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[Initial heart rate variability and radiosensitivity in rabbits]
Radiatsionnaia Biologiia, Radioecologiia
|May 24, 2005
Summary
Rabbits with higher adrenergic activity (sympathicotonics) show greater radiosensitivity than parasympathetic-dominant ones (vagotonics). Initial heart rate variability total power predicts radiosensitivity, with lower power indicating higher sensitivity to radiation exposure.
Area of Science:
- Radiology and Radiation Oncology
- Cardiology
- Autonomic Nervous System Physiology
Background:
- Radiosensitivity varies among individuals.
- The autonomic nervous system (ANS) influences physiological responses.
- Heart rate variability (HRV) parameters reflect ANS activity.
Purpose of the Study:
- To investigate the relationship between initial autonomic nervous system (ANS) functional state and radiosensitivity in rabbits.
- To assess how heart rate variability (HRV) parameters predict radiosensitivity after X-irradiation.
Main Methods:
- Total X-irradiation of rabbits at 2 Gy and 12 Gy doses.
- Analysis of time-frequency parameters of heart rate variability (HRV).
- Assessment of survival rates and rhythm-cardiologic correlates.
Main Results:
- Sympathotonic rabbits (adrenergic dominance) exhibited significantly higher radiosensitivity than vagotonic rabbits (parasympathetic dominance).
- Lower initial total power (TP) of HRV, indicating reduced regulatory influences on heart rhythm, correlated with higher radiosensitivity.
- Irradiation caused a sharp, irreversible suppression of TP in sympathicotonics at 12 Gy, leading to shorter lifespans (10.3 days vs. 18.8 days for vagotonics).
- Vagotonics showed a temporary TP suppression at 2 Gy with a subsequent rebound, suggesting greater resilience.
Conclusions:
- Initial autonomic nervous system (ANS) balance, reflected by heart rate variability (HRV) total power, is a key determinant of radiosensitivity.
- Low initial total power of HRV is a reliable marker for increased radiosensitivity.
- Understanding ANS-mediated radiosensitivity can inform radiation therapy strategies.