2016 International Conference on Biomedical Robotics and Biomechatronics (BioRob)
2016 International Conference on Biomedical Robotics and Biomechatronics (BioRob)
批准号:
1646085
负责人:
Nitish Thakor
金额:
$1.2万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-08-01 至 2017-07-31
中文摘要
1646085 - ThakorThis IEEE BIOROB 2016会议涵盖了与机器人和机电一体化在医学和生物学中的应用有关的许多主题。IEEE BioRob 2016的会议技术计划将包括邀请演讲,特别会议,海报和论文演示。会议涵盖的主题包括:a)与身体力学、残疾人康复和援助有关的健康相关主题,B)先进的机器人和机械设备,将导致老年人和残疾人护理的自动化和增强,以及手术,c)从生物学或自然中汲取灵感,开发新一代具有生命系统独特特性的机器,以及d)使用大脑接口,机器和假肢的神经控制这些都是涉及先进技术领域的前沿课题,如机器人技术,这些技术非常符合国家利益(例如总统提出的国家机器人计划)。 医疗和外科机器人以及神经假体将有助于改善人类健康。生物启发的机器人技术的更先进的主题可能会对国防感兴趣的技术的发展产生影响。 会议还将为学生和其他年轻的研究人员提供许多机会和奖项。 被邀请的学生将有资格竞争学生论文和海报奖,并将有机会展示。将优先考虑代表性不足的少数民族和妇女。IEEE机器人与自动化学会和医学与生物工程学会联合举办了生物医学机器人与生物机电一体化国际会议- BioRob 2016。此前,这一国际会议在罗马和巴西举行。今年的会议将在新加坡举行。 本次会议提出了对人类健康和残疾有影响的重要领域前沿的令人兴奋的主题,以及推进对工业进步和国防有影响的技术。 BIOROB会议涵盖了机器人技术和机电一体化在医学和生物学中的应用所带来的理论和实验挑战。生物机器人领域代表了一个多学科的科学和技术方法结合许多学科。这些包括生物学和医学的相互作用,人类疾病和健康,在跨越许多学科和领域的技术的帮助下。BIOROB的主要技术重点是机器人、机电一体化和生物力学/仿生系统。应用领域将包括假肢、外骨骼和辅助设备领域。 应用领域包括神经、肌肉和神经肌肉疾病的治疗。 技术和应用将包括手术系统、康复系统、神经假体和脑机接口。 提出的研究将大大增加我们对生物系统如何工作,行为和相互作用的理解,并将指导我们设计和制造新颖,高性能的生物启发机器和系统,用于许多不同的应用。 研究将展示新型机电和机器人设备,以及计算方法和技术,帮助人类预防,诊断,手术,假肢,康复和个人援助。
英文摘要
1646085 - ThakorThis IEEE BIOROB 2016 conference covers many topics pertaining to the application of robotics and mechatronics in medicine and biology. The conference technical program of IEEE BioRob2016 will consist of invited talks, special sessions, posters, and paper presentations. The topics covered by the conference include a) health related topics pertaining to body mechanics, rehabilitation and assistance for disabled, b) advanced robotic and mechanical devices which will lead to automation and augmentation in care of aged and disabled, and in surgery, c) take inspiration from biology or nature to develop new generation of machines that carry unique properties of the living systems, and d) use of brain interface, neural control of machines and prostheses. These are leading edge topics that involve advanced technological fields such as robotics that are greatly in the national interest (e.g. the National Robotics Initiative proposed by the President). Medical and surgical robotics and Neuroroprosthesis will contribute to improvements in human health. More advanced topics of biological inspired robotics may have implications in the development of technologies of interest to the defense. The conference will also provide numerous opportunities and awards for students and other young investigators. The invited students will be eligible to compete for student paper and poster awards and will be given featured opportunities to present. Preference will be given to under-represented minority and women. The IEEE Robotics and Automation Society and the Engineering in Medicine and Biology Society have teamed up to run the International Conference on Biomedical Robotics and Biomechatronics - BioRob 2016. Previously this international meeting took place in Rome and Brazil. This year the meeting will take place in Singapore. This conference proposes exciting topics at the frontiers of important fields that have impact on human health and disabilities, as well as advancing the technology with implication for industrial advances and defense. The BIOROB conference covers both theoretical and experimental challenges posed by the application of robotics and mechatronics in medicine and biology. Biorobotics field represents a multi-disciplinary science and technology approach marrying many disciplines. These include the interplay of biology and medicine, human disease and health, with the help of technology spanning many disciplines and fields. The primary technology focus of BIOROB is robotic, mechatronic, and biomechanical/biomimetic systems. The application areas would include the fields of prosthesis, exoskeletons, and assistive devices. Application areas include treatment of neurological, muscular, and neuromuscular disorders. Technology and applications would include surgical systems, rehabilitation systems, neuroprosthesis and brain machine interfaces. The research presented will greatly add to our understanding of how biological systems work, behave and interact and will guide us in the design and fabrication of novel, high performance bio-inspired machines and systems for many different applications. Research presented will demonstrate novel mechatronic and robotic devices, as well as computational methods and technologies assist human beings in prevention, diagnosis, surgery, prosthetics, rehabilitation and personal assistance.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
NRI: FND: Scalable, Customizable Sensory Solutions for Dexterous Robotic Hands
-
批准号:1849417
-
项目类别:Standard Grant
-
资助金额:$42.17万
-
财政年份:2018
-
负责人:Nitish Thakor
-
依托单位:
Collaborative Research: CDI Type I: Optimal and predictive control of neural prostheses using intracortical Brain Machine Interfaces
-
批准号:0835554
-
项目类别:Standard Grant
-
资助金额:$22.5万
-
财政年份:2008
-
负责人:Nitish Thakor
-
依托单位:
Macromolecular Separation By Lorentz Forces
-
批准号:9007907
-
项目类别:Standard Grant
-
资助金额:$4.45万
-
财政年份:1990
-
负责人:Nitish Thakor
-
依托单位:
Presidential Young Investigator Award
-
批准号:8451491
-
项目类别:Continuing Grant
-
资助金额:$32.45万
-
财政年份:1985
-
负责人:Nitish Thakor
-
依托单位:
海外基金