The apparent mass of the seated human exposed to single-axis and multi-axis whole-body vibration.
暂无分享,去创建一个
[1] Lage Burström,et al. Cabin attendants’ exposure to vibration and shocks during landing , 2006 .
[2] Horst Peter Wölfel,et al. Apparent mass of seated men : determination with single- and multi-axis excitations at different magnitudes , 2006 .
[3] Neil J. Mansfield,et al. Inter-cycle variation in whole-body vibration exposures of operators driving track-type loader machines , 2006 .
[4] Eckardt Johanning,et al. Whole-body vibration and ergonomic study of US railroad locomotives , 2006 .
[5] Neil J. Mansfield,et al. Comparison of the apparent masses and cross-axis apparent masses of seated humans exposed to single- and dual-axis whole-body vibration , 2006 .
[6] Subhash Rakheja,et al. Influence of back support conditions on the apparent mass of seated occupants under horizontal vibration. , 2005, Industrial health.
[7] Neil J Mansfield,et al. Impedance methods (apparent mass, driving point mechanical impedance and absorbed power) for assessment of the biomechanical response of the seated person to whole-body vibration. , 2005, Industrial health.
[8] Setsuo Maeda,et al. Effect of backrest and torso twist on the apparent mass of the seated body exposed to vertical vibration. , 2005, Industrial health.
[9] Neil J. Mansfield,et al. Human Response to Vibration , 2004 .
[10] Michael J. Griffin,et al. Tri-axial forces at the seat and backrest during whole-body vertical vibration , 2004 .
[11] Subhash Rakheja,et al. Effects of sitting postures on biodynamic response of seated occupants under vertical vibration , 2004 .
[12] C. H. Lewis,et al. Evaluating the Vibration Isolation of Soft Seat Cushions Using AN Active Anthropodynamic Dummy , 2002 .
[13] Subhash Rakheja,et al. A BODY MASS DEPENDENT MECHANICAL IMPEDANCE MODEL FOR APPLICATIONS IN VIBRATION SEAT TESTING , 2002 .
[14] M. Griffin,et al. EVALUATION OF WHOLE-BODY VIBRATION IN VEHICLES , 2002 .
[15] Subhash Rakheja,et al. SEATED OCCUPANT APPARENT MASS CHARACTERISTICS UNDER AUTOMOTIVE POSTURES AND VERTICAL VIBRATION , 2002 .
[16] R Lundström,et al. Mechanical impedance of the human body in vertical direction. , 2000, Applied ergonomics.
[17] M. Griffin,et al. Non-linearities in apparent mass and transmissibility during exposure to whole-body vertical vibration. , 2000, Journal of biomechanics.
[18] N J Mansfield,et al. Models of the apparent mass of the seated human body exposed to horizontal whole-body vibration. , 1999, Aviation, space, and environmental medicine.
[19] N J Mansfield,et al. The apparent mass of the human body exposed to non-orthogonal horizontal vibration. , 1999, Journal of biomechanics.
[20] Massimo Bovenzi,et al. An Updated Review of Epidemiologic Studies on the Relationship Between Exposure to Whole-Body Vibration and Low Back Pain , 1998 .
[21] Michael J. Griffin,et al. The apparent mass of the seated human body in the fore-and-aft and lateral directions , 1990 .
[22] Michael J. Griffin,et al. Handbook of Human Vibration , 1990 .
[23] N J Mansfield,et al. Effect of vibration magnitude, vibration spectrum and muscle tension on apparent mass and cross axis transfer functions during whole-body vibration exposure. , 2006, Journal of biomechanics.
[24] A Cullmann,et al. Design of an active vibration dummy of sitting man. , 2001, Clinical biomechanics.
[25] Suzanne D. Smith. Nonlinear Resonance Behavior in the Human Exposed to Whole-Body Vibration , 1994 .
[26] M J Griffin,et al. The apparent mass of the seated human body: vertical vibration. , 1989, Journal of biomechanics.