Circular dichroism spectroscopy is an important tool for determining the structural characteristics of biomolecules, particularly the secondary structure of proteins. In this paper we propose a Bayesian model that estimates the covariance structure within a measured spectrum and quantifies the uncertainty associated with the inferred secondary structures and characteristic spectra associated with each secondary structure type. Furthermore, we used tools from Bayesian model selection to determine the best secondary structure classification scheme and illustrate a technique for comparing whether or not two or more measured protein spectra share the same secondary structure. Our findings suggest that it is not possible to identify more than 3 ...
Circular dichroism (CD) spectroscopy is a quick method for measuring data that can be used to determ...
Circular dichroism spectroscopy is a quick method for determining the average secondary structures o...
Circular dichroism (CD) is a spectroscopic technique that is widely used to obtain information about...
Circular dichroism spectroscopy is an important tool for determining the structural characteristics ...
Circular dichroism spectroscopy is a structural biology technique frequently applied to determine th...
Circular dichroism spectroscopy is a structural biology technique frequently applied to determine th...
Abstract Background Circular dichroism spectroscopy i...
Abstract The effects of spectral magnitude on the calculated secondary structures derived from circu...
Circular dichroism (CD) spectroscopy is highly sensitive to the secondary structure (SS) composition...
Circular dichroism spectroscopy is a highly sensitive, but low-resolution technique to study the str...
Circular dichroism (CD) spectroscopy has been a valuable method for the analysis of protein secondar...
Circular dichroism (CD) spectroscopy has been a valuable method for the analysis of protein secondar...
We present here a simple and rapid method to extract good estimates of protein secondary structure c...
We present here a simple and rapid method to extract good estimates of protein secondary structure c...
Circular dichroism (CD) spectroscopy is a quick method for measuring data that can be used to determ...
Circular dichroism (CD) spectroscopy is a quick method for measuring data that can be used to determ...
Circular dichroism spectroscopy is a quick method for determining the average secondary structures o...
Circular dichroism (CD) is a spectroscopic technique that is widely used to obtain information about...
Circular dichroism spectroscopy is an important tool for determining the structural characteristics ...
Circular dichroism spectroscopy is a structural biology technique frequently applied to determine th...
Circular dichroism spectroscopy is a structural biology technique frequently applied to determine th...
Abstract Background Circular dichroism spectroscopy i...
Abstract The effects of spectral magnitude on the calculated secondary structures derived from circu...
Circular dichroism (CD) spectroscopy is highly sensitive to the secondary structure (SS) composition...
Circular dichroism spectroscopy is a highly sensitive, but low-resolution technique to study the str...
Circular dichroism (CD) spectroscopy has been a valuable method for the analysis of protein secondar...
Circular dichroism (CD) spectroscopy has been a valuable method for the analysis of protein secondar...
We present here a simple and rapid method to extract good estimates of protein secondary structure c...
We present here a simple and rapid method to extract good estimates of protein secondary structure c...
Circular dichroism (CD) spectroscopy is a quick method for measuring data that can be used to determ...
Circular dichroism (CD) spectroscopy is a quick method for measuring data that can be used to determ...
Circular dichroism spectroscopy is a quick method for determining the average secondary structures o...
Circular dichroism (CD) is a spectroscopic technique that is widely used to obtain information about...