Alert Inactivity

Alert inactivity describes a state in which a person remains awake and responsive while showing little observable physical or behavioral activity. It occurs when attentional systems continue monitoring the environment without initiating substantial movement or task-directed action, often during low-stimulation situations, sustained vigilance, or periods of reduced motivation. In psychology, distinguishing alert inactivity from sleep, fatigue, or disengagement helps researchers assess arousal, attention, and behavioral readiness. The concept is relevant to studies of vigilance, workplace performance, clinical observation, and human responses to monotonous environments, where apparent stillness may conceal ongoing cognitive processing.

Alert Inactivity - Related Videos

Research

JoVE Journal - Neuroscience

Transcranial Electrical Brain Stimulation in Alert Rodents

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Cited by 11 •

2017

This protocol describes a surgical set-up for a permanent epicranial electrode socket and an implanted chest electrode in rodents. By placing a second electrode into the socket, different types of transcranial electrical brain stimulation can be delivered to the motor system in alert animals through the intact skull.

Pooled shRNA Screen for Reactivation of MeCP2 on the Inactive X Chromosome

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Cited by 2 •

2018

We report a small hairpin RNA (shRNA) and next generation sequencing-based protocol for identifying regulators of X-chromosome inactivation in a murine cell line with firefly luciferase and hygromycin resistance genes fused to the methyl CpG binding protein 2 (MeCP2) gene on the inactive X chromosome.

Research

JoVE Journal - Chemistry
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Precise Electrochemical Sizing of Individual Electro-Inactive Particles

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Cited by 1 •

2023

As an analytical technique, nanoimpact electrochemistry, an increasingly important approach to counting and characterizing nanometer-scale, electro-inactive particles, suffers from poor precision due to the heterogeneous current distributions that arise from its use of ultramicroelectrodes. Outlined here is a generalized approach, termed "electrocatalytic interruption," that enhances precision in such measurements.

Juxtacellular Monitoring and Localization of Single Neurons within Sub-cortical Brain Structures of Alert, Head-restrained Rats

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Cited by 9 •

2015

This protocol describes the design and surgical implantation of a head-restraining mechanism to monitor neuronal activity in sub-cortical brain structures in alert rats. It delineates procedures to isolate single neurons in the juxtacellular configuration and to efficiently identify their anatomical locations.

Comprehensive Understanding of Inactivity-Induced Gait Alteration in Rodents

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2022

The present protocol describes three-dimensional motion tracking/evaluation to depict gait motion alteration of rats after exposure to a simulated disuse environment.

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