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Relaxation of Skeletal Muscles01:29

Relaxation of Skeletal Muscles

3.7K
The period of muscle contraction primarily influences the duration of stimulation at the neuromuscular junction (NMJ), the presence of free calcium ions in the sarcoplasm, and the availability of energy or ATP to support contractions.
When an action potential reaches the axon terminal, it depolarizes the membrane and opens voltage-gated sodium channels. Sodium ions enter the cell, further depolarizing the presynaptic membrane. This depolarization causes voltage-gated calcium channels to open....
3.7K
Somatic Spinal Reflexes01:22

Somatic Spinal Reflexes

2.7K
Somatic spinal reflexes are rapid, involuntary muscular responses to external stimuli that involve the somatic musculature and the spinal cord.
One of the most well-known somatic spinal reflexes is the stretch reflex, which is activated by the sudden stretching of a muscle. This reflex involves the activation of specialized sensory receptors called muscle spindles, which are located in the muscle tissue and detect changes in the length and speed of muscle contractions. When a muscle is suddenly...
2.7K
Muscle Stimulation Frequency01:22

Muscle Stimulation Frequency

2.6K
The contraction strength of muscles is regulated by motor neurons, which modulate the frequency of action potentials dispatched to the motor units based on the body's requirements. This process of varying the muscle stimulation frequency allows muscles to contract with a force that is precisely tailored to the needs of the moment, whether lifting a feather or a heavy box.
Wave summation
At low firing rates, motor neurons induce individual twitch contractions in muscle fibers. These twitches...
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Skeletal Muscle Relaxants: Therapeutic Uses01:31

Skeletal Muscle Relaxants: Therapeutic Uses

613
Skeletal muscle relaxants are used to relax muscle tone and alleviate painful muscle contractions. However, the choice of skeletal muscle relaxants depends on the duration of the surgical procedure in order to minimize potential side effects. Skeletal muscle relaxants like neuromuscular blocking agents [NMBAs] are commonly employed as adjuvants alongside general anesthetics in clinical settings. NMBAs are also used to maintain controlled ventilation during surgery of the larynx or pharynx...
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Classification of Skeletal Muscle Relaxants01:28

Classification of Skeletal Muscle Relaxants

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Skeletal muscle relaxants are a group of drugs that can reduce muscle stiffness and induce temporary paralysis to relieve pain. These agents can act centrally to reduce muscle tone or spasms in painful conditions such as multiple sclerosis (MS), amyotrophic lateral sclerosis (ALS), or spinal injuries; they are called antispasmodics or spasmolytics.
Peripherally acting skeletal muscle relaxants interfere with the neurotransmission at the neuromuscular end plate to induce paralysis during...
2.7K
Directly Acting Muscle Relaxants: Dantrolene and Botulinum Toxin01:26

Directly Acting Muscle Relaxants: Dantrolene and Botulinum Toxin

754
Directly acting muscle relaxants like dantrolene and botulinum toxin (BoNT) have distinct mechanisms and applications. Dantrolene, a hydantoin derivative, acts on the ryanodine receptor (RYR1) in skeletal muscle cells. RYR1 are calcium channels present at the sarcoplasmic reticulum membrane. In response to excitation, they release calcium ions from the sarcoplasmic reticulum to the cytosol. Calcium promotes actin-myosin-mediated contraction of muscles.
The binding of dantrolene to the RYR1...
754

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Updated: Sep 10, 2025

X-ray Diffraction of Intact Murine Skeletal Muscle as a Tool for Studying the Structural Basis of Muscle Disease
08:26

X-ray Diffraction of Intact Murine Skeletal Muscle as a Tool for Studying the Structural Basis of Muscle Disease

Published on: July 18, 2019

7.4K

骨格筋は 伸縮時に少しの助けを受けます

Ben Short1

  • 1Science Writer, Rockefeller University Press, New York, NY, USA.

The Journal of general physiology
|August 26, 2025
PubMed
まとめ

迅速な骨格筋繊維のストレッチアクティベーションは,疲労時に力を増すことによって耐久性を高める可能性があります. 筋肉の生理学と性能に関する新しい洞察を 提供しています

科学分野:

  • 筋肉生理学
  • 骨格筋の生物学
  • 運動科学

背景:

  • 筋肉の疲労は身体的パフォーマンスを制限する.
  • 筋肉の耐久性を高めるメカニズムを理解することは スポーツ選手とリハビリテーションにとって極めて重要です
  • 迅速に収縮する骨格筋繊維は 強力な運動の鍵です

研究 の 目的:

  • 迅速に収縮する骨格筋繊維におけるストレッチ活性化の役割を調査する.
  • ストレッチが筋肉の耐久性を 強化するかどうかを調べるため
  • 疲労時の力産生に対するストレッチ活性化の影響を調査する.

主な方法:

  • この研究では,迅速な骨格筋繊維の伸縮活性化特性を分析した.
  • 疲労状態をシミュレートするために実験モデルを使用した.
  • ストレッチの活性化と非活性化で,力の生成と耐久性を測定した.

主要な成果:

  • 迅速に収縮する骨格筋の繊維でストレッチ活性化が観察されました.
  • このアクティベーションは,シミュレートされた疲労中の力生産を高めるようでした.
  • 予備的なデータによると 筋肉の耐久性が向上する可能性がある.

さらに関連する動画

An In Vitro Adult Mouse Muscle-nerve Preparation for Studying the Firing Properties of Muscle Afferents
10:36

An In Vitro Adult Mouse Muscle-nerve Preparation for Studying the Firing Properties of Muscle Afferents

Published on: September 24, 2014

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Isometric and Eccentric Force Generation Assessment of Skeletal Muscles Isolated from Murine Models of Muscular Dystrophies
14:10

Isometric and Eccentric Force Generation Assessment of Skeletal Muscles Isolated from Murine Models of Muscular Dystrophies

Published on: January 31, 2013

33.2K

関連する実験動画

Last Updated: Sep 10, 2025

X-ray Diffraction of Intact Murine Skeletal Muscle as a Tool for Studying the Structural Basis of Muscle Disease
08:26

X-ray Diffraction of Intact Murine Skeletal Muscle as a Tool for Studying the Structural Basis of Muscle Disease

Published on: July 18, 2019

7.4K
An In Vitro Adult Mouse Muscle-nerve Preparation for Studying the Firing Properties of Muscle Afferents
10:36

An In Vitro Adult Mouse Muscle-nerve Preparation for Studying the Firing Properties of Muscle Afferents

Published on: September 24, 2014

17.2K
Isometric and Eccentric Force Generation Assessment of Skeletal Muscles Isolated from Murine Models of Muscular Dystrophies
14:10

Isometric and Eccentric Force Generation Assessment of Skeletal Muscles Isolated from Murine Models of Muscular Dystrophies

Published on: January 31, 2013

33.2K

結論:

  • ストレッチ・アクティベーションは 骨格筋の耐久性を改善する有効なメカニズムかもしれません
  • ストレッチアクティベーションを ターゲットにすることが 筋肉のパフォーマンスを高める新しい戦略かもしれません
  • 生理学的影響を完全に解明するには,さらなる研究が必要である.