Jove
Visualize
お問い合わせ
JoVE
x logofacebook logolinkedin logoyoutube logo
JoVEについて
概要リーダーシップブログJoVEヘルプセンター
著者向け
出版プロセス編集委員会範囲と方針査読よくある質問投稿
図書館員向け
推薦の声購読アクセスリソース図書館諮問委員会よくある質問
研究
JoVE JournalMethods CollectionsJoVE Encyclopedia of Experimentsアーカイブ
教育
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab Manual教員リソースセンター教員サイト
利用規約
プライバシーポリシー
ポリシー

関連する概念動画

Evolution of New Traits in Microbes01:24

Evolution of New Traits in Microbes

Microorganisms evolve rapidly due to their large population sizes and short generation times, often exhibiting measurable changes within days under laboratory conditions. Natural selection acts on standing genetic variation, enabling the retention and amplification of beneficial traits that confer fitness advantages in changing environments.Adaptive Pigment Regulation in RhodobacterIn Rhodobacter, a genus of purple non-sulfur bacteria, light-harvesting pigments such as bacteriochlorophyll and...
Fluid Movement Between Compartments01:18

Fluid Movement Between Compartments

The force applied by fluids against a surface, known as hydrostatic pressure, initiates the transfer of fluid among different compartments. Within our blood vessels, the blood's hydrostatic pressure is a result of the heart's pumping action. At the arteriolar end of capillaries, hydrostatic pressure (capillary blood pressure) exceeds the opposing colloid osmotic pressure created primarily by plasma proteins like albumin. This discrepancy in pressure propels plasma and nutrients from the...
Evolutionary Psychology01:20

Evolutionary Psychology

Evolutionary psychology explores the origins of human behavior and mental processes by framing them within the context of natural selection, a theory famously propounded by Charles Darwin. This field asserts that many behaviors common across human societies — ranging from instinctive fear reactions to complex social interactions — arose as evolutionary adaptations. These adaptations enhanced the survival and reproductive success of our ancestors, thereby becoming embedded in the human psyche...
Background and Environment Affect Phenotype02:27

Background and Environment Affect Phenotype

Although the genetic makeup of an organism plays a major role in determining the phenotype, there are also several environmental factors, such as temperature, oxygen availability, presence of mutagens, that can alter an organism’s phenotype.
An example of how genetic background affects phenotype can be seen in horses. The Extension gene in horses is responsible for their coat color. A wild-type gene (EE) produces black pigment in the coat, while a mutant gene (ee) produces red pigment. A...
Entropy Changes Accompanying Specific Processes01:21

Entropy Changes Accompanying Specific Processes

Entropy, a measure of disorder in a system, changes during phase transitions like freezing or boiling. At the transition temperature Ttrs, where two phases are in equilibrium, the phase transition is a reversible process. The entropy change can be calculated from a substance's enthalpy of transition using the equation ΔStrs = ΔtrsH /Ttrs.When a perfect gas expands isothermally from one volume to another, entropy increases logarithmically with volume. Conversely, isothermal compression results...
Instinctive Drift01:05

Instinctive Drift

Instinctive drift refers to the tendency of animals to revert to their innate behaviors despite repeated reinforcement. Breland and Breland demonstrated this concept in an experiment with a raccoon. The raccoon was trained to pick up two coins and place them in a container in exchange for food. Initially, the raccoon learned to associate the coins with food, making them a conditioned stimulus or a substitute for food. However, over time, the raccoon became less willing to put the coins into the...

こちらも読む

関連記事

共著者、ジャーナル、引用グラフによってこの研究に関連する記事。

並び替え
Same author

Floodplain Forests Are Sensitive to Salt-Intrusion During Summer Droughts When Dominated by <i>Salix</i>.

Estuaries and coasts : journal of the Estuarine Research Federation·2026
Same author

Ecosystem technology (ecotech): Harnessing natural processes to address global challenges.

Science advances·2026
Same author

Hydro-geomorphological drivers across scales shape the trajectory of coastal wetland restoration.

