Open Access

Gait Training in Orthopedic Rehabilitation after Joint Replacement - Back to Normal Gait with Sonification?

International Journal of Computer Science in Sport's Cover Image
International Journal of Computer Science in Sport
Special Issue: Selected papers presented at the 12th Symposium of the Section Computer Science in Sport of the German Association of Sport Science (September 4.-7., 2018)

Cite

Agostini, V., Ganio, D., Facchin, K., Cane, L., Moreira Carneiro, S., & Knaflitz, M. (2014). Gait parameters and muscle activation patterns at 3, 6 and 12 months after total hip arthroplasty. The Journal of Arthroplasty, 29(6), 1265–1272. https://doi.org/10.1016/j.arth.2013.12.01810.1016/j.arth.2013.12.01824439753Open DOISearch in Google Scholar

Aruin, A. S., Hanke, T. A., & Sharma, A. (2003). Base of support feedback in gait rehabilitation. International Journal of Rehabilitation Research. Internationale Zeitschrift Für Rehabilitationsforschung. Revue Internationale De Recherches De Readaptation, 26(4), 309–312. https://doi.org/10.1097/01.mrr.0000102059.48781.a810.1097/01.mrr.0000102059.48781.a8Open DOISearch in Google Scholar

Baskaran, D. (2017). Real-Time Feedback Training to Improve Gait and Posture in Parkinson's Disease (Master Thesis). Arizona State University.Search in Google Scholar

Beeres, M. (2018). Stand und Entwicklung des künstlichen Gelenkersatzes in Deutschland [Status and development of artificial joint replacement in Germany]. Retrieved from https://www.bvmed.de/de/technologien/bewegungsapparatSearch in Google Scholar

Bleß, H.-H., & Kip, M. (2017). Weißbuch Gelenkersatz: Versorgungssituation bei endoprothetischen Hüft- und Knieoperationen in Deutschland [Care situation for endoprosthetic hip and knee operations in Germany]. s.l.: Springer. Retrieved from http://www.doabooks.org/doab?func=fulltext&rid=2042910.1007/978-3-662-53260-7Search in Google Scholar

Bochdansky, T., Laube, W., & Böckelberger, M. (2008). Muskuläre Funktionsdefizite nach Hüft- und Knietotalendoprothese [Muscular functional deficits after total hip and knee arthroplasty]. J Miner StoffWechs, Sonderheft 1(15).Search in Google Scholar

Casartelli, N. C., Item-Glatthorn, J. F., Bizzini, M., Leunig, M., & Maffiulett, N. A. (2013). Differences in gait characteristics between total hip, knee, and ankle arthroplasty patients: a six-month postoperative comparison. Musculoskeletal Disorders, 14(176).10.1186/1471-2474-14-176367491423731906Search in Google Scholar

Gorgas, A. M., Schön, L., Dlapka, R., Doppler, J., Iber, M., Gradl, C., Kiselka, A., Siragy, T. & Horsak, B. (2017). Short-Term Effects of Real-Time Auditory Display (Sonification) on Gait Parameters in People with Parkinsons’ Disease—A Pilot Study. In Converging Clinical and Engineering Research on Neurorehabilitation II (pp. 855-859). Springer, Cham.10.1007/978-3-319-46669-9_139Search in Google Scholar

Handel, M., Riedt, S., Perlick, L., Schaumburger, J., Kalteis, T., & Sell, S. (2005). Veränderungen der muskulären Leistungsfähigkeit bei Trägern von Kniegelenkstotalendoprothesen [Changes in muscle torque in patients after total knee arthroplasty]. Zeitschrift fur Orthopadie und ihre Grenzgebiete, 143(5), 581–584. https://doi.org/10.1055/s-2005-83674810.1055/s-2005-83674816224680Open DOISearch in Google Scholar

Horstmann, T., Listringhaus, R., Haase, G.-B., Grau, S., & Mündermann, A. (2013). Changes in gait patterns and muscle activity following total hip arthroplasty: a six-month follow-up. Clinical Biomechanics (Bristol, Avon), 28(7), 762–769. https://doi.org/10.1016/j.clinbiomech.2013.07.00110.1016/j.clinbiomech.2013.07.00123906936Open DOISearch in Google Scholar

Jöllenbeck, T. (2015). Ganganalyse [Gait analysis]. In V. Stein & B. Greitemann (Eds.), Rehabilitation in Orthopädie und Unfallchirurgie (2nd ed., pp. 20–33). Berlin-Heidelberg: Springer-Verlag.Search in Google Scholar

Jöllenbeck, T., Classen, C., & Olivier, N. (2008). Veränderungen ausgewählter ganganalytischer Parameter bei Patienten mit Knieendoprothese während der stationären Rehabilitation. [Changes in selected gait-analytical parameters in patients with knee endoprosthesis during stationary rehabilitation]. Sonderausgabe der Orthopädischen Praxis. (197).Search in Google Scholar

Jöllenbeck, T., Neuhaus, D., & Grebe, B. (2010). Schlüsselparameter zur Optimierung des Gangverhaltens in der Rehabilitation bei Patienten nach Knie-und Hüft-TEP [Key parameters for optimization of gait behavior in rehabilitation in patients after total hip and knee replacement]. DRV-Schriften, 88, 352-354.Search in Google Scholar

