Objective: To investigate the changes in hemodynamics and depth of anesthesia under monitored anesthesia care (MAC) in patients undergoing percutaneous dilatational tracheostomy (PDT).
Methods: Forty-six patients with oral cancer were divided into two groups with 23 cases each: Local anesthesia group (group L) and MAC group (group M). Local and intratracheal surface anesthesia were performed with 2% lidocaine in group L. Midazolam, propofol and fentanyl were added to group M after local and intratracheal surface anesthesia, then PDT was carried out. During the induction, observer's assessment of alertness/sedation(OAA/S) scale was used to assess the depth of sedation. Mean arterial blood pressure (MAP), heart rate (HR), state entropy (SE) and response entropy (RE) were recorded before anesthesia (basal value, T1), after local anesthesia (T2), after intravenous administration/before incision (T3), during incision (T4), during dilating with stretching pliers (T5) and endotracheal intubation (T6). A postoperative follow-up was taken in group M.
Results: MAP and HR increased significantly at T4-T6 in group L and decreased at T3 (P < 0.05) with no change at T4-T6 in group M compared with those in T1. MAP and HR at T3-T6 in group M were obviously lower than those in group L. SE and RE at T3-T6 in group M were obviously lower than those at T1 or in group L (P < 0.01) and decreased significantly with the reduction of OAA/S scale (P < 0.05) during the induction. Intraoperative awareness in group M was not found through postoperative follow-up.
Conclusion: Patients undergoing PDT under MAC has more comfortability, more stable hemodynamics and no memory, so MAC is a better anesthesia for PDT than local anesthesia.
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Hepatol Int
January 2025
Division of Gastroenterology and Hepatology, Department of Internal Medicine, National Taiwan University Hospital, Taipei, Taiwan.
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Universitat Autònoma de Barcelona, Bellaterra, Spain.
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Ecotoxicology Research group, School of Science, RMIT University, Melbourne, VIC, Australia.
Pharmaceuticals, including non-steroidal anti-inflammatory drugs (NSAIDs) like ibuprofen (IBU) and naproxen (NPX), are widely used for medical purposes but have also become prevalent environmental contaminants. However, there is limited understanding of their effects on aquatic organisms, especially regarding multigenerational and mixture exposures. This study aimed to evaluate the toxicological impacts of ibuprofen and naproxen, individually and in combination, on three generations of Daphnia carinata, a freshwater organism.
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