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Background Clinical benefit of percutaneous coronary intervention (PCI) in chronic coronary syndromes (CCS) remains controversial. Coronary wave intensity analysis (WIA) provides mechanistic insights into cardiac–coronary coupling.Objectives To assess peri-PCI WIA changes at rest and during hyperaemia, and to identify features associated with improvements in epicardial and microvascular resistance.Methods Intracoronary Doppler and pressure measurements were analysed in 27 CCS patients undergoing elective PCI. Haemodynamics (fractional flow reserve (FFR), basal and hyperaemic stenosis resistance (bSR, hSR), coronary flow reserve (CFR), basal and hyperaemic microvascular resistance (bMR, hMR)) and WIA metrics (forward compression wave (FCW), backward compression wave (BCW), forward expansion wave (FEW), backward expansion wave (BEW), wave speed) were quantified at rest and hyperaemia.Results PCI reduced bSR and hSR (p<0.001), increased FFR (0.58±0.18 to 0.87±0.09; p<0.001) and CFR (1.68±0.47 to 2.79±0.62; p<0.001), and lowered hMR (2.22 (1.67–3.10) to 1.49 (1.18–1.74); p<0.001). At rest, PCI increased FCW (40.3±48.9 to 89.3±64.8; p=0.022), FEW (24.5 (7.2–42.8) to 58.8 (24.0–93.1); p=0.001) and BEW (57.6±70.6 to 82.1±51.8; p=0.017). Hyperaemic backward wave peaks augmented significantly (BCW: 77.8±53.3 to 172.8±112.3; BEW: 60.5±47.5 to 126.7±66.2; both p<0.001). WIA time-to-peaks occurred earlier post-PCI. Reduced resting wave speed (41±21 to 25±10 m/s; p<0.001) correlated with hMR decreases (r=0.77; p<0.001). Increased resting BEW correlated with total vascular resistance reductions (hSR+hMR; r=−0.76; p<0.001).Conclusions Elective PCI restores phasic cardiac–coronary coupling. Resting BEW and coronary wave speed provide complementary physiological endpoints reflecting microvascular and epicardial recovery, warranting larger prospective evaluation.