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Published on: September 22, 2023
Evaluation of Lower Extremity Calcium Score as a Measure of Peripheral Arterial Disease Burden and Amputation Risk
Sujin Lee1, Kanika Kalra2, Aditi Kashikar2
1Division of Vascular Surgery and Endovascular Therapy, Department of Surgery, Emory University School of Medicine, Atlanta, GA; Division of Vascular Surgery and Endovascular Therapy, Department of Surgery, Massachusetts General Hospital, Boston, MA; Surgical Service Line, Atlanta VA Medical Center, Decatur, GA; Department of Epidemiology, Emory University Rollins School of Public Health, Atlanta, GA.
Insights
The tibial calcium score can improve the prediction of amputation in peripheral artery disease (PAD) patients. Adding this score to existing risk factors like TBI and CKD enhances predictive accuracy for amputation risk.
Area of Science:
- Vascular Surgery
- Radiology
- Cardiovascular Disease
Background:
- Ankle-brachial pressure index (ABI) and toe-brachial pressure index (TBI) are standard for peripheral artery disease (PAD) diagnosis.
- These indices are less reliable in patients with calcified vessels.
- Lower extremity calcium score (LECS) offers a potential alternative for assessing disease burden.
Purpose of the Study:
- To evaluate the utility of LECS in conjunction with ABI and TBI.
- To determine if LECS improves the prediction of amputation risk in PAD patients.
- To assess the correlation between LECS and established PAD severity indices.
Main Methods:
- Retrospective study of 50 PAD patients undergoing noncontrast CT of the aorta and lower extremities.
- Calculation of aortoiliac, femoral-popliteal, and tibial calcium scores using the Agatston method.
- Analysis of ABI and TBI data within six months of CT scans; regression and ROC analyses for amputation prediction.
Main Results:
- Higher LECS quartiles correlated with older age, diabetes, and increased amputation rates.
- Elevated tibial calcium scores were associated with stage 3+ chronic kidney disease (CKD), higher amputation frequency, and mortality.
- Tibial calcium score, alongside TBI, emerged as a significant predictor of amputation, with CKD and hyperlipidemia further enhancing model prediction.
Conclusions:
- The addition of tibial calcium score to existing PAD risk factors significantly improves amputation prediction.
- LECS, particularly the tibial component, provides valuable prognostic information in PAD patients.
- This finding suggests a potential role for LECS in refining risk stratification and guiding treatment decisions for PAD.
Background:
The ankle-brachial pressure index (ABI) and toe-brachial pressure index (TBI) are commonly used diagnostic tools for peripheral artery disease (PAD) that are unreliable in the presence of calcified vessels. In this study, we aimed to demonstrate the utility of the lower extremity calcium score (LECS) in addition to ABI and TBI in measuring disease burden and predicting the risk of amputation in patients with PAD.
Methods:
Patients who were evaluated in the vascular surgery clinic at Emory University for PAD and who underwent noncontrast computed tomography of the aorta and lower extremities were included in the study. Aortoiliac, femoral-popliteal, and tibial calcium scores were measured using the Agatston method. ABI and TBI that were obtained within 6 months of the computed tomography scan were noted and divided into categories of PAD severity. Associations between ABI, TBI, and LECS of each anatomic segment were evaluated. Univariate and multivariate ordinal regression analyses were performed to predict the outcome of amputation. Receiver operating characteristic analysis was performed to compare LECS with other variables in its ability to predict amputation.
Results:
Fifty patients included in the study cohort were divided into LECS quartiles, with 12-13 patients in each quartile. The highest quartile tended to be older (P = 0.016), had a higher percentage of diabetics (P = 0.034), and had a higher frequency of major amputations (P = 0.004) compared to the other quartiles. Patients in the highest quartile of tibial calcium score were more likely to have stage 3 chronic kidney disease (CKD) or greater (P = 0.011) and also had a higher frequency of amputation (P < 0.005) and mortality (P = 0.041). We found no significant association between each anatomic LECS and ABI/TBI categories. On univariate analysis, CKD (Odds Ratio [OR] 12.92 (95% CI 2.01 to 82.83), P = 0.007), diabetes mellitus (OR 5.47 (95% CI 1.27 to 23.64), P = 0.023), tibial calcium score (OR 6.62 (95% CI 1.79 to 24.54), P = 0.005), and total bilateral calcium score (OR 6.32 (95% CI 1.18 to 33.78), P = 0.031) were associated with increased risk of amputation. On multivariate stepwise ordinal regression, TBI and tibial calcium score were identified as important predictors of amputation, with hyperlipidemia and CKD increasing the overall prediction of the model. On Receiver operating characteristic analysis, the addition of the tibial calcium score (area under the curve 0.94, standard error 0.048) significantly improved the prediction of amputation compared to hyperlipidemia, CKD, and TBI alone (area under the curve 0.82, standard error 0.071, P = 0.022).
Conclusions:
The addition of tibial calcium score to other known PAD risk factors may improve the prediction of amputation in patients with PAD.
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