Molecular dynamics simulations of heterogeneous cell membranes in response to uniaxial membrane stretches at high loading rates
The chemobiomechanical signatures of diseased cells are often distinctively different from that of healthy cells. This mainly arises from cellular structural/compositional alterations induced by disease development or therapeutic molecules. Therapeutic shock waves have the potential to mechanically...
Egile Nagusiak: | Zhang, L, Zhang, Z, Jasa, J, Li, D, Cleveland, R, Negahban, M, Jerusalem, A |
---|---|
Formatua: | Journal article |
Argitaratua: |
Nature Publishing Group
2017
|
Antzeko izenburuak
-
Molecular dynamics simulations of heterogeneous cell membranes in response to uniaxial membrane stretches at high loading rates
nork: Lili Zhang, et al.
Argitaratua: (2017-08-01) -
Molecular dynamics simulation of cell membrane pore sealing
nork: Zhang, L, et al.
Argitaratua: (2019) -
Pneumatic Cell Stretching Chip to Generate Uniaxial Strain Using an Elastomeric Membrane with Ridge Structure
nork: Xu Fang, et al.
Argitaratua: (2022-08-01) -
Molecular dynamics simulations of membrane proteins.
nork: Biggin, P, et al.
Argitaratua: (2008) -
Membrane proteins: molecular dynamics simulations.
nork: Lindahl, E, et al.
Argitaratua: (2008)