Javascript must be enabled to continue!
A method to estimate the cellular composition of the mouse brain from heterogeneous datasets
View through CrossRef
The mouse brain contains a rich diversity of inhibitory neuron types that have been characterized by their patterns of gene expression. However, it is still unclear how these cell types are distributed across the mouse brain. We developed a computational method to estimate the densities of different inhibitory neuron types across the mouse brain. Our method allows the unbiased integration of diverse and disparate datasets into one framework to predict inhibitory neuron densities for uncharted brain regions. We constrained our estimates based on previously computed brain-wide neuron densities, gene expression data from
in situ
hybridization image stacks together with a wide range of values reported in the literature. Using constrained optimization, we derived coherent estimates of cell densities for the different inhibitory neuron types. We estimate that 20.3% of all neurons in the mouse brain are inhibitory. Among all inhibitory neurons, 18% predominantly express parvalbumin (PV), 16% express somatostatin (SST), 3% express vasoactive intestinal peptide (VIP), and the remainder 63% belong to the residual GABAergic population. We find that our density estimations improve as more literature values are integrated. Our pipeline is extensible, allowing new cell types or data to be integrated as they become available. The data, algorithms, software, and results of our pipeline are publicly available and update the Blue Brain Cell Atlas. This work therefore leverages the research community to collectively converge on the numbers of each cell type in each brain region.
Public Library of Science (PLoS)
Title: A method to estimate the cellular composition of the mouse brain from heterogeneous datasets
Description:
The mouse brain contains a rich diversity of inhibitory neuron types that have been characterized by their patterns of gene expression.
However, it is still unclear how these cell types are distributed across the mouse brain.
We developed a computational method to estimate the densities of different inhibitory neuron types across the mouse brain.
Our method allows the unbiased integration of diverse and disparate datasets into one framework to predict inhibitory neuron densities for uncharted brain regions.
We constrained our estimates based on previously computed brain-wide neuron densities, gene expression data from
in situ
hybridization image stacks together with a wide range of values reported in the literature.
Using constrained optimization, we derived coherent estimates of cell densities for the different inhibitory neuron types.
We estimate that 20.
3% of all neurons in the mouse brain are inhibitory.
Among all inhibitory neurons, 18% predominantly express parvalbumin (PV), 16% express somatostatin (SST), 3% express vasoactive intestinal peptide (VIP), and the remainder 63% belong to the residual GABAergic population.
We find that our density estimations improve as more literature values are integrated.
Our pipeline is extensible, allowing new cell types or data to be integrated as they become available.
The data, algorithms, software, and results of our pipeline are publicly available and update the Blue Brain Cell Atlas.
This work therefore leverages the research community to collectively converge on the numbers of each cell type in each brain region.
Related Results
Brain Organoids, the Path Forward?
Brain Organoids, the Path Forward?
Photo by Maxim Berg on Unsplash
INTRODUCTION
The brain is one of the most foundational parts of being human, and we are still learning about what makes humans unique. Advancements ...
[RETRACTED] Gro-X Brain Reviews - Is Gro-X Brain A Scam? v1
[RETRACTED] Gro-X Brain Reviews - Is Gro-X Brain A Scam? v1
[RETRACTED]➢Item Name - Gro-X Brain➢ Creation - Natural Organic Compound➢ Incidental Effects - NA➢ Accessibility - Online➢ Rating - ⭐⭐⭐⭐⭐➢ Click Here To Visit - Official Website - ...
A method to estimate the cellular composition of the mouse brain from heterogeneous datasets
A method to estimate the cellular composition of the mouse brain from heterogeneous datasets
Abstract
The mouse brain contains a rich diversity of inhibitory neuron types that have been characterized by their patterns of gene expression. ...
Studies on vascular cell heterogeneity
Studies on vascular cell heterogeneity
<p dir="ltr">Vascular endothelial cells (ECs) and pericytes are core components of the vascular system, and their organ-specific and species-specific heterogeneity is of grea...
Studies on vascular cell heterogeneity
Studies on vascular cell heterogeneity
<p dir="ltr">Vascular endothelial cells (ECs) and pericytes are core components of the vascular system, and their organ-specific and species-specific heterogeneity is of grea...
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Abstarct
Introduction
Isolated brain hydatid disease (BHD) is an extremely rare form of echinococcosis. A prompt and timely diagnosis is a crucial step in disease management. This ...
Surfactant Protein A Attenuates Generalized and Localized Neuroinflammation In Neonatal Mice
Surfactant Protein A Attenuates Generalized and Localized Neuroinflammation In Neonatal Mice
Abstract
Background: Surfactant protein A (SP-A) has important roles in innate immunity, attenuation of pulmonary inflammation and modulation of extrapulmonary inflammatio...
A comprehensive mouse brain acetylome-the cellular-specific distribution of acetylated brain proteins
A comprehensive mouse brain acetylome-the cellular-specific distribution of acetylated brain proteins
Nε-lysine acetylation is a reversible posttranslational modification (PTM) involved in multiple physiological functions. Genetic and animal studies have documented the critical rol...

