Analysis of squat and stoop dynamic liftings: muscle forces and internal spinal loads
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[1] A. Burdorf,et al. Positive and negative evidence of risk factors for back disorders. , 1997, Scandinavian journal of work, environment & health.
[2] S. Rose,et al. Electromyographic analysis of two techniques for squat lifting. , 1987, Physical therapy.
[3] J. Evans,et al. The Abdominal Muscles and Vertebral Stability , 1987, Spine.
[4] M M Panjabi,et al. Three-Dimensional Movements of the Whole Lumbar Spine and Lumbosacral Joint , 1989, Spine.
[5] N Arjmand,et al. Sensitivity of kinematics-based model predictions to optimization criteria in static lifting tasks. , 2006, Medical engineering & physics.
[6] L. Haugh,et al. Prospective evidence for change in paraspinal muscle activity after herniated nucleus pulposus. , 1993, Spine.
[7] H M Toussaint,et al. Flexion relaxation during lifting: implications for torque production by muscle activity and tissue strain at the lumbo-sacral joint. , 1995, Journal of biomechanics.
[8] S Gracovetsky,et al. The Mechanism of the Lumbar Spine , 1981, Spine.
[9] J. Laible,et al. Role of muscles in lumbar spine stability in maximum extension efforts , 1995, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[10] T. Waters,et al. Evaluation of spinal loading during lowering and lifting. , 1998, Clinical biomechanics.
[11] G A Mirka,et al. Transverse-Contour Modeling of Trunk Muscle–Distributed Forces and Spinal Loads During Lifting and Twisting , 2000, Spine.
[12] G. Andersson. Epidemiologic Aspects on Low-Back Pain in Industry , 1981, Spine.
[13] William S Marras,et al. Effect of torso flexion on the lumbar torso extensor muscle sagittal plane moment arms. , 2003, The spine journal : official journal of the North American Spine Society.
[14] M. Panjabi,et al. Functional Radiographic Diagnosis of the Lumbar Spine: Flexion—Extension and Lateral Bending , 1991, Spine.
[15] H M Toussaint,et al. Dynamic forces acting on the lumbar spine during manual handling. Can they be estimated using electromyographic techniques alone? , 1999, Spine.
[16] I A Stokes,et al. Lumbar spine maximum efforts and muscle recruitment patterns predicted by a model with multijoint muscles and joints with stiffness. , 1995, Journal of biomechanics.
[17] J R Potvin,et al. Reduction in anterior shear forces on the L 4L 5 disc by the lumbar musculature. , 1991, Clinical biomechanics.
[18] D. Gagnon,et al. The comparison of trunk muscles EMG activation between subjects with and without chronic low back pain during flexion-extension and lateral bending tasks. , 2000, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[19] A. Shirazi-Adl. Nonlinear finite element analysis of wrapping uniaxial elements , 1989 .
[20] S. McGill,et al. Three-dimensional kinematics and trunk muscle myoelectric activity in the elderly spine - a database compared to young people. , 1999, Clinical biomechanics.
[21] A. Shirazi-Adl,et al. Muscle Activity, Internal Loads, and Stability of the Human Spine in Standing Postures: Combined Model and In Vivo Studies , 2004, Spine.
[22] T Hansson,et al. Effect of strain rate and bone mineral on the structural properties of the human anterior longitudinal ligament. , 1994, Spine.
[23] M M Panjabi,et al. Clinical Validation of Functional Flexion‐Extension Roentgenograms of the Lumbar Spine , 1991, Spine.
[24] S. McGill. The biomechanics of low back injury: implications on current practice in industry and the clinic. , 1997, Journal of biomechanics.
[25] I A Stokes,et al. Quantitative anatomy of the lumbar musculature. , 1999, Journal of biomechanics.
[26] R W Norman,et al. Measurement of the trunk musculature of active males using CT scan radiography: implications for force and moment generating capacity about the L4/L5 joint. , 1988, Journal of biomechanics.
