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Sven Biederer entwickelt ein Magnet-Partikel-Spektrometer (MPS) zur Analyse und Charakterisierung von superparamagnetischen Eisenoxid-Nanopartikeln (SPIOs). Das MPS nutzt dabei denselben physikalischen Effekt wie die Bildgebung mittels Magnetic-Particle-Imaging (MPI). Der Autor beschreibt die Hardware des MPS und stellt die zur Nutzung und Auswertung der Messdaten benötigte Software vor. Abschließend präsentiert er die Messungsergebnisse und analysiert die Nutzbarkeit verschiedener SPIOs in MPI.
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This book is the first comprehensive text on utilization management in the clinical laboratory and other ancillary services. It provides a detailed overview on how to establish a successful utilization management program, focusing on such issues as leadership, governance, informatics, and application of utilization management tools. The volume also describes ways to establish utilization management programs for multiple specialties, including anatomic pathology and cytology, hematology, radiology, clinical chemistry, and genetic testing among other specialties. Numerous examples of specific utilization management initiatives are also described that can be imported to other health care organizations. A chapter on utilization management in Canada is also included. Edited by an established national leader in utilization management, Utilization Management in the Clinical Laboratory and Other Ancillary Services is a valuable resource for physicians, pathologists, laboratory directors, hospital administrators, and medical insurance professionals looking to implement a utilization management program. .
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This book is the first comprehensive text on utilization management in the clinical laboratory and other ancillary services. It provides a detailed overview on how to establish a successful utilization management program, focusing on such issues as leadership, governance, informatics, and application of utilization management tools. The volume also describes ways to establish utilization management programs for multiple specialties, including anatomic pathology and cytology, hematology, radiology, clinical chemistry, and genetic testing among other specialties. Numerous examples of specific utilization management initiatives are also described that can be imported to other health care organizations. A chapter on utilization management in Canada is also included. Edited by an established national leader in utilization management, Utilization Management in the Clinical Laboratory and Other Ancillary Services is a valuable resource for physicians, pathologists, laboratory directors, hospital administrators, and medical insurance professionals looking to implement a utilization management program. .
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This book is the first comprehensive text on utilization management in the clinical laboratory and other ancillary services. It provides a detailed overview on how to establish a successful utilization management program, focusing on such issues as leadership, governance, informatics, and application of utilization management tools. The volume also describes ways to establish utilization management programs for multiple specialties, including anatomic pathology and cytology, hematology, radiology, clinical chemistry, and genetic testing among other specialties. Numerous examples of specific utilization management initiatives are also described that can be imported to other health care organizations. A chapter on utilization management in Canada is also included. Edited by an established national leader in utilization management, Utilization Management in the Clinical Laboratory and Other Ancillary Services is a valuable resource for physicians, pathologists, laboratory directors, hospital administrators, and medical insurance professionals looking to implement a utilization management program. .
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Die nichtinvasive Erfassung des arteriellen Pulswellensignals erlaubt Pulsmessung, Pulsoximetrie bis hin zu Gefäßrisikobewertung direkt am Unterarm. Robert Couronné beschreibt zwei Modellsimulationen der Photonenausbreitung im Unterarmgewebe. Anhand gemessener Intensitäten verifiziert der Autor die erweiterte Lambert-Beer-Beziehung eines planaren Schichtenmodells und untersucht mithilfe eines Zylindermodells die Intensitätsverteilung entlang des Unterarmumfangs, wobei bevorzugte Ableitregionen identifiziert werden. Zum experimentellen Nachweis stellt der Autor den Prototyp eines optisch-transmissiven Mehrkanalsensorsystems vor und zeigt anhand von Probandenmessungen die technische Signalgewinnung und praktische Anwendbarkeit. Mit einem Klassifikationsverfahren kann die automatische Signalidentifikation sowie eine Qualitätsbewertung im Realzeitbetrieb erreicht werden. Die vorgestellten Verfahren sind dabei auf gängigen Mikrocontroller-Plattformen lauffähig.
Health informatics. --- Health Informatics. --- Pulse --- Measurement.
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Within the context of the ISO/IEEE 11073 family of standards for device communication, this standard establishes a normative definition of communication between personal telehealth blood pressure monitor devices and compute engines (e.g., cell phones, personal computers, personal health appliances, and set top boxes) in a manner that enables plug-and-play interoperability. It leverages appropriate portions of existing standards including ISO/IEEE 11073 terminology, information models, application profile standards, and transport standards. It specifies the use of specific term codes, formats, and behaviors in telehealth environments restricting optionality in base frameworks in favor of interoperability. This standard defines a common core of communication functionality for personal telehealth blood pressure monitors. Keywords: blood pressure monitor, medical device communication, personal health devices.
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Die Zahl der in der Medizin eingesetzten bildgebenden Verfahren steigt ständig; die Anzahl der zu beurteilenden Bilder nimmt rapide zu und muss daher mit digitaler Bildverarbeitung unterstützt werden. Dennoch ist diese - selbst in universitären Kliniken - bislang nicht hinreichend in die medizinische Routine integriert. Thomas M. Lehmann formuliert erstmalig eine Integrationsmethodik sowie detaillierte Integrationskriterien zur nahtlosen Einbindung computerunterstützter Verfahren und Algorithmen in die klinische Routineanwendung. Folgende Themen stehen im Mittelpunkt: " Grundlagen der praxisorientierten Bildverarbeitung " Flexibilität, Adaptivität und Stabilität von Software " Kontrollmöglichkeiten für Anwender " Validierung von Bildverarbeitung und -analyse " Daten-, Funktions-, Präsentations- und Kontextintegration " Kriterienkatalog als Leitfaden und Analyseinstrument " Anwendungsbeispiele aus der klinischen Routine.
Health informatics. --- Computer science. --- Health Informatics. --- Computer Science, general.
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