most citedA one-dimensional Lattice Boltzmann method for modeling the dynamic pole-to-pole oscillations of Min proteins for determining the position of the midcell division plane

4 citations · 6 across the 4 of their papers we have counts for

collaborators

4 papers

physics.bio-ph20042 cited

Modeling of the dynamic pole-to-pole oscillations of the min proteins in bacterial cell division: The effect of an external field

Charin Modchang, Paisan Kanthang, Wannapong Triampo +4

One of the most important steps in the developmental process of the bacteria cell at the cellular level is the determination of the middle of the cell and the proper placement of t…

physics.bio-ph2004

Effects of Static Magnetic Field on Growth of Leptospire, Leptospira interrogans serovar canicola: Immunoreactivity and Cell Division

Wannapong Triampo, Galayanee Doungchawee, Darapond Triampo +2

The effects of the exposure of the bacterium, Leptospira interrogans serovar canicola to a constant magnetic field with magnetic flux density from a permanent ferrite magnet = 140…

q-bio.SC2004

The dynamics of the min proteins of Escherichia coli under the constant external fields

Paisan Kanthang, Waipot Ngamsaad, Charin Modchang +4

In E. coli the determination of the middle of the cell and the proper placement of the septum is essential to the division of the cell. This step depends on the proteins MinC, MinD…

q-bio.QM20044 cited

A one-dimensional Lattice Boltzmann method for modeling the dynamic pole-to-pole oscillations of Min proteins for determining the position of the midcell division plane

Waipot Ngamsaad, Wannapong Triampo, Paisan Kanthang +3

Determining the middle of the bacteria cell and the proper placement of the septum is essential to the division of the bacterial cell. In E. coli, this process depends on the prote…