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Remimazolam – current knowledge on a new intravenous benzodiazepine anesthetic agent
김성협,Fechner Jörg 대한마취통증의학회 2022 Korean Journal of Anesthesiology Vol.75 No.4
Intravenous anesthetic agents such as midazolam, propofol, and ketamine are routinely used to provide anesthesia and sedation. They have been shown to effectively induce and maintain amnesia, sedation, and hypnosis in various patient groups and clinical settings. However, all anesthetic agents have the potential to cause unwanted side effects such as hemodynamic instability, respiratory depression, or slow recovery due to prolonged post-procedural sedation. Remimazolam, a recently approved benzodiazepine for general anesthesia and procedural sedation in Korea, has been successfully used for these purposes. To date, inconclusive knowledge has been obtained regarding the use of remimazolam in different patient populations and under various surgical conditions. With respect to the specific pharmacokinetic and pharmacodynamic characteristics of remimazolam, the use of remimazolam is expected to increase providing safe general anesthesia and sedation. This review aims to provide an overview of the basic and clinical pharmacology of remimazolam and to compare it with midazolam and propofol.
Laser lift-off systems for flexible- display production
Ralph Delmdahl,Malene Fricke,Burkhard Fechner 한국정보디스플레이학회 2014 Journal of information display Vol.15 No.1
Laser lift-off (LLO) delamination opens the path to polymer-based display backplanes for use in electrophoretic e-readers, AMOLED smartphones, tablets, and OLED-TV. The proper choice of wavelength, optical system, and fluence enables the layer-selective LLO processing of functional thin films not achievable with other radiative or non-radiative heat sources. This becomes increasingly attractive as the feature size and film thickness in microelectronics applications are continuously being downscaled. Excimer lasers provide the 308 nm wavelength and short pulse duration required for highly localized energy coupling. The high output power of excimer lasers enables a large processing footprint and the high-throughput rates needed in mass manufacturing. Thin-film transistor (TFT) structures fabricated on top of polymer layers spun on glass panels must be delaminated to create thin, lightweight, and rugged flexible-display backplanes. Low-thermal-budget lift-off processing with UV lasers protects the adjacent functional layers. When it comes to large Gen 4.5 to Gen 8 substrate panels, which have to be released from polymer thin films, it is most effective to use line beam scanning for LLO within one to three consecutive scans.