Transcriptomic experiments are often used in neuroscience to identify candidate genes of interest for further study. However, the lists of genes identified from comparable transcriptomic studies often show limited overlap. One approach to addressing this issue of reproducibility is to combine data from multiple studies in the form of a meta-analysis. Here, we discuss recent work in the field of circadian biology, where transcriptomic meta-analyses have been used to improve candidate gene selection. With the increasing availability of microarray and RNA-Seq data due to deposition in public databases, combined with freely available tools and code, transcriptomic meta-analysis provides an ideal example of how open data can benefit neuroscience...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Circadian oscillations play a fundamental role in many biological processes including cell metabolis...
Transcriptomic experiments are often used in neuroscience to identify candidate genes of interest fo...
Transcriptomic experiments are often used in neuroscience to identify candidate genes of interest fo...
Advances in microarray technology have led to highly complex datasets often addressing similar or re...
The accumulation of public transcriptomic timeseries data enables robust meta-analyses that were not...
The master circadian pacemaker in mammals is located in the suprachiasmatic nuclei (SCN) which regul...
Transcriptomics meta-analysis aims at re-using existing data to derive novel biological hypotheses, ...
Transcriptomics meta-analysis aims at re-using existing data to derive novel biological hypotheses, ...
The circadian clock drives daily rhythms in behavior and physiology, often in anticipation of the co...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Background Most physiological processes in mammals are temporally regulated by means of a master cir...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Circadian oscillations play a fundamental role in many biological processes including cell metabolis...
Transcriptomic experiments are often used in neuroscience to identify candidate genes of interest fo...
Transcriptomic experiments are often used in neuroscience to identify candidate genes of interest fo...
Advances in microarray technology have led to highly complex datasets often addressing similar or re...
The accumulation of public transcriptomic timeseries data enables robust meta-analyses that were not...
The master circadian pacemaker in mammals is located in the suprachiasmatic nuclei (SCN) which regul...
Transcriptomics meta-analysis aims at re-using existing data to derive novel biological hypotheses, ...
Transcriptomics meta-analysis aims at re-using existing data to derive novel biological hypotheses, ...
The circadian clock drives daily rhythms in behavior and physiology, often in anticipation of the co...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Background Most physiological processes in mammals are temporally regulated by means of a master cir...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Genome biology approaches have made enormous contributions to our understanding of biological rhythm...
Circadian oscillations play a fundamental role in many biological processes including cell metabolis...