This single-centre retrospective observational cohort study evaluated the association between preoperative cuff-derived ankle-brachial index (ABI) and postoperative acute kidney injury (AKI) in adults undergoing emergency repair of acute type A aortic dissection. Existing clinical data from patients treated at Nanjing First Hospital, Nanjing Medical University, between January 2019 and February 2024 were used. High ABI was defined as \>1.40, and the reference ABI range was defined as \>0.90 and ≤1.40. The primary outcome was creatinine-defined AKI within 7 postoperative days. Exploratory analyses examined whether the association between cumulative intraoperative mean arterial pressure exposure and AKI differed according to ABI phenotype. No intervention or treatment allocation was assigned by the study protocol.
This is a single-centre retrospective observational cohort study using routinely collected electronic health records from adults undergoing emergency open repair of acute type A aortic dissection at Nanjing First Hospital, Nanjing Medical University, between January 2019 and February 2024. No study-specific intervention, treatment allocation, or additional clinical follow-up was performed. The principal exposure was preoperative cuff-derived ankle-brachial index (ABI). ABI was calculated from routine four-limb oscillometric cuff pressures. Each ankle systolic pressure was divided by the higher brachial systolic pressure, and the higher of the two side-specific ABI values was used for patient classification. High ABI was defined as \>1.40, and the reference ABI range was defined as \>0.90 and ≤1.40. ABI was considered an indirect vascular phenotype marker rather than a direct measure of arterial stiffness or renal autoregulatory reserve. The primary outcome was postoperative acute kidney injury (AKI) within 7 days, defined using serum creatinine-based Kidney Disease: Improving Global Outcomes criteria. Multivariable regression models were used to evaluate the association between high ABI and postoperative AKI after adjustment for relevant clinical and operative covariates. Exploratory analyses assessed whether the association between cumulative intraoperative mean arterial pressure (MAP) burden and postoperative AKI differed according to ABI phenotype. Cumulative MAP burden below 65 and 80 mm Hg was evaluated. The candidate haemodynamic thresholds were informed in part by preliminary data exploration; these interaction analyses were therefore considered hypothesis-generating and were not intended to identify physiological or treatment thresholds.
Study Type
OBSERVATIONAL
Enrollment
516
Preoperative ABI was derived from routine four-limb oscillometric cuff pressure measurements. Each ankle systolic pressure was divided by the higher brachial systolic pressure, and the higher of the two side-specific ABI values was used for patient classification. High ABI was defined as \>1.40 and reference ABI as \>0.90 and ≤1.40. No intervention was assigned by the study protocol.
Nanjing First Hospital, Nanjing Medical University
Nanjing, Jiangsu, China
Postoperative Acute Kidney Injury
Postoperative acute kidney injury was defined according to serum creatinine-based Kidney Disease: Improving Global Outcomes criteria. Acute kidney injury was identified if serum creatinine increased by at least 0.3 mg/dL within 48 hours after surgery or increased to at least 1.5 times the baseline value within 7 days after surgery.
Time frame: Within 7 days after surgery
Postoperative Acute Kidney Disease
Postoperative acute kidney disease was assessed using postoperative renal function data after the acute kidney injury window, according to changes in serum creatinine and renal function during the postoperative period.
Time frame: Within 7 to 90 days after surgery
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