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Effect of muscle tension on non-linearities in the apparent masses of seated subjects exposed to vertical whole-body vibration
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Tri-axial forces at the seat and backrest during whole-body vertical vibration
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Non-linear dual-axis biodynamic response to fore-and-aft whole-body vibration
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The apparent mass of the seated human body in the fore-and-aft and lateral directions
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The apparent mass of the seated human body: Vertical vibration
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T. Fairley, and M.J. Griffin The apparent mass of the seated human body vertical vibration Journal of Biomechanics 22 1989 81 94
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Fairley, T.1
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The transmission of translational seat vibration to the head. I. Vertical seat vibration
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G.S. Paddan, and M.J. Griffin The transmission of translational seat vibration to the head. I. Vertical seat vibration Journal of Biomechanics 21 1988 191 197
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The transmission of translational seat vibration to the head. II. Horizontal seat vibration
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G.S. Paddan, and M.J. Griffin The transmission of translational seat vibration to the head. II. Horizontal seat vibration Journal of Biomechanics 21 1988 199 206
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The apparent mass of the human body exposed to non-orthogonal horizontal vibration
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N.J. Mansfield, and R. Lundström The apparent mass of the human body exposed to non-orthogonal horizontal vibration Journal of Biomechanics 32 1999 1269 1278
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Mansfield, N.J.1
Lundström, R.2
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Transmission of roll and pitch seat vibration to the head
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G.S. Paddan, and M.J. Griffin Transmission of roll and pitch seat vibration to the head Ergonomics 37 1994 1513 1531
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Ergonomics
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Paddan, G.S.1
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0037162212
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Seated occupant apparent mass characteristics under automotive postures and vertical vibration
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S. Rakheja, I. Stiharu, and P.E. Boileau Seated occupant apparent mass characteristics under automotive postures and vertical vibration Journal of Sound and Vibration 253 2002 57 75
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Rakheja, S.1
Stiharu, I.2
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13
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0002960323
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Modelling the dynamic mechanisms associated with the principal resonance of the seated human body
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Y. Matsumoto, and M.J. Griffin Modelling the dynamic mechanisms associated with the principal resonance of the seated human body Clinical Biomechanics 16 2001 31 44
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Clinical Biomechanics
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Matsumoto, Y.1
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0001909139
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A modal analysis of whole-body vertical vibration using a finite element model of the human body
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S. Kitazaki, and M.J. Griffin A modal analysis of whole-body vertical vibration using a finite element model of the human body Journal of Sound and Vibration 200 1997 83 103
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(1997)
Journal of Sound and Vibration
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Kitazaki, S.1
Griffin, M.J.2
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15
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0023244176
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A reanalysis of spinal motion during vibration
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J. Sandover, and H. Dupuis A reanalysis of spinal motion during vibration Ergonomics 30 1987 975 985
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Ergonomics
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, pp. 975-985
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Sandover, J.1
Dupuis, H.2
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16
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0344073969
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Resonance behaviour of the seated human body and effects of posture
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S. Kitazaki, and M.J. Griffin Resonance behaviour of the seated human body and effects of posture Journal of Biomechanics 31 1998 143 149
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(1998)
Journal of Biomechanics
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Kitazaki, S.1
Griffin, M.J.2
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4944227307
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Modelling the vertical and fore-and-aft forces caused by whole-body vertical vibration
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Department of Human Sciences, Loughborough University, UK, 18-20 September
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N. Nawayseh, Modelling the vertical and fore-and-aft forces caused by whole-body vertical vibration, United Kingdom Conference on Human Responses to Vibration, Department of Human Sciences, Loughborough University, UK, 18-20 September 2002.
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(2002)
United Kingdom Conference on Human Responses to Vibration
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Nawayseh, N.1
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18
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0000198258
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Movement of the upper-body of seated subjects exposed to vertical whole-body vibration at the principal resonance frequency
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Y. Matsumoto, and M.J. Griffin Movement of the upper-body of seated subjects exposed to vertical whole-body vibration at the principal resonance frequency Journal of Sound and Vibration 215 1998 743 762
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(1998)
Journal of Sound and Vibration
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Matsumoto, Y.1
Griffin, M.J.2
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