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These are important components for the formation of lipid bilayers.
Lipid bilayers cannot be seen in a traditional microscope because they are too thin.
In biology a common example is the Lipid bilayer.
The lipid bilayer is very thin compared to its lateral dimensions.
It has two membranes, each a lipid bilayer with associated proteins.
A biological membrane is a form of lipid bilayer.
It is reasonable to describe the lipid bilayer by a mathematical surface.
Another important difference between lipid bilayers and soap bubbles is their relative size.
Lipid bilayers are complicated molecular systems with many degrees of freedom.
Proper interaction with the lipid bilayer may partly explain the phenomenon.
These aggregate processes can also be studied on lipid bilayer constructs.
The plasma membrane is a lipid bilayer with some proteins embedded in it.
This layout has advantages and drawbacks related to the study of lipid bilayers.
The preparation method reveals the proteins embedded in the lipid bilayer.
The cell is surrounded by a cellular membrane composed of a lipid bilayer.
Because lipid bilayers are arranged on the molecular level, this higher resolution has been invaluable.
Integral membrane proteins function when incorporated into a lipid bilayer.
These synthetic systems are called model lipid bilayers.
Phospholipids can form lipid bilayers, a main component of the cell membrane.
It is defined as the event where two lipid bilayers approach each other and then merge to form a single continuous structure.
This has been used, for example, to study the formation of lipid bilayers and their interaction with membrane proteins.
Lipid bilayers of biological membranes however are barriers for ions.
It consists of the lipid bilayer with embedded proteins.
The lipid bilayer is a very difficult structure to study because it is so thin and fragile.
Although lipid bilayers can easily bend, most cannot stretch more than a few percent before rupturing.