Dynamic forces over the interface between a seated human body and a rigid seat during vertical whole-body vibration.
暂无分享,去创建一个
M. Griffin | Chi Liu | Y. Qiu
[1] John T. McConville,et al. Anthropometric source book. Volume 1: Anthropometry for designers , 1978 .
[2] Michael J. Griffin,et al. A Test Method for the Prediction of Seat Transmissibility , 1986 .
[3] M J Griffin,et al. The apparent mass of the seated human body: vertical vibration. , 1989, Journal of biomechanics.
[4] M. Griffin,et al. A MODAL ANALYSIS OF WHOLE-BODY VERTICAL VIBRATION, USING A FINITE ELEMENT MODEL OF THE HUMAN BODY , 1997 .
[5] M. Griffin,et al. Resonance behaviour of the seated human body and effects of posture. , 1997, Journal of biomechanics.
[6] Michael J. Griffin,et al. DYNAMIC RESPONSE OF THE STANDING HUMAN BODY EXPOSED TO VERTICAL VIBRATION: INFLUENCE OF POSTURE AND VIBRATION MAGNITUDE , 1998 .
[7] L. Wei,et al. THE PREDICITON OF SEAT TRANSMISSIBILITY FROM MEASURES OF SEAT IMPEDANCE , 1998 .
[8] S. Pankoke,et al. DYNAMIC FE MODEL OF SITTING MAN ADJUSTABLE TO BODY HEIGHT, BODY MASS AND POSTURE USED FOR CALCULATING INTERNAL FORCES IN THE LUMBAR VERTEBRAL DISKS , 1998 .
[9] Michael J. Griffin,et al. MATHEMATICAL MODELS FOR THE APPARENT MASS OF THE SEATED HUMAN BODY EXPOSED TO VERTICAL VIBRATION , 1998 .
[10] M J Griffin,et al. Modelling the dynamic mechanisms associated with the principal resonance of the seated human body. , 2001, Clinical biomechanics.
[11] Michael J. Griffin,et al. EFFECT OF MUSCLE TENSION ON NON-LINEARITIES IN THE APPARENT MASSES OF SEATED SUBJECTS EXPOSED TO VERTICAL WHOLE-BODY VIBRATION , 2002 .
[12] Subhash Rakheja,et al. SEATED OCCUPANT APPARENT MASS CHARACTERISTICS UNDER AUTOMOTIVE POSTURES AND VERTICAL VIBRATION , 2002 .
[13] Michael J. Griffin,et al. Non-linear dual-axis biodynamic response to vertical whole-body vibration , 2003 .
[14] Subhash Rakheja,et al. Effects of sitting postures on biodynamic response of seated occupants under vertical vibration , 2004 .
[15] N. Mansfield,et al. The apparent mass of the seated human exposed to single-axis and multi-axis whole-body vibration. , 2007, Journal of Biomechanics.
[16] Michael J. Griffin,et al. Fore-and-aft apparent mass of the back: Nonlinearity and variation with vertical location , 2008 .
[17] Michael J. Griffin,et al. Nonlinear dual-axis biodynamic response of the semi-supine human body during vertical whole-body vibration , 2008 .
[18] M. Griffin,et al. A variable parameter single degree-of-freedom model for predicting the effects of sitting posture and vibration magnitude on the vertical apparent mass of the human body. , 2010, Industrial health.
[19] Michael J. Griffin,et al. Apparent mass of the human body in the vertical direction: Inter-subject variability , 2011 .
[20] Michael J Griffin,et al. Biodynamic response of the seated human body to single-axis and dual-axis vibration: effect of backrest and non-linearity. , 2012, Industrial health.
[21] Michael J. Griffin,et al. Nonlinearity in the vertical transmissibility of seating: the role of the human body apparent mass and seat dynamic stiffness , 2013 .
[22] Michael J. Griffin,et al. Response of the seated human body to whole-body vertical vibration: biodynamic responses to sinusoidal and random vibration , 2014, Ergonomics.
[23] Pierre Marcotte,et al. Effects of elastic seats on seated body apparent mass responses to vertical whole body vibration , 2015, Ergonomics.