Department of Physics and Department Computer Science and Engineering, <a href="https://ror.org/013vs5h31">SRM University-AP</a>, Amaravati, Andhra Pradesh 522240, India.
<a href="https://ror.org/02ftce284">Laboratoire Charles Coulomb</a> (L2C), <a href="https://ror.org/051escj72">Université de Montpellier</a>, CNRS, 34095 Montpellier, France.
Phys Rev E. 2024 Jul;110(1-1):014409. doi: 10.1103/PhysRevE.110.014409.
Large groups of active cilia collectively beat in a fluid medium as metachronal waves, essential for some microorganisms motility and for flow generation in mucociliary clearance. Several models can predict the emergence of metachronal waves, but what controls the properties of metachronal waves is still unclear. Here, we numerically investigate the respective impacts of active beating and viscous dissipation on the properties of metachronal waves in a collection of oscillators, using a simple model for cilia in the presence of noise on regular lattices in one and two dimensions. We characterize the wave using spatial correlation and the frequency of collective beating. Our results clearly show that the viscosity of the fluid medium does not affect the wavelength; the activity of the cilia does. These numerical results are supported by a dimensional analysis, which shows that the result of wavelength invariance is robust against the model taken for sustained beating and the structure of hydrodynamic coupling. Interestingly, the enhancement of cilia activity increases the wavelength and decreases the beating frequency, keeping the wave velocity almost unchanged. These results might have significance in understanding paramecium locomotion and mucociliary clearance diseases.
大量活跃的纤毛在流体介质中集体以蠕动波的形式协同摆动,这对于一些微生物的运动和黏液纤毛清除中的流动产生至关重要。有几种模型可以预测蠕动波的出现,但控制蠕动波特性的因素仍不清楚。在这里,我们使用一种存在噪声的纤毛简单模型,在一维和二维规则晶格上对振荡器集合中主动拍打和粘性耗散对蠕动波特性的各自影响进行了数值研究。我们使用空间相关性和集体拍打的频率来描述波的特征。我们的结果清楚地表明,流体介质的粘度不会影响波长;纤毛的活性会影响波长。这些数值结果得到了维度分析的支持,该分析表明,波长不变的结果对持续拍打的模型和水动力耦合的结构具有稳健性。有趣的是,增强纤毛的活性会增加波长并降低拍打频率,同时几乎保持波速不变。这些结果可能对理解草履虫的运动和黏液纤毛清除疾病具有重要意义。