<b><i>Background:</i></b> Acute kidney injury (AKI) in patients with COVID-19 can be caused by multiple mechanisms. Renal resistive index (RRI) is a noninvasive instrument to evaluate kidney hemodynamics, and it is obtained by analysis of intrarenal arterial waves using Doppler ultrasound. This study aimed to determine the role of RRI in predicting AKI and adverse outcomes in critically ill patients with COVID-19. <b><i>Methods:</i></b> This cross-sectional study included 65 patients with confirmed SARS-CoV-2 pneumonia admitted to the critical care unit from April 1, 2020, to June 20, 2020. Informed consent was obtained from all individual participants included in the study. Cardiac, pulmonary, and kidney ultrasonographic evaluations were performed in a protocolized way. <b><i>Results:</i></b> In this cohort, 65 patients were included, mean age was 53.4 years, 79% were male, and 35% were diabetic. Thirty-four percent of patients developed AKI, 12% required RRT, and 35% died. Of the patients who developed AKI, 68% had RRI ≥ 0.7. Also, 75% of the patients who required RRT had RRI ≥ 0.7. In the adjusted Cox model, the RRI ≥ 0.7 was associated with higher mortality (HR 2.86, 95% CI: 1.19–6.82, <i>p</i> = 0.01). <b><i>Conclusions:</i></b> Critical care ultrasonography is a noninvasive, reproducible, and accurate bedside method that has proven its usefulness. An elevated RRI may have a role in predicting AKI, RRT initiation, and mortality in patients with severe SARS-CoV-2 pneumonia.
The objective of this paper is to propose a conceptual tool for consideration by medical professionals and cardiologists, based on the concept of prudential judgment or Aristotelian phronesis to confront the problems of cardiotoxicity resulting from cancer treatments. We start by analyzing the case of a young female patient who received two types of therapies: the first with anthracyclines (adriamycin), which produces type I damage, as stated in the consensus of 2014; and the second treatment, one month later, with trastuzumab, an agent that produces type II damage not dependent on dose.In this case, the patient manifested acute cardiac insufficiency, with a decrease of LVEF to 28% on the echocardiogram and to 27% on magnetic resonance imaging. Reports have indicated that treatment with beta blockers and the suspension or decrease of the dose limits damage, but during preclinical stages. Awareness and early attention to subclinical damage have thus become extremely relevant to substantiate treatments based not only on clinical evidence but also on the ability of medical professionals to rely on prudential judgment, which moves away from the medical practices that are developed on a daily basis in order to influence and reduce the cases of irreversible heart failure known as cardiotoxicity.
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