A combined analysis of data from a series of literature studies can lead to more reliable results than that based on a single study. A common problem in performing combined analyses of literature microarray gene expression data is that the original raw data are not always available and not always easy to combine in one analysis. We propose an approach that does not require analyzing original raw data, but instead takes literature gene sets derived from (supplementary) tables as input and uses gene co-occurrence in these sets for mapping a co-regulation network. An algorithm for this method was applied to a collection of literature-derived gene sets related to embryonic stem cell (ESC) differentiation. In the resulting network, genes involve...
Abstract Background Recent work has revealed that a core group of transcription factors (TFs) regula...
The differentiation of embryonic stem cells is initiated by a gradual loss of pluripotency-associate...
Pluripotent stem cells are uniquely capable of differentiating into somatic cell derivatives of all ...
A combined analysis of data from a series of literature studies can lead to more reliable results th...
A combined analysis of data from a series of literature studies can lead to more reliable results th...
Stem cell research has potential for a variety of medicinal uses. This thesis investigates the expre...
Gene expression governs cell fate, and is regulated via a complex interplay of transcription factors...
Gene expression governs cell fate, and is regulated via a complex interplay of transcription factors...
Abstract Background Little is known about the genes that drive embryonic stem cell differentiation. ...
In the past few decades, embryonic stem cells (ESCs) were of great interest as a model system for st...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
AbstractStem cell differentiation is governed by extracellular signals that activate intracellular n...
<div><p>Pluripotent stem cells are uniquely capable of differentiating into somatic cell derivatives...
Embryonic stem (ES) cells have high self-renewal capacity and the potential to differentiate into a ...
<div><p>Congenital Heart Disease (CHD) is one of the most common birth defects. Elucidating the mole...
Abstract Background Recent work has revealed that a core group of transcription factors (TFs) regula...
The differentiation of embryonic stem cells is initiated by a gradual loss of pluripotency-associate...
Pluripotent stem cells are uniquely capable of differentiating into somatic cell derivatives of all ...
A combined analysis of data from a series of literature studies can lead to more reliable results th...
A combined analysis of data from a series of literature studies can lead to more reliable results th...
Stem cell research has potential for a variety of medicinal uses. This thesis investigates the expre...
Gene expression governs cell fate, and is regulated via a complex interplay of transcription factors...
Gene expression governs cell fate, and is regulated via a complex interplay of transcription factors...
Abstract Background Little is known about the genes that drive embryonic stem cell differentiation. ...
In the past few decades, embryonic stem cells (ESCs) were of great interest as a model system for st...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
AbstractStem cell differentiation is governed by extracellular signals that activate intracellular n...
<div><p>Pluripotent stem cells are uniquely capable of differentiating into somatic cell derivatives...
Embryonic stem (ES) cells have high self-renewal capacity and the potential to differentiate into a ...
<div><p>Congenital Heart Disease (CHD) is one of the most common birth defects. Elucidating the mole...
Abstract Background Recent work has revealed that a core group of transcription factors (TFs) regula...
The differentiation of embryonic stem cells is initiated by a gradual loss of pluripotency-associate...
Pluripotent stem cells are uniquely capable of differentiating into somatic cell derivatives of all ...