Wada Hirofumi, Netz Roland R
Physics Department, Technical University Munich, 85748 Garching, Germany.
Phys Rev Lett. 2007 Sep 7;99(10):108102. doi: 10.1103/PhysRevLett.99.108102.
Spiroplasma bacteria propel through viscous fluids by sending kinks or domain walls between regions of opposite handedness down their helical body. A simple elastic model for the domain-wall propagation is formulated and studied using hydrodynamic simulations and scaling arguments, giving good agreement with recent video-microscopy observations. It is shown that the observed helical bacterial pitch angle psi approximately 35 degrees is optimized for maximal speed and efficiency.
螺旋体细菌通过在其螺旋体上相反手性区域之间发送扭结或畴壁来在粘性流体中推进。使用流体动力学模拟和标度论证建立并研究了一个用于畴壁传播的简单弹性模型,该模型与最近的视频显微镜观察结果吻合良好。结果表明,观察到的螺旋细菌螺距角ψ约为35度,是实现最大速度和效率的最佳角度。