Offspring Resilience

Offspring resilience is the capacity of young individuals to adapt to, recover from, or maintain healthy development despite biological or environmental stressors. In neuroscience, resilience emerges through interactions among stress-regulation systems, brain development, parental care, and the social environment, with factors such as glucocorticoid signaling and experience-dependent changes in neural circuits shaping responses to adversity. Research examines how early-life conditions influence emotional regulation, learning, and behavior across development. Understanding these mechanisms can clarify vulnerability to stress-related disorders and inform strategies that support healthy development in children and other developing organisms.

Offspring Resilience - Related Videos

Research

JoVE Journal - Neuroscience

Generating a Reproducible Model of Mid-Gestational Maternal Immune Activation using Poly(I:C) to Study Susceptibility and Resilience in Offspring

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Cited by 4 •

2022

Maternal infection is a risk factor for neurodevelopmental disorders. Mouse models of maternal immune activation (MIA) may elucidate infection's impact on brain development and function. Here, general guidelines and a procedure are provided to produce reliably resilient and susceptible offspring exposed to MIA.

Research

JoVE Journal - Behavior
Free Sample

Mindfulness in Motion (MIM): An Onsite Mindfulness Based Intervention (MBI) for Chronically High Stress Work Environments to Increase Resiliency and Work Engagement

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Cited by 105 •

2015

The Mindfulness in Motion (MIM) protocol offers a pragmatic Mindfulness Based Intervention (MBI) on-site, for persons working in chronically high-stress work environments that significantly increases resiliency and work engagement. The protocol has proven feasible, beneficial, and is easily adaptable to other high-stress workplaces.

Monitoring Blood Glucose in Mouse Offspring After Intracytoplasmic Sperm Injection

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Cited by 2 •

2024

Here, we present a protocol to establish an intracytoplasmic sperm injection (ICSI)-embryo transfer (ET) mouse model, allowing us to observe age-related changes in glucose metabolism that may be attributed to ICSI, providing insights into its potential long-term impacts on human development.

Assessing Disaster Resilience of Concrete with Titanium Dioxide Nanoparticles

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2025

This protocol describes the assessment of whether applying titanium dioxide to concrete enhances its physical properties, thereby increasing its resistance to the effects of natural disasters caused by extreme events.

Modifying Levels of Maternal Dietary Folic Acid or Choline to Study the Impact of Deficiencies on Offspring Health Outcomes

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2024

This protocol describes the method for reducing dietary intake of folic acid or choline in female mice prior to pregnancy with the objective of investigating the impact of maternal diet on offspring health outcomes.

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