Minetti A E, Belli G
Reparto di Fisiologia del Lavoro Muscolare, Istituto Tecnologie Biomediche Avanzate, CNR, Milano, Italy.
J Biomech. 1994 Jan;27(1):97-101. doi: 10.1016/0021-9290(94)90036-1.
This study suggests a method that, on the basis of concurrent cinematographic and dynamometric measurements, detects the motion of the visceral part of the body, provided that an estimate of its mass has been given in advance and the periodicity of the system dynamics can be assumed. The mathematical model provides equations for both vertical and horizontal displacements of the visceral mass, so that they can be used either separately or in combination to detect its one-, two- and three-dimensional trajectories. To test the model predictions, an external load has been periodically raised and lowered by a subject while standing on a dynamometric platform, and its vertical movement has been estimated accurately. A further experiment on hopping in place (without loads) reveals that the internal visceral mass (assumed equal to about 9 kg) oscillates out-of-phase with respect to the body frame, with a vertical range of about 0.05-0.08 m. A discussion on the possible sources of experimental inaccuracy is included. Also discussed are the applications of the model to work calculations in periodic movements as hopping, walking and running, as well as in investigations about locomotion-respiration coupling.
本研究提出了一种方法,该方法基于同步电影摄影和测力测量,在预先给出内脏部分质量估计值且可假定系统动力学具有周期性的情况下,检测身体内脏部分的运动。该数学模型提供了内脏质量垂直和水平位移的方程,以便可单独或结合使用这些方程来检测其一维、二维和三维轨迹。为了检验模型预测,一名受试者站在测力平台上周期性地举起和放下外部负载,其垂直运动得到了准确估计。另一个原地跳跃(无负载)实验表明,内部内脏质量(假定约为9千克)相对于身体框架呈异相振荡,垂直范围约为0.05 - 0.08米。文中还讨论了实验不准确的可能来源。此外,还讨论了该模型在诸如跳跃、行走和跑步等周期性运动中的功计算以及在运动 - 呼吸耦合研究中的应用。