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Use of motion capture in assisted of knee ligament injury diagnosis

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This study treats of the use of motion capture systems as the help diagnose knee injuries. It consists of the theoretical work and the application. The written work describes a course of research includes choice of research group, selection of appropriate exercises, find useful computational methods, description created for research applications and summary results. The practical part was to create an application for physiotherapists which could help them to diagnosis potential pathology of the knee. The purpose of this study was to test whether a motion capture system dedicated to entertainment can be used in the medical aspect. This system was test for selected methods and determined to be suitable for supporting the diagnosis of knee injuries. Otherwise it has to be written what was the reason of failure. The results of the study were that after trial and error methods peeled action and created application proved helpful.
Rocznik
Strony
7--32
Opis fizyczny
Bibliogr. 26 poz., il. kolor., rys., wykr.
Twórcy
autor
  • Lodz University of Technology, Institute of Information Technology, ul. Wólczańska 215, 90-924 Łódź, Poland
autor
  • Lodz University of Technology, Institute of Information Technology, ul. Wólczańska 215, 90-924 Łódź, Poland
Bibliografia
  • [1] Dom Lekarski Centrum Medyczne, https://domlekarski.pl/.
  • [2] Fizjoklinika. Warszawskie Centrum Rehabilitacji i Osteopatii Medycznej, https://fizjoklinika.com/centrum-wiedzy/patologie/.
  • [3] Sport Injury Specialist. Centrum Medyczne., Staw kolanowy, http://rehabilitacjasportowa.com/category/staw-kolanowy/.
  • [4] Haas, J., Dance Anatomy, Human Kinetics, 2106, (in United States).
  • [5] Silva, A., Abdalla, R., and Fisberg, M., Incidence of musculoskeletal injures in elite female basketball athles, Acta Ortopedica Brasileira, Vol. 15, No. 1, 2017.
  • [6] OrthoInfo, Academy Of Orthopaedic Surgeons, http://orthoinfo.aaos. org/menus/leg.cfm.
  • [7] Nicolini, A., Carvalho, R., Matsuda, M., Filho, J.S., and Cohen, M., Common injuries in athletes’ knee: experience of a specialized center, Acta Ortopédica Brasileira, Vol. 22, No. 3, 2014.
  • [8] Australian Institute Of Health And Welfare, http://www.aihw.gov.au/osteoarthritis/hospital-treatment/.
  • [9] Identyfikacja Sygnałów EMG, Prociów, P. http://sequoia.ict.pwr.wroc.pl/~witold/aiarr/2006_projekty/miopotencjaly/.
  • [10] Pięciak, T. and Pawłowski, R., Wizualizacja Ruchu Człowieka (Motion Capture), Inżynierowie Dla Biologii i Medycyny: kwartalnik wykładowców i studentów inżynierii biomedycznej, Vol. 5, 2009, pp. 22-27.
  • [11] C3D.ORG, https://c3d.ord/.
  • [12] Motion Labs Systems, Advanced EMG Systems, Software and Solutions, https://www.motion-labs.com/index_software.html/.
  • [13] Yeung, M.-Y., Fu, S.-C., Chua, E., Mok, K.-M., Yung, P.-H., and Chan, K.- M., Use of portable motion analysis system for knee dynamic stability assessment in anterior cruciate ligament deficiency during single-legged hop landing, Asia-Pacific Journal of Sports Medicine, Arthroscopy, Rehabilitation and Technology, Vol. 5, 2016, pp. 6-12.
  • [14] Kohler, E., The Dynamic Quadriceps angle: a comparison of persons with and without patellofemoral pain, Musculoskeletal Biomechanics Research Laboratory, Division of Biokinesiology and Physical Therapy, Ph.D. thesis, Presented in Partial Fulfillment of the Requirements for the Degree Master of Science in the Graduate School of The Ohio State University, 2012, (in United States).
  • [15] DynamoLab - Uczelniane Laboratorium Ruchu i Wydolności Fizycznej Człowieka Uniwersytetu Medycznego w Łodzi, http://dynamolab.umed.pl/.
  • [16] Technomex, Platformy stabilometryczne, http://technomex.pl/platformy-diagnostyczno-rehabilitacyjne platformy-stabilometryczne.
  • [17] Biegamy z Sercem, http://biegamyzsercem.pl/attachments/article/27/BTS\%20SMART\%20DX\%20PL.pdf.
  • [18] ResearchGate, Biomechanical ToolKit: Open-source Framework To visualize and process biomechanical data, https://www.researchgate.net/publication/260011031_Biomechanical_ToolKit_Open-source_Framework_To_visualize_and_process_biomechanical_data.
  • [19] Sun, Y., Wei, S., Zhong, Y., Fu, W., Li, L., and Liu, Y., How Joint Torques Affect Hamstring Injury Risk in Sprinting Swing - Stance Transition, Med Sci Sports Exercises, Vol. 47, No. 2, 2015, pp. 373-380.
  • [20] Fizjoterapeutrom.pl. Portal studentów fizjoterapii, http://www.fizjoterapeutom.pl/materialy/artykuly/ortopedia/.
  • [21] Fizjoinformator, http://fizjoinformator.pl/.
  • [22] Whitepointes Shoes - The Ballet Dictionary, http://whitepointeshoes.pl/balet/slownik-baletowy-plie/, 2014.
  • [23] Portal fizjoterapeuty, ACL, https://fizjoterapeuty.pl/?s=acl.
  • [24] LGB Medical, http://www.lbgmedical.com/education.
  • [25] Prifysgol Aberfystwyth Univeristy, Vicon 512 Manual, http://users.aber.ac.uk/hoh/CS390/512ViconSWManual.pdf.
  • [26] Advanced Computing Center for the Arts and Design - Processing Human Performance: Blade 1.7, https://accad.osu.edu/~vberezin/classes/mocap/HumanProcessingBlade.html.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-87ba48e4-07cb-4444-8bb7-20a953844706
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