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相关概念视频

Disorders of the Skeletal Muscle01:28

Disorders of the Skeletal Muscle

1.2K
The clinical conditions affecting the skeletal muscle tissue are broadly categorized as musculoskeletal and neuromuscular disorders.
Musculoskeletal disorders
Musculoskeletal disorders involve injuries and conditions affecting the skeletal muscles and associated connective tissues. These disorders can arise from acute biomechanical stresses or chronic overuse and can occur across different age groups. Common injuries include sprains, fractures, and muscular strains, often resulting from...
1.2K
Overview of Skeletal Muscle01:15

Overview of Skeletal Muscle

12.7K
Skeletal muscles are composed of a bundle of muscle fibers and are attached to bones through tendons. Each skeletal muscle fiber is a single muscle cell. The sarcolemma, the plasma membrane of a skeletal muscle cell, consists of a lipid bilayer and glycocalyx that supports muscle fibers. The sarcolemma extends into the muscle cells to form tubular structures called transverse or T-tubules. Each side of the T-tubules consists of a membrane-bound structure called the sarcoplasmic reticulum,...
12.7K
Cross-bridge Cycle01:26

Cross-bridge Cycle

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As muscle contracts, the overlap between the thin and thick filaments increases, decreasing the length of the sarcomere—the contractile unit of the muscle—using energy in the form of ATP. At the molecular level, this is a cyclic, multistep process that involves binding and hydrolysis of ATP, and movement of actin by myosin.
118.4K
Skeletal Muscle Anatomy00:55

Skeletal Muscle Anatomy

89.9K
Skeletal muscle is the most abundant type of muscle in the body. Tendons are the connective tissue that attaches skeletal muscle to bones. Skeletal muscles pull on tendons, which in turn pull on bones to carry out voluntary movements.
89.9K
Microscopic Anatomy of Skeletal Muscles01:13

Microscopic Anatomy of Skeletal Muscles

16.3K
Skeletal muscle cells, also called muscle fibers, are distinctly elongated, multi-nucleated, slender biological units. They are packed with specialized structures designed to facilitate their primary function, which is contraction.
The muscle sarcolemma is a plasma membrane enclosing each muscle cell that conducts electrical signals called action potentials. The sarcolemma extends into the cell to form T-tubules, ensuring the neural impulses are uniformly distributed across the entire muscle...
16.3K
Gross Anatomy of Skeletal Muscles01:12

Gross Anatomy of Skeletal Muscles

14.4K
The connective tissues play a significant role in arranging the muscle fibers into a hierarchical structure that forms a complete muscle. Consider a muscle like the bicep brachii, commonly called the bicep. This muscle comprises thousands of muscle fibers enclosed by a protective layer of connective tissue called the endomysium. The endomysium is primarily composed of reticular fibers, a type of thin collagen fiber. It allows the exchange of nutrients and waste products at the fiber level,...
14.4K

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相关实验视频

Updated: Sep 25, 2025

Non-invasive Skeletal Muscle Quantification in Small Animals Using Micro-computed Tomography
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Non-invasive Skeletal Muscle Quantification in Small Animals Using Micro-computed Tomography

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快照:骨肌肉缩

Leslie M Baehr1, David C Hughes1, David S Waddell2

  • 1University of Iowa, Iowa City, IA 52242, USA.

Cell
|April 29, 2022
PubMed
概括

骨肌肉的大小随刺激而变化,涉及蛋白质合成和降解途径. 了解这些途径是解决肌肉缩和维持肌肉质量的关键.

科学领域:

  • 生理学
  • 分子生物学
  • 细胞生物学

背景情况:

  • 骨肌肉表现出显著的可塑性,对各种内部和外部刺激有动态反应.
  • 肌肉的大小是由蛋白质合成和降解过程的复杂相互作用调节的.
  • 这些过程的失调是肌肉缩的基础, 这种状况对健康有重大影响.

研究的目的:

  • 了解控制骨肌肉大小的信号通路.
  • 了解不同的刺激如何调节蛋白质的合成和降解.
  • 为针对肌肉质量调节的干预提供基础.

主要方法:

  • 对骨肌肉信号的最新文献的审查.
  • 分析肌肉蛋白平衡中的关键分子通路.
  • 整合影响肌肉大小的各种刺激的数据.

主要成果:

  • 确定了对调节肌肉蛋白质合成和降解至关重要的多种信号通路.
  • 证明特定的刺激可以差别地激活或抑制这些通路.
  • 突出了骨肌肉的可塑性,

结论:

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Tibial Nerve Transection - A Standardized Model for Denervation-induced Skeletal Muscle Atrophy in Mice
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  • 骨肌肉的大小是一个由可适应的信号网络控制的动态特征.
  • 改变的刺激会导致特定的信号变化,影响肌肉蛋白质的循环.
  • 对这些途径的进一步研究可以为管理肌肉衰竭的策略提供信息.