Key result
Global area strain measured by 3D speckle tracking imaging predicted early myocardial damage after anthracycline chemotherapy with an AUC of 0.815, 81.9% sensitivity, and 80.3% specificity.
Why the study?
Does 3D speckle tracking imaging improve early detection of cardiotoxicity in breast cancer patients receiving chemotherapy?
Observational (n=83)
Does 3D speckle tracking imaging improve early detection of cardiotoxicity in breast cancer patients receiving chemotherapy?
Effect estimate: AUC 0.815
3D speckle tracking imaging, particularly global area strain (GAS), is a valuable and sensitive tool for predicting early myocardial damage in breast cancer patients undergoing anthracycline chemotherapy.
May support earlier cardiotoxicity monitoring with 3D speckle tracking; hypothesis-generating and should not yet change practice.
Eighty-three breast cancer patients who underwent six cycles of EC chemotherapy regimen (epirubicin + cyclophosphamide) without symptoms and signs of heart disease were enrolled in the study. Three-dimensional speckle tracking imaging technique (3D-STI) was used to measure left ventricular global area strain (GAS), overall annular strain (GCS), overall longitudinal strain (GLS), and overall radial strain (GRS). Meanwhile, serum troponin T (Hs-cTnT) was measured. The clinical value of each index on cardiotoxicity after chemotherapy was analyzed using the receiver operating characteristic (ROC) curve. Hs-cTnT increased from the early stage to the end during chemotherapy, but it was still in the normal range. During the mid-chemotherapy and the end-chemotherapy, GAS, GLS, GCS, and E/A significantly reduced, while the changes in LVESV, LVEDV, LVEF, and GRS were not significant after chemotherapy. Pearson correlation analysis showed a significant negative correlation between GAS and anthracycline doses (r = -.772, P < .01); GAS and Hs-cTnT were significantly negatively correlated (P < .05). The area under the curve (AUC) of GAS, GLS, GCS, and GRS are 0.815, 0.683, 0.645, and 0.585, respectively. A GAS of -31.5% was used as the cutoff value for diagnosing left ventricular systolic dysfunction after receiving chemotherapy. The sensitivity of the previous parameters was 81.9%, and the specificity was 80.3%. Interobserver consistency analysis showed that 3D-STI strain parameter measurement has good repeatability. GAS has greater value in predicting early myocardial damage after anthracycline chemotherapy.
No takes yet. Share an insight, caveat, or question.
Chen et al. (2019) conducted an observational in Breast cancer (n=83). 3D speckle tracking imaging of global area strain (GAS) was evaluated on Diagnosis of left ventricular systolic dysfunction after chemotherapy (AUC 0.815). Global area strain measured by 3D speckle tracking imaging predicted early myocardial damage after anthracycline chemotherapy with an AUC of 0.815, 81.9% sensitivity, and 80.3% specificity.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: