Respiratory Neuroplasticity

Respiratory neuroplasticity is the nervous system’s ability to change the strength, organization, or function of circuits that control breathing in response to experience, injury, disease, or altered chemical conditions. It can involve changes in synaptic transmission and excitability within brainstem respiratory networks, sensory pathways, and spinal motor circuits, allowing breathing patterns and respiratory muscle activation to adapt over time. In neuroscience, studying these adaptations helps explain recovery after spinal cord injury, stroke, or other neurological disorders and informs strategies such as respiratory training and targeted neuromodulation. Understanding when plasticity is beneficial or maladaptive may improve treatments for impaired ventilation and breathing-related disease.

Respiratory Neuroplasticity - Related Videos

Research

JoVE Journal - Medicine

A Murine Model of Cervical Spinal Cord Injury to Study Post-lesional Respiratory Neuroplasticity

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Cited by 16 •

2014

Respiratory failure is the leading cause of death following a cervical spinal cord injury. Having a reproducible, quantifiable, and reliable pre-clinical animal model of respiratory failure induced by a partial cervical injury will help to understand the subsequent respiratory and non-respiratory neuroplasticity and allow testing putative repair strategies.

Education

JoVE Core - Introduction to Psychology

Neuroplasticity

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2024

Neuroplasticity reflects the brain's remarkable capacity to adapt and evolve, responding dynamically to learning, experiences, or injury by reorganizing its neural circuitry. This reorganization involves creating new neural connections and refining old ones through a series of biological processes that contribute to the brain's lifelong development and adaptability. • The brain's ability to change begins with the growth of dendrites and axons, which effectively increases the structural...

Simulating Pancreatic Neuroplasticity: In Vitro Dual-neuron Plasticity Assay

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Cited by 3 •

2014

Neuronal plasticity is an increasingly recognized, but insufficiently understood feature of the gastrointestinal (GI) tract. Here, in the example of human pancreatic disorders, we present an in vitro neuroplasticity assay for the study of neuronal plasticity in the GI tract at both morphological and functional level.

Research

JoVE Journal - Biology
Free Sample

Evaluation of Respiratory System Mechanics in Mice using the Forced Oscillation Technique

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Cited by 130 •

2013

The present protocol provides a detailed step-by-step description of the procedures required to execute measurements of respiratory system mechanics as well as the assessment of airway responsiveness to inhaled methacholine in mice using the forced oscillation technique (flexiVent; SCIREQ Inc, Montreal, Qc, Canada).

Respiratory Exam I: Inspection and Palpation

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2023

Source: Suneel Dhand, MD, Attending Physician, Internal Medicine, Beth Israel Deaconess Medical Center Disorders of the respiratory system with a chief complaint of shortness of breath are among the most common reasons for both outpatient and inpatient evaluation. The most obvious visible clue to a respiratory problem will be whether the patient is displaying any signs of respiratory distress, such as fast respiratory rate and/or cyanosis. In a clinical situation, this will always require...

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