Introduction: During a cerebrovascular procedure, diligent care is made to ensure no air is present in lines and connectors. Should air enter the cerebral vasculature, cerebral air emboli can cause worsening neurological outcome or death. This communication outlines how a process change of refrigerating mixed heparin for storage lead to the presence of unintentional air, or off-gassing of the fluid.
Material & Method: The off-gassing phenomenon was noted during procedure. Various hypotheses were considered, including manufacturing defect of lines, tubes and fluid preparation. Further investigation identified a new process in mixing of heparin bags and then refrigerated. The off-gassing was noted during the procedure when cold fluid flowed through tubing draped across a warming blanket. This article utilizes the explanatory research method to describe the cause and effect relationship. The aim is to provide knowledge of this phenomenon to prevent future occurrences.
Result: Fluids used for neuro endovascular procedures should be warmed to prevent off-gassing, which can lead to cerebral air embolus.
Conclusion: Air formation or out-gassing can occur when cold fluids are warmed. During neuro endovascular procedure, this unintentional air can cause significant morbidity or mortality to the patient. Understanding and recognizing this phenomenon is important to prevent patient harm.
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http://dx.doi.org/10.1016/j.jstrokecerebrovasdis.2025.108225 | DOI Listing |
J Stroke Cerebrovasc Dis
January 2025
UCHealth Memorial Hospital Colorado Springs, Colorado. Electronic address:
Introduction: During a cerebrovascular procedure, diligent care is made to ensure no air is present in lines and connectors. Should air enter the cerebral vasculature, cerebral air emboli can cause worsening neurological outcome or death. This communication outlines how a process change of refrigerating mixed heparin for storage lead to the presence of unintentional air, or off-gassing of the fluid.
View Article and Find Full Text PDFPLoS One
January 2025
C.E. Lynn College of Nursing, Florida Atlantic University, Boca Raton, FL, United States of America.
Background: Ambient air pollution, detrimental built and social environments, social isolation (SI), low socioeconomic status (SES), and rural (versus urban) residence have been associated with cognitive decline and risk of Alzheimer's disease and related dementias (ADRD). Research is needed to investigate the influence of ambient air pollution and built and social environments on SI and cognitive decline among rural, disadvantaged, ethnic minority communities. To address this gap, this cohort study will recruit an ethnoracially diverse, rural Florida sample in geographic proximity to seasonal agricultural burning.
View Article and Find Full Text PDFCurr Opin Psychiatry
December 2024
Department of Neuroscience, Carleton University.
Purpose Of Review: Using advanced bibliometric analysis, we systematically mapped the most current literature on urban air pollution and neurodevelopmental conditions to identify key patterns and associations. Here, we review the findings from the broader literature by discussing a distilled, validated subset of 44 representative studies.
Recent Findings: Literature highlights a complex relationship between environmental toxins, neurodevelopmental disorders in children, and neurobehavioral pathways involving oxidative stress, neuroinflammation, and protein aggregation.
AIMS Neurosci
November 2024
Clinical Sciences, California Northstate University College of Medicine, Elk Grove, CA, USA.
It is rare to find free floating fat droplets in the cerebral spinal fluid (CSF) spaces of the brain. When fat droplets are seen in the CSF spaces, the most common cause is the rupture of a dermoid cyst. Dermoid cysts are congenital inclusion cysts that form during the neural tube closure between the third and fifth weeks of embryogenesis.
View Article and Find Full Text PDFSci Rep
January 2025
Department of Cognitive and Brain Sciences, Ben-Gurion University of the Negev, 1 Ben-Gurion Blvd, Beer-Sheva, Israel.
During flight, spatial disorientation (SD) commonly occurs when a pilot's perception conflicts with the aircraft's actual motion, attitude, or position. A prevalent form of SD is the somatogyral illusion, which is elicited by constant speed rotation and causes a false perception of motion in the opposite direction when the rotation ceases. This research aimed to investigate changes in brain activity that occur when experiencing a somatogyral illusion by simulating conditions closely mimicking flight conditions to gain insight into how to better manage this illusion during flight.
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