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Jian-Qin Liu
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Journal Articles
- 2017
- [j13]Jian-Qin Liu, Haruhiko Nishimura:
Estimating the dissipative factors of synaptic exocytosis in Drosophila using a filter based reverse engineering method. Nano Commun. Networks 11: 1-10 (2017) - 2015
- [j12]Sou Nobukawa, Haruhiko Nishimura, Teruya Yamanishi, Jian-Qin Liu:
Chaotic States Induced By Resetting Process In Izhikevich Neuron Model. J. Artif. Intell. Soft Comput. Res. 5(2): 109 (2015) - 2014
- [j11]Jian-Qin Liu, Peter Davis:
Synchronization-Dependence of Path Switching in an Autonomous Flow Network. IEEE Syst. J. 8(4): 1040-1048 (2014) - 2012
- [j10]Tadashi Nakano, Yutaka Okaie, Jian-Qin Liu:
Channel Model and Capacity Analysis of Molecular Communication with Brownian Motion. IEEE Commun. Lett. 16(6): 797-800 (2012) - [j9]Teruya Yamanishi, Jian-Qin Liu, Haruhiko Nishimura:
Modeling fluctuations in Default-Mode Brain Network Using a Spiking Neural Network. Int. J. Neural Syst. 22(4) (2012) - [j8]Jian-Qin Liu, Tadashi Nakano:
Principles and Methods for Nanomechatronics: Signaling, Structure, and Functions Toward Nanorobots. IEEE Trans. Syst. Man Cybern. Part C 42(3): 357-366 (2012) - 2010
- [j7]Jian-Qin Liu, Katsunori Shimohara:
Brain activity in the resting state: default mode network as an inside story within the brain. Artif. Life Robotics 15(1): 1-4 (2010) - [j6]Jian-Qin Liu:
Molecular informatics of nano-communication based on cells: A brief survey. Nano Commun. Networks 1(2): 118-125 (2010) - 2007
- [j5]Jian-Qin Liu, Katsunori Shimohara:
Partially interacted phosphorylation/dephosphorylation trees extracted from signaling pathways in cells. Artif. Life Robotics 11(1): 123-127 (2007) - [j4]Jian-Qin Liu, Katsunori Shimohara:
Molecular Computation and Evolutionary Wetware: A Cutting-Edge Technology for Artificial Life and Nanobiotechnologies. IEEE Trans. Syst. Man Cybern. Part C 37(3): 325-336 (2007) - 2004
- [j3]Jian-Qin Liu, Katsunori Shimohara:
A logical method of cell-based molecular computation using the pathways regulated by Rho family GTPases. Artif. Life Robotics 8(1): 62-66 (2004) - [j2]Jian-Qin Liu, Katsunori Shimohara:
Signaling-pathway-based molecular computing for efficient 3-SAT problem solving. Inf. Sci. 161(3-4): 121-137 (2004) - 2002
- [j1]Jian-Qin Liu, Katsunori Shimohara:
An evolvable proteomic computing method for robust artificial chemistry systems. Artif. Life Robotics 6(3): 126-128 (2002)
Conference and Workshop Papers
- 2014
- [c22]Sou Nobukawa, Haruhiko Nishimura, Teruya Yamanishi, Jian-Qin Liu:
Analysis of routes to chaos in Izhikevich neuron model with resetting process. SCIS&ISIS 2014: 813-818 - 2013
- [c21]Yutaka Okaie, Tadashi Nakano, Jian-Qin Liu:
Information transmission through a multiple access molecular communication channel. ICC 2013: 4030-4034 - 2012
- [c20]Jian-Qin Liu, Teruya Yamanishi, Haruhiko Nishimura, Sou Nobukawa, Hiroaki Umehara:
On sustaining robustness of molecular pathway circuits of the HSR network of E. coli under spatial configuration. NEMS 2012: 496-501 - [c19]Teruya Yamanishi, Jian-Qin Liu, Haruhiko Nishimura:
