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相关概念视频

Actin Polymerization and Cell Motility01:13

Actin Polymerization and Cell Motility

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Actin is a family of globular proteins that are highly abundant in eukaryotic cells. It makes up approximately 1-5% of total cell protein concentration. Actin monomers polymerize to form a complex network of polarized filaments, the actin cytoskeleton, that plays a crucial role in many cellular processes, including cell motility, division, endocytosis, and metastasis of cancer cells.
Actin cytoskeleton dynamics can produce pushing, pulling, and resistance forces that help the cell to migrate....
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Mechanism of Lamellipodia Formation01:31

Mechanism of Lamellipodia Formation

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Cells migrating in response to external stimuli form lamellipodia, which are thin membrane protrusions supported by a mesh of linked, branched, or unbranched actin filaments. These actin filaments interact with myosin motor proteins, creating the dynamic actomyosin complex within the cytoskeleton. Contractility, or the ability to generate contractile stress, is inherent to the actomyosin complex. It helps cells detect the stiffness of the surrounding ECM and exert contractile force for...
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Gastrulation01:56

Gastrulation

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Gastrulation establishes the three primary tissues of an embryo: the ectoderm, mesoderm, and endoderm. This developmental process relies on a series of intricate cellular movements, which in humans transforms a flat, “bilaminar disc” composed of two cell sheets into a three-tiered structure. In the resulting embryo, the endoderm serves as the bottom layer, and stacked directly above it is the intermediate mesoderm, and then the uppermost ectoderm. Respectively, these tissue strata...
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Cell Motility through Blebbing01:16

Cell Motility through Blebbing

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Blebs are a type of membrane protrusion formed by the internal hydrostatic pressure of the cytoplasm. Blebs are observed in several cell types, including fibroblasts, immune cells, and single-celled organisms like the amoeba. The primary function of blebs is cell locomotion and apoptosis, but they are also found during necrosis and cell division. The life cycle of a bleb comprises an initiation phase followed by the expansion and retraction phases.
Blebbing Through the Matrix
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Mechanism of Ciliary Motion01:05

Mechanism of Ciliary Motion

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The ciliary structures were first seen in 1647 by Antonie Leeuwenhoek while observing the protozoans. In lower organisms, these appendages are responsible for cell movement, while in higher organisms, these appendages help in the movement of the extracellular fluids within the body cavities.
The cilia are made up of microtubules in a 9+2 arrangement, with nine microtubule doublet ring bundles, surrounding a pair of central singlet microtubule bundles. The doublet microtubule bundles are...
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Mechanism of Filopodia Formation01:39

Mechanism of Filopodia Formation

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Filopodia are thin, actin-rich cellular protrusions that play an important role in many fundamental cellular functions. They vary in their occurrence, length, and positioning in different cell types, suggesting their diverse roles.
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相关实验视频

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A Robotic Platform to Study the Foreflipper of the California Sea Lion
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软机器人技术告诉我们早期的皮是如何移动的.

Richard Desatnik1, Zach J Patterson1,2, Przemysław Gorzelak3

  • 1Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213.

Proceedings of the National Academy of Sciences of the United States of America
|November 6, 2023
PubMed
概括

像 pleurocystitids 这样的古老生态皮动物使用肌肉干进行运动. 宽的步态和更长的茎增强了它们的速度和效率,揭示了对灭绝的动物运动的洞察力.

关键词:
古生物学是一种古生物学.机车运动 机车运动古生物学的古生物学.pleurocystitids 的使用情况.软机器人软机器人 软机器人

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科学领域:

  • 古生物学的古生物学
  • 机器人技术 机器人技术 机器人技术
  • 进化生物学 进化生物学

背景情况:

  • 早期的皮动物大约5亿年前从静坐性生活方式过渡到移动性生活方式.
  • 了解缺少痕迹化石的灭绝生物的运动是具有挑战性的.

研究的目的:

  • 为了研究已经灭绝的囊虫的运动原理,这是一个神秘的早期皮动物群.
  • 应用仿生方法来理解运动中的进化适应.

主要方法:

  • 开发一个仿生软机器人测试平台.
  • 使用计算模拟来模拟运动.
  • 采用一种名为"古生物学"的新方法.

主要成果:

  • Pleurocystitids 很可能使用肌肉茎移动,以推动自己在海底的前部.
  • 广泛的,横扫的步态被确定为可能是最有效的移动策略.
  • 增加茎的长度可以显著提高速度,最小的额外能源成本.

结论:

  • 这项研究提供了关于已灭绝的古老时代皮动物的运动能力的见解.
  • 生物仿真机器人为研究进化生物力学提供了一个强大的工具.
  • 古生物学促进了工程和进化科学的跨学科研究.