Browse By Person: Little, Judith Paige
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Number of items: 36.
Book Chapter
Little, J. Paige & Adam, Clayton J. (2012) Patient-Specific Modeling of Scoliosis. In Gefen, Amit (Ed.) Patient-Specific Modeling in Tomorrow's Medicine. Springer Verlag, Berlin. (In Press)
Journal Article
Little, J. Paige, Izatt, Maree T., Labrom, Robert D., Askin, Geoffrey N., & Adam, Clayton J. (2013) An FE investigation simulating intra-operative corrective forces applied to correct scoliosis deformity. Scoliosis. (In Press)
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8Little, J. Paige & Adam, Clayton J. (2012) Towards determining soft tissue properties for modelling spine surgery : current progress and challenges. Medical & Biological Engineering & Computing, 50(2), pp. 199-209.
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34Little, J.P., Izatt, M.T., Labrom, R.D., Askin, G.N., & Adam, C.J. (2012) Investigating the change in three dimensional deformity for idiopathic scoliosis using axially loaded MRI. Clinical Biomechanics, 27(5), pp. 415-421.
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1Little, J. Paige & Adam, Clayton J. (2011) Effects of surgical joint destabilization on load sharing between ligamentous structures in the thoracic spine : a finite element investigation. Clinical Biomechanics, 26(9), pp. 895-903.
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1Little, J. Paige & Adam, Clayton J. (2010) Patient-specific computational biomechanics for simulating adolescent scoliosis surgery : predicted vs clinical correction for a preliminary series of six patients. International Journal for Numerical Methods in Biomedical Engineering, 27(3), 347 -356.
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2McDonald, Katrina A., Little, J. Paige, Pearcy, Mark J., & Adam, Clayton J. (2010) Development of a multi-scale finite element model of the osteoporotic lumbar vertebral body for the investigation of apparent level vertebra mechanics and micro-level trabecular mechanics. Medical Engineering & Physics, 32(6), pp. 653-661.
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1Little, Judith Paige, Pearcy, Mark J., Tevelen, Gregory, Evans, John H., Pettet, Graeme J., & Adam, Clayton J. (2010) The mechanical response of the ovine lumbar anulus fibrosus to uniaxial, biaxial and shear loads. Journal of the Mechanical Behavior of Biomedical Materials, 3(2), pp. 146-157.
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4Little, Judith Paige, Tevelen, Gregory, Adam, Clayton J., Evans, John H., & Pearcy, Mark J. (2009) Development of a biaxial compression device for biological samples : preliminary experimental results for a closed cell foam. Journal of the Mechanical Behavior of Biomedical Materials, 2(3), pp. 305-309.
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1Little, J. Paige & Adam, Clayton J. (2009) The Effect of soft tissue properties on spinal flexibility in scoliosis : Biomechanical simulation of fulcrum bending. Spine, 34(2), E76-E82.
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12Simpson, D., Little, J.P., Gray, H., Murray, D., & Gill, H. (2009) Effect of modular neck variation on bone and cement mantle mechanics around a total hip arthroplasty stem. Clinical Biomechanics, 24(3), pp. 274-285.
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3Little, J. Paige, De Visser, Hans, Pearcy, Mark J., & Adam, Clayton J. (2008) Are coupled rotations in the lumbar spine largely due to the osseo-ligamentous anatomy? - A modeling study. Computer Methods in Biomechanics and Biomedical Engineering, 11(1), pp. 95-103.
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7Little, J. Paige, Pearcy, Mark J., & Pettet, Graeme J. (2007) Parametric equations to represent the profile of the human intervertebral disc in the transverse plane. Medical and Biological Engineering and Computing, 45(10), pp. 939-945.
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4Little, J. Paige, Taddei, Fulvia, Viceconti, Marco, Murray, David W., & Gill, Harinderjit S. (2007) Changes in femur stress after hip resurfacing arthroplasty: Response to physiological loads. Clinical Biomechanics, 22(4), pp. 440-448.
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39Little, J. Paige, Adam, Clayton J., Evans, John H., Pettet, Graeme J., & Pearcy, Mark J. (2007) Nonlinear finite element analysis of anular lesions in the L4/5 intervertebral disc. Journal of Biomechanics, 40(12), pp. 2744-2751.
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15Conference Paper
Little, J. Paige, Pearcy, Mark J., & Adam, Clayton J. (2012) Patient-specific simulations of spinal deformity surgery. In Pearcy, Mark J. & Pettet, Graeme J. (Eds.) Conference and Workshop on Modelling and Computation in Musculoskeletal Engineering, 12-15 November 2012, Queensland University of Technology, Brisbane, QLD. (Unpublished)
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6Little, J. Paige, Askin, Geoffrey N., Labrom, Robert D., & Adam, Clayton J. (2012) A computer model to simulate scoliosis surgery. In Stanford, Ralph (Ed.) The Spine Society of Australia 23rd Annual Scientific Meeting 2012, the Westin, Sydney, NSW.
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16Little, J. Paige, Askin, Geoffrey N., Labrom, Robert D., & Adam, Clayton J. (2012) The effect of intraoperative force on scoliosis correction at the apex : a biomechanical investigation. In Stanford, Ralph (Ed.) 23rd Annual Meeting of the Spine Society of Australia, 27-29 April 2012 , The Westin, Sydney, NSW. (Unpublished)
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11Fairhurst , Helen, Little, J. Paige, & Adam, Clayton J. (2011) The measurement of applied forces during anterior single rod surgical correction of adolescent idiopathic scoliosis. In Stanford, Ralph (Ed.) Conference Proceedings of the Spine Society of Australia 22nd Annual Scientific Meeting 2011, Melbourne, Australia.
