Seated whole body vibrations with high-magnitude accelerations--relative roles of inertia and muscle forces.
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[1] M M Panjabi,et al. Three-Dimensional Movements of the Whole Lumbar Spine and Lumbosacral Joint , 1989, Spine.
[2] S. Rakheja,et al. Definition of A range of idealized values to characterize seated body biodynamic response under vertical vibration , 1998 .
[3] A Shirazi-Adl,et al. Analysis of role of bone compliance on mechanics of a lumbar motion segment. , 1994, Journal of biomechanical engineering.
[4] K. Granata,et al. Role of reflex dynamics in spinal stability: intrinsic muscle stiffness alone is insufficient for stability. , 2007, Journal of biomechanics.
[5] 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.
[6] Vladimir M. Zatsiorsky,et al. The Mass and Inertia Characteristics of the Main Segments of the Human Body , 1983 .
[7] 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.
[8] Michael A. Arbib,et al. A mathematical analysis of the force-stiffness characteristics of muscles in control of a single joint system , 1992, Biological Cybernetics.
[9] L. Mosekilde,et al. Estimation of vertebral body strength by dual photon absorptiometry in elderly individuals: comparison between measurements of total vertebral and vertebral body bone mineral. , 1993, Bone.
[10] M. Parnianpour,et al. Dynamic Stability of Spine Using Stability-Based Optimization and Muscle Spindle Reflex , 2008, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[11] T. Hughes,et al. Collocation, dissipation and [overshoot] for time integration schemes in structural dynamics , 1978 .
[12] Helmut Seidel,et al. On the relationship between whole-body vibration exposure and spinal health risk. , 2005, Industrial health.
[13] J. Cholewicki,et al. Mechanical stability of the in vivo lumbar spine: implications for injury and chronic low back pain. , 1996, Clinical biomechanics.
[14] M. J. Lord,et al. Lumbar Lordosis: Effects of Sitting and Standing , 1997, Spine.
[15] Michael L Madigan,et al. Effects of seated whole-body vibration on postural control of the trunk during unstable seated balance. , 2008, Clinical biomechanics.
[16] M. Parnianpour,et al. Muscle force evaluation and the role of posture in human lumbar spine under compression , 2002, European Spine Journal.
[17] David A. Winter,et al. Biomechanics and Motor Control of Human Movement , 1990 .
[18] H. H. E. Leipholz,et al. Stability Theory: An Introduction to the Stability of Dynamic Systems and Rigid Bodies , 1987 .
[19] F. Guillon,et al. VERTICAL VIBRATION TRANSMISSION THROUGH THE LUMBAR SPINE OF THE SEATED SUBJECT—FIRST RESULTS , 1998 .
[20] A B Schultz,et al. Mechanical properties of lumbar spine motion segments under large loads. , 1986, Journal of biomechanics.
[21] 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.
[22] M J Griffin,et al. The apparent mass of the seated human body: vertical vibration. , 1989, Journal of biomechanics.
[23] A. Shirazi-Adl,et al. Dynamics of Human Lumbar Intervertebral Joints: Experimental and Finite‐Element Investigations , 1992, Spine.
[24] P. Leva. Adjustments to Zatsiorsky-Seluyanov's segment inertia parameters. , 1996 .
[25] Ricardo Pietrobon,et al. Estimates and Patterns of Direct Health Care Expenditures Among Individuals With Back Pain in the United States , 2004, Spine.
[26] A. Bergmark. Stability of the lumbar spine. A study in mechanical engineering. , 1989, Acta orthopaedica Scandinavica. Supplementum.
[27] 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.
[28] S. Konno,et al. [Clinical anatomy of lumbar spine]. , 2005, Clinical calcium.
[29] Arne Lundberg. On the use of bone and skin markers in kinematics research , 1996 .
[30] T Hansson,et al. Effect of strain rate and bone mineral on the structural properties of the human anterior longitudinal ligament. , 1994, Spine.
