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Dissipation of disturbances seen in the knee joint kinematics of children with cerebral palsy

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: Children with cerebral palsy (CP) often use a crouch gait pattern that has disturbances in the knee joint kinematics. Although the length and rate of lengthening of the hamstring musculature have been speculated to be the reason that these disturbances are not adequately dissipated, this relationship has not been adequately explored. The purpose of this exploratory investigation was to use simulations of a musculoskeletal model and Floquet analysis to evaluate how the performance of hamstrings musculature during gait may be related to the knee joint instabilities seen in children with CP. Methods: Children with CP and typically developing (TD) children walked on a treadmill as a motion capture system assessed the knee joint kinematics. Floquet analysis was used to quantify the rate that disturbances present at the knee joint were dissipated, and simulations of a musculoskeletal model were used to estimate the in vivo length and velocity of the hamstrings. Pearson correlation coefficients were calculated to determine if there was a relationship between the rate that the disturbances were dissipated and the performance of the hamstring musculature. Results: The children with CP had hamstrings that lengthened more slowly than TD children, and required more strides to dissipate disturbances in the knee joint kinematics. There was negative correlation between the rate that the hamstrings lengthened and the rate that the knee joint disturbances were dissipated. Conclusions: Our results suggest that the ability of children with CP to dissipate the knee joint disturbances may be related to the inability to properly control the hamstring musculature.
Rocznik
Strony
67--72
Opis fizyczny
Bibliogr. 20 poz., rys., wykr.
Twórcy
autor
  • Department of Physical Therapy, Munroe-Meyer Institute for Genetics and Rehabilitation, University of Nebraska Medical Center, Omaha, Nebraska, USA
autor
  • Department of Physical Therapy, Munroe-Meyer Institute for Genetics and Rehabilitation, University of Nebraska Medical Center, Omaha, Nebraska, USA
autor
  • Department of Physical Therapy, Munroe-Meyer Institute for Genetics and Rehabilitation, University of Nebraska Medical Center, Omaha, Nebraska, USA
  • Department of Physical Therapy, Munroe-Meyer Institute for Genetics and Rehabilitation, University of Nebraska Medical Center, Omaha, Nebraska, USA
Bibliografia
  • [1] ABEL M.F., DAMIANO D.L., Strategies for increasing walking speed in diplegic cerebral palsy, J. Ped. Orthop., 1996, Vol. 16, 753–758.
  • [2] ARNOLD A.S., LIU M.Q., SCHWARTZ M.H., OUNPUU S., DIAS L.S., DELP S., Do the hamstrings operate at increased muscletendon lengths and velocities after surgical lengthening?, J. Biomech., 2006, Vol. 39(8), 1498–1506.
  • [3] ARNOLD A.S., LIU M.Q., SCHWARTZ M.H., OUNPUU S., DELP S., The role of estimating muscle-tendon lengths and velocities of the hamstrings in the evaluation and treatments of crouch gait, Gait Posture, 2006, Vol. 23, 273–281.
  • [4] DAMIANO D.L., LAWS E., CARMINES D.V., ABEL M.F., Relationship of spasticity to knee angular velocity and motion during gait in cerebral palsy, Gait Posture, 2006, Vol. 23, 1–8.
  • [5] DELP S.L., ARNOLD A.S., SPEERS R.A., MOORE C.A., Hamstring and psoas length during normal and crouch gait: implications for muscle-tendon surgery, J. Orthop. Res., 1996, Vol. 14(1), 144–151.
  • [6] DELP S.L., ANDERSON F.C., ARNOLD A.S., LOAN P., HABIB A., JOHN C.T., GUENDELMAN E., Thelen DG OpenSim: opensource software to create and analyze dynamic simulations of movement, IEEE Trans. Biomed. Eng., 2007, Vol. 54(11), 1940–1950.
  • [7] DINGWELL J.B., KANG H.G., Differences between local and orbital dynamic stability during human walking, J. Biomech. Eng., 2007, Vol. 129, 586–593.
  • [8] GAGE J.R., Surgical treatment of knee dysfunction in cerebral palsy, Clin. Orthop. Rel. Res., 1990, Vol. 253, 45–54.
  • [9] HURMUZLU T., BASDOGAN C., On the measurement of dynamic stability of human Locomotion, J. Biomech. Eng., 1994, Vol. 116, 30–36.
  • [10] KURZ M.J., ARPIN D.J., CORR B., Differences in the dynamic gait stability of children with cerebral palsy and typically developing children, Gait Posture, 2012, Vol. 36(3), 600–604.
  • [11] LUKBAN M.B., ROSALES R.L., DRESSLER D., Effectiveness of botulinum toxin A for upper and lower limb spasticity in children with cerebral palsy: a summary of evidence, J. Neural. Trans., 2009, Vol. 116, 319–331.
  • [12] LAMPIRE N., ROCHE N., CARNE P., CHEZE L., PRADON D., Effect of botulinium toxin injection on length and lengthening velocity of rectus femoris during gait in hemiparetic patients, Clin. Biomech., 2013, Vol. 28(2), 164–170.
  • [13] MARGHITU D.B., KINCAID S.A., RUMPH P.F., Nonlinear dynamics stability measurements of locomotion in healthy greyhounds, Am. J. Vet. Res., 1996, Vol. 57, 1529–1535.
  • [14] MCGEER T., Passive dynamic walking, Int. J. Robotics Res., 1990, Vol. 9, 62–82.
  • [15] STEELE K.M., SETH A., HICKS J.L., SCHWARTZ M.S., DELP S.L., Muscle contributions to support and progression during single-limb stance in crouch gait, J. Biomech., 2010, Vol. 43(11), 2099–2105.
  • [16] STEELE K.M., VAN DER KROGT M.M., SCHWARTZ M.H., DELP S.L., How much muscle strength is required to walk in a crouch gait?, J. Biomech., 2012, Vol. 45, 2564–2569.
  • [17] STEELE K.M., SETH A., HICKS J.L., SCHWARTZ M., DELP S., Muscle contributions to vertical and fore-aft accelerations are altered in subjects with crouch gait, Gait Posture, 2013, Vol. 38(1), 86–91.
  • [18] SUTHERLAND D.H., DAVIDS J.R., Common gait abnormalities of the knee in cerebral palsy, Clin. Orthop. Rel. Res., 1993, Vol. 288, 139–147.
  • [19] VAN DER KROGT M.M., DOORENBOSCH C.A.M., BECHER J.G., HARLAAR J., Walking speed modifies spasticity effects in gastrocnemius and soleus in cerebral palsy gait, Clin. Biomech., 2009, Vol. 24, 422–428.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0d3ea6b3-a014-4cc3-b726-9a8dec9729c0
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