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James J Tronolone

Showing results (1-10 of 14) with videos related to

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Advanced Functional Materials|May 17, 2021
Engineering new microvascular networks on-chip: ingredients, assembly, and best practicesJames J Tronolone, Abhishek Jain
Biorxiv : the Preprint Server for Biology|January 30, 2023
AngioMT: An in silico platform for digital sensing of oxygen transport through heterogenous microvascular networksTanmay Mathur, James J Tronolone, Abhishek Jain
Journal of the American Heart Association|November 8, 2021
Comparative Analysis of Blood-Derived Endothelial Cells for Designing Next-Generation Personalized Organ-on-ChipsTanmay Mathur, James J Tronolone, Abhishek Jain
Advanced Biology|February 24, 2024
Engineering Lymphangiogenesis-On-Chip: The Independent and Cooperative Regulation by Biochemical Factors, Gradients, and Interstitial Fluid FlowJames J Tronolone, Nadin Mohamed, Abhishek Jain
Plos One|May 15, 2024
AngioMT: A MATLAB based 2D image-to-physics tool to predict oxygen transport in vascularized microphysiological systemsTanmay Mathur, James J Tronolone, Abhishek Jain
Biomedical Microdevices|April 15, 2021
Pumpless, modular, microphysiological systems enabling tunable perfusion for long-term cultivation of endothelialized lumensJames J Tronolone, Johnny Lam, Anant Agrawal, et al.
Biorxiv : the Preprint Server for Biology|January 30, 2023
Evaluation of the morphological and biological functions of vascularized microphysiological systems with supervised machine learningJames J Tronolone, Tanmay Mathur, Christopher P Chaftari, et al.
Annals of Biomedical Engineering|March 13, 2023
Evaluation of the Morphological and Biological Functions of Vascularized Microphysiological Systems with Supervised Machine LearningJames J Tronolone, Tanmay Mathur, Christopher P Chaftari, et al.
Bioengineering & Translational Medicine|November 29, 2023
Machine learning chained neural network analysis of oxygen transport amplifies the physiological relevance of vascularized microphysiological systemsJames J Tronolone, Tanmay Mathur, Christopher P Chaftari, et al.
Current Protocols|November 21, 2024
Engineering and Evaluating Vascularized Organotypic Spheroids On-ChipJames J Tronolone, Nadin Mohamed, Christopher P Chaftari, et al.
Pageof 2

Showing results (1-10 of 14) with videos related to

Sort By:
Pageof 2
Advanced Functional Materials|May 17, 2021
Engineering new microvascular networks on-chip: ingredients, assembly, and best practicesJames J Tronolone, Abhishek Jain
Biorxiv : the Preprint Server for Biology|January 30, 2023
AngioMT: An in silico platform for digital sensing of oxygen transport through heterogenous microvascular networksTanmay Mathur, James J Tronolone, Abhishek Jain
Journal of the American Heart Association|November 8, 2021
Comparative Analysis of Blood-Derived Endothelial Cells for Designing Next-Generation Personalized Organ-on-ChipsTanmay Mathur, James J Tronolone, Abhishek Jain
Advanced Biology|February 24, 2024
Engineering Lymphangiogenesis-On-Chip: The Independent and Cooperative Regulation by Biochemical Factors, Gradients, and Interstitial Fluid FlowJames J Tronolone, Nadin Mohamed, Abhishek Jain
Plos One|May 15, 2024
AngioMT: A MATLAB based 2D image-to-physics tool to predict oxygen transport in vascularized microphysiological systemsTanmay Mathur, James J Tronolone, Abhishek Jain
Biomedical Microdevices|April 15, 2021
Pumpless, modular, microphysiological systems enabling tunable perfusion for long-term cultivation of endothelialized lumensJames J Tronolone, Johnny Lam, Anant Agrawal, et al.
Biorxiv : the Preprint Server for Biology|January 30, 2023
Evaluation of the morphological and biological functions of vascularized microphysiological systems with supervised machine learningJames J Tronolone, Tanmay Mathur, Christopher P Chaftari, et al.
Annals of Biomedical Engineering|March 13, 2023
Evaluation of the Morphological and Biological Functions of Vascularized Microphysiological Systems with Supervised Machine LearningJames J Tronolone, Tanmay Mathur, Christopher P Chaftari, et al.
Bioengineering & Translational Medicine|November 29, 2023
Machine learning chained neural network analysis of oxygen transport amplifies the physiological relevance of vascularized microphysiological systemsJames J Tronolone, Tanmay Mathur, Christopher P Chaftari, et al.
Current Protocols|November 21, 2024
Engineering and Evaluating Vascularized Organotypic Spheroids On-ChipJames J Tronolone, Nadin Mohamed, Christopher P Chaftari, et al.
Pageof 2