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Anatomical Reconstructions of the Human Cardiac Venous System using Contrast-computed Tomography of Perfusion-fixed Specimens
Published on: April 18, 2013
Demographically informed models for improving synthetic haematocrit and extracellular volume estimation in cardiac
Sri Kousthubha Allampalli1, Vitaliy Androshchuk2,3, Edouard Long2,3
1School of Biomedical Engineering and Imaging Sciences, King's College London, Strand, London WC2R 2LS, UK.
Insights
This study developed a new method to predict serum hematocrit (Hct) using cardiac computed tomography (CCT) data, enabling accurate myocardial fibrosis (ECV) calculation without blood tests. Sex-specific models with BMI stratification significantly improved prediction accuracy.
Area of Science:
- Cardiovascular Imaging
- Biomarker Development
- Medical Physics
Background:
- Cardiac computed tomography-derived extracellular volume (CCT-ECV) quantifies myocardial fibrosis non-invasively.
- Accurate CCT-ECV calculation requires serum hematocrit (Hct), a barrier to clinical use.
- This study addresses the need for a blood-test-free method to determine Hct for ECV calculation.
Purpose of the Study:
- To develop a predictive model for synthetic Hct using CCT data.
- To enable accurate CCT-ECV calculation without serum Hct measurements.
- To investigate the impact of clinical factors (sex, BMI, age) on model performance.
Main Methods:
- Recruited 108 patients undergoing CCT for severe aortic stenosis.
- Developed a univariable linear regression model to predict Hct from Hounsfield units in the blood pool.
- Evaluated model performance with sex and BMI stratification.
Main Results:
- The predictive model for Hct outperformed previous literature models.
- Sex-specific models with BMI stratification significantly improved prediction accuracy (ECV Pearson R 0.89).
- Age, eGFR, and creatinine did not enhance prediction accuracy.
Conclusions:
- Sex-specific models are essential for accurate Hct estimation from CCT.
- BMI stratification further refines Hct prediction, particularly in males.
- Further research is needed for optimal Hct prediction in females across a wide BMI range.
Aims:
Cardiac computed tomography-derived extracellular volume (CCT-ECV) is a promising biomarker for non-invasive quantification of myocardial fibrosis. However, serum haematocrit (Hct) is required for accurate CCT-ECV calculation, posing a potential barrier to clinical implementation. This study aims to develop a method for predicting synthetic Hct to derive accurate ECV values without blood testing and investigate the impact of clinical factors on model performance.
Methods And Results:
A total of 108 patients [70% male, body mass index (BMI) 27.2 (7.4) kg/m2, age 81.9 (8.6) years] undergoing CCT prior to clinically indicated transcatheter aortic valve implantation for severe aortic stenosis were recruited. A non-contrast baseline scan, electrocardiogram (ECG)-gated CT angiography, and a late iodine-enhanced scan were performed on the same day as blood tests for serum Hct and used to compute voxel-wise ECV in the left ventricle. A univariable linear regression model was developed to predict Hct from Hounsfield units at the centre of the blood pool, outperforming previous models in literature. Sex stratification improved accuracy, with a significant difference in models for men at a BMI threshold of 30.7 (P = 0.035). In females, restricting to BMI > 22.4 improved performance. Age, estimated glomerular filtration rate, and creatinine did not improve predictions. The final model with combined sex and BMI stratification demonstrated better performance (ECV Pearson R 0.89, P < 0.001) than univariable and literature models.
Conclusion:
This study highlights the necessity for sex-specific models to estimate Hct and accurately estimate ECV from CCT. Sex-specific BMI stratification further improves predictions; however, more research is required for females with a low or very high BMI.
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