Dorsal Patterning

Dorsal patterning is the developmental process that establishes and specifies dorsal tissues relative to ventral tissues, helping organize an embryo’s body plan. During embryogenesis, localized signaling centers and gradients of secreted factors, including BMP-related signals and their antagonists, activate or repress target genes in responding cells; these gene networks establish positional information and guide cell fate, movement, and tissue formation. Studying dorsal patterning helps explain axis formation, tissue organization, and developmental defects. Experimental analyses in model organisms and embryos connect molecular signaling to anatomical outcomes while informing research on evolution, regeneration, and developmental disease.

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Research

JoVE Journal - Biology

Understanding Cerebellar Pattern Formation

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2007

Dorsal Root Ganglion Injection and Dorsal Root Crush Injury as a Model for Sensory Axon Regeneration

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Cited by 9 •

2017

This protocol presents the use of a dorsal root ganglion (DRG) injection with a viral vector and a concurrent dorsal root crush injury in an adult rat as a model to study sensory axon regeneration. This model is suitable for investigating the use of gene therapy to promote sensory axon regeneration.

Modeling Sensory Axon Regeneration in a Rat Using Dorsal Root Ganglion Injection and Dorsal Root Crush Injury

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2025

Source: Cheah, M., et al. Dorsal Root Ganglion Injection and Dorsal Root Crush Injury as a Model for Sensory Axon Regeneration. J. Vis. Exp. (2017).This video demonstrates a step-by-step procedure for injecting a viral suspension into the dorsal root ganglia (DRGs) and inducing a controlled axonal injury via a dorsal root crush in an anesthetized rat. The protocol involves exposing the DRGs, delivering a growth-promoting viral vector to facilitate axonal regeneration, and severing axonal...

Live Imaging of Dorsal Root Axons after Rhizotomy

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Cited by 6 •

2011

An in vivo imaging protocol to monitor primary sensory axons following dorsal root crush is described. The procedures utilize wide-field fluorescence microscopy and thy1-YFP transgenic mice, and permit repeated imaging of axon regeneration over 4 cm in the PNS and axon interactions with the interface of the CNS.

Measuring Spinal Presynaptic Inhibition in Mice By Dorsal Root Potential Recording In Vivo

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Cited by 5 •

2014

GABAergic presynaptic inhibition is a powerful inhibitory mechanism in the spinal cord important for motor and sensory signal integration in spinal cord networks. Underlying primary afferent depolarization can be measured by recording of dorsal root potentials (DRP). Here we demonstrate a method of in vivo recording of DRP in mice.

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