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Related Experiment Video

Updated: Aug 29, 2025

Measuring Attentional Biases for Threat in Children and Adults
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How speed impacts threat assessment in lethal force decisions.

Adam T Biggs1, Kyle A Pettijohn2, Sarah Sherwood2

  • 1Naval Medical Research Unit Dayton, United States; Naval Special Warfare Command, United States.

Applied Ergonomics
|September 10, 2022
PubMed
Summary

The speed imperative in lethal force decisions lowers decision thresholds and processing time but does not affect threat perception accuracy. This research clarifies how decision-making speed influences threat assessments.

Keywords:
Decision-makingLethal forceResponse inhibitionSpeedThreat perception

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Area of Science:

  • Cognitive Psychology
  • Decision Science
  • Law Enforcement Training

Background:

  • Accurate and rapid threat assessment is critical for effective lethal force decisions.
  • Limited empirical data exists on how speed influences threat perception and decision-making.

Purpose of the Study:

  • To investigate the impact of speed imperatives on threat assessment decision parameters.
  • To examine how response speed affects perceptual accuracy in threat identification.

Main Methods:

  • Two experiments utilized speeded and unspeeded conditions to assess threat judgments.
  • Drift diffusion modeling quantified decision parameters (e.g., threshold, processing rate).
  • Experiment 2 manipulated stimulus exposure duration (30 ms) to evaluate perceptual differences.

Main Results:

  • Speeded decisions significantly reduced the decision threshold and non-decisional processing time.
  • The rate of information processing and initial bias remained unaffected by speed manipulations.
  • Participants exhibited high confidence in threat assessments even with minimal stimulus exposure (30 ms).

Conclusions:

  • The speed imperative influences specific decision-making parameters in threat assessment.
  • Threat perception accuracy appears largely resilient to variations in decision speed and exposure duration.
  • Findings inform training protocols for law enforcement regarding speed-accuracy trade-offs in critical incidents.