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Swimming Characteristics of Bioinspired Helical Microswimmers Based on Soft Lotus-Root Fibers

机译:基于软Lotus纤维的生物启发型螺旋微泳者的游泳特征

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摘要

Various kinds of helical swimmers inspired by E. coli bacteria have been developed continually in many types of researches, but most of them are proposed by the rigid bodies. For the targeted drug delivery, the rigid body may hurt soft tissues of the working region with organs. Due to this problem, the biomedical applications of helical swimmers may be restricted. However, the helical microswimmers with the soft and deformable body are appropriate and highly adaptive in a confined environment. Thus, this paper presents a lotus-root-based helical microswimmer, which is fabricated by the fibers of lotus-root coated with magnetic nanoparticles to active under the magnetic fields. The helical microstructures are derived from the intrinsic biological structures of the fibers of the lotus-root. This paper aims to study the swimming characteristic of lotus-root-based microswimmers with deformable helical bodies. In the initial step under the uniform magnetic actuation, the helical microswimmers are bent lightly due to the heterogeneous distribution of the internal stress, and then they undergo a swimming motion which is a spindle-like rotation locomotion. Our experiments report that the microswimmers with soft bodies can locomote faster than those with rigid bodies. Moreover, we also find that the curvature of the shape decreases as a function of actuating field frequency which is related to the deformability of lotus-root fibers.
机译:在许多类型的研究中,不断受到大肠杆菌启发的各种螺旋形游泳者的发展,但其中大多数是由刚体提出的。对于有针对性的药物输送,刚体可能会损伤器官的工作区域的软组织。由于这个问题,螺旋游泳者的生物医学应用可能受到限制。然而,具有柔软且可变形主体的螺旋微游泳器是合适的,并且在狭窄的环境中具有很高的适应性。因此,本文提出了一种基于莲lotus的螺旋微掠器,它是由涂有磁性纳米粒子并在磁场下具有活性的莲the纤维制成的。螺旋形微结构是从莲root纤维的内在生物学结构衍生而来的。本文旨在研究具有可变形螺旋体的lotus基微泳者的游泳特性。在均匀磁驱动下的初始步骤中,螺旋微游丝由于内部应力的不均匀分布而轻微弯曲,然后进行游动运动,即游动状的纺锤状运动。我们的实验报告说,带有柔软体的微游泳者的运动速度比带有刚体的微游泳者更快。此外,我们还发现,形状的曲率随着激励场频率的降低而减小,这与莲fibers纤维的可变形性有关。

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