A novel robot system integrating biological and mechanical intelligence based on dissociated neural network-controlled closed-loop environment
10.1371/journal.pone.0165600
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sg-nus-scholar.10635-1615452024-11-11T03:13:58Z A novel robot system integrating biological and mechanical intelligence based on dissociated neural network-controlled closed-loop environment Li Y. Sun R. Wang Y. Li H. Zheng X. BIOMEDICAL ENGINEERING animal cell Article artificial intelligence artificial neural network control system dissociated neural network embryo hippocampus information processing machine learning nerve cell network neuroprosthesis nonhuman rat robotics signal processing simulation software algorithm artificial neural network biomechanics cell culture technique cytology devices drug effects human nerve cell robotics tetanus antibody Algorithms Biomechanical Phenomena Cell Culture Techniques Humans Neural Networks (Computer) Neurons Robotics Software Tetanus Antitoxin 10.1371/journal.pone.0165600 PLoS ONE 11 11 e0165600 2019-11-06T07:43:06Z 2019-11-06T07:43:06Z 2016 Article Li Y., Sun R., Wang Y., Li H., Zheng X. (2016). A novel robot system integrating biological and mechanical intelligence based on dissociated neural network-controlled closed-loop environment. PLoS ONE 11 (11) : e0165600. ScholarBank@NUS Repository. https://doi.org/10.1371/journal.pone.0165600 19326203 https://scholarbank.nus.edu.sg/handle/10635/161545 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20191101 |
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animal cell Article artificial intelligence artificial neural network control system dissociated neural network embryo hippocampus information processing machine learning nerve cell network neuroprosthesis nonhuman rat robotics signal processing simulation software algorithm artificial neural network biomechanics cell culture technique cytology devices drug effects human nerve cell robotics tetanus antibody Algorithms Biomechanical Phenomena Cell Culture Techniques Humans Neural Networks (Computer) Neurons Robotics Software Tetanus Antitoxin |
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animal cell Article artificial intelligence artificial neural network control system dissociated neural network embryo hippocampus information processing machine learning nerve cell network neuroprosthesis nonhuman rat robotics signal processing simulation software algorithm artificial neural network biomechanics cell culture technique cytology devices drug effects human nerve cell robotics tetanus antibody Algorithms Biomechanical Phenomena Cell Culture Techniques Humans Neural Networks (Computer) Neurons Robotics Software Tetanus Antitoxin Li Y. Sun R. Wang Y. Li H. Zheng X. A novel robot system integrating biological and mechanical intelligence based on dissociated neural network-controlled closed-loop environment |
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10.1371/journal.pone.0165600 |
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BIOMEDICAL ENGINEERING |
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BIOMEDICAL ENGINEERING Li Y. Sun R. Wang Y. Li H. Zheng X. |
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Article |
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Li Y. Sun R. Wang Y. Li H. Zheng X. |
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Li Y. |
title |
A novel robot system integrating biological and mechanical intelligence based on dissociated neural network-controlled closed-loop environment |
title_short |
A novel robot system integrating biological and mechanical intelligence based on dissociated neural network-controlled closed-loop environment |
title_full |
A novel robot system integrating biological and mechanical intelligence based on dissociated neural network-controlled closed-loop environment |
title_fullStr |
A novel robot system integrating biological and mechanical intelligence based on dissociated neural network-controlled closed-loop environment |
title_full_unstemmed |
A novel robot system integrating biological and mechanical intelligence based on dissociated neural network-controlled closed-loop environment |
title_sort |
novel robot system integrating biological and mechanical intelligence based on dissociated neural network-controlled closed-loop environment |
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2019 |
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https://scholarbank.nus.edu.sg/handle/10635/161545 |
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