McCrory Jean L, Derr Janice, Cavanagh Peter R
Center for Locomotion Studies, Department of Kinesiology, The Pennsylvania State University, University Park, PA, USA.
Aviat Space Environ Med. 2004 Mar;75(3):203-10.
Exercise is likely to be an important countermeasure to bone demineralization, which remains a concern for astronauts during long-duration spaceflight. However, loads on the feet during exercise with 1 G equivalent gravity replacement are not known. The purpose of this study was to compare ground reaction forces (GRFs) during over-ground and simulated zero gravity (0 G) locomotion.
It was hypothesized that sufficient gravity replacement loading could be applied to the subjects such that GRF profiles similar to those seen in 1 G would occur during locomotion in a zero-gravity locomotion simulator (ZLS).
GRFs were measured during overground walking and running, and during locomotion in two restraint harness designs in the ZLS with an initial loading of 1 body weight. Load cells measured the gravity replacement load (GRL) in the ZLS. Joint angles at the hip and knee were also measured by goniometers.
Peak forces were greater in overground locomotion than in the ZLS; however, loading rates were greater in the ZLS running conditions than in overground running. The knee joint was more flexed at key times in the support phase during running in the ZLS compared with overground.
Large loads and loading rates can be generated at the feet during simulated 0 G exercise although peak forces during running in the ZLS are less than overground running at the same speed. The refinement of the gravity replacement system to provide a constant 1 G load should be considered.
运动可能是预防骨质脱矿的一项重要对策,而骨质脱矿仍是长期太空飞行期间宇航员所面临的一个问题。然而,在等效1G重力替代运动期间脚部所承受的负荷尚不清楚。本研究的目的是比较地面行走和模拟零重力(0G)运动期间的地面反作用力(GRF)。
假设可以向受试者施加足够的重力替代负荷,以便在零重力运动模拟器(ZLS)中运动期间出现与1G时类似的GRF曲线。
在地面行走和跑步期间,以及在ZLS中两种约束吊带设计的运动期间测量GRF,初始负荷为1体重。测力传感器测量ZLS中的重力替代负荷(GRL)。还通过测角仪测量髋部和膝部的关节角度。
地面运动中的峰值力大于ZLS中的峰值力;然而,ZLS跑步条件下的负荷率大于地面跑步时的负荷率。与地面相比,在ZLS中跑步时支撑阶段关键时间点的膝关节弯曲程度更大。
在模拟0G运动期间,脚部可产生较大的负荷和负荷率,尽管ZLS中跑步时的峰值力小于相同速度下的地面跑步。应考虑改进重力替代系统以提供恒定的1G负荷。