Jöllenbeck, T., & Schönle, C. (2012). Gangverhalten von Patienten nach Knie-TEP während der Rehabilitation. [Walking behaviour of patients after TKR during rehabilitation]. Orthopädie & Rheuma, 15(1), 37–41. https://doi.org/10.1007/s15002-012-0020-110.1007/s15002-012-0020-1Open DOISearch in Google Scholar

Kadaba, M. P., Ramakrishnan, H. K., & Wootten, M. E. (1990). Measurement of lower extremity kinematics during level walking. Journal of orthopaedic research, 8(3), 383-392.10.1002/jor.11000803102324857Search in Google Scholar

Kearney, E., Shellikeri, S., Martino, R., & Yunusova, Y. (2018). Augmented visual feedback-aided interventions for motor rehabilitation in Parkinson's disease: a systematic review. Disability and Rehabilitation, 1–17. https://doi.org/10.1080/09638288.2017.141929210.1080/09638288.2017.141929229316816Open DOISearch in Google Scholar

Kremers, H. M., Larson, D. R., Crowson, C. S., Kremers, W. K., Washington, R. E., Steiner, C. A., . . . Berry, D. J. (2015). Prevalence of Total Hip and Knee Replacement in the United States. The Journal of Bone and Joint Surgery. American Volume, 97(17), 1386–1397. https://doi.org/10.2106/JBJS.N.0114110.2106/JBJS.N.01141455117226333733Open DOISearch in Google Scholar

Milner, C. E. (2009). Is gait normal after total knee arthroplasty? Systematic review of the literature. Journal of Orthopaedic Science : Official Journal of the Japanese Orthopaedic Association, 14(1), 114–120. https://doi.org/10.1007/s00776-008-1285-810.1007/s00776-008-1285-819214698Open DOISearch in Google Scholar

Naili, J. E., Iversen, M. D., Esbjörnsson, A.-C., Hedström, M., Schwartz, M. H., Häger, C. K., & Broström, E. W. (2017). Deficits in functional performance and gait one year after total knee arthroplasty despite improved self-reported function. Knee Surgery, Sports Traumatology, Arthroscopy : Official Journal of the ESSKA, 25(11), 3378–3386. https://doi.org/10.1007/s00167-016-4234-710.1007/s00167-016-4234-7564468427436196Open DOISearch in Google Scholar

Okoro, T., Lemmey, A. B., Maddison, P., & Andrew, J. G. (2012). An appraisal of rehabilitation regimes used for improving functional outcome after total hip replacement surgery. Sports Medicine, Arthroscopy, Rehabilitation, Therapy & Technology, 5(4).10.1186/1758-2555-4-5329297322313723Search in Google Scholar

Pietschmann, J., & Jöllenbeck, T. (2015a). Visuelles Feedbacktraining vs. Training in virtueller Umgebung - Wiederherstellung des normalen Ganges nach Hüft- und Knie-TEP [Visual feedback training vs. training in virtual environment - restoration of normal gait after THR and TKR]. In T. Könecke & Preuß, H. & Schöllhorn, W. I. (Eds.), Moving Minds - Crossing Boundaries in Sport Science.. Hamburg: Feldhaus.Search in Google Scholar

Pietschmann, J., & Jöllenbeck, T. (2015b). Feedbacktraining vs. Training in virtueller Umgebung - neueste Erkenntnisse zur Wiederherstellung des normalen Gangs nach Knie-TEP [Feedback training vs. training in virtual environment - recent knowledge to restore normal gait after TKR]. In Hermsdörfer, J., Stadler, W., Johannsen, L. (Hrsg.): (Ed.), The Athlete’s Brain: Neuronale Aspekte motorischer Kontrolle im Sport. (pp. 178–179). Hamburg: Feldhaus.Search in Google Scholar

Pietschmann, J., & Jöllenbeck, T. & Geu Flores, F. (2017). Gangtraining mit Sonifikation zur Wiederherstellung des normalen Ganges nach endoprothetischem Gelenkersatz. [Gait training with sonification to restore the normal gait after endoprosthetic joint replacement]. In Schwirtz, A., Mess, F., Demetriou, Y. & Senner, V. (Ed.), Innovation & Technologie im Sport.Search in Google Scholar

Rasch, A., Byström, A. H., Dalén, N., Martinez-Carranza, N., & Berg, H. E. (2009). Persisting muscle atrophy two years after replacement of the hip. The Journal of bone and joint surgery., 91(5).10.1302/0301-620X.91B5.2147719407289Search in Google Scholar

Reardon, K., Galea, M., Dennett, X., Choong, P., & Byrne, E. (2001). Quadriceps muscle wasting persists 5 months after total hip arthroplasty for osteoarthritis of the hip: a pilot study. Internal Medicine Journal, 31, 7–14.10.1046/j.1445-5994.2001.00007.x11478364Search in Google Scholar

Schaffert, N. & Mattes, K. (2015). Effects of acoustic feedback training in elite-standard Para-Rowing. Journal of Sports Sciences, 33(4), 411–418. https://doi.org/10.1080/02640414.2014.94643810.1080/02640414.2014.94643825105858Open DOISearch in Google Scholar

Schönle, C. (2004). Rehabilitation: Praxiswissen Halte- und Bewegungsorgane. [Rehabilitation. Practical knowledge of holding and locomotor organs]. Stuttgart: Thieme-Verlag.Search in Google Scholar

eISSN:
1684-4769
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Computer Sciences, Databases and Data Mining, other, Sports and Recreation, Physical Education