subject: Biomedical Engineering
10.4231/MBPK-D277
Matthew C Pharris , Tamara L Kinzer-Ursem
03/11/2019
This model uses a specialized rule-based syntax in MCell 3.3 to model the twelve-subunit CaMKII holoenzyme without inducing combinatorial explosion. The model allows us to explore the regulation of CaMKII activation and autophosphorylation.
Biomedical Engineering Calmodulin Computational Modeling Neuroscience Protein Signaling
10.4231/MV0Z-8Z57
Matthew C Pharris , Tamara L Kinzer-Ursem
07/29/2019
This model uses a specialized rule-based syntax in MCell 3.3 to model the twelve-subunit CaMKII holoenzyme without inducing combinatorial explosion. The model allows us to explore the regulation of CaMKII activation and autophosphorylation.
Biomedical Engineering Calcium Calmodulin Computational Modeling Kinase Neuroscience Protein Signaling Rule-Based Modeling Synaptic Plasticity
10.4231/R75T3HHJ
Donald Ready , Taylor Zigon , Vikki Weake , Walter Leon-Salas , Xinping Chen
06/23/2017
This publication contains the electronic files required to build an optical stimulator for fruit flies. The stimulator uses red and blue light-emitting diodes (LEDs) and an embedded computer to generate light at different power density levels.
Biomedical Engineering Drosophila Embedded System Engineering Technology Light-Emitting Diode Open Hardware Optical Stimulation
10.4231/R7H41PP9
Joseph Wallace , Matthew R Allen , Max Hammond , Thomas Siegmund
06/26/2018
This publication contains a finite element model for the analysis of single bone trabeculae under consideration of bone tissue heterogeneity and tissue anisotropy.
Biomedical Engineering Bone Finite Element Analysis Mechanical Engineering
10.4231/R7222RS4
Donald Ready , Taylor Zigon , Vikki Weake , Walter Leon-Salas , Xinping Chen
06/23/2017
This publication contains the software required to build an optical stimulator for fruit flies. The stimulator uses red and blue light-emitting diodes (LEDs) and an embedded computer to generate light at different power density levels.
Biomedical Engineering Drosophila Embedded Software Embedded System Engineering Technology Optical Stimulation Python Code
10.4231/R7PR7T1G
Haiguang Wen , Junxing Shi , Wei Chen , Zhongming Liu
06/29/2017
Deep residual neural network is a brain-inspired computational model. 50 layers of neuron-like computational units are stacked into a bottom-up hierarchy. Features encoded at units are visualized for intuitively understanding the internal...
Biomedical Engineering deep learning natural vision Neural encoding Object Recognition
10.4231/R73N21JG
Donald Ready , Taylor Zigon , Vikki Weake , Walter Leon-Salas , Xinping Chen
06/27/2017
This publication contains the electronic files required to build an optical stimulator for fruit flies. The stimulator uses red and blue light-emitting diodes (LEDs) and an embedded computer to generate light at different power density levels.
Biomedical Engineering Drosophila Embedded Software Embedded System Engineering Technology Optical Stimulation Python Code
10.4231/R7ST7N11
Matthew C Pharris , Tamara L. Kinzer-Ursem
02/16/2018
Code for the basic 4-state competitive binding model that builds on previous work by incorporating an additional competitor for calmodulin along with a number of downstream proteins. Also include is sample code for global sensitivity analysis...
10.4231/R7Q81B9G
Julia Fraseur , Tamara L Kinzer-Ursem
06/01/2018
Coomassie-stained gels used in semi-quantitative analysis of purified calcineurin from calmodulin Sepharose resins.
10.4231/R7CC0XX4
Joseph Wallace , Matthew R Allen , Max A Hammond , Thomas Siegmund
06/26/2018
This publication contains a finite element model for the analysis of bone core under consideration of bone tissue heterogeneity and tissue anisotropy.
Biomedical Engineering Bone Finite Element Analysis Mechanical Engineering
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