Apparent mass frequency response functions of the seated human body have been measured with random vibration in the vertical direction at frequencies up to 20 Hz. A group of eight subjects was used to investigate some factors (footrest, backrest, posture, muscle tension, vibration magnitude) that may affect the apparent mass of a person; a group of 60 subjects (24 men, 24 women and 12 children) was used to investigate variability between people. Relative movement between the feet and the seat was found to affect the apparent mass at frequencies below resonance, particularly near zero-frequency. The resonance frequency generally increased with the use of a backrest, an erect posture and, in particular, increased muscle tension; but there was...
Understanding of the resonance behaviour of the human body is important in the identification of vib...
The effect of the magnitude of vertical vibration on the dynamic response of the seated human body h...
The principal resonance frequency in the driving-point impedance of the human body decreases with in...
Apparent mass frequency response functions of the seated human body have been measured with random v...
The transmission of vibration through a seat depends on various characteristics of the seat and the ...
The effect of variations in posture and vibration magnitude on apparent mass and seat-to-pelvis pitc...
The effects of posture and vibration magnitude on the vertical apparent mass and the fore-and-aft cr...
In subjects exposed to whole-body vibration, the cause of non-linear dynamic characteristics with ch...
The transmissibility of 12 seated subjects to sinusoidal vertical vibration was measured at 12 frequ...
The influence of the posture of the legs and the vibration magnitude on the dynamic response of the ...
The vibration transmitted through a seat is influenced by the dynamics of the seat and the dynamics ...
The dynamic responses of the human body in a standing position and in a sitting position have been c...
e driving-point dynamic responses of standing people (e.g. their mechanical impedance or apparent ma...
In subjects exposed to whole-body vibration, the cause of non-linear dynamic characteristics with ch...
Characterization of biodynamic responses of seated body exposed to whole-body vibration forms an ess...
Understanding of the resonance behaviour of the human body is important in the identification of vib...
The effect of the magnitude of vertical vibration on the dynamic response of the seated human body h...
The principal resonance frequency in the driving-point impedance of the human body decreases with in...
Apparent mass frequency response functions of the seated human body have been measured with random v...
The transmission of vibration through a seat depends on various characteristics of the seat and the ...
The effect of variations in posture and vibration magnitude on apparent mass and seat-to-pelvis pitc...
The effects of posture and vibration magnitude on the vertical apparent mass and the fore-and-aft cr...
In subjects exposed to whole-body vibration, the cause of non-linear dynamic characteristics with ch...
The transmissibility of 12 seated subjects to sinusoidal vertical vibration was measured at 12 frequ...
The influence of the posture of the legs and the vibration magnitude on the dynamic response of the ...
The vibration transmitted through a seat is influenced by the dynamics of the seat and the dynamics ...
The dynamic responses of the human body in a standing position and in a sitting position have been c...
e driving-point dynamic responses of standing people (e.g. their mechanical impedance or apparent ma...
In subjects exposed to whole-body vibration, the cause of non-linear dynamic characteristics with ch...
Characterization of biodynamic responses of seated body exposed to whole-body vibration forms an ess...
Understanding of the resonance behaviour of the human body is important in the identification of vib...
The effect of the magnitude of vertical vibration on the dynamic response of the seated human body h...
The principal resonance frequency in the driving-point impedance of the human body decreases with in...