Lode Bosmans

Affiliations: 
Human Movement Sciences Katholieke Universiteit Leuven (Belgium) 
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"Lode Bosmans"
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Wesseling M, Bosmans L, Van Dijck C, et al. (2019) Non-rigid deformation to include subject-specific detail in musculoskeletal models of CP children with proximal femoral deformity and its effect on muscle and contact forces during gait. Computer Methods in Biomechanics and Biomedical Engineering. 1-10
Bosmans L, Jansen K, Wesseling M, et al. (2016) The role of altered proximal femoral geometry in impaired pelvis stability and hip control during CP gait: A simulation study. Gait & Posture. 44: 61-7
Wesseling M, De Groote F, Bosmans L, et al. (2016) Subject-specific geometrical detail rather than cost function formulation affects hip loading calculation. Computer Methods in Biomechanics and Biomedical Engineering. 1-14
Dingemanse W, Jonkers I, Müller-Gerbl M, et al. (2016) Calculation of muscles forces in Labrador retriever hind legs during stance Journal of Small Animal Practice. 57: 9-9
Bosmans L, Jansen K, Wesseling M, et al. (2016) The role of altered proximal femoral geometry in impaired pelvis stability and hip control during CP gait: A simulation study Gait and Posture. 44: 61-67
Bosmans L, Valente G, Wesseling M, et al. (2015) Sensitivity of predicted muscle forces during gait to anatomical variability in musculotendon geometry. Journal of Biomechanics. 48: 2116-23
Bosmans L, Wesseling M, Desloovere K, et al. (2015) Aberrant femoral geometry and aberrant gait kinematics both impair hip loading during gait Gait & Posture. 42: S23
Bosmans L, Wesseling M, Desloovere K, et al. (2014) Hip contact force in presence of aberrant bone geometry during normal and pathological gait. Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society. 32: 1406-15
Vandenberghe A, Bosmans L, De Schutter J, et al. (2012) Quantifying individual muscle contribution to three-dimensional reaching tasks. Gait & Posture. 35: 579-84
Bosmans L, Lenaerts G, Scheys L, et al. (2012) How pathological gait kinematics, increased femoral anteversion and neck shaft angle adversely affect the loading conditions of the femoral head during gait in children with cerebral palsy Gait & Posture. 36: S19-S20
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