Satya Arjunan: Difference between revisions

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==Background==
==Background==
I completed my PhD in Systems Biology at the [http://www.iab.keio.ac.jp/ Institute for Advanced Biosciences], Keio University in 2009. My thesis can be found [http://openwetware.org/images/b/bc/2009.arjunan.keio.pdf here]. I developed a multicompartmental spatiotemporal stochastic simulation algorithm, called [http://spatiocyte.org Spatiocyte], with applications in bacterial division site placement control. I am also a member of the [http://www.e-cell.org/ E-Cell Project]. In the past, I have worked on protein secondary structure prediction and distributed parallel computing. I completed my MSc in Computer Science and BEng in Electronics Engineering at Universiti Teknologi Malaysia.
I completed my PhD in Systems Biology at the [http://www.iab.keio.ac.jp/ Institute for Advanced Biosciences], Keio University in 2009. My thesis can be found [http://openwetware.org/images/b/bc/2009.arjunan.keio.pdf here]. I developed a stochastic particle simulation method, called [http://spatiocyte.org Spatiocyte], with applications in bacterial division site placement control. I am also a member of the [http://www.e-cell.org/ E-Cell Project]. In the past, I have worked on protein secondary structure prediction and distributed parallel computing. I completed my MSc in Computer Science and BEng in Electronics Engineering at Universiti Teknologi Malaysia.


Currently I am a postdoc at the RIKEN Quantitative Biology Center in Osaka, Japan.
At present, I am a Senior Scientific Software Engineer at the Victor Chang Cardiac Research Institute in Sydney and a Visiting Scientist at the RIKEN Center for Biosystems Dynamics Research in Osaka.
 


