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Posted:
7 years ago
30 nov. 2017, 11:42 UTC−5
Updated:
7 years ago
26 janv. 2018, 14:34 UTC−5
Hi...as per my knowledge Previous theoretical approaches to understanding effects of electric fields on cells have used partial differential equations such as Laplace's equation and cell models with simple shapes. Here we describe a transport lattice method illustrated by a didactic multicellular system model with irregular shapes. Each elementary membrane region includes local models for passive membrane resistance and capacitance, nonlinear active sources of the resting potential, and a hysteretic model of electroporation.
pcba assembly
Hi...as per my knowledge Previous theoretical approaches to understanding effects of electric fields on cells have used partial differential equations such as Laplace's equation and cell models with simple shapes. Here we describe a transport lattice method illustrated by a didactic multicellular system model with irregular shapes. Each elementary membrane region includes local models for passive membrane resistance and capacitance, nonlinear active sources of the resting potential, and a hysteretic model of electroporation.
[pcba assembly](https://www.7pcb.ca/PCB-Assembly-services/)
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Posted:
7 years ago
14 déc. 2017, 09:50 UTC−5
Updated:
6 years ago
29 juin 2018, 09:44 UTC−4
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Jeff Hiller
COMSOL Employee
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Posted:
7 years ago
14 déc. 2017, 09:54 UTC−5
Hi Melvin,
You can use the "Send Privage Message" button found in the top right corner of each post.
Best,
Jeff
-------------------
Jeff Hiller
Hi Melvin,
You can use the "Send Privage Message" button found in the top right corner of each post.
Best,
Jeff