AbstractApparent controversies exist on whether the persistence length of microtubules depends on its contour length. This issue is particularly challenging from a theoretical point of view due to the tubular structure and strongly anisotropic material property of microtubules. Here we adopt a higher order continuum orthotropic thin shell model to study the flexural behavior of microtubules. Our model overcomes some key limitations of a recent study based on a simplified anisotropic shell model and results in a closed-form solution for the contour-length-dependent persistence length of microtubules, with predictions in excellent agreement with experimental measurements. By studying the ratio between their contour and persistence lengths, we...
Mitotic spindles are mechanical structures that play a critical role in cell division by generating ...
Microtubules are essential structures for cellular organization. They support neuronal processes and...
We use optical trapping to continuously bend an isolated microtubule while simultaneously measuring ...
Quantitative description of cell mechanics has challenged biological scientists for the past two dec...
AbstractMicrotubules are dynamic protein polymers that continuously switch between elongation and ra...
Abstract. Microtubules are long, proteinaceous filaments that perform structural functions in eukary...
Microtubules are highly dynamic biopolymer filaments involved in a wide variety of biological proces...
Microtubules are hollow cylindrical structures that constitute one of the three major classes of cyt...
Microtubules are the least flexible of the cytoskeletal filaments, yet they are occasionally seen to...
We use single-particle tracking to study the elastic properties of single microtubules grafted to a ...
Microtubules, which are flexible biopolymers, can be used for nanotechnology applications (e.g., nan...
The aim of this paper was to develop a structural mechanics (SM) model for the microtubules (MTs) in...
Length-dependent flexural rigidity (FR) is observed experimentally for microtubules (MTs) subjected ...
Microtubules are rigid cytoskeletal filaments, and their mechanics affect cell morphology and cellul...
AbstractMicrotubules are hollow cylindrical polymers of the protein tubulin that play a number of im...
Mitotic spindles are mechanical structures that play a critical role in cell division by generating ...
Microtubules are essential structures for cellular organization. They support neuronal processes and...
We use optical trapping to continuously bend an isolated microtubule while simultaneously measuring ...
Quantitative description of cell mechanics has challenged biological scientists for the past two dec...
AbstractMicrotubules are dynamic protein polymers that continuously switch between elongation and ra...
Abstract. Microtubules are long, proteinaceous filaments that perform structural functions in eukary...
Microtubules are highly dynamic biopolymer filaments involved in a wide variety of biological proces...
Microtubules are hollow cylindrical structures that constitute one of the three major classes of cyt...
Microtubules are the least flexible of the cytoskeletal filaments, yet they are occasionally seen to...
We use single-particle tracking to study the elastic properties of single microtubules grafted to a ...
Microtubules, which are flexible biopolymers, can be used for nanotechnology applications (e.g., nan...
The aim of this paper was to develop a structural mechanics (SM) model for the microtubules (MTs) in...
Length-dependent flexural rigidity (FR) is observed experimentally for microtubules (MTs) subjected ...
Microtubules are rigid cytoskeletal filaments, and their mechanics affect cell morphology and cellul...
AbstractMicrotubules are hollow cylindrical polymers of the protein tubulin that play a number of im...
Mitotic spindles are mechanical structures that play a critical role in cell division by generating ...
Microtubules are essential structures for cellular organization. They support neuronal processes and...
We use optical trapping to continuously bend an isolated microtubule while simultaneously measuring ...