[27] H M Toussaint,et al. The evaluation of a practical biomechanical model estimating lumbar moments in occupational activities. , 1994, Ergonomics.
[28] R. Norman,et al. 1986 Volvo Award in Biomechanics: Partitioning of the L4 - L5 Dynamic Moment into Disc, Ligamentous, and Muscular Components During Lifting , 1986, Spine.
[29] D. Hart,et al. Effect of Lumbar Posture on Lifting , 1987, Spine.
[30] J L Porter,et al. Lumbar-Hip Flexion Motion: A Comparative Study Between Asymptomatic and Chronic Low Back Pain in 18- to 36-year-old Men , 1997, Spine.
[31] M. Pearcy,et al. Three-Dimensional X-ray Analysis of Normal Movement in the Lumbar Spine , 1984, Spine.
[32] Arun Garg,et al. Stoop or Squat: A Biomechanical and Metabolic Evaluation , 1979 .
[33] D. Pearsall,et al. Segmental inertial parameters of the human trunk as determined from computed tomography , 1996, Annals of Biomedical Engineering.
[34] S. McGill,et al. Changes in lumbar lordosis modify the role of the extensor muscles. , 2000, Clinical biomechanics.
[35] T. Hughes,et al. Collocation, dissipation and [overshoot] for time integration schemes in structural dynamics , 1978 .
[36] P J Beek,et al. Anticipatory postural adjustments in the back and leg lift. , 1997, Medicine and science in sports and exercise.
[37] A Shirazi-Adl,et al. Analysis of role of bone compliance on mechanics of a lumbar motion segment. , 1994, Journal of biomechanical engineering.
[38] J R Potvin,et al. Trunk Muscle and Lumbar Ligament Contributions to Dynamic Lifts with Varying Degrees of Trunk Flexion , 1991, Spine.
[39] T. Andriacchi,et al. Influence of Dynamic Factors and External Loads on the Moment at the Lumbar Spine in Lifting , 1988, Spine.
[40] A. Shirazi-Adl,et al. Dynamics of Human Lumbar Intervertebral Joints: Experimental and Finite‐Element Investigations , 1992, Spine.
[41] M. Adams,et al. Bending and compressive stresses acting on the lumbar spine during lifting activities. , 1994, Journal of biomechanics.
[42] W. Marras,et al. An EMG-assisted model of trunk loading during free-dynamic lifting. , 1995, Journal of biomechanics.
[43] J. Cholewicki,et al. Mechanical stability of the in vivo lumbar spine: implications for injury and chronic low back pain. , 1996, Clinical biomechanics.
[44] W S Marras,et al. An Assessment of Complex Spinal Loads During Dynamic Lifting Tasks , 1998, Spine.
[45] W S Marras,et al. A literature review of low back disorder surveillance measures and risk factors. , 1997, Clinical biomechanics.
[46] A Leardini,et al. Position and orientation in space of bones during movement: experimental artefacts. , 1996, Clinical biomechanics.
[47] Arne Lundberg. On the use of bone and skin markers in kinematics research , 1996 .
[48] M J Pearcy,et al. The effects of flexion on the geometry and actions of the lumbar erector spinae. , 1993, Spine.
[49] M J Pearcy,et al. A Universal Model of the Lumbar Back Muscles in the Upright Position , 1992, Spine.
[50] D. Pearsall,et al. Inertial properties of the human trunk of males determined from magnetic resonance imaging , 1994, Annals of Biomedical Engineering.
[51] D B Chaffin,et al. Development and evaluation of a scalable and deformable geometric model of the human torso. , 1996, Clinical biomechanics.
[52] M Parnianpour,et al. Effect of changes in lordosis on mechanics of the lumbar spine-lumbar curvature in lifting. , 1999, Journal of spinal disorders.
[53] J A Holmes,et al. Erector Spinae Activation and Movement Dynamics About the Lumbar Spine in Lordotic and Kyphotic Squat-Lifting , 1992, Spine.
