Literature DB >> 21292839

Biological aortic age derived from the arterial pressure waveform.

Shigeki Shibata1, Benjamin D Levine.   

Abstract

Indexes for arterial stiffness are, by their nature, influenced by the ambient blood pressure due to the curvilinear nature of arterial compliance. We developed a new concept of the "Modelflow aortic age," which is, theoretically, not influenced by the ambient blood pressure and provides an easily understood context (biological vs. chronological age) for measures of arterial stiffness. The purpose of the present study was to validate this pressure-independent index for aortic stiffness in humans. Twelve sedentary elderly (65-77 yr), 11 Masters athletes (65-73 yr), and 12 sedentary young individuals (20-42 yr) were studied. Modelflow aortic ages were comparable with chronological ages in both sedentary groups, indicating that healthy sedentary individuals have age-appropriate aortas. In contrast, Masters athletes showed younger Modelflow aortic ages than their chronological ages. The coefficient of variation of sedentary subjects was three times smaller with the Modelflow aortic age (21%) than with other indexes, such as static systemic arterial stiffness (61%), central pulse wave velocity (61%), or carotid β-stiffness index (58%). The typical error was very small and two times smaller in the Modelflow aortic age (<7%) than in static systemic arterial stiffness (>13%) during cardiac unloading by lower body negative pressure. The Modelflow aortic age can more precisely and reliably estimate aortic stiffening with aging and modifiers, such as life-long exercise training compared with the pressure-dependent index of static systemic arterial stiffness, and provides a physiologically relevant and clinically compelling context for such measurements.

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Year:  2011        PMID: 21292839      PMCID: PMC3075135          DOI: 10.1152/japplphysiol.01261.2010

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  49 in total

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Review 3.  Arterial and cardiac aging: major shareholders in cardiovascular disease enterprises: Part III: cellular and molecular clues to heart and arterial aging.

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  15 in total

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Authors:  Graeme Carrick-Ranson; Jeffrey L Hastings; Paul S Bhella; Naoki Fujimoto; Shigeki Shibata; M Dean Palmer; Kara Boyd; Sheryl Livingston; Erika Dijk; Benjamin D Levine
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Journal:  Am J Physiol Heart Circ Physiol       Date:  2013-04-26       Impact factor: 4.733

7.  Effect of gravity and microgravity on intracranial pressure.

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8.  The effect of lifelong endurance exercise on cardiovascular structure and exercise function in women.

Authors:  Graeme Carrick-Ranson; Nikita M Sloane; Erin J Howden; Paul S Bhella; Satyam Sarma; Shigeki Shibata; Naoki Fujimoto; Jeffrey L Hastings; Benjamin D Levine
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Authors:  Graeme Carrick-Ranson; Francis G Spinale; Paul S Bhella; Satyam Sarma; Shigeki Shibata; Naoki Fujimoto; Jeffrey L Hastings; Benjamin D Levine
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10.  Construction of an integral formula of biological age for a healthy Chinese population using principle component analysis.

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