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עמוד בית
Fri, 22.11.24

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November 2024
Anna Rozenfeld MD, Aliza Goldman RN MSC, Tal Stern BS, Shmuel Banai MD, Yacov Shacham MD

Background: One-third of patients with acute decompensated heart failure (ADHF) develop worsening kidney function, known as type I cardiorenal syndrome (CRS). CRS is linked to higher mortality rates, prolonged hospital stays, and increased readmissions.

Objectives: To explore the impact of real-time monitoring of urinary output (UO) trends on personalized pharmacologic management, fluid balance, and clinical outcomes of patients with ADHF admitted to a cardiac intensive care unit.

Methods: Our study comprised 35 patients who were hospitalized with ADHF and continuously monitored for UO (UOelec). Standard diuretic and fluid protocols were implemented after 2 hours of oliguria, and patient outcomes were compared to a historical matched control (HMC) group. Patients were assessed for daily and cumulative fluid balance (over 72 hours) as well as for the occurrence of acute kidney injury (AKI).

Results: Significantly more patients in the UOelec group demonstrated negative fluid balance daily and cumulatively over time in the intensive care unit compared to the HMC group: 91% vs. 20%, respectively (P < 0.0001 for 72-hour cumulative fluid balance). The incidence of AKI was significantly lower in the UOelec monitoring cohort compared to the HMC: 23% vs. 57%, respectively (P = 0.003). Moreover, higher AKI resolution, and lower peak serum creatinine levels were demonstrated in the UOelec group vs. the HMC group.

Conclusions: Implementing real-time monitoring of UO in ADHF patients allowed for early response to oliguria and goal-directed adjustment to treatment. This finding ultimately led to reduced congestion and contributed to early resolution of AKI.

June 2024
Yacov Shacham MD

Among patients admitted with acute decompensated heart failure (ADHF), deterioration of renal function with resulting acute kidney injury (AKI) is reported in up to 70% of patients with cardiogenic shock. Twenty percent of heart failure patients with AKI progress to dialysis (AKI-D). Optimal timing for initiation of renal replacement therapies (RRT) has been researched; however, minimal studies discuss guidelines for weaning from RRT [1]. Electronic monitoring of urine output (UO) may serve as a tool to aid in withdrawal from RRT. We present a case of ADHF with severe AKI requiring continuous renal replacement therapy (CRRT) where real-time electronic monitoring of UO was implemented for the first time to guide de-escalation therapy from CRRT until successful withdrawal.

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