sport application based on ultrasonic system,' in Consumer Electronics (ISCE), 2011 IEEE 15th International Symposium on, pp. 20-24, 2011.
[14] T. Holleczek, C. Zysset, B. Arnrich, D. Roggen, and G. Troster, 'Towards an interactive snowboarding assistance system,' in 2009 International Symposium on Wearable Computers, pp. 147-148, 2009.
[15] C.-L. Shen, C. R. James, M.-C. Chyu, W. R. Bixby, J.-M. Brismée, M. A. Zumwalt, et al., 'Effects of Tai Chi on gait kinematics, physical function, and pain in elderly with knee osteoarthritis—a pilot study,' The American journal of Chinese medicine, vol. 36, pp. 219-232, 2008.
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[17] Cheng. Zhao and Don. Zhao. Tai Chi for Health: The 24 Simplified Forms. Agilceed Books, 2006.
[18] C. J. Hass, R. J. Gregor, D. E. Waddell, A. Oliver, D. W. Smith, R. P. Fleming, et al., 'The influence of Tai Chi training on the center of pressure trajectory during gait initiation in older adults,' Archives of physical medicine and rehabilitation, vol. 85, pp. 1593-1598, 2004.
[19] T. O. Smith, N. J. Hunt, and S. T. Donell, 'The reliability and validity of the Q-angle: a systematic review,' Knee Surgery, Sports Traumatology, Arthroscopy, vol. 16, pp. 1068-1079, 2008.
[20] W. Staab, R. Hottowitz, C. Sohns, J. M. Sohns, F. Gilbert, J. Menke, A. Niklas, and J. Lotz, 'Accelerometer and gyroscope based gait analysis using spectral analysis of patients with osteoarthritis of the knee,' Journal of physical therapy science, vol. 26, p. 997, 2014.
[21] K. Bötzel, F. M. Marti, M. Á. C. Rodríguez, A. Plate, and A. O. Vicente, 'Gait recording with inertial sensors–How to determine initial and terminal contact,' Journal of biomechanics, vol. 49, pp. 332-337, 2016.
[22] B. Horsak, R. Dlapka, M. Iber, A.-M. Gorgas, A. Kiselka, C. Gradl , T. Siragy, and J. Doppler, 'SONIGait: a wireless instrumented insole device for real-time sonification of gait,' Journal on Multimodal User Interfaces, pp. 1-12, 2016.
[23] H. M. Schepers, H. Koopman, and P. H. Veltink, 'Ambulatory assessment of ankle and foot dynamics,' IEEE Transactions on Biomedical Engineering, vol. 54, pp. 895-902, 2007.
[24] J. J. van den Noort, M. van der Esch, M. P. Steultjens, J. Dekker, M. H. Schepers, P. H. Veltink, et al., 'Ambulatory measurement of the knee adduction moment in patients with osteoarthritis of the knee,' Journal of biomechanics, vol. 46, pp. 43-49, 2013.
[25] A. H. Abdul Razak, A. Zayegh, R. K. Begg, and Y. Wahab, 'Foot plantar pressure measurement system: a review,' Sensors, vol. 12, pp. 9884-9912, 2012.
[26] L. Shu, T. Hua, Y. Wang, Q. Li, D. D. Feng, and X. Tao, 'In-shoe plantar pressure measurement and analysis system based on fabric pressure sensing array,' IEEE Transactions on information technology in biomedicine, vol. 14, pp. 767-775, 2010.
[27] Y. Cong and M. Zhang, 'Measurement of in-shoe plantar triaxial stresses in high-heeled shoes,' in 2010 3rd International Conference on Biomedical Engineering and Informatics, pp. 1760-1763, 2010.
[28] Novel.de. (2010). Trublu calibration device for calibrating insoles with pressure sensors [Online]. Available: http://novel.de/novelcontent/calibration
[29] W. T. Higgins, 'A comparison of complementary and Kalman filtering,' IEEE Transactions on Aerospace and Electronic Systems, vol. 11, pp. 321-325, 1975.
[30] R. Mahony, T. Hamel, and J.-M. Pflimlin, 'Complementary filter design on the special orthogonal group SO (3),' in Proceedings of the 44th IEEE Conference on Decision and Control, 2005, pp. 1477-1484.
[31] R. Mahony, T. Hamel, and J.-M. Pflimlin, 'Nonlinear complementary filters on the special orthogonal group,' IEEE Transactions on Automatic Control, vol. 53, pp. 1203-1218, 2008.
