Wang Zhouyi, Dai Zhendong, Li Wei, Ji Aihong, Wang Wenbao
Institute of Bio-inspired Structure and Surface Engineering, Nanjing University of Aeronautics and Astronautics, 29 Yudao Street, Nanjing, Jiangsu, 210016, China.
Naturwissenschaften. 2015 Feb;102(1-2):1259. doi: 10.1007/s00114-015-1259-6. Epub 2015 Feb 3.
Locomotion is an essential character of animals, and excellent moving ability results from the delicate sensing of the substrate reaction forces (SRF) acting on body and modulating the behavior to adapt the motion requirement. The inclined substrates present in habitats pose a number of functional challenges to locomotion. In order to effectively overcome these challenges, climbing geckos execute complex and accurate movements that involve both the front and hind limbs. Few studies have examined gecko's SRF on steeper inclines of greater than 90°. To reveal how the SRFs acting on the front and hind limbs respond to angle incline changes, we obtained detailed measurements of the three-dimensional SRFs acting on the individual limbs of the tokay gecko while it climbed on an inclined angle of 0-180°. The fore-aft forces acting on the front and hind limbs show opposite trends on inverted inclines of greater than 120°, indicating propulsion mechanism changes in response to inclines. When the incline angles change, the forces exerted in the normal and fore-aft directions by gecko's front and hind limbs are reassigned to take full advantage of limbs' different roles in overcoming resistance and in propelling locomotion. This also ensures that weight acts in the angle range between the forces generated by the front and hind limbs. The change in the distribution of SRF with a change in the incline angle is directly linked to the favorable trade-off between locomotive maneuverability and stability.
运动是动物的基本特征,出色的移动能力源于对作用于身体的底物反作用力(SRF)的精确感知,并通过调节行为来适应运动需求。栖息地中存在的倾斜底物对运动提出了许多功能挑战。为了有效克服这些挑战,攀缘壁虎会执行涉及前肢和后肢的复杂而精确的动作。很少有研究考察壁虎在大于90°的更陡峭斜坡上的SRF。为了揭示作用于前肢和后肢的SRF如何响应角度倾斜变化,我们在大壁虎以0-180°的倾斜角度攀爬时,获得了作用于其单个肢体的三维SRF的详细测量数据。在大于120°的倒置斜坡上,作用于前肢和后肢的前后力呈现相反趋势,表明推进机制随倾斜度而变化。当倾斜角度改变时,壁虎前肢和后肢在法线方向和前后方向施加的力会重新分配,以充分利用肢体在克服阻力和推进运动中的不同作用。这也确保了体重作用于前肢和后肢产生的力之间的角度范围内。SRF分布随倾斜角度变化而变化,这与 locomotive 机动性和稳定性之间的有利权衡直接相关。