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A Pre-Clinical Porcine Model of Orthotopic Heart Transplantation
Published on: April 27, 2019
Different evolutions in heart rate variability after heart transplantation: 10-year follow-up
Frank Beckers1, Dirk Ramaekers, Gabrielle Speijer
1Laboratory of Experimental Cardiology, Department of Cardiology, University Hospital Gasthuisberg, K.U. Leuven, 3000 Leuven, Belgium.
Insights
Heart transplant patients show varied heart rate variability (HRV) recovery. While some exhibit reinnervation patterns, most patients do not regain significant autonomic nervous system function after transplantation.
Area of Science:
- Cardiology
- Autonomic Neuroscience
- Transplantation Medicine
Background:
- Donor hearts are denervated post-transplantation, lacking sympathetic and vagal nerve input.
- This denervation results in a flat heart rate variability (HRV) power spectrum.
- The extent and significance of potential reinnervation are debated.
Purpose of the Study:
- To investigate the long-term evolution of heart rate variability (HRV) after heart transplantation.
- To assess the presence and patterns of cardiac autonomic reinnervation in heart transplant recipients.
Main Methods:
- Analysis of 24-hour Holter recordings from 216 heart transplant patients over 10 years.
- Utilized time and frequency domain analysis for heart rate variability (HRV) assessment.
- Categorized patients into groups based on spectral analysis of HRV.
Main Results:
- Increased 24-hour and night-time HRV total power observed starting 2 years post-transplant.
- Significant increase in low-frequency HRV oscillations from year 4 onwards.
- High-frequency power showed no significant evolution; only a minority group displayed reinnervation patterns.
Conclusions:
- Heart transplant recipients exhibit diverse HRV recovery patterns.
- Cardiac reinnervation is present in a small subset of patients.
- The majority of heart transplant patients do not show evidence of significant autonomic reinnervation.
Background:
After heart transplantation, the donor heart is extrinsically denervated. No input of sympathetic or vagal nerves can influence the heart rate, resulting in a flat power spectrum of the beat-to-beat variability. The occurrence and the significance of reinnervation remain controversial.
Methods And Results:
We monitored the evolution of heart rate variability (HRV) after heart transplantation, starting from a few weeks postoperatively up to 10 years after surgery. Twenty-four-hour Holter recordings of 216 heart-transplant patients were analyzed using time and frequency domain analysis of HRV. Analysis of all data revealed an increase in 24-hour and night-time total power starting from 2 years after transplantation. Low-frequency oscillations calculated over the total 24 hours, day- and nighttime increased significantly starting from year 4 and onward (year 4-8: P < 0.005). No evolution was found in high-frequency power. Subgroup analysis revealed a group with a clear spectral component (n = 16), a group with a small component (n = 124), and a group with a flat spectrum (n = 76). Only the first group revealed an evolution in both high- and low-frequency power.
Conclusion:
These results indicate three different types of evolution in HRV, with reinnervating patterns present in only a minority of the patients. The vast majority of the patients show no signs of reinnervation.
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