V1 interneurons regulate the pattern and frequency of locomotor-like activity in the neonatal mouse spinal cord

Melanie Falgairolle1, Michael J O'Donovan1

  • 1Developmental Neurobiology Section, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland, United States of America.

Plos Biology
|September 13, 2019
PubMed

Related Concept Videos

A Neonatal Mouse Spinal Cord Compression Injury Model13:31

A Neonatal Mouse Spinal Cord Compression Injury Model

This article describes a method for generating a reproducible spinal cord compression injury (SCI) in the neonatal mouse. The model provides an advantageous platform for studying mechanisms of adaptive plasticity that underlie spontaneous functional recovery.
13.1K
Using the MouseWalker to Quantify Locomotor Dysfunction in a Mouse Model of Spinal Cord Injury07:28

Using the MouseWalker to Quantify Locomotor Dysfunction in a Mouse Model of Spinal Cord Injury

An experimental pipeline to quantitatively describe the locomotor pattern of freely walking mice using the MouseWalker (MW) toolbox is provided, ranging from initial video recordings and tracking to post-quantification analysis. A spinal cord contusion injury model in mice is employed to demonstrate the usefulness of the MW...
4.1K
Activity-based Training on a Treadmill with Spinal Cord Injured Wistar Rats06:40

Activity-based Training on a Treadmill with Spinal Cord Injured Wistar Rats

This protocol demonstrates our model of activity-based locomotor treadmill training for rats with spinal cord injury (SCI). Included is both quadrupedal and forelimb-only groups, in addition to two distinct types of non-trained control groups. Investigators are able to assess training effects on SCI rats using this...
8.5K
Thoracic Spinal Cord Hemisection Surgery and Open-Field Locomotor Assessment in the Rat06:44

Thoracic Spinal Cord Hemisection Surgery and Open-Field Locomotor Assessment in the Rat

The rat thoracic spinal hemisection is a valuable and reproducible model of unilateral spinal cord injury to investigate the neural mechanisms of locomotor recovery and treatment efficacy. This article includes a detailed step-by-step guide to perform the hemisection procedure and to assess locomotor performance in an open-field...
10.4K
Preparation of Rhythmically-active In Vitro Neonatal Rodent Brainstem-spinal Cord and Thin Slice06:32

Preparation of Rhythmically-active In Vitro Neonatal Rodent Brainstem-spinal Cord and Thin Slice

This protocol both visually communicates the brainstem-spinal cord preparation and clarifies the preparation of brainstem transverse slices in a comprehensive step-by-step manner. It was designed to increase reproducibility and enhance the likelihood of obtaining viable, long lasting, rhythmically-active slices for recording neural output from the respiratory regions of the...
12.2K
Spinal Cord Neurons Isolation and Culture from Neonatal Mice07:49

Spinal Cord Neurons Isolation and Culture from Neonatal Mice

This study presents a technique for the isolation of neurons from WT neonatal mice. It requires the careful dissection of the spinal cord from the neonatal mouse, followed by the separation of neurons from the spinal cord tissue through mechanical and enzymatic...
20.2K