Fluid management during thoracic anesthesia remains as a challenge for the anesthesiologists. The "safe zone" between volume overload (risk of pulmonary edema) and hypovolemia (potential risk of renal failure) is hard to determine and narrow. Relationship between perioperative fluid administration and postoperative lung injury has been clearly demonstrated but lung injury can even occur after the most restrictive management. Multiple hit hypothesis and endothelial glycocalyx in addition to revised Starling equation can help us understand this dilemma. Although a "liberal" fluid strategy is out of question for thoracic surgery, evidence on "restrictive" and "goal-directed" fluid strategies are missing. New monitors with dynamic parameters can help to evaluate if the patient will respond to a fluid challenge. However, "volume responsiveness" should not be equated with volume deficiency, especially in a patient with thoracic epidural catheter. Fluid type (crystalloids or colloids) is also another unclear point, although balanced solutions should be preferred for crystalloids. Minimal discontinuation of oral hydration, early feeding and mobilization should be encouraged. This review summarizes current evidence on the topic and highlights unanswered questions.
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http://dx.doi.org/10.23736/S0375-9393.17.11760-8 | DOI Listing |
J Cardiothorac Surg
January 2025
Department of Thoracic Surgery, The Second Xiangya Hospital of Central South University, Changsha, Hunan, P. R. China.
Background: Paragangliomas are rare neoplasms arising from extra-adrenal chromaffin cells, with mediastinal paragangliomas representing an exceptionally rare subset. This report details the surgical management of a complex mediastinal paraganglioma case, presenting with refractory hypertension and invasion of critical surrounding structures. A comprehensive review of the current literature is included to underscore existing cases, enhance clinical awareness, and share our insights and experience in the diagnosis and treatment of this challenging condition.
View Article and Find Full Text PDFBMC Neurol
January 2025
Faculty of Medicine, Department of Neurology, Al-Quds University, Jerusalem, Palestine.
Background: Vanishing white matter disease (VWMD) is a rare autosomal recessive leukoencephalopathy. It is typified by a gradual loss of white matter in the brain and spinal cord, which results in impairments in vision and hearing, cerebellar ataxia, muscular weakness, stiffness, seizures, and dysarthria cogitative decline. Many reports involve minors.
View Article and Find Full Text PDFInt J Biol Macromol
January 2025
First Operating Room, The First Hospital of Jilin University, Changchun, China. Electronic address:
Background: Certain peripheral proteins are believed to be involved in the development of Alzheimer's disease (AD), but the roles of other new protein biomarkers are still unclear. Current treatments aim to manage symptoms, but they are not effective in stopping the progression of the disease. New drug targets are needed to prevent Alzheimer's disease.
View Article and Find Full Text PDFJ Surg Res
January 2025
Division of Trauma and Surgical Critical Care, Department of Surgery, Orlando Regional Medical Center, Orlando, Florida; Department of Surgical Education, Orlando Regional Medical Center, Orlando, Florida. Electronic address:
Introduction: This systematic review aims to evaluate the optimal management of acute respiratory distress syndrome (ARDS) in critically ill surgical patients, specifically focusing on positioning, extracorporeal membrane oxygenation (ECMO) use, ventilation, fluid resuscitation, and pharmacological treatments.
Methods: A systematic review was conducted utilizing four databases including PubMed, Google Scholar, EMBASE, and ProQuest. This study followed Preferred Reporting Items for Systematic Reviews and Meta-Analyses guidelines and was registered with The International Prospective Register of Systematic Reviews.
Sci Total Environ
January 2025
School of Earth System Science, Tianjin University, Tianjin 300072, China.
The hydrodynamics, water temperature, and water quality model for the Dan River and Renzhuang Reservoir continuum were developed using field monitoring data and the Environmental Fluid Dynamics Code (EFDC). An in-situ water discharge experiment enabled the calculation of water propagation time using a simulated flood progression method and the hydrodynamics module of EFDC. Based on these model results, degradation coefficients for chemical oxygen demand, biochemical oxygen demand, nitrogen (N), phosphorus (P), fluoride, arsenic were determined, revealing significantly higher values when the wetland barrage was opening.
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