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主动变形颗粒的流速共振。

Flow rate resonance of actively deforming particles.

机构信息

Instituto Tecnológico de Buenos Aires (ITBA), CONICET, C.A. de Buenos Aires, Argentina.

Instituto Tecnológico de Buenos Aires (ITBA), C.A. de Buenos Aires, Argentina.

出版信息

Sci Rep. 2023 Jun 10;13(1):9455. doi: 10.1038/s41598-023-36182-5.

Abstract

Lymphoid organs are unusual multicellular tissues: they are densely packed, but the lymphocytes trafficking through them are actively moving. We hypothesize that the intriguing ability of lymphocytes to avoid jamming and clogging is in part attributable to the dynamic shape changes that cells undergo when they move. In this work, we test this hypothesis by investigating an idealized system, namely, the flow of self-propelled, oscillating particles passing through a narrow constriction in two dimensions (2D), using numerical simulations. We found that deformation allows particles with these properties to flow through a narrow constriction in conditions when non-deformable particles would not be able to do so. Such a flowing state requires the amplitude and frequency of oscillations to exceed threshold values. Moreover, a resonance leading to the maximum flow rate was found when the oscillation frequency matched the natural frequency of the particle related to its elastic stiffness. To our knowledge, this phenomenon has not been described previously. Our findings could have important implications for understanding and controlling flow in a variety of systems in addition to lymphoid organs, such as granular flows subjected to vibration.

摘要

淋巴器官是一种不寻常的多细胞组织

它们密集排列,但其中流动的淋巴细胞是在主动移动。我们假设,淋巴细胞避免堵塞和堵塞的令人好奇的能力部分归因于细胞在移动时经历的动态形状变化。在这项工作中,我们通过研究一个理想化的系统来检验这一假设,即在二维(2D)中,通过狭窄的收缩来流动的自推进、振荡颗粒,使用数值模拟。我们发现,在不可变形的颗粒无法通过的情况下,变形允许具有这些特性的颗粒通过狭窄的收缩。这种流动状态需要振荡的幅度和频率超过阈值。此外,当振荡频率与与弹性刚度相关的颗粒的固有频率相匹配时,发现了一个导致最大流速的共振。据我们所知,这种现象以前没有被描述过。我们的发现除了对理解和控制淋巴器官等各种系统中的流动具有重要意义外,例如受到振动的颗粒流。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d87/10257709/2ad3b151c433/41598_2023_36182_Fig1_HTML.jpg

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