Shoko Okamura, Hajime Matsumine, Nozomu Akamine, Hiroyuki Sakurai
This study aims to establish an objective and reproducible method for estimating profunda artery perforator (PAP) flap weight by incorporating automated fat-tissue extraction using computed tomography (CT) attenuation thresholds. Thirty-two women who underwent breast reconstruction using PAP flaps were retrospectively analyzed. Preoperative CT data were processed using the Synapse Vincent system to generate 3-dimensional models. Adipose tissue in the flap region was automatically segmented using predefined Hounsfield unit thresholds (-150 to -50 HU). Predicted flap weight was calculated by assuming a fat density of 0.9 g/cm3 and compared with the intraoperative weight using Pearson correlation and linear regression analyses. The mean predicted and actual flap weights were 294.9 ± 73.1 and 272.4 ± 69.8 g, respectively, and demonstrated a strong correlation (r = 0.9149, P < 0.0001). The flap weight estimation formula obtained by linear regression was as follows: actual weight = 0.8628 × predicted weight + 30.39. The coefficient of determination (R2 = 0.837) and root-mean-square percentage error (10.33%) indicated high predictive accuracy. Bland-Altman analysis showed a bias of -6.99 g (limits, -62.34 to 48.36 g). Automated fat-tissue extraction using 3-dimensional CT modeling is a rapid and noninvasive technique for reliable estimation of PAP flap weight and may improve preoperative planning for perforator flap breast reconstruction.