Beats as the origin of slow fluctuations in the brain's default-mode network. SCIS&ISIS 2012: 33-38 - [c18]Jian-Qin Liu, Teruya Yamanishi, Haruhiko Nishimura, Hiroaki Umehara, Sou Nobukawa:
On the filtering mechanism of spontaneous signaling causality of brain's default mode network. SCIS&ISIS 2012: 43-48 - [c17]Sou Nobukawa, Haruhiko Nishimura, Teruya Yamanishi, Jian-Qin Liu:
Chaotic resonance in Izhikevich neuron model and its assembly. SCIS&ISIS 2012: 49-54 - 2010
- [c16]Jian-Qin Liu, Tadashi Nakano:
A Filter for the Cooperative Kinase Network of Budding Yeast Saccharomyces cerevisiae. BIONETICS 2010: 563-564 - [c15]Rui Teng, Bing Zhang, Jian-Qin Liu:
Infrastructure Optimization of Flight-Formation Inspired Self-organization for Address Configuration in Sensor Networks. BIONETICS 2010: 587-600 - [c14]Teruya Yamanishi, Jian-Qin Liu, Haruhiko Nishimura:
Firing Pattern of Default Mode Brain Network with Spiking Neuron Model. BIONETICS 2010: 629-636 - 2009
- [c13]Tadashi Nakano, Jian-Qin Liu:
Information Transfer through Calcium Signaling. NanoNet 2009: 29-33 - [c12]Jian-Qin Liu, Tadashi Nakano:
Quantitative Analysis of the Feedback of the Robust Signaling Pathway Network of Myosin V Molecular Motors on GluR1 of AMPA in Neurons: A Networking Approach for Controlling Nanobiomachines. NanoNet 2009: 34-38 - [c11]Jian-Qin Liu, Shigeyuki Kan, Takahiko Koike, Satoru Miyauchi:
A New Method for Evaluating the Dynamics of Human Brain Networks Using Complex-Systems. NanoNet 2009: 229-230 - 2008
- [c10]Teijiro Isokawa, Ferdinand Peper, Masahiko Mitsui, Jian-Qin Liu, Kenichi Morita, Hiroshi Umeo, Naotake Kamiura, Nobuyuki Matsui:
Computing by Swarm Networks. ACRI 2008: 50-59 - [c9]Jian-Qin Liu, Kenji Leibnitz, Masayuki Murata:
Nature-based Information Networking: On Exploring Robustness in TCP Inspired by Cellular Signaling. BIONETICS 2008: 32 - [c8]Jian-Qin Liu, Tadashi Nakano:
Biomolecular Computation Based on Cell Communication. BIONETICS 2008: 36 - 2007
- [c7]Jian-Qin Liu, Tadashi Nakano:
An Information Theoretic Model of Molecular Communication Based on Cellular Signaling. BIONETICS 2007: 316-321 - 2006
- [c6]Jian-Qin Liu, Hidefumi Sawai:
A new channel coding algorithm based on phosphorylation/dephosphorylation-proteins and GTPases. BIONETICS 2006: 8 - 2005
- [c5]Jian-Qin Liu, Katsunori Shimohara:
On designing error-correctable codes by biomolecular computation. ISIT 2005: 2384-2388 - 2004
- [c4]Jian-Qin Liu, Katsunori Shimohara:
On Scalable Biomolecular Computers Based on Crosstalked Phosphorylation and Dephosphorylation Pathways Regulated by Rho Family GTPases of Cells. ICMENS 2004: 346-352 - [c3]Jian-Qin Liu, Katsunori Shimohara:
A Novel Programmable Molecular Computing Method Based on Signaling Pathways Regulated by Rho-GTPases in Living MDCK Epithelial Mammalian Cells. PPSN 2004: 312-321 - 2003
- [c2]Jian-Qin Liu, Katsunori Shimohara:
Biomolecular Computing by Encoding of Regulated Phosphorylation-Dephosphorylation and Logic of Kinase-Phosphatase in Cells. DNA 2003: 213-218 - 2002
- [c1]Jian-Qin Liu, Katsunori Shimohara:
A New Molecular Computing Algorithm Based on Signaling Pathways. JCIS 2002: 594-597
Coauthor Index
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