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Related Concept Videos

Blood Studies for Cardiovascular System I: Cardiac Biomarkers01:20

Blood Studies for Cardiovascular System I: Cardiac Biomarkers

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Cardiac biomarkers are enzymes, proteins, and hormones released into the blood when cardiac cells are injured. They are powerful tools for triaging.
The essential diagnostic tools for detecting myocardial necrosis and monitoring individuals suspected of having acute coronary syndrome (ACS) include:
Troponins
Troponins, particularly cardiac troponins I and T, are the most precise and sensitive markers of myocardial injury. They are detectable within 4-6 hours of myocardial injury and remain...
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Blood Studies for Cardiovascular System II: CRP, Hcy, and Cardiac Natriuretic Peptide Markers01:19

Blood Studies for Cardiovascular System II: CRP, Hcy, and Cardiac Natriuretic Peptide Markers

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Cardiac biomarkers are critical in diagnosing, prognosing, and managing cardiovascular diseases. Routine measurement of specific biomarkers such as B-type natriuretic peptide (BNP), C-reactive protein (CRP), and homocysteine (Hcy) is common practice in clinical settings to evaluate heart function and predict cardiovascular events.
These markers indicate stress or strain on the heart muscle:
Natriuretic Peptides (BNP)
Cardiac myocytes produce these hormones in response to ventricular stretching...
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Dried Blood Spot Collection of Health Biomarkers to Maximize Participation in Population Studies
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Biomarkers.

Fatemeh Tabassi Mofrad1, John Gallacher2

  • 1University of Oxford, Oxford, United Kingdom.

Alzheimer'S & Dementia : the Journal of the Alzheimer'S Association
|December 25, 2025
PubMed
Summary
This summary is machine-generated.

Brain aging involves both grey matter shrinkage and volume increases in specific subcortical areas like the Caudate and Pallidum, suggesting inflammation may play a role in cognitive decline.

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Area of Science:

  • Neuroimaging
  • Neuroscience
  • Aging Research

Background:

  • Age-related cognitive decline impacts independence and lifespan.
  • Subcortical brain structures are implicated in cognitive deterioration.
  • Comprehensive documentation of age-related structural brain changes is needed.

Purpose of the Study:

  • To map age-related volumetric changes in subcortical grey matter.
  • To investigate the relationship between age and subcortical brain volumes.

Main Methods:

  • Utilized T1-weighted structural brain scans from 46,111 healthy individuals.
  • Divided participants into middle-aged (44-60) and older (61-83) groups.
  • Employed path analysis to examine age-related subcortical volume changes, with model fit adjustments.

Main Results:

  • Age positively correlated with increased volumes in the right/left Caudate, Pallidum, and left Putamen.
  • Age negatively correlated with decreased volumes in the Brain Stem, left Thalamus, right/left Amygdala, and Hippocampus.
  • Observed differential volumetric changes across subcortical regions in older adults.

Conclusions:

  • Age-related structural brain changes include both grey matter shrinkage and volume increases in subcortical areas.
  • Increased volumes in Caudate, Pallidum, and Putamen suggest age-related brain inflammation.
  • These inflammatory changes may precede neurodegenerative disease pathogenesis.