AbstractThe long wavelength, low-frequency modes of motion are the relevant motions for understanding the continuum mechanical properties of biomolecules. By examining these low-frequency modes, in the context of a spherical harmonic basis set, we identify four elastic moduli that are required to describe the two-dimensional elastic behavior of capsids. This is in contrast to previous modeling and theoretical studies on elastic shells, which use only the two-dimensional Young's modulus (Y) and the bending modulus (κ) to describe the system. Presumably, the heterogeneity of the structure and the anisotropy of the biomolecular interactions lead to a deviation from the homogeneous, isotropic, linear elastic shell theory. We assign functional r...
Virus capsids and crystalline surfactant vesicles are two examples of self-assembled shells in the n...
AbstractThe current rapid growth in the use of nanosized particles is fueled in part by our increase...
A refined elastic shell model is used to study the effect of high structural heterogeneity on natura...
The long wavelength, low-frequency modes of motion are the relevant motions for understanding the co...
Recent Atomic Force Microscope (AFM) nanoindentation experiments measuring mechanical response of th...
AbstractA series of recent nanoindentation experiments on the protein shells (capsids) of viruses ha...
Viruses are an important subject to biological research. In particular their astonishing ability to ...
Physical properties of capsids of plant and animal viruses are important factors in capsid self-asse...
AbstractThe mechanical properties of viral shells are crucial for viral assembly and infection. To s...
A coarse-grained model is used to study the mechanical response of 35 virus capsids of symmetries T ...
Physical properties of capsids of plant and animal viruses are important factors in capsid self-asse...
AbstractVirus capsids and crystalline surfactant vesicles are two examples of self-assembled shells ...
The elastic properties of capsids of the cowpea chlorotic mottle virus have been examined at pH 4.8 ...
Virus capsids are protein shells which protect the virus genome, and determination of their mechanic...
The nanoindentation response of empty viral capsids is modeled using three-dimensional finite elemen...
Virus capsids and crystalline surfactant vesicles are two examples of self-assembled shells in the n...
AbstractThe current rapid growth in the use of nanosized particles is fueled in part by our increase...
A refined elastic shell model is used to study the effect of high structural heterogeneity on natura...
The long wavelength, low-frequency modes of motion are the relevant motions for understanding the co...
Recent Atomic Force Microscope (AFM) nanoindentation experiments measuring mechanical response of th...
AbstractA series of recent nanoindentation experiments on the protein shells (capsids) of viruses ha...
Viruses are an important subject to biological research. In particular their astonishing ability to ...
Physical properties of capsids of plant and animal viruses are important factors in capsid self-asse...
AbstractThe mechanical properties of viral shells are crucial for viral assembly and infection. To s...
A coarse-grained model is used to study the mechanical response of 35 virus capsids of symmetries T ...
Physical properties of capsids of plant and animal viruses are important factors in capsid self-asse...
AbstractVirus capsids and crystalline surfactant vesicles are two examples of self-assembled shells ...
The elastic properties of capsids of the cowpea chlorotic mottle virus have been examined at pH 4.8 ...
Virus capsids are protein shells which protect the virus genome, and determination of their mechanic...
The nanoindentation response of empty viral capsids is modeled using three-dimensional finite elemen...
Virus capsids and crystalline surfactant vesicles are two examples of self-assembled shells in the n...
AbstractThe current rapid growth in the use of nanosized particles is fueled in part by our increase...
A refined elastic shell model is used to study the effect of high structural heterogeneity on natura...