==Journal Publications==
==Journal Publications==
My Google Scholar Citations page can be found [http://scholar.google.com/citations?user=FGHQqjkAAAAJ&hl=en here].
My Google Scholar page can be found [http://scholar.google.com/citations?user=FGHQqjkAAAAJ&hl=en here].
*Arjunan, S. N. V. and Tomita, M. (2010). [http://www.springerlink.com/content/438375471t332vx6 A new multicompartmental reaction-diffusion modeling method links transient membrane attachment of E. coli MinE to E-ring formation]. Systems and Synthetic Biology 4(1): 35-53 [http://www.springerlink.com/content/438375471t332vx6/fulltext.pdf pdf].
*Watabe, M., Yoshimura, H., '''Arjunan, S. N. V.''', Kaizu, K. & Takahashi, K. (2020). [https://doi.org/10.1103/PhysRevE.102.032413 Signaling activations through G-protein-coupled-receptor aggregations]. Physical Review E 102: 032413
*Arjunan, S. N. V. and Tomita, M. (2009). [http://precedings.nature.com/documents/3526/version/1 Modeling reaction-diffusion of molecules on surface and in volume spaces with the E-Cell System]. International Journal of Computer Science and Information Security. 3(1): 211–216. [http://precedings.nature.com/documents/3526/version/1/files/npre20093526-1.pdf pdf]
*'''Arjunan, S. N. V.''', Miyauchi, A., Iwamoto, K. & Takahashi, K. (2020). [https://doi.org/10.1186/s12859-019-3338-8 pSpatiocyte: a high-performance simulator for intracellular reaction-diffusion systems]. BMC Bioinformatics 21, 33.
*Yeo, Z. X., Wong, S. T., Arjunan, S. N. V., Piras, V., Tomita, M., Selvarajoo, K., Giuliani, A. and Tsuchiya, M. (2007). [http://www.plosone.org/article/fetchArticle.action?articleURI=info%3Adoi%2F10.1371%2Fjournal.pone.0000776 Sequential Logic Model Deciphers Dynamic Transcriptional Control of Gene Expressions]. PLoS ONE 2(8): e776. [http://www.plosone.org/article/fetchObjectAttachment.action;jsessionid=3EA7966B9EA32BC46DFCD562DE1DCDB0?uri=info%3Adoi%2F10.1371%2Fjournal.pone.0000776&representation=PDF pdf]
*Watabe, M., '''Arjunan, S. N. V.''', Chew, W.-X., Kaizu, K. & Takahashi, K. (2019). [https://doi.org/10.1103/PhysRevE.100.062407 Cooperativity transitions driven by higher-order oligomer formations in ligand-induced receptor dimerization]. Physical Review E 100, 062407
*Takahashi, K., Arjunan, S. N. V. and Tomita, M. (2005). [http://www.sciencedirect.com/science/article/pii/S0014579305001857 Space in systems biology of signaling pathways – towards intracellular molecular crowding in silico]. FEBS Letters 579(8): 1783-1788. [http://www.e-cell.org/ecell/papers/takahashi2005.pdf pdf]
*Watabe, M., '''Arjunan, S. N. V.''', Chew, W.-X., Kaizu, K. & Takahashi, K. (2019). [https://doi.org/10.1103/PhysRevE.100.010402 Simulation of live-cell imaging system reveals hidden uncertainties in cooperative binding measurements]. Physical Review E 100, 010402(R)
*Chew, W.-X., Kaizu, K., Watabe, M., Muniandy, S. V., Takahashi, K. and '''Arjunan, S. N. V.''' (2019). [https://doi.org/10.1103/PhysRevE.99.042411 Surface reaction-diffusion kinetics on lattice at the microscopic scale]. Physical Review E 99, 042411
*Chew, W.-X., Kaizu, K., Watabe, M., Muniandy, S. V., Takahashi, K. and '''Arjunan, S. N. V.''' (2018). [https://doi.org/10.1103/PhysRevE.98.032418 Reaction-diffusion kinetics on lattice at the microscopic scale]. Physical Review E 98: 032418.
*'''Arjunan, S. N. V.''' and Takahashi, K. (2017) [https://doi.org/10.1007/978-1-4939-7015-5_16 Multi-algorithm particle simulations with Spatiocyte]. Methods in Molecular Biology, 1611: 219-236.
*Watabe, M., '''Arjunan, S. N. V.''', Fukushima, S., Iwamoto, K., Kozuka, J., Matsuoka, S., Shindo, Y., Ueda, M. and Takahashi, K. (2015). [https://doi.org/10.1371/journal.pone.0130089 A Computational Framework for Bioimaging Simulation]. PLoS ONE 10(7): e0130089.
* Shimo, H., '''Arjunan, S. N. V.''', Machiyama, H., Nishino, T., Suematsu, M., Fujita, H., Tomita M. and Takahashi, K. (2015). [https://doi.org/10.1371/journal.pcbi.1004210 Particle Simulation of Oxidation Induced Band 3 Clustering in Human Erythrocytes]. PLoS Computational Biology 2015, 11:e1004210.
* Abdullah, A., Deris, S., Anwar, S. and '''Arjunan, S. N. V.''' (2013). [https://doi.org/10.1371/journal.pone.0056310 An evolutionary Firefly Algorithm for the estimation of nonlinear biological model parameters]. PLoS ONE 8(3): e56310.
*'''Arjunan, S. N. V.''' and Tomita, M. (2010). [https://doi.org/10.1007/s11693-009-9047-2 A new multicompartmental reaction-diffusion modeling method links transient membrane attachment of E. coli MinE to E-ring formation]. Systems and Synthetic Biology 4(1): 35-53 [http://www.springerlink.com/content/438375471t332vx6/fulltext.pdf pdf].
*'''Arjunan, S. N. V.''' and Tomita, M. (2009). [http://precedings.nature.com/documents/3526/version/1 Modeling reaction-diffusion of molecules on surface and in volume spaces with the E-Cell System]. International Journal of Computer Science and Information Security. 3(1): 211–216. [http://precedings.nature.com/documents/3526/version/1/files/npre20093526-1.pdf pdf]
*Yeo, Z. X., Wong, S. T., '''Arjunan, S. N. V.''', Piras, V., Tomita, M., Selvarajoo, K., Giuliani, A. and Tsuchiya, M. (2007). [https://doi.org/10.1371/journal.pone.0000776 Sequential Logic Model Deciphers Dynamic Transcriptional Control of Gene Expressions]. PLoS ONE 2(8): e776. [http://www.plosone.org/article/fetchObjectAttachment.action;jsessionid=3EA7966B9EA32BC46DFCD562DE1DCDB0?uri=info%3Adoi%2F10.1371%2Fjournal.pone.0000776&representation=PDF pdf]
*Takahashi, K., '''Arjunan, S. N. V.''' and Tomita, M. (2005). [https://doi.org/10.1016/j.febslet.2005.01.072 Space in systems biology of signaling pathways – towards intracellular molecular crowding in silico]. FEBS Letters 579(8): 1783-1788. [http://www.e-cell.org/ecell/papers/takahashi2005.pdf pdf],


