Summary: Microglial dynamics and interactions with nearby radial glia can be visualized in real time in embryonic mouse brain tissue using time-lapse imaging in slice culture. This live-cell imaging protocol can be used to study the morphology and activities of a number of cell types across a variety of brain regions and developmental time points. The advantage of this brain slice culture model is that it allows for the visualization of cellular interactions and movements in real time, especially across embryogenesis.For complete details on the use and execution of this protocol, please refer to Rosin et al. (2021)
Summary: Due to the internal nature of mammalian development, much of the research performed is of a...
Brain development, and indeed development in general, is complex. Correct development requires tight...
The mammalian central nervous system (CNS) develops from multipotent progenitor cells, which prolife...
This protocol details a method for imaging organotypic slice cultures from the mouse hippocampus. Th...
This protocol details a method for imaging organotypic slice cultures from the mouse hippocampus. Th...
SYNOPSIS. Many studies suggest that migratory guidance cues within the developing brain are diverse ...
© 2020 The Authors. Embryonic development is a complex process that is unamenable to direct observat...
© 2020 The Authors. Embryonic development is a complex process that is unamenable to direct observat...
Microglia are the resident immune cells of the central nervous system (CNS). In the last year, the i...
This protocol details a method to establish organotypic slice cultures from mouse hippocampus, which...
BACKGROUND: Organotypic brain slice culturing techniques are extensively used in a wide range of exp...
This protocol details a method to establish organotypic slice cultures from mouse hippocampus, which...
SummaryThe cell-cycle transition from G1 to S phase has been difficult to visualize. We have harness...
<p><b>A–E</b>) Myelinating cultures generated from a mix of wild type/beta-actin mice were visualise...
The mammalian central nervous system (CNS) develops from multipotent progenitor cells, which prolife...
Summary: Due to the internal nature of mammalian development, much of the research performed is of a...
Brain development, and indeed development in general, is complex. Correct development requires tight...
The mammalian central nervous system (CNS) develops from multipotent progenitor cells, which prolife...
This protocol details a method for imaging organotypic slice cultures from the mouse hippocampus. Th...
This protocol details a method for imaging organotypic slice cultures from the mouse hippocampus. Th...
SYNOPSIS. Many studies suggest that migratory guidance cues within the developing brain are diverse ...
© 2020 The Authors. Embryonic development is a complex process that is unamenable to direct observat...
© 2020 The Authors. Embryonic development is a complex process that is unamenable to direct observat...
Microglia are the resident immune cells of the central nervous system (CNS). In the last year, the i...
This protocol details a method to establish organotypic slice cultures from mouse hippocampus, which...
BACKGROUND: Organotypic brain slice culturing techniques are extensively used in a wide range of exp...
This protocol details a method to establish organotypic slice cultures from mouse hippocampus, which...
SummaryThe cell-cycle transition from G1 to S phase has been difficult to visualize. We have harness...
<p><b>A–E</b>) Myelinating cultures generated from a mix of wild type/beta-actin mice were visualise...
The mammalian central nervous system (CNS) develops from multipotent progenitor cells, which prolife...
Summary: Due to the internal nature of mammalian development, much of the research performed is of a...
Brain development, and indeed development in general, is complex. Correct development requires tight...
The mammalian central nervous system (CNS) develops from multipotent progenitor cells, which prolife...