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The cardiac blood supply-workload balance in children
Tomoaki Murakami1,2,3, Atsuhito Takeda4, Kohta Takei4
1Department of Cardiology, Chiba Children's Hospital, 579-1 Heta-cho, Midori-ku, Chiba, 266-0007, Japan. murat@seagreen.ocn.ne.jp.
Insights
Children
Area of Science:
- Pediatric Cardiology
- Cardiovascular Physiology
Background:
- Aortic pressure wave reflection returns earlier in children than adults.
- This early return is attributed to shorter height and its impact on wave travel time.
- In adults, early wave return can negatively affect cardiac workload and blood supply balance.
Purpose of the Study:
- To investigate if early aortic pressure wave reflection in children impairs cardiac blood supply-workload balance.
- To assess the relationship between age, wave reflection, and cardiac efficiency in pediatric patients.
Main Methods:
- Aortic pressure waveforms were recorded in 37 pediatric patients (<15 years) with left-to-right shunts.
- Augmentation index (AI) and subendocardial viability ratio (SVR) were calculated.
- Correlation analysis was performed between age, AI, and SVR.
Main Results:
- AI showed a negative correlation with age (r = -0.6243, p < 0.0001), indicating earlier reflection in younger children.
- SVR, representing cardiac blood supply-workload balance, positively correlated with age (r = 0.6435, p < 0.0001).
- Cardiac efficiency improves with age, from infancy to young adulthood.
Conclusions:
- Shorter height in infants accelerates aortic pressure wave reflection, contributing to less favorable cardiac blood supply-workload balance.
- Cardiac blood supply-workload balance gradually improves with age through to young adulthood.
- Findings suggest height-related wave dynamics play a role in pediatric cardiac function.
Abstract:
It is well known that the reflected pressure wave in small children returns earlier than that in adolescent. The reason of early return of the reflected pressure wave in infancy is their height. The short distance between heart and reflection point makes the reflected pressure wave returning to the heart earlier. In adult, the early return (during systole) of the reflected pressure wave means disadvantage to cardiac blood supply-workload balance. The purpose of this study was to clarify whether the early return of the reflected pressure wave in small children impairs the cardiac blood supply-workload balance. This study enrolled 37 small left-to-right shunt patients with normal aortic circulation below 15 years of age. The aortic pressure waveform was recorded using a pressure sensor mounted catheter, and augmentation index and subendocardial viability ratio were calculated. The age of patients was 6.1 ± 3.2 years. The augmentation index was 8.7 ± 14.3 % and the index had a negative correlation with patients' age (r = -0.6243, p < 0.0001). The subendocardial viability ratio, which means the cardiac blood supply-workload balance, was 0.92 ± 0.14 and the index had a positive relationship with patients' age (r = 0.6435, p < 0.0001). The cardiac blood supply-workload balance gradually improves from infancy to young adulthood. One of the causes of the unfavorable cardiac blood supply-workload balance in infancy would be the accelerated aortic pressure wave reflection due to their short height.
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