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2017 | OriginalPaper | Buchkapitel

3D Virtual System Trough 3 Space Mocap Sensors for Lower Limb Rehabilitation

verfasst von : Edwin Pruna, Marco Pilatásig, Hamilton Angueta, Christian Hernandez, Ivón Escobar, Eddie D. Galarza, Nancy Jacho

Erschienen in: Augmented Reality, Virtual Reality, and Computer Graphics

Verlag: Springer International Publishing

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Abstract

A 3D virtual system is presented for rehabilitation of lower limbs trough 3 Space Mocap Sensors and the Unity 3D environment, also, two games are designed to allow the flexion, extension and strengthening movements. The games have some difficulty levels thought for every rehabilitation stage. The system was used by 4 people with knee problems, which completed the whole exercise. In addition the participants performed a SEQ usability test with results of (53 ± 0,56), this shows that the systems has a good acceptation to be used for rehabilitation.

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Literatur
1.
Zurück zum Zitat Li, D., Tan, Z., Kang, P., Shen, B., Pei, F.: Effects of multi-site infiltration analgesia on pain management and early rehabilitation compared with femoral nerve or adductor canal block for patients undergoing total knee arthroplasty: a prospective randomized controlled trial Int. Orthop. 41(1), 75–83 (2017) Li, D., Tan, Z., Kang, P., Shen, B., Pei, F.: Effects of multi-site infiltration analgesia on pain management and early rehabilitation compared with femoral nerve or adductor canal block for patients undergoing total knee arthroplasty: a prospective randomized controlled trial Int. Orthop. 41(1), 75–83 (2017)
2.
Zurück zum Zitat Van Baar, M.E., Dekker, J., Oostendorp, R., Bijl, D., Voorn, T.B., Bijlsma, J.W.J.: Effectiveness of exercise in patients with osteoarthritis of hip or knee: nine months’ follow up. Ann. Rheum. Dis. 60(12), 1123–1130 (2001)CrossRef Van Baar, M.E., Dekker, J., Oostendorp, R., Bijl, D., Voorn, T.B., Bijlsma, J.W.J.: Effectiveness of exercise in patients with osteoarthritis of hip or knee: nine months’ follow up. Ann. Rheum. Dis. 60(12), 1123–1130 (2001)CrossRef
3.
Zurück zum Zitat Gonzalez, A., Fraisse, P., Hayashibe, M.: Adaptive interface for personalized center of mass self-identification in home rehabilitation. IEEE Sensors J. 15(5), 2814–2823 (2015) Gonzalez, A., Fraisse, P., Hayashibe, M.: Adaptive interface for personalized center of mass self-identification in home rehabilitation. IEEE Sensors J. 15(5), 2814–2823 (2015)
4.
Zurück zum Zitat Ferreira dos Santos, L., Christ, O., Mate, K., Schmidt, H., Krüger, J., Dohle, C.: Movement visualisation in virtual reality rehabilitation of the lower limb: a systematic review. Biomed. Eng. 15 (2016). Art. no. 144 Ferreira dos Santos, L., Christ, O., Mate, K., Schmidt, H., Krüger, J., Dohle, C.: Movement visualisation in virtual reality rehabilitation of the lower limb: a systematic review. Biomed. Eng. 15 (2016). Art. no. 144
5.
Zurück zum Zitat Valvoda, J.T.: Virtual humanoids and presence in virtual environments. Ph.D. thesis. Rheinisch-Westfälische Technische Hochschule Aachen, Fakultät für Mathematik, Informatik und Naturwissenschaften (2007) Valvoda, J.T.: Virtual humanoids and presence in virtual environments. Ph.D. thesis. Rheinisch-Westfälische Technische Hochschule Aachen, Fakultät für Mathematik, Informatik und Naturwissenschaften (2007)
6.
Zurück zum Zitat Schüler, T., Ferreira dos Santos, L., Hoermann, S.: Harnessing the experience of presence for virtual motor rehabilitation: towards a guideline for the development of virtual reality environments. In: Sharkey, P.M., Pareto, L., Broeren, J., Rydmark, M. (eds.) Proceedings of the 10th International Conference on Disability, Virtual Reality and Associated Technologies (ICDVRAT), Gothenburg, 2–4 September 2014, pp. 373–376. The University of Reading, Reading (2014) Schüler, T., Ferreira dos Santos, L., Hoermann, S.: Harnessing the experience of presence for virtual motor rehabilitation: towards a guideline for the development of virtual reality environments. In: Sharkey, P.M., Pareto, L., Broeren, J., Rydmark, M. (eds.) Proceedings of the 10th International Conference on Disability, Virtual Reality and Associated Technologies (ICDVRAT), Gothenburg, 2–4 September 2014, pp. 373–376. The University of Reading, Reading (2014)
7.
Zurück zum Zitat Holden, M.K.: Virtual environments for motor rehabilitation: review. Cyberpsychol. Behav. 8, 187–211 (2005)CrossRef Holden, M.K.: Virtual environments for motor rehabilitation: review. Cyberpsychol. Behav. 8, 187–211 (2005)CrossRef
