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Articles

Transmission of low-intensity vibration through the axial skeleton of persons with spinal cord injury as a potential intervention for preservation of bone quantity and quality

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Pages 52-59 | Published online: 19 Jul 2013

References

  • Szollar S, Martin E, Sartoris D, Parthemore J, Deftos LBone mineral density and indexes of bone metabolism in spinal cord injuryAm J Phys Med Rehabil19987712835
  • Jiang S, Jiang L, Dai LMechanisms of osteoporosis in spinal cord injuryClin Endocrinol200665555565
  • Bauman W, Spungen A, Wang J, Pierson R, Schwartz EContinuous loss of bone during chronic immobilization: a monozygotic twin studyOsteoporos Int19991021237
  • Giangregorio L, McCartney NBone loss and muscle atrophy in spinal cord injury: epidemiology, fracture prediction, and rehabilitation strategiesJ Spinal Cord Med2006295489500
  • Bauman W, Wecht J, Kirshblum S, Spungen A, Morrison N, Cirnigliaro C, et al.Effect of pamidronate administration on bone in patients with acute spinal cord injuryJ Rehabil Res Dev200542330513
  • Bauman W, Spungen A, Wang J, Pierson R, Schwartz ERelationship of fat mass and serum estradiol with lower extremity bone in persons with chronic spinal cord injuryAm J Physiol Endocrinol Metab200629061098103
  • Clasey J, Janowiak A, Gater DRelationship between regional bone density measurements and the time since injury in adults with spinal cord injuriesArch Phys Med Rehabil20048515964
  • Comarr A, Hutchinson R, Bors EExtremity fractures of patients with spinal cord injuriesAm J Surg19621037329
  • Ragnarsson K, Sell GLower extremity fractures after spinal cord injury: a retrospective studyArch Phys Med Rehabil198162941823
  • Bryson J, Gourlay MBisphosphonate use in acute and chronic spinal cord injury: a systematic reviewJ Spinal Cord Med2009323215
  • Ashe M, Craven C, Eng J, Krassioukov APrevention and treatment of bone loss after a spinal cord injury: a systematic reviewTop Spinal Cord Inj Rehabil200713112345
  • Torvinen S, Kannus P, Sievänen HEffect of four-month vertical whole body vibration on performance and balanceMed Sci Sports Exerc20023491523
  • Torvinen S, Kannus P, Sievänen H, Pasanen M, Kontulainen S, Nenonen A, et al.Effect of 8-month vertical whole body vibration on bone, muscle performance, and body balance: a randomized controlled studyJ Bone Miner Res200318587684
  • Rubin C, Recker R, Cullen D, Ryaby J, McCabe J, McLeod KPrevention of postmenopausal bone loss by a low-magnitude, high-frequency mechanical stimuli: a clinical trial assessing compliance, efficacy, and safetyJ Bone Miner Res200419334351
  • Kiiski J, Heinonen A, Järvinen T, Kannus P, Sievänen HTransmission of vertical whole body vibration to the human bodyJ Bone Miner Res2008238131825
  • Garman R, Gaudette G, Donahue L, Rubin C, Judex SLow-level accelerations applied in the absence of weight bearing can enhance trabecular bone formationJ Orthop Res200725673240
  • Rubin C, Turner A, Muller R, Mittra E, McLeod E, Lin W, et al.Quantity and quality of trabecular bone in the femur are enhanced by a strongly anabolic, noninvasive mechanical interventionJ Bone Miner Res200217234957
  • Rubin C, Xu G, Judex SThe anabolic activity of bone tissue, suppressed by disuse, is normalized by brief exposure to extremely low-magnitude mechanical stimuliFASEB J2001151222259
  • Rubin C, Turner A, Bain S, Mallinckrodt C, Mcleod KAnabolism. Low mechanical signals strengthen long bonesNature200141268476034
  • Ward K, Alsop C, Caulton J, Rubin C, Adams J, Mughal ZLow magnitude mechanical loading is osteogenic in children with disabling conditionsJ Bone Miner Res20041933609
  • Paddan G, Griffin MA review of the transmission of translational seat vibration to the headJ Sound Vib1998215486382
  • Rubin C, Pope M, Fritton JC, Magnusson M, Hansson T, McLeod KTransmissibility of 15-hertz to 35-hertz vibrations to the human hip and lumbar spine: determining the physiologic feasibility of delivering low-level anabolic mechanical stimuli to skeletal regions at greatest risk of fracture because of osteoporosisSpine200328232621727
  • Mansfield N, Griffin MNon-linearities in apparent mass and transmissibility during exposure to whole-body vertical vibrationJ Biomech200033893341
  • Matsumoto Y, Griffin MDynamic response of the standing human body exposed to vertical vibration: influence of posture and vibration magnitudeJ Sound Vib1998212185107
  • Harazin B, Grzesik JThe transmission of vertical whole-body vibration to the body segments of standing subjectsJ Sound Vib1998215477587
  • Spungen A, Adkins R, Stewart C, Wang J, Pierson R, Waters R, et al.Factors influencing body composition in persons with spinal cord injury: a cross-sectional studyJ Appl Physiol20039562398407
  • Spungen A, Wang J, Pierson R, Bauman WSoft tissue body composition differences in monozygotic twins discordant for spinal cord injuryJ Appl Physiol200088413105
  • Verschueren S, Roelants M, Delecluse C, Swinnen S, Vanderschueren D, Boonen S, et al.Effect of 6-month whole body vibration training on hip density, muscle strength, and postural control in postmenopausal women: a randomized controlled pilot studyJ Bone Miner Res20041933529
  • Wakeling J, Liphardt A, Nigg BMuscle activity reduces soft-tissue resonance at heel-strike during walkingJ Biomech2003361217619
  • Cardinale M, Lim JElectromyography activity of vastus lateralis muscle during whole-body vibrations of different frequenciesJ Strength Cond Res20031736214
  • Wakeling J, Nigg B, Rozitis AMuscle activity damps the soft tissue resonance that occurs in response to pulsed and continuous vibrationsJ Appl Physiol20029331093103
  • Christiansen B, Silva MThe effect of varying magnitudes of whole-body vibration on several skeletal sites in miceAnn Biomed Eng2006347114956
  • Rubin C, Mcleod KPromotion of bony ingrowth by frequency-specific, low-amplitude mechanical strainClin Orthop Relat Res199429816574
  • Rubin C, Turner A, Mallinckrodt C, Jerome C, McLeod K, Bain SMechanical strain, induced noninvasively in the high-frequency domain, is anabolic to cancellous bone, but not cortical boneBone200230344552
  • Carter D, Caler W, Spengler D, Frankel VFatigue behavior of adult cortical bone: the influence of mean strain and strain rangeActa Orthop198152548190

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