Disc herniations in astronauts: What causes them, and what does it tell us about herniation on earth?
暂无分享,去创建一个
Stefan Judex | Jaap H van Dieën | Helena Brisby | Jeremy Fairbank | Hans-Joachim Wilke | Barbara Cagnie | Roope Sovelius | Richard A Scheuring | Lieven Danneels | Alan R Hargens | J. V. van Dieën | H. Wilke | J. Urban | D. Belavy | A. Hargens | B. Cagnie | L. Danneels | S. Judex | H. Brisby | J. Fairbank | Jill Urban | Daniel L Belavy | Michael Adams | R. Scheuring | R. Sovelius | M. Adams
[1] D. Falla,et al. Function and structure of the deep cervical extensor muscles in patients with neck pain. , 2013, Manual therapy.
[2] D. Felsenberg,et al. Resistive Simulated Weightbearing Exercise With Whole Body Vibration Reduces Lumbar Spine Deconditioning in Bed-Rest , 2008, Spine.
[3] Hiroshi Ohshima,et al. Limited effect of fly-wheel and spinal mobilization exercise countermeasures on lumbar spine deconditioning during 90 d bed-rest in the Toulouse LTBR study , 2011 .
[4] R E Wendt,et al. Changes in Intervertebral Disc Cross‐Sectional Area With Bed Rest and Space Flight , 1994, Spine.
[5] M. Adams,et al. Prolapsed intervertebral disc. A hyperflexion injury 1981 Volvo Award in Basic Science. , 1982, Spine.
[6] S. Rajasekaran,et al. ISSLS Prize Winner: The Anatomy of Failure in Lumbar Disc Herniation An In Vivo, Multimodal, Prospective Study of 181 Subjects , 2013, Spine.
[7] A. Hargens,et al. LBNP treadmill exercise maintains spine function and muscle strength in identical twins during 28-day simulated microgravity. , 2007, Journal of applied physiology.
[8] W. Hutton,et al. Diurnal Variations in the Stresses on the Lumbar Spine , 1987, Spine.
[9] M. Panjabi,et al. Physiologic Strains in the Lumbar Spinal Ligaments: An In VitroBiomechanical Study , 1982, Spine.
[10] Gabriele Armbrecht,et al. Muscle Atrophy and Changes in Spinal Morphology: Is the Lumbar Spine Vulnerable After Prolonged Bed-Rest? , 2011, Spine.
[11] Lutz Claes,et al. Validity and interobserver agreement of a new radiographic grading system for intervertebral disc degeneration: Part I. Lumbar spine , 2006, European Spine Journal.
[12] P C Wing,et al. Back pain and spinal changes in microgravity. , 1991, The Orthopedic clinics of North America.
[13] L. Claes,et al. New in vivo measurements of pressures in the intervertebral disc in daily life. , 1999, Spine.
[14] D. Bergel,et al. Effect of static load on matrix synthesis rates in the intervertebral disc measured in vitro by a new perfusion technique , 1995, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[15] J D Troup,et al. Circadian Variation in Stature and the Effects of Spinal Loading , 1985, Spine.
[16] Stefan Judex,et al. Short applications of very low-magnitude vibrations attenuate expansion of the intervertebral disc during extended bed rest. , 2009, The spine journal : official journal of the North American Spine Society.
[17] S. Judex,et al. Rat intervertebral disc health during hindlimb unloading: brief ambulation with or without vibration. , 2010, Aviation, space, and environmental medicine.
[18] Keita Ito,et al. Effects of Immobilization and Dynamic Compression on Intervertebral Disc Cell Gene Expression In Vivo , 2003, Spine.
[19] D. Felsenberg,et al. Tonic-to-phasic shift of lumbo-pelvic muscle activity during 8 weeks of bed rest and 6-months follow up. , 2007, Journal of applied physiology.
[20] Dong Kyu Kim,et al. Degenerative Changes of Spine in Helicopter Pilots , 2013, Annals of rehabilitation medicine.
[21] W. Hutton,et al. Lumbar disc volume measured by MRI: effects of bed rest, horizontal exercise, and vertical loading. , 2003, Aviation, space, and environmental medicine.
