Despite intensive research efforts over the past years, regeneration of injured axons in the central nervous system remains elusive. In the quest for neurostimulatory agents that promote regeneration, well-defined models and analysis methods are required. Tissue explant cultures closely resemble the in vivo situation, making them ideal to study the effect of compounds on the neuro-glial network. This study reports the optimization of an explant culture technique using retinas of neonatal mice and the development of an analysis script that allows for rapid and automated analysis of neurite outgrowth from these explants. The key features of this script (i.e., local thresholding and form selection) allow for swift and unbiased detection of neu...
Retinal flatmounts were cultured under recovery-promoting conditions with (B,D) and without (A,C) th...
The inability of neurites to grow and restore neural connections is common to many neurological diso...
The study aims to validate mouse retinal explants for use as an efficient tool to investigate neurop...
Despite intensive research efforts over the past years, regeneration of injured axons in the central...
This protocol outlines the preparation of embryonic mouse retinal explants, which provides an effect...
Background: Neuronal outgrowth assays using organotypic explant cultures are commonly utilized to st...
<p><i>Purpose</i>: To establish a practical research tool for studying the pathogenesis of retinal g...
Purpose: Retinal explant cultures provide simplified systems where the functions of the retina and t...
Purpose Selective inhibition of Rho-associated kinase (ROCK) is suggested as an efficient strategy t...
An automated device that recognizes and quantitates neurite outgrowth from goldfish retinal explants...
The assessment of neurite-promoting activity of growth factors and neurotrophins in vitro is usually...
Chemicals that specifically alter human neurite outgrowth pose a hazard for the development of the n...
In this study, we describe a simple and reliable method to study neuroprotective effects in living a...
Chemicals that specifically inhibit human neurite outgrowth pose a hazard to the developing nervous ...
The retina is the tissue responsible for light detection, in which retinal neurons convert light ene...
Retinal flatmounts were cultured under recovery-promoting conditions with (B,D) and without (A,C) th...
The inability of neurites to grow and restore neural connections is common to many neurological diso...
The study aims to validate mouse retinal explants for use as an efficient tool to investigate neurop...
Despite intensive research efforts over the past years, regeneration of injured axons in the central...
This protocol outlines the preparation of embryonic mouse retinal explants, which provides an effect...
Background: Neuronal outgrowth assays using organotypic explant cultures are commonly utilized to st...
<p><i>Purpose</i>: To establish a practical research tool for studying the pathogenesis of retinal g...
Purpose: Retinal explant cultures provide simplified systems where the functions of the retina and t...
Purpose Selective inhibition of Rho-associated kinase (ROCK) is suggested as an efficient strategy t...
An automated device that recognizes and quantitates neurite outgrowth from goldfish retinal explants...
The assessment of neurite-promoting activity of growth factors and neurotrophins in vitro is usually...
Chemicals that specifically alter human neurite outgrowth pose a hazard for the development of the n...
In this study, we describe a simple and reliable method to study neuroprotective effects in living a...
Chemicals that specifically inhibit human neurite outgrowth pose a hazard to the developing nervous ...
The retina is the tissue responsible for light detection, in which retinal neurons convert light ene...
Retinal flatmounts were cultured under recovery-promoting conditions with (B,D) and without (A,C) th...
The inability of neurites to grow and restore neural connections is common to many neurological diso...
The study aims to validate mouse retinal explants for use as an efficient tool to investigate neurop...