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関連する概念動画

Relative Motion Analysis - Acceleration01:10

Relative Motion Analysis - Acceleration

422
A slider-crank mechanism converts rotational motion from the crank into linear motion of the slider or vice versa. This mechanism consists of three main parts: the crank, the connecting rod, and the slider. The movement of the slider-crank is an example of general plane motion as the fluctuating angle between the crank and the connecting rod. Consider a segment AB where point A is at the end of the slider and point B is on the diametrically opposite end to point A, on a crack. The variance in...
422
Relative Motion Analysis - Velocity01:24

Relative Motion Analysis - Velocity

429
A stroke engine has a slider-crank mechanism that converts rotational motion from the crank into linear motion of the slider or vice versa. This mechanism consists of three main parts: the crank, the connecting rod, and the slider.
When an external force is exerted, it sets the crank into a rotational movement. This, in turn, instigates the motion of the connecting rod, leading to what is referred to as a general plane motion. This process involves two key points - point A on the connecting rod...
429
Relating Angular And Linear Quantities - I01:09

Relating Angular And Linear Quantities - I

6.8K
If the rotational definitions are compared with the definitions of linear kinematic variables from motion along a straight line and motion in two and three dimensions, we can observe a mapping of the linear variables to the rotational ones.
When comparing the linear and rotational variables individually, the linear variable of position has physical units of meters, whereas the angular position variable has dimensionless units of radians, as it is the ratio of two lengths. The linear velocity...
6.8K
Linear Momentum in Control Volume01:13

Linear Momentum in Control Volume

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Newton's second law is applied to obtain the linear momentum in a control volume in a fluid system. According to this law, the rate of change of linear momentum is equal to the sum of external forces acting on the system. When a control volume matches the fluid system at a specific moment, the forces acting on both are identical. Reynolds transport theorem helps explain this by breaking down the system's linear momentum into two components: the rate of change of linear momentum within...
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Generation of Straight or Branched Actin Filaments01:14

Generation of Straight or Branched Actin Filaments

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The straight or branched structure formation of actin filaments is controlled by nucleating proteins such as the formins and Arp2/3 complex. Formin-mediated assembly results in straight filaments, whereas Arp2/3 protein complex-mediated assembly results in branched actin filaments.
Arp2/3 Complex
Arp2/3 complex is a seven-subunit complex consisting of two proteins similar to actin- Arp2 and Arp3, and five other subunits that help keep Arp2 and Arp3 inactive. When required, the complex is...
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Convergent Evolution01:54

Convergent Evolution

28.9K
Evolution shapes the features of organisms over time, ensuring that they are suited for the environments in which they live. Sometimes, selection pressure leads to the rise of similar but unrelated adaptations in organisms with no recent common ancestors, a process known as convergent evolution.
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関連する実験動画

Updated: Sep 9, 2025

Fabrication of Soft Pneumatic Network Actuators with Oblique Chambers
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Fabrication of Soft Pneumatic Network Actuators with Oblique Chambers

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弾道言語における収束的に進化した線形アクチュエータ

Yu Zeng1, Christopher V Anderson2, Stephen M Deban1

  • 1Department of Integrative Biology, University of South Florida, Tampa, FL 33620, USA.

Current biology : CB
|August 29, 2025
PubMed
まとめ

カメレオンや肺のないサラマンダは 舌を素早く投げるための 滑動式アクチュエータシステムを使います このバイオメカニカルなデザインは 脊椎動物の運動における 極端な加速と効率的なエネルギー伝達を可能にします

科学分野:

  • バイオメカニクス
  • 脊椎動物学
  • 進化生物学

背景:

  • 動物の急速な動きには 効率的なエネルギー伝達が必要で
  • 脊椎動物の密集した組織と限られた弾性貯蔵は,出力に制約を与える.
  • 脊椎動物における弾道性能は顕著である.

研究 の 目的:

  • カメレオンや肺のないサラマンダの 舌の急速な投影の背後にある バイオメカニズムを調査する.
  • これらの動物が 高速の加速と投影速度を達成する方法を 調べる.
  • この弾道的メカニズムの 進化的収束を理解します

主な方法:

  • 実験結果と理論モデルを統合した.
  • カメレオンと無肺サラマンダの 運動器系を分析した
  • 定量化加速,投射速度,そしてエネルギー転送のダイナミクス.

主要な成果:

  • カメレオンと肺のないサラマンダは 舌を動かすための 滑り式の線形アクチュエータを 独自に進化させました
  • このシステムは,筋肉の動きと骨格の動きを切り離して,円筒状の骨格棒の筋肉圧縮を活用します.
  • 30~590Gの加速度と,幅広いボディサイズで2~5.5m/sの投影速度を達成した.
キーワード:
弾道的な動き筋肉パワー増幅骨格脊椎動物

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関連する実験動画

Last Updated: Sep 9, 2025

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  • 筋肉の力-速度のトレードオフを回避して,迅速で空間的にコンパクトなエネルギー転送 (3-30 ms over 1-35 mm) を実証した.
  • 結論:

    • 特殊な材料ではなく バイオメカニカルなモジュラリティが この脊椎動物の弾道的革新の基礎です
    • スライディングアクチュエータの設計により,効率的なエネルギー転送が可能で,生態学的汎用性と熱的頑丈性にとって不可欠です.
    • この発見は ハイブリッドの柔らかい素材と硬い素材を使った 急速アクチュエータの設計に 生物学的インスピレーションをもたらします