[22] Maxwell T. Fogleman,et al. The Reduction of Chronic Nonspecific Low Back Pain Through the Control of Early Morning Lumbar Flexion: A Randomized Controlled Trial , 1998, Spine.
[23] H. Tsuji,et al. Water Diffusion Pathway, Swelling Pressure, and Biomechanical Properties of the Intervertebral Disc During Compression Load , 1989, Spine.
[24] W. Hutton,et al. An In Vivo MRI Study of the Changes in Volume (and Fluid Content) of the Lumbar Intervertebral Disc After Overnight Bed Rest and During an 8-Hour Walking Protocol , 2002, Journal of spinal disorders & techniques.
[25] Gabriele Armbrecht,et al. Incomplete Recovery of Lumbar Intervertebral Discs 2 Years After 60-Day Bed Rest , 2012, Spine.
[26] Dava J. Newman,et al. A gravity loading countermeasure skinsuit , 2011 .
[27] K. Nakanishi,et al. Effects of Reloading After Simulated Microgravity on Proteoglycan Metabolism in the Nucleus Pulposus and Anulus Fibrosus of the Lumbar Intervertebral Disc: An Experimental Study Using a Rat Tail Suspension Model , 2007, Spine.
[28] C. Boesch,et al. Quantitative MR imaging of lumbar intervertebral disks and vertebral bodies: influence of diurnal water content variations. , 1993, Radiology.
[29] R. Porter,et al. Sudden onset of back pain , 2004, European Spine Journal.
[30] D. Felsenberg,et al. Superficial Lumbopelvic Muscle Overactivity and Decreased Cocontraction After 8 Weeks of Bed Rest , 2007, Spine.
[31] Dieter Felsenberg,et al. Magnetic Resonance Imaging Assessment of Trunk Muscles During Prolonged Bed Rest , 2007, Spine.
[32] Toshiaki Ueno,et al. Exercise within lower body negative pressure partially counteracts lumbar spine deconditioning associated with 28-day bed rest. , 2005, Journal of applied physiology.
[33] C. Molgaard,et al. Occupational Low‐Back Injury in A Hospital Employee Population: An Epidemiologic Analysis of Multiple Risk Factors of a High‐Risk Occupational Group , 1989, Spine.
[34] M. Bayliss,et al. The Large Proteoglycans of the Human Intervertebral Disc: Changes in Their Biosynthesis and Structure with Age, Topography, and Pathology , 1995, Spine.
[35] E. Wachtel,et al. Aggrecan Turnover in Human Intervertebral Disc as Determined by the Racemization of Aspartic Acid* , 2006, Journal of Biological Chemistry.
[36] Daniel L. Feeback,et al. Muscle volume, MRI relaxation times (T2), and body composition after spaceflight. , 2000, Journal of applied physiology.
[37] Jeremy Fairbank,et al. Prolapsed intervertebral disc , 2008, BMJ : British Medical Journal.
[38] M. Adams,et al. Prolapsed Intervertebral Disc: A Hyperflexion Injury , 1982 .
[39] D. Spengler,et al. Back Injuries in Industry: A Retrospective Study: II. Injury Factors , 1986, Spine.
[40] E. Viikari-Juntura,et al. Cervical and lumbar pain and radiological degeneration among fighter pilots: a systematic review and meta-analysis , 2014, Occupational and Environmental Medicine.
[41] N Bogduk,et al. The ligaments and annulus fibrosus of human adult cervical intervertebral discs. , 1999, Spine.
[42] Martina Heer,et al. Changes in intervertebral disc morphology persist 5 mo after 21-day bed rest. , 2011, Journal of applied physiology.
[43] J. C. Gilhodes,et al. Proprioceptive information processing in weightlessness , 1998, Experimental Brain Research.
[44] D. Baskin,et al. Human and behavioral factors contributing to spine-based neurological cockpit injuries in pilots of high-performance aircraft: recommendations for management and prevention. , 2000, Military medicine.
[45] C. Rubin,et al. Brief daily exposure to low-intensity vibration mitigates the degradation of the intervertebral disc in a frequency-specific manner. , 2011, Journal of applied physiology.
[46] D. Ogilvie-Harris,et al. In Vivo Diurnal Variation in Intervertebral Disc Volume and Morphology , 1994, Spine.
