The apnea test (AT) during clinical brain death (BD) testing does not account for different arterial gas tensions on veno-arterial extracorporeal membrane oxygenation (V-A ECMO). We aimed to develop a protocol and now report our experience with three patients. The protocol was developed and implemented in 2015 at a quaternary center in Australia, measures both right radial and postoxygenator carbon dioxide (CO2) and oxygen (O2) gas tensions during the AT, incorporates regular gas sampling and a gradual reduction in fresh gas flow to ensure patient oxygenation. Patient 1 remained apneic despite both right radial and postoxygenator CO2 gas tensions >60 mmHg. Patient 2, despite having CO2 levels in a right radial arterial sample high enough to diagnose BD, postoxygenator CO2 remained <60 mmHg. Patient 2 did not breathe but radiological tests confirmed BD. Patient 3 showed respiratory effort but only once CO2 levels rose high enough in both right radial and postoxygenator samples. No patient was hypoxic during the AT. Performance of a reliable AT on V-A ECMO requires measurement of both right radial and postoxygenator blood gases. A protocol, which measures both blood gas values, is feasible to implement, while being both safe and easy to perform.
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http://dx.doi.org/10.1097/MAT.0000000000001086 | DOI Listing |
Cureus
November 2024
Anesthesiology and Pain Medicine, Harborview Medical Center, Seattle, USA.
Prompt emergence from general anesthesia is crucial after neurosurgical procedures, such as craniotomies, to facilitate timely neurological evaluation for identification of intraoperative complications. Delayed emergence can be caused by residual anesthetics, metabolic imbalances, and intracranial pathology, for which an eye examination can provide early diagnostic clues. The sunset sign (or setting sun sign), characterized by a downward deviation of the eyes, can be an early indicator of raised intracranial pressure (ICP) or midbrain compression, as is commonly observed in states of hydrocephalus or periaqueductal or tectal plate dysfunction.
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Advanced Institute of Technology and Innovation (IATI), 50751-310 Recife, Pernambuco, Brazil.
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Front Biosci (Elite Ed)
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Department of Environmental Biotechnology, Biotechnology Research Center, Al-Nahrain University, 10018 Baghdad, Iraq.
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December 2024
Faculté des Sciences et Technologies, LEMTA - Université de Lorraine - CNRS UMR 7563, Boîte Postale 70239, Vandoeuvre les Nancy cedex, 54506, France.
The wetting characteristics of fluids play a crucial role in various fields of interface and surface science. Contact angle serves as a fundamental indicator of wetting behavior. However, accurate quantification of wetting phenomena even at the macroscale often poses challenges, particularly due to the hysteresis between receding and advancing contact angles.
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Enhanced Oil Recovery & Carbon Utilization and Storage Laboratory, Department of Petroleum Engineering, Indian Institute of Technology (Indian School of Mines), Dhanbad 826 004, India.
This research explores the development of engineered oil-water microemulsions stabilized by a synergistic combination of polymer and surfactant to enhance stability and interfacial properties for improved enhanced oil recovery (EOR). Conventional surfactant-stabilized emulsions often suffer from phase instability and limited wettability alteration during water flooding and chemical injection, hindering the EOR efficiency. In contrast, our formulations incorporating polymers significantly increase the emulsion viscosity and resilience to temperature fluctuations, resulting in enhanced phase stability.
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