Three-dimensional (3D) reconstruction of a single protein molecule is essential for understanding the relationship between the structural dynamics and functions of the protein. Electron tomography (ET) provides a tool for imaging an individual particle of protein from a series of tilted angles. Individual-particle electron tomography (IPET) provides an approach for reconstructing a 3D density map from a single targeted protein particle (without averaging from different particles of this type of protein), in which the target particle was imaged from a series of tilting angles. However, owing to radiation damage limitations, low-dose images (high noise, and low image contrast) are often challenging to be aligned for 3D reconstruction at inter...
Electron tomography (ET) of biological samples is used to study the organization and the structure o...
<div><p>Electron tomography (ET) of biological samples is used to study the organization and the str...
Knowledge of three-dimensional (3D) structures of each individual particles of asymmetric and flexib...
The dynamic personalities and structural heterogeneity of proteins are essential for proper function...
The dynamic personalities and structural heterogeneity of proteins are essential for proper function...
The dynamic personalities and structural heterogeneity of proteins are essential for proper function...
A single-molecule three-dimensional (3D) structure is essential for understanding the thermal vibrat...
A single-molecule three-dimensional (3D) structure is essential for understanding the thermal vibrat...
<div><p>The dynamic personalities and structural heterogeneity of proteins are essential for proper ...
A single-molecule three-dimensional (3D) structure is essential for understanding the thermal vibrat...
Abstract A single-molecule three-dimensional (3D) structure is essential for understanding the therm...
SummaryCryo-electron microscopy (cryo-EM) is a powerful technique for 3D structure determination of ...
To understand the dynamic structure-function relationship of soft- and biomolecules, the determinati...
To understand the dynamic structure-function relationship of soft- and biomolecules, the determinati...
To understand the dynamic structure-function relationship of soft- and biomolecules, the determinati...
Electron tomography (ET) of biological samples is used to study the organization and the structure o...
<div><p>Electron tomography (ET) of biological samples is used to study the organization and the str...
Knowledge of three-dimensional (3D) structures of each individual particles of asymmetric and flexib...
The dynamic personalities and structural heterogeneity of proteins are essential for proper function...
The dynamic personalities and structural heterogeneity of proteins are essential for proper function...
The dynamic personalities and structural heterogeneity of proteins are essential for proper function...
A single-molecule three-dimensional (3D) structure is essential for understanding the thermal vibrat...
A single-molecule three-dimensional (3D) structure is essential for understanding the thermal vibrat...
<div><p>The dynamic personalities and structural heterogeneity of proteins are essential for proper ...
A single-molecule three-dimensional (3D) structure is essential for understanding the thermal vibrat...
Abstract A single-molecule three-dimensional (3D) structure is essential for understanding the therm...
SummaryCryo-electron microscopy (cryo-EM) is a powerful technique for 3D structure determination of ...
To understand the dynamic structure-function relationship of soft- and biomolecules, the determinati...
To understand the dynamic structure-function relationship of soft- and biomolecules, the determinati...
To understand the dynamic structure-function relationship of soft- and biomolecules, the determinati...
Electron tomography (ET) of biological samples is used to study the organization and the structure o...
<div><p>Electron tomography (ET) of biological samples is used to study the organization and the str...
Knowledge of three-dimensional (3D) structures of each individual particles of asymmetric and flexib...