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Richard D. BerlinCenter for Cell Analysis & Modeling › University of Connecticut Health Center

Richard D. Berlin. Center for Cell Analysis and Modeling. 16th Annual Virtual Cell Short Course. June 22-24, 2015. The Richard D. Berlin Center for Cell Analysis and Modeling (CCAM),. At the University of Connecticut Health Center, is developing new approaches for in vivo measurements and manipulation of molecular events within the cell, and new computational approaches to organize such data into quantitative models. Model - develop new methods for spatial modeling of biological systems.

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Richard D. BerlinCenter for Cell Analysis & Modeling › University of Connecticut Health Center | compbiogrid.org Reviews
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Richard D. Berlin. Center for Cell Analysis and Modeling. 16th Annual Virtual Cell Short Course. June 22-24, 2015. The Richard D. Berlin Center for Cell Analysis and Modeling (CCAM),. At the University of Connecticut Health Center, is developing new approaches for in vivo measurements and manipulation of molecular events within the cell, and new computational approaches to organize such data into quantitative models. Model - develop new methods for spatial modeling of biological systems.
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Richard D. BerlinCenter for Cell Analysis & Modeling › University of Connecticut Health Center | compbiogrid.org Reviews

https://compbiogrid.org

Richard D. Berlin. Center for Cell Analysis and Modeling. 16th Annual Virtual Cell Short Course. June 22-24, 2015. The Richard D. Berlin Center for Cell Analysis and Modeling (CCAM),. At the University of Connecticut Health Center, is developing new approaches for in vivo measurements and manipulation of molecular events within the cell, and new computational approaches to organize such data into quantitative models. Model - develop new methods for spatial modeling of biological systems.

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Richard D. BerlinCenter for Cell Analysis & Modeling › UConn Health

http://www.compbiogrid.org/index.html

Richard D. Berlin. Center for Cell Analysis and Modeling. The Richard D. Berlin Center for Cell Analysis and Modeling (CCAM),. At UConn Health, is developing new approaches for in vivo measurements and manipulation of molecular events within the cell, and new computational approaches to organize such data into quantitative models. To investigate the relationships between experimental and compuational worlds, we use a tripartite approach described as:. For nonlinear, confocal, and widefield microscopy.

2

Richard D. BerlinCenter for Cell Analysis & Modeling › UConn Health

http://www.compbiogrid.org/microscopy_facility/microscopy_facility.html

Richard D. Berlin. Center for Cell Analysis and Modeling. Software and Additional Equipment. This is a combined confocal/FCS/NLO system, mounted on an inverted Axio Observer Z1. The 780 employs the spectral 32-channel QUASAR GaAsp detector allowing for spectral imaging, maximum sensitivity photon counting and Fluorescence Correlation Spectroscopy (FCS) as well as two adjacent PMT's. This system is equiped with the following laser lines:. 458, 488, and 514. Diode Pumped Solid State (DPSS). Spinning Disk C...

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Richard D. BerlinCenter for Cell Analysis & Modeling › UConn Health

http://www.compbiogrid.org/resources/ccam_software.html

Richard D. Berlin. Center for Cell Analysis and Modeling. CCAM Software is produced by the faculty and staff of CCAM. Our flagship application, the Virtual Cell. Serves as a National Resource for Cell Analysis and Modeling. The software below ranges from applications for analyzing FRAP and other image data, (Virtual FRAP Tool, Microfilament Detector, 5D Visualization MicroApp) to tools for generating models (BioNetGen, SyBiL) and model parameters (Gfit). User Guide and Tutorial.

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Richard D. BerlinCenter for Cell Analysis & Modeling › UConn Health

http://www.compbiogrid.org/resources/ccam_resources.html

Richard D. Berlin. Center for Cell Analysis and Modeling.

5

Richard D. BerlinCenter for Cell Analysis & Modeling › UConn Health

http://www.compbiogrid.org/cam/cam.html

Richard D. Berlin. Center for Cell Analysis and Modeling. Cell Analysis and Modeling Training Program. The goals of the Cell Analysis and Modeling Training Program:. Develop a critical mass of trainees and scientists with interests in mathematical modeling and quantitative approaches in cell biology. Develop a diverse group of faculty mentors who will foster professional growth and interactions within the fields of chemistry, biophysics, computer science and the cell biology community.

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Richard D. BerlinCenter for Cell Analysis & Modeling › University of Connecticut Health Center

Richard D. Berlin. Center for Cell Analysis and Modeling. 16th Annual Virtual Cell Short Course. June 22-24, 2015. The Richard D. Berlin Center for Cell Analysis and Modeling (CCAM),. At the University of Connecticut Health Center, is developing new approaches for in vivo measurements and manipulation of molecular events within the cell, and new computational approaches to organize such data into quantitative models. Model - develop new methods for spatial modeling of biological systems.

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