Background The exponential growth of biological data has given rise to new and difficult challenges. Because large data is often dealt with, it is inefficient to infer from each individual characteristics of a given dataset. Bioinformaticists are developing quantitative techniques to analyze and interpret key data properties. Graph algorithms can provide powerful and intuitive insight on such properties [1]. Using this approach, we collect biological data from transcriptomic and protein-protein interaction (PPI) sources. These data can be represented as a correlation matrix, where the rows are the vertices and the columns are the edges. We will analyze these graphs, and describe their differing structural characteristics. Materials and me...
This thesis focuses on two aspects of high throughput technologies, i.e. data storage and data analy...
Biological studies across all omics elds generate vast amounts of data. To understand these complex ...
peer reviewedThe analysis and interpretation of relationships between biological molecules, networks...
Graph-based methods used in the analysis of DNA microarray technology can be powerful tools in the e...
Biological data derived from high-throughput microarrays can be transformed into finite, simple, und...
Abstract Results of high throughput experiments can be challenging to interpret. Current approaches ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Molecular biology has entered an era of systematic and automated experimentation. High-throughput te...
The explosive growth in the rate of data generation in recent years threatens to outpace the growth ...
This thesis focuses on two aspects of high throughput technologies, i.e. data storage and data analy...
High-throughput experimental protocols have revealed thousands of relationships amongst genes and pr...
Biological data are inherently interconnected: protein sequences are connected to their annotations,...
Motivation: The last few years have seen the advent of high-throughput technologies to analyze vario...
University of Minnesota Ph.D. dissertation. March 2011. Major: Computer science. Advisor: Rui Kuang,...
Abstract Results of high throughput experiments can be challenging to interpret. Curre...
This thesis focuses on two aspects of high throughput technologies, i.e. data storage and data analy...
Biological studies across all omics elds generate vast amounts of data. To understand these complex ...
peer reviewedThe analysis and interpretation of relationships between biological molecules, networks...
Graph-based methods used in the analysis of DNA microarray technology can be powerful tools in the e...
Biological data derived from high-throughput microarrays can be transformed into finite, simple, und...
Abstract Results of high throughput experiments can be challenging to interpret. Current approaches ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Molecular biology has entered an era of systematic and automated experimentation. High-throughput te...
The explosive growth in the rate of data generation in recent years threatens to outpace the growth ...
This thesis focuses on two aspects of high throughput technologies, i.e. data storage and data analy...
High-throughput experimental protocols have revealed thousands of relationships amongst genes and pr...
Biological data are inherently interconnected: protein sequences are connected to their annotations,...
Motivation: The last few years have seen the advent of high-throughput technologies to analyze vario...
University of Minnesota Ph.D. dissertation. March 2011. Major: Computer science. Advisor: Rui Kuang,...
Abstract Results of high throughput experiments can be challenging to interpret. Curre...
This thesis focuses on two aspects of high throughput technologies, i.e. data storage and data analy...
Biological studies across all omics elds generate vast amounts of data. To understand these complex ...
peer reviewedThe analysis and interpretation of relationships between biological molecules, networks...