Personalized neuromusculoskeletal modeling to improve treatment of mobility impairments: A perspective from European research sites

作者: Benjamin J Fregly , Michael L Boninger , David J Reinkensmeyer

DOI: 10.1186/1743-0003-9-18

关键词: European researchPhysical medicine and rehabilitationEngineeringThe InternetRisk analysis (engineering)Treatment methodObjectivity (science)Treatment planNeurorehabilitationPersonalizationIndustrial research

摘要: Mobility impairments due to injury or disease have a significant impact on quality of life. Consequently, development effective treatments restore replace lost function is an important societal challenge. In current clinical practice, treatment plan often selected from standard menu options rather than customized the unique characteristics patient. Furthermore, selection process normally based subjective experience objective prediction post-treatment function. The net result methods that are less desired at restoring This paper discusses possible use personalized neuromusculoskeletal computer models improve customization, objectivity, and ultimately effectiveness for mobility impairments. discussion information gathered academic industrial research sites throughout Europe, both technical aspects modeling explored. On front, we discuss purpose modeling, application problems, gaps in application. capabilities along with limit future We conclude by summarizing recommendations efforts would allow make greatest design

参考文章(58)
Mary D. Klein Breteler, Cornelis W. Spoor, Frans C.T. Van der Helm, Measuring muscle and joint geometry parameters of a shoulder for modeling purposes. Journal of Biomechanics. ,vol. 32, pp. 1191- 1197 ,(1999) , 10.1016/S0021-9290(99)00122-0
R. Dumas, R. Aissaoui, D. Mitton, W. Skalli, J.A. deGuise, Personalized Body Segment Parameters From Biplanar Low-Dose Radiography IEEE Transactions on Biomedical Engineering. ,vol. 52, pp. 1756- 1763 ,(2005) , 10.1109/TBME.2005.855711
Leonardo Gizzi, Jørgen Feldbæk Nielsen, Francesco Felici, Yuri P. Ivanenko, Dario Farina, Impulses of activation but not motor modules are preserved in the locomotion of subacute stroke patients Journal of Neurophysiology. ,vol. 106, pp. 202- 210 ,(2011) , 10.1152/JN.00727.2010
Robert F. Kirsch, Robert F. Kirsch, Lisa A. Cash, Lisa A. Cash, Lisa A. Cash, Remco J J Rotteveel, Remco J J Rotteveel, Remco J J Rotteveel, Frans C T Van Der Helm, Frans C T Van Der Helm, Frans C T Van Der Helm, Ana Maria Acosta, Model-based development of neuroprostheses for restoring proximal arm function. Journal of Rehabilitation Research and Development. ,vol. 38, pp. 619- 626 ,(2001)
Marjolein van der Krogt, René Fluit, Vincenzo Carbone, Nico Verdonschot, Bart Koopman, Sjoerd Kolk, TLEMsafe: Improving safety and predictability of complex musculoskeletal surgery using a patient-specific navigation system XXIII Congress of the International Society of Biomechanics, ISB 2011. pp. 20- 20 ,(2011)
M.O. Heller, J.H. Schröder, G. Matziolis, A. Sharenkov, W.R. Taylor, C. Perka, G.N. Duda, [Musculoskeletal load analysis. A biomechanical explanation for clinical results--and more?]. Orthopade. ,vol. 36, pp. 188- 194 ,(2007) , 10.1007/S00132-007-1054-Y
Mary M. Reilly, Sinéad M. Murphy, Matilde Laurá, Charcot-Marie-Tooth disease. Journal of The Peripheral Nervous System. ,vol. 16, pp. 1- 14 ,(2011) , 10.1111/J.1529-8027.2011.00324.X
D.J. Magermans, E.K.J. Chadwick, H.E.J. Veeger, F.C.T. van der Helm, P.M. Rozing, Biomechanical analysis of tendon transfers for massive rotator cuff tears Clinical Biomechanics. ,vol. 19, pp. 350- 357 ,(2004) , 10.1016/J.CLINBIOMECH.2003.11.013
Martin Frey, Robert Riener, Christian Michas, Felix Regenfelder, Rainer Burgkart, Elastic properties of an intact and ACL-ruptured knee joint: measurement, mathematical modelling, and haptic rendering. Journal of Biomechanics. ,vol. 39, pp. 1371- 1382 ,(2006) , 10.1016/J.JBIOMECH.2005.04.021
Marco Viceconti, Fulvia Taddei, Serge Van Sint Jan, Alberto Leardini, Luca Cristofolini, Susanna Stea, Fabio Baruffaldi, Massimiliano Baleani, Multiscale modelling of the skeleton for the prediction of the risk of fracture Clinical Biomechanics. ,vol. 23, pp. 845- 852 ,(2008) , 10.1016/J.CLINBIOMECH.2008.01.009