Heart-Brain Relationship in Stroke

Roger E Kelley1, Brian P Kelley2

  • 1Ochsner/LSU Health Sciences Center, Department of Neurology, Shreveport, LA 71130, USA.

Biomedicines
|December 24, 2021
PubMed

Insights

Cardiac conditions are significant risk factors for stroke. Recognizing the heart-brain connection is crucial for diagnosing stroke mechanisms, including arrhythmias and structural heart disease, guiding effective treatment.

Area of Science:

  • Neurology
  • Cardiology
  • Internal Medicine

Background:

  • Stroke patients frequently present with cardiac-related risk factors contributing to the stroke's mechanism.
  • Diagnostic assessment relies on recognizing the potential relationship between cardiac and cerebrovascular events.
  • Accurate patient history and vital signs are paramount for identifying potential cause-and-effect relationships.

Purpose of the Study:

  • To highlight the critical role of cardiac evaluation in the diagnostic workup of stroke patients.
  • To emphasize the association between cardiac conditions and various stroke etiologies.
  • To underscore the importance of identifying cardiogenic sources for effective stroke management.

Main Methods:

  • Clinical history taking focusing on cardiac risk factors and stroke symptom onset.
  • Electrocardiogram (EKG) for assessing arrhythmias, ischemic changes, and left ventricular hypertrophy.
  • Vital sign monitoring, including body temperature, pulse regularity, and blood pressure.
  • Neuroimaging to identify vascular territories and potential embolic events.
  • Consideration of structural cardiac abnormalities as potential embolic sources.

Main Results:

  • Cardiac arrhythmias like atrial fibrillation are key indicators for cardioembolic stroke.
  • Left ventricular hypertrophy suggests a hypertensive mechanism for intracerebral hemorrhage.
  • Sudden neurological deficit onset, seizure, or syncope supports an embolic stroke mechanism.
  • Elevated body temperature may indicate infective endocarditis.
  • Structural cardiac abnormalities such as atrial myxoma or patent foramen ovale can lead to paradoxical embolism.

Conclusions:

  • The intricate link between cardiac health and stroke necessitates a comprehensive cardiac assessment in all stroke evaluations.
  • Identifying cardiogenic sources is vital for tailoring stroke treatment and improving patient outcomes.
  • Advances in cardiovascular interventions parallel those in cerebrovascular disease, yet functional outcomes post-stroke require further optimization.
  • Cardiac dysfunction, from arrhythmias to structural issues, significantly impacts brain perfusion and cognitive function, leading to conditions like cardiogenic dementia.

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