[32] Tom Jewett’s. Color Tutorial – HSB: hue, saturation, and brightness [Online]. Available: http://www.tomjewett.com/colors/hsb.html
[33] Scratchapixel (2014) Ray tracing: Rendering a triangle (Barycentric coordinates) [Online]. Available: https://www.scratchapixel.com/lessons/3d-basic-rendering/ray-tracing-rendering-a-triangle/barycentric-coordinates
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/21002-
dc.description.abstract步態分析被用於醫療、運動等許多領域,但易受限於高價實驗室環境設備限制,較難達到隨時監測及普及化。因此本研究設計一套膝關節與腳底感測系統,藉由壓力感測鞋墊及內含慣性感測器之護膝計算步態特徵值,並對此穿戴式裝置進行硬體驗證以確保準確度。同時結合平板電腦及雲端資料庫,可收集使用者資料進行分析,並將步態特徵值(如足底壓力分佈、重心位置、膝關節角度等)視覺化即時呈現於App上,以提供較佳的視覺回饋。
應用部分我們透過此系統收集了130位、50歲以上民眾的步態資料,用以驗證本系統之可行性,並進行數據分析與討論。實驗發現足底壓力分佈跟是否患有退化性膝關節炎無直接關係,針對患有退化性膝關節炎病患而言,於行走時會盡量減少該關節之膝彎曲角度。因重心分佈較難憑直觀得知,此系統藉由壓力感測器量化使用者足底壓力分佈及重心軌跡,亦可輔助一般人正確學習強調重心轉移之運動,如太極拳等。
zh_TW
dc.description.abstractThere is a great deal of general literature on gait analysis and detection, which are widely used in many fields such as medicine and sports. It is difficult to measure gait all the time due to being limited to expensive laboratory-based measurement. Based on this problem, our research develops a Knee-and-Sole Sensing System, which can calculate gait characteristics with wearable devices consisting of pressure sensing insoles and knee braces with 4 motion sensors. To ensure the accuracy, we also evaluate the hardware. Knee-and-Sole Sensing System combines iPad and cloud databases to collect and analyze users’ gait data. Our system also provides a real-time visual feedback to show users’ gait characteristics including plantar pressure distribution, center of pressure and knee angles.
Finally, our research analyzes that the difference of gait data between with and without knee osteoarthritis (knee OA). The results show that plantar pressure distribution is no statistically significant between both of them, and if people suffer from knee pain, they will reduce the knee bending angle while they are walking as much as possible. Because plantar pressure distribution is too difficult to be identified by personal insight, we quantify plantar pressure distribution and center of pressure trajectory with force sensors. Therefore, it can be used to assist people in learning some sports which are emphasis on body weight-transfer such as Tai-Chi Chuan.
en
dc.description.provenanceMade available in DSpace on 2021-06-08T03:14:57Z (GMT). No. of bitstreams: 1
ntu-106-R03944058-1.pdf: 2115415 bytes, checksum: af8437ee0b72a130572278cb22123999 (MD5)
Previous issue date: 2017
en
dc.description.tableofcontents口試委員會審定書 i
致謝 ii
中文摘要 iii
ABSTRACT iv
CONTENTS v
LIST OF FIGURES vii
LIST OF TABLES ix
Chapter 1 Introduction 1
Chapter 2 Related Work 4
2.1 Gait Detection and Analysis 4
2.2 Gait Characteristics 5
2.3 Methods of Measuring Gait 5
2.4 Wearable Devices on Gait Detection 6
Chapter 3 Wearable Devices 8
3.1 Device Hardware 8
3.2 Pressure Sensors 9
3.2.1 Specification 9
3.2.2 Hardware Calibration 9
3.2.3 Evaluation of the Pressures Sensing Insoles 10
3.3 Inertial Measurement Unit 13
3.3.1 Specification 13
3.3.2 Object Rotation Computation 13
Chapter 4 Knee-and-Sole Sensing System 14
4.1 System Overview 14
4.2 Data Recovery and Synchronization 17
4.3 Feature Extraction and Visualization 18
4.3.1 Plantar Pressure Distribution 18
4.3.2 Center of Pressure 22
4.3.3 Knee Angle (Bending Angle and Q Angle) 23
Chapter 5 Gait Analysis 24
5.1 Medical Application 24
5.1.1 Experiment 24
5.1.2 Result 26
5.2 Tai Chi Chuan Learning 32
Chapter 6 Conclusions and Future Work 33
REFERENCE 34
dc.language.isoen
dc.subject壓力鞋墊zh_TW
dc.subject穿戴式裝置zh_TW
dc.subject護膝zh_TW
dc.subject感測系統zh_TW
dc.subject步態分析zh_TW
dc.subjectwearable devicesen
dc.subjectsensing systemen
dc.subjectpressure insolesen
dc.subjectknee bracesen
dc.subjectgait analysisen
dc.title膝關節與腳底感測系統及其在步態分析之應用zh_TW
dc.titleKnee-and-Sole Sensing System and Its Application to Gait Analysisen
dc.typeThesis
dc.date.schoolyear105-1
dc.description.degree碩士
dc.contributor.oralexamcommittee黃榮堂,洪碩穗
dc.subject.keyword感測系統,壓力鞋墊,護膝,步態分析,穿戴式裝置,zh_TW
dc.subject.keywordsensing system,pressure insoles,knee braces,gait analysis,wearable devices,en
dc.relation.page38
dc.identifier.doi10.6342/NTU201700401
dc.rights.note未授權
dc.date.accepted2017-02-09
dc.contributor.author-college電機資訊學院zh_TW
dc.contributor.author-dept資訊網路與多媒體研究所zh_TW
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