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関連する概念動画

Tonicity in Animals00:59

Tonicity in Animals

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The tonicity of a solution determines if a cell gains or loses water in that solution. The tonicity depends on the permeability of the cell membrane for different solutes and the concentration of nonpenetrating solutes in the solution within and outside of the cell. If a semipermeable membrane hinders the passage of some solutes but allows water to follow its concentration gradient, water moves from the side with low osmolarity (i.e., less solute) to the side with higher osmolarity (i.e.,...
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What is Natural Selection?01:32

What is Natural Selection?

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Natural selection is an evolutionary process in which individuals with survival-promoting traits reproduce at higher rates. These favorable traits become more common within a population or species. Naturally selected traits initially arise via random genetic mutations. In order for selection to occur, there must be variation within a population, the trait controlling the variation must be heritable, and there must be an evolutionary advantage for variation in the trait.
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Responses to Drought and Flooding02:41

Responses to Drought and Flooding

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Water plays a significant role in the life cycle of plants. However, insufficient or excess of water can be detrimental and pose a serious threat to plants.
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Damped Oscillations01:07

Damped Oscillations

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In the real world, oscillations seldom follow true simple harmonic motion. A system that continues its motion indefinitely without losing its amplitude is termed undamped. However, friction of some sort usually dampens the motion, so it fades away or needs more force to continue. For example, a guitar string stops oscillating a few seconds after being plucked. Similarly, one must continually push a swing to keep a child swinging on a playground.
Although friction and other non-conservative...
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Tonicity in Animals01:16

Tonicity in Animals

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Tonicity describes the amount of solute in a solution. The measure of the tonicity of a solution, or the total amount of solutes dissolved in a specific amount of solution, is called its osmolarity. Three terms—hypotonic, isotonic, and hypertonic—are used to relate the osmolarity of a cell to the osmolarity of the extracellular fluid that contains the cells. In a hypotonic solution, such as tap water, the extracellular fluid has a lower concentration of solutes than the fluid inside...
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Frequency of Spring-Mass System01:17

Frequency of Spring-Mass System

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One interesting characteristic of the simple harmonic motion (SHM) of an object attached to a spring is that the angular frequency, and the period and frequency of the motion, depend only on the mass and the force constant of the spring, and not on other factors such as the amplitude of the motion or initial conditions. We can use the equations of motion and Newton's second law to find the angular frequency, frequency, and period.
Consider a block on a spring on a frictionless surface. There...
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Updated: May 5, 2026

Kinematics and Ground Reaction Force Determination: A Demonstration Quantifying Locomotor Abilities of Young Adult, Middle-aged, and Geriatric Rats
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Kinematics and Ground Reaction Force Determination: A Demonstration Quantifying Locomotor Abilities of Young Adult, Middle-aged, and Geriatric Rats

Published on: February 23, 2011

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馬は足跡で春を濡らしている.

A M Wilson1, M P McGuigan, A Su

  • 1Department of Veterinary Basic Sciences, The Royal Veterinary College, Hatfield, Herts AL9 7TA, UK. awilson@rvc.ac.uk

Nature
|January 10, 2002
PubMed
まとめ

馬の足のはポゴの棒のように働き,走るためのエネルギーを貯蔵します. 驚くべきことに,デジタル・フレクサー・筋肉は,主な動きを駆動するのではなく,代わりに高周波の振動を抑制し,骨とを保護します.

科学分野:

  • バイオメカニクス バイオメカニクス
  • 馬の運動は馬の運動である.
  • 筋骨格の適応について

背景:

  • 馬は,走行中に筋肉の働きを減らすために,筋肉-の単位で弾性ストレスのエネルギーを利用します.
  • 足の機能は,特定のステップ周波数 (2.5 Hz) に調節されたポゴスティックに似ています.
  • デジタルフレクサー筋肉 (短い繊維,被動性) と長いのユニークな適応が,このエネルギー貯蔵を促進します.

研究 の 目的:

  • 馬の運動におけるデジタル・フレクサー・筋肉の役割を調査する.
  • 肢体振動の管理における筋骨格適応の機能を決定する.
  • 筋肉繊維とのギャロピングメカニズムへの貢献を明確にします.

主な方法:

  • 馬の足の機械的な配置の分析.
  • 移動中の肢体内の振動周波数の検査.
  • 運動サイクルを調節するデジタルフレクサー筋肉の機能能力の評価.

主要な成果:

  • 弾性のある足の構造は,高周波の振動 (30〜40 Hz) を可能にするため,疲労による損傷のリスクがあります.
  • デジタル・フレクサー・筋肉は,主 2.5 Hz ギャロップサイクルに影響を与える能力が限られている.

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関連する実験動画

Last Updated: May 5, 2026

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Continuous Hydrologic and Water Quality Monitoring of Vernal Ponds
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Construction of a Realistic, Whole-Body, Three-Dimensional Equine Skeletal Model using Computed Tomography Data
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  • これらの筋肉は,高周波の振動を抑制するために最適な位置にあります.
  • 結論:

    • 馬の指の折りたたみ筋は,主動運動ではなく,振動抑制に重要な役割を果たします.
    • この減圧メカニズムは,や骨への疲労による潜在的な損傷から保護します.
    • 弾性エネルギー貯蔵とアクティブダッピングの相互作用は,高速移動中に馬の肢体の機能を最適化します.