8.
Zurück zum Zitat Cho, K.H., Lee, K.J., Song, C.H.: Virtual-reality balance training with a video-game system improves dynamic balance in chronic stroke patients. Tohoku J. Exp. Med. 228, 69–74 (2012)CrossRef Cho, K.H., Lee, K.J., Song, C.H.: Virtual-reality balance training with a video-game system improves dynamic balance in chronic stroke patients. Tohoku J. Exp. Med. 228, 69–74 (2012)CrossRef
9.
Zurück zum Zitat Bonnet, V., Joukov, V., Kulić, D., Fraisse, P., Ramdani, N., Venture, G.: Monitoring of hip and knee joint angles using a single inertial measurement unit during lower limb rehabilitation. IEEE Sensors J. 16(6), 1557–1564 (2016). Art. no. 7352303CrossRef Bonnet, V., Joukov, V., Kulić, D., Fraisse, P., Ramdani, N., Venture, G.: Monitoring of hip and knee joint angles using a single inertial measurement unit during lower limb rehabilitation. IEEE Sensors J. 16(6), 1557–1564 (2016). Art. no. 7352303CrossRef
10.
Zurück zum Zitat Sun, T., Wang, C., Liu, Q., Lu, Z., Duan, L., Chen, P., Shen, Y., Li, M., Li, W., Liu, Q., Shi, Q., Wang, Y., Qin, J., Wei, J., Wu, Z.: Development of lower limb motion detection based on LPMS. In: 2016 IEEE International Conference on Real-Time Computing and Robotics, RCAR 2016, pp. 243–248 (2016). Art. no. 7784033 Sun, T., Wang, C., Liu, Q., Lu, Z., Duan, L., Chen, P., Shen, Y., Li, M., Li, W., Liu, Q., Shi, Q., Wang, Y., Qin, J., Wei, J., Wu, Z.: Development of lower limb motion detection based on LPMS. In: 2016 IEEE International Conference on Real-Time Computing and Robotics, RCAR 2016, pp. 243–248 (2016). Art. no. 7784033
11.
Zurück zum Zitat Zhang, J., Li, M., Song, R., Zhang, X.: Development of a lower limb rehabilitation robot based on free gait and virtual reality. In: 2014 IEEE International Conference on Robotics and Biomimetics, IEEE ROBIO 2014, pp. 808–813 (2014). Art. no. 7090431 Zhang, J., Li, M., Song, R., Zhang, X.: Development of a lower limb rehabilitation robot based on free gait and virtual reality. In: 2014 IEEE International Conference on Robotics and Biomimetics, IEEE ROBIO 2014, pp. 808–813 (2014). Art. no. 7090431
12.
Zurück zum Zitat Zhang, X., Xu, G., Xie, J., Li, M., Pei, W., Zhang, J.: An EEG-driven lower limb rehabilitation training system for active and passive co-stimulation. In: Proceedings of the Annual International Conference of the IEEE Engineering in Medicine and Biology Society, EMBS 2015, November, pp. 4582–4585 (2015). Art. no. 7319414 Zhang, X., Xu, G., Xie, J., Li, M., Pei, W., Zhang, J.: An EEG-driven lower limb rehabilitation training system for active and passive co-stimulation. In: Proceedings of the Annual International Conference of the IEEE Engineering in Medicine and Biology Society, EMBS 2015, November, pp. 4582–4585 (2015). Art. no. 7319414
13.
Zurück zum Zitat Fitzgerald, D., Kelly, D., Ward, T., Markham, C., Caulfield, B.: Usability evaluation of e-motion: a virtual rehabilitation system designed to demonstrate, instruct and monitor a therapeutic exercise programme. In: Virtual Rehabilitation, pp. 144–149 (2008) Fitzgerald, D., Kelly, D., Ward, T., Markham, C., Caulfield, B.: Usability evaluation of e-motion: a virtual rehabilitation system designed to demonstrate, instruct and monitor a therapeutic exercise programme. In: Virtual Rehabilitation, pp. 144–149 (2008)
14.
Zurück zum Zitat Kalawsky, R.S.: VRUSE–a computerised diagnostic tool: for usability evaluation of virtual/synthetic environment systems. Appl. Ergon. 30, 11–25 (1999)CrossRef Kalawsky, R.S.: VRUSE–a computerised diagnostic tool: for usability evaluation of virtual/synthetic environment systems. Appl. Ergon. 30, 11–25 (1999)CrossRef
15.
Zurück zum Zitat Gil-Gómez, J.A., Manzano, P.H., Albiol, S.P., Aula, C.V., Gil-Gómez H., Lozano, J.A.Q.: SEQ: suitability evaluation questionnaire for virtual rehabilitation systems. In: Proceedings Application in a Virtual Rehabilitation System for Balance Rehabilitation (2012) Gil-Gómez, J.A., Manzano, P.H., Albiol, S.P., Aula, C.V., Gil-Gómez H., Lozano, J.A.Q.: SEQ: suitability evaluation questionnaire for virtual rehabilitation systems. In: Proceedings Application in a Virtual Rehabilitation System for Balance Rehabilitation (2012)
Metadaten
Titel
3D Virtual System Trough 3 Space Mocap Sensors for Lower Limb Rehabilitation
verfasst von
Edwin Pruna
Marco Pilatásig
Hamilton Angueta
Christian Hernandez
Ivón Escobar
Eddie D. Galarza
Nancy Jacho
Copyright-Jahr
2017
DOI
https://doi.org/10.1007/978-3-319-60928-7_10

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