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Related Concept Videos

Decision Making01:20

Decision Making

Decision-making is a fundamental cognitive process that involves evaluating alternatives and selecting among them. This process can range from simple choices, such as deciding what to wear, to complex decisions, like choosing a major in college or a career path. The complexity of the decision often dictates the approach we use, which can be broadly categorized into two types: automatic and controlled decision-making.
Automatic decision-making is fast, intuitive, and relies on gut feelings...
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Decision Making: Traditional Method

The process of hypothesis testing based on the traditional method includes calculating the critical value, testing the value of the test statistic using the sample data, and interpreting these values.
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Impact of Pharmacokinetic–Pharmacodynamic Models: Regulatory Decisions

PK–PD modeling has significantly influenced FDA regulatory decisions, particularly drug approval, dosage optimization, and labeling. These models integrate pharmacokinetics (PK) and pharmacodynamics (PD) to predict drug behavior and effects, aiding in optimizing dosing regimens and enhancing the probability of clinical trial success.One notable example is Nesiritide (Natrecor®), a recombinant human brain natriuretic peptide for treating acute decompensated congestive heart failure (CHF).
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Schemas

A schema is a mental construct consisting of a cluster or collection of related concepts (Bartlett, 1932). There are many different types of schemata, and they all have one thing in common: schemata are a method of organizing information that allows the brain to work more efficiently. When a schema is activated, the brain makes immediate assumptions about the person or object being observed.
Methods of Documentation VI: Case Management Model01:15

Methods of Documentation VI: Case Management Model

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Updated: May 17, 2026

Eye Tracking During A Complex Aviation Task For Insights Into Information Processing
07:48

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Published on: April 4, 2025

Aeromedical decision making--it may be time for a paradigm change.

Lawrence W Steinkraus1, Russell B Rayman, William P Butler

  • 1Department of Internal Medicine, Mayo Clinic, 200 First Street SW, Rochester, MN 55905, USA. Steinkraus.lawrence@mayo.edu

Aviation, Space, and Environmental Medicine
|October 17, 2012
PubMed
Summary

Aeromedical experts need advanced in-flight monitoring for aircrew physiologic and cognitive function. Current tools are insufficient for ensuring flight safety in evolving aerospace environments.

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Area of Science:

  • Aerospace Medicine
  • Human Factors Engineering
  • Physiology

Background:

  • Recent incidents in U-2 and F-22 fleets necessitate improved aeromedical monitoring.
  • Existing aerospace medicine risk assessment tools are becoming insufficient for modern aviation safety.
  • Cognitive function is increasingly critical for "Fit to Fly" evaluations.

Purpose of the Study:

  • To address the need for enhanced in-flight aircrew physiologic and cognitive monitoring.
  • To investigate practical methodologies for assessing dynamic aircrew function preflight and in-flight.
  • To summarize findings and recommendations from a 2010 aeromedical expert panel.

Main Methods:

  • Review of current aeromedical paradigms and risk assessment tools.
  • Discussion and recommendations from a panel of aeromedical experts.
  • Focus on dynamic assessment of physiologic and cognitive function.

Main Results:

  • Identification of limitations in current aerospace medicine risk assessment.
  • Emphasis on cognition as a primary factor in "Fit to Fly" decisions.
  • Need for practical methodologies for continuous aircrew monitoring.

Conclusions:

  • Current aeromedical monitoring capabilities require significant enhancement.
  • Dynamic assessment of aircrew physiology and cognition is crucial for safety and performance.
  • Expert consensus highlights the need for updated approaches to aircrew assessment.