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

Bio-Inspired Approaches-A Leverage for Robotics

仿生方法——机器人技术的杠杆

Venkateswaran, Swaminath; Chablat, Damien; Manoonpong, Poramate; Serres, Julien R

Biomimetics and bioinspired surfaces: from nature to theory and applications

仿生学和生物启发表面:从自然到理论和应用

Ferreira, Rhainer Guillermo; Büscher, Thies H; Rebora, Manuela; Manoonpong, Poramate; Dai, Zhendong; Gorb, Stanislav N

Comprehensive multi-metric analysis of user experience and performance in adaptive and non-adaptive lower-limb exoskeletons

对自适应和非自适应下肢外骨骼的用户体验和性能进行全面的多指标分析

Supapitanon, Krongkaew; Patathong, Tanyaporn; Akkawutvanich, Chaicharn; Srisuchinnawong, Arthicha; Ketrungsri, Worachit; Manoonpong, Poramate; Woratanarat, Patarawan; Angsanuntsukh, Chanika

Nature's All-in-One: Multitasking Robots Inspired by Dung Beetles

自然界的万能生物:受蜣螂启发的多任务机器人

Leung, Binggwong; Gorb, Stanislav; Manoonpong, Poramate

A brain machine interface framework for exploring proactive control of smart environments

用于探索智能环境主动控制的脑机接口框架

Braun, Jan-Matthias; Fauth, Michael; Berger, Michael; Huang, Nan-Sheng; Simeoni, Ezequiel; Gaeta, Eugenio; Rodrigues do Carmo, Ricardo; García-Betances, Rebeca I; Arredondo Waldmeyer, María Teresa; Gail, Alexander; Larsen, Jørgen C; Manoonpong, Poramate; Tetzlaff, Christian; Wörgötter, Florentin

Editorial: The roles of self-organization and sensory adaptation for locomotion in animals and robots

社论:自组织和感觉适应在动物和机器人运动中的作用

Sándor, Bulcsú; Gros, Claudius; Manoonpong, Poramate

Editorial: Horizons in neurorobotics 2022

社论:2022 年神经机器人学展望

Röhrbein, Florian; Su, Hang; Manoonpong, Poramate

Leg-body coordination strategies for obstacle avoidance and narrow space navigation of multi-segmented, legged robots

多节腿式机器人避障和狭窄空间导航的腿身协调策略

Mingchinda, Nopparada; Jaiton, Vatsanai; Leung, Binggwong; Manoonpong, Poramate

Editorial: Multimodal behavior from animals to bio-inspired robots

社论:从动物到仿生机器人的多模态行为

Zhu, Yaguang; Manoonpong, Poramate; Hu, Qiao

A Neural Coordination Strategy for Attachment and Detachment of a Climbing Robot Inspired by Gecko Locomotion

受壁虎运动启发,一种用于攀爬机器人附着和脱离的神经协调策略

Wang, Bingcheng; Wang, Zhouyi; Song, Yifan; Zong, Weijia; Zhang, Linghao; Ji, Keju; Manoonpong, Poramate; Dai, Zhendong