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

Foot placement control underlies stable locomotion across species

足部定位控制是物种稳定运动的基础。

De Comite, Antoine; Seethapathi, Nidhi

Magnetoelectric nanodiscs diminish motor deficits in a model of Parkinson's disease.

磁电纳米盘可减轻帕金森病模型中的运动障碍。

Kim Ye Ji, De Comite Antoine, Paniagua Emmanuel Vargas, Selvaraji Sharmelee, Frey Ethan, Mondal Rajib, Seethapathi Nidhi, Anikeeva Polina

Exploration-based learning of a stabilizing controller predicts locomotor adaptation

基于探索的稳定控制器学习能够预测运动适应性

Seethapathi, Nidhi; Clark, Barrett C; Srinivasan, Manoj

Walking speeds are lower for short distance and turning locomotion: Experiments and modeling in low-cost prosthesis users

低成本假肢使用者短距离行走和转弯时的步行速度较低:实验和建模研究

Seethapathi, Nidhi; Jain, Anil Kumar; Srinivasan, Manoj

Moving outside the lab: Markerless motion capture accurately quantifies sagittal plane kinematics during the vertical jump

走出实验室:无标记运动捕捉技术能够精确量化垂直跳跃过程中矢状面的运动学特征

Drazan, John F; Phillips, William T; Seethapathi, Nidhi; Hullfish, Todd J; Baxter, Josh R

Towards Automated Emotion Classification of Atypically and Typically Developing Infants

面向非典型和典型发育婴儿的自动情绪分类

Lysenko, Sofiya; Seethapathi, Nidhi; Prosser, Laura; Kording, Konrad; Johnson, Michelle J

Step-to-step variations in human running reveal how humans run without falling

人类跑步时每一步的变化揭示了人类如何在跑步时不摔倒。

Seethapathi, Nidhi; Srinivasan, Manoj

The metabolic cost of changing walking speeds is significant, implies lower optimal speeds for shorter distances, and increases daily energy estimates

改变步行速度会带来显著的代谢成本,这意味着短距离行走的最佳速度会降低,并且会增加每日能量消耗的估算值。

Seethapathi, Nidhi; Srinivasan, Manoj