Zengkun Liu, Dexin Zhang, Fushun Lin, Chenna Lu, Donglin Xu, Zhenbang Qi, Hourong Sun, Xingming Wang, Mengmeng Tang, Weidong Bing, Heng Yang, Lingwei Meng, Xiangjin Kong, Kai Liu, Xinghua Gu
Transit-time flow measurement (TTFM) is used during coronary artery bypass grafting (CABG), but outcome-linked thresholds for low left internal mammary artery-left anterior descending artery (LIMA-LAD) mean graft flow (MGF) and preoperative low-flow predictors remain limited. This single-center retrospective study included 282 patients undergoing elective off-pump CABG with LIMA-LAD grafting. Restricted cubic spline and segmented regression examined the association between MGF and peak high-sensitivity cardiac troponin I (hs-cTnI) within 48 hours, and logistic regression evaluated associations with in-hospital major adverse cardiac and cerebrovascular events (MACCE) and developed a preoperative low-flow prediction model. LIMA-LAD MGF showed a nonlinear association with peak hs-cTnI, with an inflection point at 31 mL/min. Flow <31 mL/min was associated with higher hs-cTnI levels and higher adjusted in-hospital MACCE risk in the main model (34 events; adjusted odds ratio [OR] 2.53, 95% confidence interval [CI] 1.21-5.44; P = 0.014). In a sensitivity model additionally adjusted for obtuse marginal/left circumflex-territory grafting, the association was attenuated but remained directionally consistent (OR 2.10, 95% CI 0.99-4.46; P = 0.053). Higher LAD quantitative flow ratio (QFR) and smaller distal vessel diameter independently predicted low flow. In conclusion, a LIMA-LAD MGF threshold of 31 mL/min was associated with greater perioperative myocardial injury and higher in-hospital event risk, and a QFR-based model may support perioperative risk stratification pending external validation with standardized 30-day outcomes.