[31] M. Griffin,et al. Resonance behaviour of the seated human body and effects of posture. , 1997, Journal of biomechanics.
[32] M. Bovenzi,et al. An updated review of epidemiologic studies on the relationship between exposure to whole-body vibration and low back pain (1986–1997) , 1999, International archives of occupational and environmental health.
[33] D. Pearsall,et al. Segmental inertial parameters of the human trunk as determined from computed tomography , 1996, Annals of Biomedical Engineering.
[34] Michael J. Griffin,et al. A REVIEW OF THE TRANSMISSION OF TRANSLATIONAL SEAT VIBRATION TO THE HEAD , 1998 .
[35] Babak Bazrgari,et al. Computation of trunk muscle forces, spinal loads and stability in whole-body vibration , 2008 .
[36] P. Brinckmann,et al. Fatigue fracture of human lumbar vertebrae. , 1988, Clinical biomechanics.
[37] Ralph Blüthner,et al. MYOELECTRIC RESPONSE OF BACK MUSCLES TO VERTICAL RANDOM WHOLE-BODY VIBRATION WITH DIFFERENT MAGNITUDES AT DIFFERENT POSTURES , 2002 .
[38] J D Troup,et al. Spondylolytic fractures. , 1976, The Journal of bone and joint surgery. British volume.
[39] N Arjmand,et al. Model and in vivo studies on human trunk load partitioning and stability in isometric forward flexions. , 2006, Journal of biomechanics.
[40] A. Nordwall,et al. The Mechanism of Initial Flexion‐Distraction Injury in the Lumbar Spine , 1992, Spine.
[41] A Shirazi-Adl,et al. Computation of trunk equilibrium and stability in free flexion-extension movements at different velocities. , 2008, Journal of biomechanics.
[42] 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.
[43] C. Leboeuf‐Yde,et al. Whole-body vibration and low back pain: a systematic, critical review of the epidemiological literature 1992–1999 , 2000, International archives of occupational and environmental health.
[44] M. Parnianpour,et al. Relative efficiency of abdominal muscles in spine stability , 2008, Computer methods in biomechanics and biomedical engineering.
[45] P M Bongers,et al. Self‐Reported Back Pain in Fork‐Lift Truck and Freight‐Container Tractor Drivers Exposed to Whole‐Body Vibration , 1992, Spine.
[46] H Broman,et al. The impact response of the seated subject , 1991, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[47] M. Nordin,et al. Association between sitting and occupational LBP , 2007, European Spine Journal.
[48] D G Wilder,et al. The response of the seated human to sinusoidal vibration and impact. , 1987, Journal of biomechanical engineering.
[49] Karl F. Orishimo,et al. Response of trunk muscle coactivation to changes in spinal stability. , 2001, Journal of biomechanics.
[50] P M Bongers,et al. Back pain and exposure to whole body vibration in helicopter pilots. , 1990, Ergonomics.
[51] M. Polansky,et al. The Influence of Different Sitting Positions on Cervical and Lumbar Posture , 1996, Spine.
[52] M J Griffin,et al. The transmission of translational seat vibration to the head--I. Vertical seat vibration. , 1988, Journal of biomechanics.
[53] P. Brinckmann,et al. Prediction of the Compressive Strength of Human Lumbar Vertebrae , 1989, Spine.
[54] Barbara Hinz,et al. EFFECTS RELATED TO RANDOM WHOLE-BODY VIBRATION AND POSTURE ON A SUSPENDED SEATWITH AND WITHOUT BACKREST , 2002 .
[55] Yi Wan,et al. Contributions of Mathematical Models in the Understanding and Prevention of the Effects of Whole Body Vibration on the Human Spine , 2001 .
[56] M Parnianpour,et al. Effect of strain rate on tensile properties of sheep disc anulus fibrosus. , 2004, Technology and health care : official journal of the European Society for Engineering and Medicine.