Nature communications·2026
Same author

Do alternative reproductive tactics facilitate evolutionary rescue? A comment on Knell & Parrett 2024.

Evolution letters·2026
Same author

A connectivity threshold between grass patches amplifies coastal dune formation.

Nature communications·2026
Same author

Individualised niches: an integrative conceptual framework across behaviour, ecology, and evolution.

Biological reviews of the Cambridge Philosophical Society·2026

関連する実験動画

Updated: May 31, 2026

Age-dependent Dynamics of Locomotion in Caenorhabditis elegans: A Lyapunov Exponent Analysis
06:44

Age-dependent Dynamics of Locomotion in Caenorhabditis elegans: A Lyapunov Exponent Analysis

Published on: September 23, 2025

レヴィの散歩は,動きと環境の複雑性の相互作用によって進化します.

Monique de Jager1, Franz J Weissing, Peter M J Herman

  • 1Spatial Ecology Department, Netherlands Institute of Ecology (NIOO-KNAW), Yerseke, Netherlands. m.dejager@nioo.knaw.nl

Science (New York, N.Y.)
|June 25, 2011
PubMed
まとめ

貝は,レヴィの歩き方を用いてパターンのベッドを形成し,資源の獲得とフィットネスを高めます. この移動戦略は,動物の行動を形作る際の個々の行動と生息地の複雑さの相互作用を強調しています.

科学分野:

  • エコロジー エコロジー エコロジー
  • 動物の行動 動物の行動
  • バイオフィジックス 生物物理学

背景:

  • 動物の移動は,資源獲得効率のレンズを通して見ることがよくあります.
  • しかし,動物活動によって資源の利用可能性と分布が動的に変化することがあります.
  • 個人の行動と環境の複雑性との間のフィードバックループは,運動戦略を理解するために重要です.

研究 の 目的:

  • 空間的にパターン化された床の形成過程におけるの移動戦略を調査する.
  • レヴィの歩行運動がの床形成を説明するかどうかを判断する.
  • 発生する空間的なパターンが個人の健康と進化にどのように影響するかを探求する.

主な方法:

  • ミュッセルの行動とベッド形成の実験的観察.
  • 貝の動きパターンのモデル化,特にレヴィの歩き方.
  • 個人のフィットネスに対する新興パターンの影響の分析.

主要な成果:

  • ミュッセルは,空間的にパターン化されたベッドの形成の間に,レヴィの歩行行動を示します.
  • このレヴィの動きは,これらのパターンの形成を加速させることが判明しました.

さらに関連する動画

Studying the Neural Basis of Adaptive Locomotor Behavior in Insects
10:19

Studying the Neural Basis of Adaptive Locomotor Behavior in Insects

Published on: April 13, 2011

Asymmetric Walkway: A Novel Behavioral Assay for Studying Asymmetric Locomotion
08:19

Asymmetric Walkway: A Novel Behavioral Assay for Studying Asymmetric Locomotion

Published on: January 15, 2016

関連する実験動画

Last Updated: May 31, 2026

Age-dependent Dynamics of Locomotion in Caenorhabditis elegans: A Lyapunov Exponent Analysis
06:44

Age-dependent Dynamics of Locomotion in Caenorhabditis elegans: A Lyapunov Exponent Analysis

Published on: September 23, 2025

Studying the Neural Basis of Adaptive Locomotor Behavior in Insects
10:19

Studying the Neural Basis of Adaptive Locomotor Behavior in Insects

Published on: April 13, 2011

Asymmetric Walkway: A Novel Behavioral Assay for Studying Asymmetric Locomotion
08:19

Asymmetric Walkway: A Novel Behavioral Assay for Studying Asymmetric Locomotion

Published on: January 15, 2016

  • ミュッセルベッドで発生した空間的なパターンは,個人の健康状態を改善することが示されました.
  • 結論:

    • 個人の行動と環境の複雑性とのフィードバックは,の移動戦略を説明します.
    • レヴィの歩行は,の床で出現する空間的なパターンの選択的優位性により,おそらく進化した.
    • 動物の移動は,個々の選択と生息地の複雑性との相互作用によって形成されます.