Purpose Of Review: To describe personalized hemodynamic management of critically ill patients in the operating room and the ICU.
Recent Findings: Several recent clinical studies have investigated different strategies for optimizing blood pressure (BP) and flow in the operating room and in the ICU. In the past, (early) goal-directed hemodynamic treatment strategies often used predefined fixed population-based 'normal' values as hemodynamic targets. Most hemodynamic variables, however, have large interindividual variability and are dependent on several biometric factors. Personalized BP management aims to set specific BP targets for a given patient taking into account blood flow autoregulation and any history of chronic hypertension. To optimize cardiac output and oxygen delivery, individualized hemodynamic management based on functional assessment of fluid responsiveness is used. Innovative noninvasive technologies now enable preoperative assessment of a patient's personal normal hemodynamic values, which can then be targeted in the perioperative phase. In critically ill patients admitted to the ICU, adaptive multiparametric hemodynamic monitoring can help to personalize hemodynamic management.
Summary: Personalized hemodynamic management targets personal normal values of hemodynamic variables, which are adjusted to biometric data and adapted to the clinical situation (i.e., adequate values). This approach optimizes cardiovascular dynamics based on the patient's personal hemodynamic profile.
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http://dx.doi.org/10.1097/MCC.0000000000000422 | DOI Listing |
Nutr Rev
January 2025
Department of Clinical Medicine, School of Medicine, Shaoxing University, Shaoxing, Zhejiang 312000, P. R. China.
Context: The impacts of elevated ketone body levels on cardiac function and hemodynamics in patients with heart failure (HF) remain unclear.
Objective: The effects of ketone intervention on these parameters in patients with HF were evaluated quantitatively in this meta-analysis.
Data Sources: We searched the PubMed, Cochrane Library, and Embase databases for relevant studies published from inception to April 13, 2024.
Clin Sci (Lond)
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Department of Medicine, Division of Clinical Pharmacology, Vanderbilt University Medical Center, Nashville, TN, U.S.A.
Salt sensitivity of blood pressure (SSBP) is a complex physiological trait characterized by changes in blood pressure in response to dietary salt intake. Aging introduces an additional layer of complexity to the pathophysiology of SSBP, with mitochondrial dysfunction, epigenetic modifications, and alterations in gut microbiota emerging as critical factors. Despite advancements in understanding these mechanisms, the processes driving increased salt sensitivity with age and their differential impacts across sexes remain unclear.
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Vascular Surgery Research Laboratories, Division of Vascular and Endovascular Surgery, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA -
The glycocalyx is an essential structural and functional component of endothelial cells. Extensive hemodynamic changes cause endothelial glycocalyx disruption and vascular dysfunction, leading to multiple arterial and venous disorders. Chronic venous disease (CVD) is a common disorder of the lower extremities with major health and socio-economic implications, but complex pathophysiology.
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View Article and Find Full Text PDFJ Intensive Med
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Department of Critical Care Medicine, Beijing Shijitan Hospital, Capital Medical University, Beijing, China.
This review summarizes the current research advances and guideline updates in neurocritical care. For the therapy of ischemic stroke, the extended treatment time window for thrombectomy and the emergence of novel thrombolytic agents and strategies have brought greater hope for patient recovery. Minimally invasive hematoma evacuation and goal-directed bundled management have shown clinical benefits in treating cerebral hemorrhage.
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