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[Heart rate variability in patients suffering from essential hypertension with different mapping of left ventricle]

Małgorzata Kobusiak-Prokopowicz1, Marta Negrusz-Kawecka

  • 1Katedra i Klinika Kardiologii AM we Wrocławiu.

Insights

Essential hypertension patients with abnormal left ventricular geometry show reduced parasympathetic activity. Eccentric hypertrophy indicates the most significant sympatho-parasympathetic imbalance, linking heart rate variability to cardiac changes.

Area of Science:

  • Cardiology
  • Autonomic Nervous System Research
  • Hypertension Studies

Context:

  • Essential hypertension is a prevalent cardiovascular condition.
  • Left ventricular geometry and hypertrophy are key indicators of cardiac adaptation and disease progression.
  • Heart rate variability (HRV) analysis via Holter monitoring is a standard method for assessing autonomic nervous system influence on the heart.

Purpose:

  • To investigate heart rate variability (HRV) in patients with essential hypertension and varying left ventricular (LV) geometry.
  • To determine the relationship between autonomic nervous system activity, LV mass index (LVMI), and left ventricular hypertrophy (LVH) patterns.

Summary:

  • This study analyzed 70 hypertensive patients (mean age 56.86 years) with different LV geometries (normal, concentric remodeling, concentric hypertrophy, eccentric hypertrophy) using 24-hour Holter monitoring.
  • Results indicated decreased parasympathetic activity in hypertensive patients with LV hypertrophy and abnormal geometry.
  • Eccentric hypertrophy was associated with the most pronounced sympatho-parasympathetic imbalance, highlighting a strong correlation between HRV parameters and LV changes.

Impact:

  • Findings suggest that autonomic dysfunction, particularly reduced parasympathetic activity, is prevalent in hypertensive patients with LV hypertrophy.
  • The study establishes a link between HRV, sympatho-parasympathetic balance, and the structural remodeling of the left ventricle in essential hypertension.
  • These insights can inform risk stratification and therapeutic strategies for hypertensive patients by considering cardiac autonomic function and LV geometry.
Abstract

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