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Updated: Aug 19, 2025

Pulse Wave Velocity Testing in the Baltimore Longitudinal Study of Aging
Published on: February 7, 2014
Vascular age acquired from the pulse signal: A new index to screen early vascular aging
Qingfeng Tang1, Zhiqiang Pan1, Changlong Tao1
1The University Key Laboratory of Intelligent Perception and Computing of Anhui Province, Anqing Normal University, Anqing, China.
Insights
Vascular age (VA) offers a more accurate measure of an individual's actual vascular aging than chronological age (CA). This new index better reflects lifestyle impacts on cardiovascular health.
Area of Science:
- Cardiovascular research
- Biomedical engineering
- Aging studies
Background:
- Chronological age (CA) is a recognized cardiovascular risk factor.
- CA does not fully capture individual variations in vascular aging due to lifestyle differences.
Purpose of the Study:
- Introduce a novel index, vascular age (VA), to overcome the limitations of CA in assessing vascular aging.
- Develop a method to quantify lifestyle impacts on vascular aging.
Main Methods:
- Utilized pulse signal features and CA to train a Support Vector Regression model for predicting chronological age (PA).
- Calculated lifestyle impact (AgeLI) as the difference between PA and expected PA (ePA).
- Derived VA by summing CA and AgeLI, then correlated VA, CA, and PA with eight objective vascular indices.
Main Results:
- Vascular age (VA) and predicted age (PA) demonstrated stronger correlations with objective vascular indices than CA.
- VA showed superior performance in evaluating vascular aging compared to both CA and PA.
Conclusions:
- The proposed VA index better reflects actual vascular aging by accounting for individual lifestyle variations.
- VA provides a more nuanced assessment of cardiovascular risk than chronological age alone.
Background:
Chronological age (CA) has been adopted as an important independent risk factor in cardiovascular risk assessment. However, different individuals with same CA may have distinct actual vascular aging due to various lifestyles. Therefore, it is difficult to fully describe the difference of actual vascular aging by CA.
Objective:
This study proposes a new index vascular age (VA) to avoid the limitations of CA.
Method:
In this work, VA refers to the sum of CA and lifestyle impact (AgeLI). Firstly, we take the pulse signal features and CA as independent variables and dependent variable respectively, and adopt cross validation to train Support Vector Regression model. Then we acquire the predicted chronological age (PA) of all subjects with the model. Secondly, we obtain the function model between CA and PA, and calculate the expectation of PA (ePA) for each subject. Simultaneously, we take the difference between PA and ePA as the estimated value of AgeLI to further calculate VA. Finally, in order to evaluate the effectiveness of VA, we compare the correlations between CA, PA, VA and 8 objective indices such as augmentation index, pulse transit time, diastolic augmentation index, etc. RESULTS: In general, VA and PA are closer to these 8 objective indices than CA. Moreover, VA is also superior to PA in vascular aging evaluation.
Conclusion:
The VA suggested in this study emphasizes the difference of vascular aging in same CA group, which can better reflect the actual vascular aging than CA and PA.
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