[54] M Parnianpour,et al. Load-bearing and stress analysis of the human spine under a novel wrapping compression loading. , 2000, Clinical biomechanics.
[55] A Thorstensson,et al. Erector spinae lever arm length variations with changes in spinal curvature. , 1994, Spine.
[56] B. Prilutsky,et al. Sensitivity of predicted muscle forces to parameters of the optimization-based human leg model revealed by analytical and numerical analyses. , 2001, Journal of biomechanics.
[57] N. Arjmand,et al. Role of intra-abdominal pressure in the unloading and stabilization of the human spine during static lifting tasks , 2006, European Spine Journal.
[58] R W Norman,et al. Lumbar spine loads during the lifting of extremely heavy weights. , 1991, Medicine and science in sports and exercise.
[59] Nikolai Bogduk,et al. The morphology and biomechanics of latissimus dorsi. , 1998, Clinical biomechanics.
[60] K Kedzior,et al. A Biomechanical Model of the Human Spinal System , 1991, Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine.
[61] Jinjun Xiong,et al. Model-guided derivation of lumbar vertebral kinematics in vivo reveals the difference between external marker-defined and internal segmental rotations. , 2003, Journal of biomechanics.
[62] L. S. Matthews,et al. A biomechanical model of the lumbosacral joint during lifting activities. , 1985, Journal of biomechanics.
[63] Simon M. Hsiang,et al. Low back pain (LBP) and lifting technique — A review , 1997 .
[64] K P Granata,et al. Lumbar-pelvic coordination is influenced by lifting task parameters. , 2000, Spine.
[65] Karin Harms-Ringdahl,et al. Physiological and subjective responses to maximal repetitive lifting employing stoop and squat technique , 2004, European Journal of Applied Physiology and Occupational Physiology.
[66] Kenton R Kaufman,et al. Correlation between active and passive isometric force and intramuscular pressure in the isolated rabbit tibialis anterior muscle. , 2003, Journal of biomechanics.
[67] Vladimir M. Zatsiorsky,et al. The Mass and Inertia Characteristics of the Main Segments of the Human Body , 1983 .
[68] J H van Dieën,et al. Stoop or squat: a review of biomechanical studies on lifting technique. , 1999, Clinical biomechanics.
[69] S. Siegler,et al. Analysis of Lumbar Spine and Hip Motion During Forward Bending in Subjects With and Without a History of Low Back Pain , 1996, Spine.
[70] M. Parnianpour,et al. Spinal muscle forces, internal loads and stability in standing under various postures and loads—application of kinematics-based algorithm , 2005, European Spine Journal.
[71] W. Chiou,et al. Predictive model of intersegmental mobility of lumbar spine in the sagittal plane from skin markers , 1995 .
[72] Babak Bazrgari,et al. Influence of curved lines of action for trunk extensor muscles on load redistribution and stability of the spine during lifting , 2006 .
[73] C. Richards,et al. Hip-spine movement interaction and muscle activation patterns during sagittal trunk movements in low back pain patients. , 1994, Spine.
[74] Monique H. W. Frings-Dresen,et al. Epidemiologic evidence on manual materials handling as a risk factor for back disorders:a systematic review , 1999 .
[75] Jonathon L. Porter,et al. Lumbar-Hip Flexion Motion , 1997 .
[76] R. Hughes,et al. Evaluation of muscle force prediction models of the lumbar trunk using surface electromyography , 1994, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[77] A Shirazi-Adl,et al. Analysis of large compression loads on lumbar spine in flexion and in torsion using a novel wrapping element. , 2006, Journal of biomechanics.
[78] H M Toussaint,et al. Repetitive lifting and spinal shrinkage, effects of age and lifting technique. , 1994, Clinical biomechanics.
[79] L Lindbeck,et al. Inertial effects from single body segments in dynamic analysis of lifting. , 1991, Ergonomics.
