4,562 research outputs found

    Southwest Research Institute assistance to NASA in biomedical areas of the technology utilization program Quarterly progress report, 1 Jul. - 30 Sep. 1968

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    Southwest Research Institute activites in NASA technology utilization program for biomedical use, 1 Jul. - 30 Sep. 196

    Southwest Research Institute assistance to NASA in biomedical areas of the technology utilization program Final report, 1 Nov. 1967 - 30 Nov. 1968

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    Southwest Research Institute activities in technology utilization program in biomedical areas, Nov. 1967 - Nov. 196

    Schmerzmanagement bei Kindern in der Schweiz

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    Zusammenfassung: Hintergrund: Schmerzen bei stationär aufgenommenen Kindern werden häufig unzureichend behandelt. Bisher gab es keine Informationen zum Schmerzmanagement von Kinderkrankenhäusern in der Schweiz. Ziel der vorliegenden Studie war, den aktuellen Stand der Schmerzerfassung, -interpretation und -behandlung zu bestimmen. Studiendesign: Ein Fragebogen wurde an alle pädiatrischen Krankenhäuser in der Schweiz gesendet. Ergebnisse: Insgesamt antworteten 27 von 45Einheiten (Antwortrate: 60%). Die meisten Abteilungen verwenden Schmerzerfassungstools (96%) und führten diesbezügliche Leitlinien ein (78%). Die Behandlung von Schmerzen erfolgt ebenfalls meist nach hausinterner Leitlinie (78%). Prozedurale und postoperative Schmerzen werden stets (100%) analgetisch behandelt. Bei Frühgeborenen und Kindern auf Intensivpflegestationen werden bei invasiven Eingriffen häufig Analgetika (> 87%) verwendet. Auf Intensivstationen liegen in 44% diesbezügliche Leitlinien vor. Resümee: Der Nutzen eines effektiven Schmerzmanagements bei Kindern ist eindeutig belegt. Viele Ansätze zur Verbesserung werden in der Schweiz gut umgesetzt. Vor allem im internationalen Vergleich verbesserte sich das Schmerzmanagement. Es gibt aber noch Optimierungsmöglichkeiten. Beispielsweise besitzen weniger als die Hälfte aller schweizerischen Intensivstationen eine Leitlinie für die Behandlung von Schmerzen bei invasiven Eingriffe

    Hard-Loop Effective Action for Anisotropic Plasmas

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    We generalize the hard-thermal-loop effective action of the equilibrium quark-gluon plasma to a non-equilibrium system which is space-time homogeneous but for which the parton momentum distribution is anisotropic. We show that the manifestly gauge-invariant Braaten-Pisarski form of the effective action can be straightforwardly generalized and we verify that it then generates all n-point functions following from collisionless gauge-covariant transport theory for a homogeneous anisotropic plasma. On the other hand, the Taylor-Wong form of the hard-thermal-loop effective action has a more complicated generalization to the anisotropic case. Already in the simplest case of anisotropic distribution functions, it involves an additional term that is gauge invariant by itself, but nontrivial also in the static limit.Comment: 12 pages. Version 3: typo in (15) corrected, note added discussing metric conventions use

    An unusual interplay among disorder, Kondo-effect and spin-glass behavior in the Kondo lattices, Ce2_2Au1−x_{1-x}Cox_xSi3_3

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    We report the results of magnetic measurements for the solid solution Ce2_2Au1−x_{1-x}Cox_xSi3_3. The results reveal that this solid solution is characterized by a magnetic phase diagram (plot of magnetic transition temperature versus xx) unusual for Kondo lattices. In particular, the spin-glass freezing induced by disorder is observed only for the compositions at the weak coupling limit; as one approaches the quantum critical point by a gradual replacement of Au by Co, this disorder effect is surprisingly suppressed in favor of long range antiferro-magnetic ordering in contrast to expectations. This unusual interplay between disorder, spin-glass freezing and the Kondo-effect calls for further refinement of theories on competition between magnetism and the Kondo effect.Comment: 4 pages, 3 figure

    A superconducting levitation transport model system for dynamical and didactical studies

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    Superconducting levitation transport systems might become very attractive in the near future due to various reasons. The realisation of contactless systems allows e.g. extended maintenance-free operation with high efficiency since such a system only needs energy for cooling and propulsion. We established a small superconducting levitation transport model system called "SupraTrans Mini" consisting of permanent magnetic rails and a levitated vehicle including four YBCO-bulk samples in a cryostat. The rail system consists of an oval shaped loop (2.90 m x 1.44 m), which was build up from individual linear and curved track modules. Inside the vehicle position variations of the superconductors are possible. By means of velocity, acceleration and temperature measurements different dynamical aspects of our complex levitation system can be investigated. We also show the broad applicability of the experimental setup for didactical studies in physics
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