日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Epidermal microstructures on the paired fins of marine sculpins suggest new functional hypotheses supporting benthic station-holding.

海洋杜父鱼成对鳍上的表皮微结构提出了新的功能假说,支持底栖位置的保持

Kane Emily A, Garner Austin M, Yadav Shubham, Hume L Ann, Pesacreta Tom

Navigating Nature's Terrain: Jumping Performance Robust to Substrate Moisture and Roughness by Blackspotted Rockskippers (Entomacrodus striatus)

驾驭自然地形:黑斑跳蛙(Entomacrodus striatus)的跳跃性能不受基质湿度和粗糙度的影响

Bartlett, Daniel T; Raffle, Kaylin O; Pettit, Hayley N; Brainard, Miranda K; Houglan, Paityn M; Gamel, Kaelyn; Nopper, Zachary O; Harden, Rebekah K; Garner, Austin M; Londraville, Richard L; Astley, Henry C

Hyposalinity reduces coordination and adhesion of sea urchin tube feet

低盐度会降低海胆管足的协调性和粘附力。

Moura, Andrew J; Garner, Austin M; Narvaez, Carla A; Cucchiara, Jack P; Stark, Alyssa Y; Russell, Michael P

An investigation of gecko attachment on wet and rough substrates leads to the application of surface roughness power spectral density analysis

对壁虎在潮湿粗糙基质上的附着行为的研究,引出了表面粗糙度功率谱密度分析的应用。

Palecek, Amanda M; Garner, Austin M; Klittich, Mena R; Stark, Alyssa Y; Scherger, Jacob D; Bernard, Craig; Niewiarowski, Peter H; Dhinojwala, Ali

Polar bear paw pad surface roughness and its relevance to contact mechanics on snow

北极熊爪垫表面粗糙度及其与雪地接触力学的相关性

Orndorf, Nathaniel; Garner, Austin M; Dhinojwala, Ali

Revisiting the classification of squamate adhesive setae: historical, morphological and functional perspectives

重新审视鳞状动物粘附刚毛的分类:历史、形态和功能视角

Garner, Austin M; Russell, Anthony P

The same but different: setal arrays of anoles and geckos indicate alternative approaches to achieving similar adhesive effectiveness

异曲同工:安乐蜥和壁虎的刚毛排列方式表明了实现类似粘附效果的不同途径

Garner, Austin M; Wilson, Michael C; Wright, Caitlin; Russell, Anthony P; Niewiarowski, Peter H; Dhinojwala, Ali

Home-field advantage: native gecko exhibits improved exertion capacity and locomotor ability in structurally complex environments relative to its invasive counterpart

主场优势:与入侵物种相比,本土壁虎在结构复杂的环境中表现出更强的运动能力和移动能力。

Garner, Austin M; Pamfilie, Alexandra M; Hamad, E J; Kindig, Rachael; Taylor, Joshua T; Unsworth, Colleen K; Niewiarowski, Peter H