[80] J H van Dieën,et al. Are recruitment patterns of the trunk musculature compatible with a synergy based on the maximization of endurance? , 1997, Journal of biomechanics.
[81] W S Marras,et al. The effects of motion on trunk biomechanics. , 2000, Clinical biomechanics.
[82] W. Marras,et al. The Influence of Trunk Muscle Coactivity on Dynamic Spinal Loads , 1995, Spine.
[83] Michael A. Adams,et al. Posture and the compressive strength of the lumbar spine , 1994 .
[84] P. Dolan,et al. The clinical biomechanics award paper 1993 Posture and the compressive strength of the lumbar spine. , 1994, Clinical biomechanics.
[85] T Bendix,et al. The distance between the load and the body with three bi-manual lifting techniques. , 1983, Applied ergonomics.
[86] A. Joseph Threlkeld,et al. Electromyographic activity of selected trunk and hip muscles during a squat lift. Effect of varying the lumbar posture. , 1994, Spine.
[87] M. Parnianpour,et al. Muscle force evaluation and the role of posture in human lumbar spine under compression , 2002, European Spine Journal.
[88] S. Siegler,et al. Kinematic Analysis of Lumbar and Hip Motion While Rising From a Forward, Flexed Position in Patients With and Without a History of Low Back Pain , 1997, Spine.
[89] R W Norman,et al. Dynamically and statically determined low back moments during lifting. , 1985, Journal of biomechanics.
[90] M Parnianpour,et al. The dynamic response of L(2)/L(3) motion segment in cyclic axial compressive loading. , 1998, Clinical biomechanics.
[91] A. E. Engin,et al. Viscoelastic Finite-Element Analysis of a Lumbar Motion Segment in Combined Compression and Sagittal Flexion: Effect of Loading Rate , 2000, Spine.
[92] Serge Gracovetsky. The Spinal Engine , 1989 .
[93] A Plamondon,et al. Application of a Stereoradiographic Method for the Study of Intervertebral Motion , 1988, Spine.
[94] Nikolai Bogduk,et al. The biomechanics of the thoracolumbar fascia. , 1987, Clinical biomechanics.
[95] Christian Larivière,et al. Comparison between two dynamic methods to estimate triaxial net reaction moments at the L5/S1 joint during lifting. , 1998, Clinical biomechanics.
[96] K. Harms-Ringdahl,et al. Ratings of Perceived Thigh and Back Exertion in Forest Workers During Repetitive Lifting Using Squat and Stoop Techniques , 1994, Spine.
[97] Idsart Kingma,et al. Does an asymmetric straddle-legged lifting movement reduce the low-back load? , 1998 .
[98] S. McGill,et al. Three-dimensional kinematics and trunk muscle myoelectric activity in the young lumbar spine: a database. , 1998, Archives of physical medicine and rehabilitation.
[99] J W Frymoyer,et al. The Relationship Between Work History, Work Environment and Low-Back Pain in Men , 1984, Spine.
[100] P Brinckmann,et al. Precision measurement of segmental motion from flexion-extension radiographs of the lumbar spine. , 1996, Clinical biomechanics.
[101] Aboulfazl Shirazi-Adl,et al. Biomechanics of Changes in Lumbar Posture in Static Lifting , 2005, Spine.
[102] N Arjmand,et al. Model and in vivo studies on human trunk load partitioning and stability in isometric forward flexions. , 2006, Journal of biomechanics.
[103] Tesh Km,et al. The abdominal muscles and vertebral stability. , 1987 .
[104] J H van Dieën,et al. Lumbar loading during lifting: a comparative study of three measurement techniques. , 2001, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[105] I A Kuorinka,et al. A Comparison of Intraabdominal Pressure Increases, Hip Torque, and Lumbar Vertebral Compression in Different Lifting Techniques , 1983, Human factors.
[106] M M Panjabi,et al. Three‐Dimensional mechanical properties of the thoracolumbar junction , 1992, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.