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Biorxiv : the Preprint Server for Biology
|
December 22, 2025
The circadian clock regulates scavenging of fluid-borne substrates by brain border-associated macrophages
Helena J Barr, Sydney K Caldwell, Justin M Reimertz, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
February 18, 2016
The adaptive immune system restrains Alzheimer's disease pathogenesis by modulating microglial function
Samuel E Marsh, Edsel M Abud, Anita Lakatos, et al.
Neuron
|
December 22, 2017
Activation of the STING-Dependent Type I Interferon Response Reduces Microglial Reactivity and Neuroinflammation
Vidhu Mathur, Ritwik Burai, Ryan T Vest, et al.
Immunity
|
November 26, 2018
Single-Cell RNA Sequencing of Microglia throughout the Mouse Lifespan and in the Injured Brain Reveals Complex Cell-State Changes
Timothy R Hammond, Connor Dufort, Lasse Dissing-Olesen, et al.
Biorxiv : the Preprint Server for Biology
|
December 15, 2025
Early-life stromal niches orchestrate B lymphopoiesis at the brain's borders
Alec J Walker, Theodore M Fisher, Sydney K Caldwell, et al.
Cell
|
September 29, 2023
Early Alzheimer's disease pathology in human cortex involves transient cell states
Vahid Gazestani, Tushar Kamath, Naeem M Nadaf, et al.
Nature Immunology
|
July 27, 2023
Exposure of iPSC-derived human microglia to brain substrates enables the generation and manipulation of diverse transcriptional states in vitro
Michael-John Dolan, Martine Therrien, Saša Jereb, et al.
Nature Neuroscience
|
March 9, 2022
Dissection of artifactual and confounding glial signatures by single-cell sequencing of mouse and human brain
Samuel E Marsh, Alec J Walker, Tushar Kamath, et al.
Nature Neuroscience
|
December 13, 2024
Author Correction: Dissection of artifactual and confounding glial signatures by single-cell sequencing of mouse and human brain
Samuel E Marsh, Alec J Walker, Tushar Kamath, et al.
Neuron
|
April 21, 2017
iPSC-Derived Human Microglia-like Cells to Study Neurological Diseases
Edsel M Abud, Ricardo N Ramirez, Eric S Martinez, et al.
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Showing results (11-20 of 22) with videos related to
Sort By:
Page
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Biorxiv : the Preprint Server for Biology
|
December 22, 2025
The circadian clock regulates scavenging of fluid-borne substrates by brain border-associated macrophages
Helena J Barr, Sydney K Caldwell, Justin M Reimertz, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
February 18, 2016
The adaptive immune system restrains Alzheimer's disease pathogenesis by modulating microglial function
Samuel E Marsh, Edsel M Abud, Anita Lakatos, et al.
Neuron
|
December 22, 2017
Activation of the STING-Dependent Type I Interferon Response Reduces Microglial Reactivity and Neuroinflammation
Vidhu Mathur, Ritwik Burai, Ryan T Vest, et al.
Immunity
|
November 26, 2018
Single-Cell RNA Sequencing of Microglia throughout the Mouse Lifespan and in the Injured Brain Reveals Complex Cell-State Changes
Timothy R Hammond, Connor Dufort, Lasse Dissing-Olesen, et al.
Biorxiv : the Preprint Server for Biology
|
December 15, 2025
Early-life stromal niches orchestrate B lymphopoiesis at the brain's borders
Alec J Walker, Theodore M Fisher, Sydney K Caldwell, et al.
Cell
|
September 29, 2023
Early Alzheimer's disease pathology in human cortex involves transient cell states
Vahid Gazestani, Tushar Kamath, Naeem M Nadaf, et al.
Nature Immunology
|
July 27, 2023
Exposure of iPSC-derived human microglia to brain substrates enables the generation and manipulation of diverse transcriptional states in vitro
Michael-John Dolan, Martine Therrien, Saša Jereb, et al.
Nature Neuroscience
|
March 9, 2022
Dissection of artifactual and confounding glial signatures by single-cell sequencing of mouse and human brain
Samuel E Marsh, Alec J Walker, Tushar Kamath, et al.
Nature Neuroscience
|
December 13, 2024
Author Correction: Dissection of artifactual and confounding glial signatures by single-cell sequencing of mouse and human brain
Samuel E Marsh, Alec J Walker, Tushar Kamath, et al.
Neuron
|
April 21, 2017
iPSC-Derived Human Microglia-like Cells to Study Neurological Diseases
Edsel M Abud, Ricardo N Ramirez, Eric S Martinez, et al.
Page
of 3