==Books and Book Chapters==
==Books and Book Chapters==
*Selvarajoo, K., Arjunan, S. N. V. and Tomita, M. (2010). [http://books.google.com/books?id=zCqHswQYAfgC&lpg=PT6&pg=PT363#v=onepage&q=&f=false In silico models for metabolic 'systems' engineering]. In: The Metabolic Pathway Engineering Handbook: Tools and Applications, Smolke, C. D., Palsson, B. and Lee, S. Y. (editors). CRC Press (Boca Raton, FL). [http://openwetware.org/images/b/b4/2010.selvarajoo.chapter.crc.press.pdf pdf]
*Selvarajoo, K., '''Arjunan, S. N. V.''' and Tomita, M. (2010). [http://books.google.com/books?id=zCqHswQYAfgC&lpg=PT6&pg=PT363#v=onepage&q=&f=false In silico models for metabolic 'systems' engineering]. In: The Metabolic Pathway Engineering Handbook: Tools and Applications, Smolke, C. D., Palsson, B. and Lee, S. Y. (editors). CRC Press (Boca Raton, FL). [http://openwetware.org/images/b/b4/2010.selvarajoo.chapter.crc.press.pdf pdf]
*Arjunan, S. N. V. (2012). [http://www.ncbi.nlm.nih.gov/books/NBK84261/ A guide to Modeling Reaction-Diffusion of Molecules with the E-Cell System]. In: E-Cell System: Basic Concepts and Applications, Arjunan, S. N. V., Dhar, P. K. and Tomita, M. (editors). Landes Bioscience and Springer Science+Business Media. [http://openwetware.org/images/0/05/2012.arjunan.chapter.landes.bioscience.pdf pdf]
*'''Arjunan, S. N. V.''' (2013). [http://www.ncbi.nlm.nih.gov/books/NBK84261/ A guide to Modeling Reaction-Diffusion of Molecules with the E-Cell System]. In: E-Cell System: Basic Concepts and Applications, Arjunan, S. N. V., Dhar, P. K. and Tomita, M. (editors). Landes Bioscience and Springer Science+Business Media. [http://openwetware.org/images/0/05/2012.arjunan.chapter.landes.bioscience.pdf pdf]
*Arjunan, S. N. V., Dhar, P. K. and Tomita, M. (editors). [http://www.landesbioscience.com/books/iu/id/953/?nocache=2071954650 E-Cell System: Basic Concepts and Applications]. Landes Bioscience and Springer Science+Business Media.
*'''Arjunan, S. N. V.''', Dhar, P. K. and Tomita, M. (editors). (2013). [https://link.springer.com/book/10.1007%2F978-1-4614-6157-9 E-Cell System: Basic Concepts and Applications]. Landes Bioscience and Springer Science+Business Media.


==Contact==
==Contact==
Satya Nanda Vel Arjunan <br>
Satya Nanda Vel Arjunan <br>
satya.arjunan@[].com [gmail] <br>
satya.arjunan@[].com [gmail] <br>
Laboratory for Biochemical Simulation <br>
 
RIKEN Quantitative Biology Center <br>
OLABB, Osaka University <br>
6-2-3, Furuedai, Suita <br>
Osaka 565-0874, JAPAN <br>
Phone: +81-6-6155-0111 <br>
http://www.qbic.riken.jp/english/index.html


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Latest revision as of 14:39, 13 February 2024


Background

I completed my PhD in Systems Biology at the Institute for Advanced Biosciences, Keio University in 2009. My thesis can be found here. I developed a stochastic particle simulation method, called Spatiocyte, with applications in bacterial division site placement control. I am also a member of the E-Cell Project. In the past, I have worked on protein secondary structure prediction and distributed parallel computing. I completed my MSc in Computer Science and BEng in Electronics Engineering at Universiti Teknologi Malaysia.

At present, I am a Senior Scientific Software Engineer at the Victor Chang Cardiac Research Institute in Sydney and a Visiting Scientist at the RIKEN Center for Biosystems Dynamics Research in Osaka.

Journal Publications

My Google Scholar page can be found here.

Books and Book Chapters

Contact

Satya Nanda Vel Arjunan
satya.arjunan@[].com [gmail]


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