The present study aimed to explore the clinical applicability of ultrasound super-resolution imaging (US SRI) for assessing renal microcirculation in patients with acute kidney injury (AKI). A total of 62 patients with sepsis were enrolled in the present study-38 with AKI and 24 control patients-from whom renal ultrasounds and clinical data were obtained. SonoVue contrast (1.5 mL) was administered through the elbow vein and contrast-enhanced ultrasound (CEUS) images were obtained on a Mindray Resona A20 ultrasound unit for 2 min. The renal perfusion time-intensity curve (TIC) was analyzed and, after 15 min, additional images were obtained to create a microscopic blood flow map. Microvascular density (MVD) was calculated and its correlation with serum creatinine (Scr) levels was analyzed. There were significant differences in heart rate, Scr, blood urea nitrogen, urine volume at 24 h, and glomerular filtration rate between the two groups ( < 0.01), whereas other characteristics, such as renal morphology, did not differ significantly between the AKI group and control group ( > 0.05). The time to peak and mean transit times of the renal cortex in the AKI group were prolonged compared to those in the control group ( < 0.01), while the peak intensity and area under the TIC were lower than those in the control group ( < 0.05). The MVD of the renal cortex in the AKI group was lower than that in the control group (18.46 ± 5.90% vs. 44.93 ± 11.65%; < 0.01) and the MVD in the AKI group showed a negative correlation with Scr (R = -0.84; < 0.01). Based on the aforementioned results, US SRI can effectively assess renal microcirculation in patients with AKI and is a noninvasive technique for the diagnosis of AKI and quantitative evaluation of renal microcirculation.
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http://dx.doi.org/10.3390/diagnostics14111192 | DOI Listing |
Crit Care
December 2024
Department of Intensive Care, Erasme University Hospital, Université Libre de Bruxelles, Brussels, Belgium.
Background: Sepsis is the result of a dysregulated immune response to infection and is associated with acute organ dysfunction. The syndrome's complexity is contingent upon the underlying pathology and individual patient characteristics, including their immune response. The involvement of multiple organs and physiological functions adds complexity, with "organ cross-talk" emerging as a pivotal pathophysiological and clinical aspect.
View Article and Find Full Text PDFJ Transl Med
December 2024
Institut de Recherche Biomédicale Des Armées (IRBA), 1, Rue du Lieutenant Raoul Batany, 92141, Clamart, France.
Background: Hemorrhagic shock (HS) corresponds to absolute hypovolemia creating an imbalance between oxygen supply and consumption. This causes an impaired hemostasis, a systemic inflammatory response, and microvascular permeability which can lead to multiple organ failure (MOF). There is no specific treatment for the endothelial dysfunction that plays a major role in the evolution towards MOF.
View Article and Find Full Text PDFJ Chin Med Assoc
December 2024
Department of Life Science, School of Life Science, National Taiwan Normal University, Taipei, Taiwan, ROC.
Background: Sepsis is a systemic inflammatory state associated with acute kidney injury (AKI) and high mortality. However, sepsis-induced AKI cannot be effectively prevented or treated using current antimicrobial therapies and supportive measures. We explored the therapeutic effect of newly developed fructose esters on sepsis-induced AKI (S-AKI).
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November 2024
Nephropathy Department, The First Affiliated Hospital of Heilongjiang University of Chinese Medicine, Harbin, Heilongjiang Province, People's Republic of China.
Surv Ophthalmol
November 2024
Department of Ophthalmology, University Hospitals UZ Leuven, Leuven, Belgium; Research Group Ophthalmology, Department of Neurosciences, KU Leuven, Leuven, Belgium. Electronic address:
The retina allows noninvasive in vivo assessment of the microcirculation. Autoregulation of the retinal microvasculature meets the changing requirements of local metabolic demand and maintains adequate blood flow. Analysis of the retinal vascular reactivity contributes to the understanding of regulatory physiology and its relationship to the systemic microcirculation.
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