[47] A LeBlanc,et al. Bone mineral and lean tissue loss after long duration space flight. , 2000, Journal of musculoskeletal & neuronal interactions.
[48] W. Hutton,et al. Effect of Tail Suspension (or Simulated Weightlessness) on the Lumbar Intervertebral Disc: Study of Proteoglycans and Collagen , 2002, Spine.
[49] A. Ahuja,et al. Morphological Changes of Lumbar Vertebral Bodies and Intervertebral Discs Associated With Decrease in Bone Mineral Density of the Spine: A Cross-sectional Study in Elderly Subjects , 2012, Spine.
[50] W. Hutton,et al. An in vivo magnetic resonance imaging study of changes in the volume (and fluid content) of the lumbar intervertebral discs during a simulated diurnal load cycle. , 1999, Spine.
[51] J. V. van Dieën,et al. Modelling creep behaviour of the human intervertebral disc. , 2013, Journal of biomechanics.
[52] P. Dolan,et al. Time-dependent changes in the lumbar spine's resistance to bending. , 1996, Clinical biomechanics.
[53] Mark R Campbell,et al. Risk of herniated nucleus pulposus among U.S. astronauts. , 2010, Aviation, space, and environmental medicine.
[54] P. Hodges,et al. Patients With Neck Pain Demonstrate Reduced Electromyographic Activity of the Deep Cervical Flexor Muscles During Performance of the Craniocervical Flexion Test , 2004, Spine.
[55] M. Adams,et al. The internal mechanical properties of cervical intervertebral discs as revealed by stress profilometry , 2007, European Spine Journal.
[56] A S Kaplansky,et al. Effects of microgravity on the composition of the intervertebral disk. , 1992, Journal of applied physiology.
[57] G. W. Hoffler,et al. Anthropometric changes and fluid shifts , 1977 .
[58] D. Felsenberg,et al. Hypertrophy in the cervical muscles and thoracic discs in bed rest? , 2013, Journal of applied physiology.
[59] S. Rajulu,et al. The Effects of Microgravity on Seated Height (Spinal Elongation) , 2011 .
[60] T Videman,et al. The Long‐Term Effects of Physical Loading and Exercise Lifestyles on Back‐Related Symptoms, Disability, and Spinal Pathology Among Men , 1995, Spine.
[61] M. Adams,et al. Time-dependent changes in the lumbar spine's resistancc to bending , 1996 .
[62] Volker Damann,et al. The effects of rehabilitation on the muscles of the trunk following prolonged bed rest , 2011, European Spine Journal.
[63] L Susak,et al. Diurnal Changes in the Profile Shape and Range of Motion of the Back , 1992, Spine.
[64] J. Ralphs,et al. Are animal models useful for studying human disc disorders/degeneration? , 2007, European Spine Journal.
[65] B. Johnstone,et al. In vitro method for measuring synthesis rates in the intervertebral disc , 1986, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[66] Ashvin Thambyah,et al. How Healthy Discs Herniate: A Biomechanical and Microstructural Study Investigating the Combined Effects of Compression Rate and Flexion , 2014, Spine.
[67] R. Tuan,et al. The effect of a 5-day space flight on the immature rat spine. , 2002, The spine journal : official journal of the North American Spine Society.
[68] I A Stokes,et al. Compression-induced changes in intervertebral disc properties in a rat tail model. , 1999, Spine.
[69] Lutz Claes,et al. Intradiscal pressure, shear strain and fiber strain in the intervertebral disc under combined loading , 2006 .
[70] M. Panjabi,et al. Physiologic Strains in the Lumbar Spinal Ligaments: An In VitroBiomechanical Study , 1982 .
[71] Gabriele Armbrecht,et al. Countermeasures against lumbar spine deconditioning in prolonged bed rest: resistive exercise with and without whole body vibration. , 2010, Journal of applied physiology.
[72] Richard S. Johnston,et al. Biomedical results from Skylab , 1977 .
[73] J. Taylor,et al. The chemical morphology of age-related changes in human intervertebral disc glycosaminoglycans from cervical, thoracic and lumbar nucleus pulposus and annulus fibrosus. , 1994, Journal of anatomy.
[74] I B Kozlovskaya,et al. Effect of long-duration spaceflight on postural control during self-generated perturbations. , 2001, Journal of applied physiology.