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23Little, J. Paige & Adam, Clayton J. (2010) Development of a computer simulation tool for application in adolescent spinal deformity surgery. In Bello, Fernando & Cotin, Stephane (Eds.) Biomedical Simulation : Proceedings of 5th International Symposium on Biomedical Simulation, Springer, Phoenix Convention Center, Arizona, pp. 90-97.
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2McDonald, Katrina A., Little, J. Paige, Pearcy, Mark J., & Adam, Clayton J. (2009) Relative roles of cortical and trabecular thinning in reducing osteoporotic vertebral body stiffness: A modeling study. In Goh, James C. & Lim, CT (Eds.) 13th International Conference on Biomedical Engineering (ICBME), 3-6 December, 2008, Singapore.
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121Little, J. Paige, Adam, Clayton J., Evans, John H., Askin, Geoffrey N., & Pearcy, Mark J. (2008) Patient-specific soft tissue properties for AIS patients: a finite element study. In 8th International symposium on Computer Methods in Biomechanics and Biomedical Engineering, Feb 27 - March 1 2008, Porto, Portugal.
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58Little, J. Paige & Adam, Clayton J. (2008) The effect of soft tissue stiffness on spinal flexibility: a finite element study of scoliosis. In Williamson, Owen (Ed.) Annual Scientific Meeting of Spine Society of Australia 2008, 18-20 April 2008, Adelaide, Australia.
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54Little, J. Paige, Pearcy, Mark J., & Adam, Clayton J. (2007) Are Coupled Rotations in the Lumbar Spine Largely Due to the Osseoligamentous Anatomy? In Williamson, Owen (Ed.) Annual Scientific Meeting of the Spine Society of Australia, 20-22 April, 2007, Hobart, Australia.
Little, J. Paige, Pearcy, Mark J., & Adam, Clayton J. (2007) Are coupled rotations in the lumbar spine largely due to the osseoligamentous anatomy? In XXIst Congress of the International Society of Biomechanics, July 1-5 2007, Taipei, Taiwan.
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56Little, J. Paige, Pearcy, Mark J., & Adam, Clayton J. (2007) Coupled rotations in the lumbar spine – are these a consequence of passive spinal anatomy? In Brebbia, C. A. (Ed.) 7th International conference on Modelling in Medicine and Biology (Biomed 2007), 10-12 September 2007, Wessex Institute of Technology, New Forest, United Kingdom.
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1Cunningham, Helen, Little, J. Paige, Pearcy, Mark J., & Adam, Clayton J. (2007) The effect of soft tissue properties on overall biomechanical response of a human lumbar motion segment: A preliminary finite element study. In The Adelaide Centre for Spinal Research - Spinal Research Symposium V, 28-30 August 2007, Adelaide, Australia.
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1Cunningham, Helen, Little, J. Paige, Pearcy, Mark J., & Adam, Clayton J. (2007) The effect of soft tissue properties on overall biomechanical response of a human lumbar motion segment: a preliminary finite element study. In Brebbia, C.A. (Ed.) 7th International conference on Modelling in Medicine and Biology (Biomed 2007), September 10-12, 2007, Wessex Institute of Technology, New Forest, United Kingdom.
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1Adam, Clayton, Evans, John, Little (nee Smallhorn), Judith, Pearcy, Mark, & Pettet, Graeme (2004) Finite Element Simulation of an L4/5 Lumbar Intervertebral Disc. In Tanaka, M (Ed.) Proceedings of The First Aisan Pacific Conference on Biomechanics. Emerging Science and Technology in Biomechanics., 25-28 March 2004, Osaka, Japan.
Adam, Clayton, Little (nee Smallhorn), Judith, Pearcy, Mark, & Pettet, Graeme (2004) Initiation of Mechanical Derangement in the Anulus Fibrosus Ground Matrix. In Tanaka, M (Ed.) Proceedings of The First Asian Pacific Conference on Biomechanics. Emerging Science and Technology in Biomechanics., 25-28 March 2005, Osaka, Japan.
Conference Item
Little, J. Paige & Adam, Clayton J. (2009) Computer simulation in spine biomechanics : An application in adolescent idiopathic scoliosis. In Adelaide Centre for Spinal Research (ACSR) - Spinal Research Symposium VII, 25-27 August, Barossa Valley, Adelaide, Australia. (Unpublished)
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114Fairhurst , Helen, Little, J. Paige, & Adam, Clayton J. (2009) The measurement of applied forces during anterior single rod correction of adolescent idiopathic scoliosis. In Adelaide Centre for Spinal Research (ACSR) - Spinal Research Symposium VII, 25-27 August, Barossa Valley, Adelaide, Australia. (Unpublished)
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72Little, J. Paige (2009) The mechanics of disc degeneration from an engineering and computational modelling viewpoint. In Fundamentals of Spine Surgery Course, April 16, 2009, Sofitel Hotel, Brisbane. (Unpublished)
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17de Visser, Hans, Little, J. Paige, Adam, Clayton J., Evans, John, Pearcy, Mark J., Labrom, Robert D., et al. (2007) Patient specific parametric finite element models of scoliotic spines from CT scans. In e-Health Research Colloquium, 13/03/2007, Brisbane, Australia.
QUT Thesis
Little, Judith Paige (2004) Finite Element Modelling Of Anular Lesions in the Lumbar Intervertebral Disc. PhD thesis, Queensland University of Technology.
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Little, J. Paige, Gray, Hans, Murray, David W., Beard, David J., & Gill, Harinderjit S. (2007) Thermal effects of cement mantle thickness for hip resurfacing. Journal of Arthroplasty.
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