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  • 1
    ISSN: 1432-055X
    Keywords: Schlüsselwörter Postoperative Phase ; Ösophagustemperatur ; Blasentemperatur ; Rektaltemperatur ; Vergleich verschiedener Meßorte ; Key words Postoperative period ; Oesophageal temperature ; Bladder temperature ; Rectal temperature ; Comparison of different sites of measurement
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Description / Table of Contents: Abstract Objective: The data of 60 postoperatively sedated and ventilated patients were studied for analysis of oesophageal, bladder, and rectal temperatures. The purpose of the investigation was to clarify whether changes of oesophageal temperature are adequately reflected by bladder and rectal temperatures and whether the rate of rewarming has an influence on the accuracy of the latter two sites. Methods: For temperature recording, a Hi-Lo Temp® esophageal stethoscope (Mallinckrodt Medical), a Foley FC400-18 catheter temperature sensor (Respiratory Support Products, Mallinckrodt Medical), and a rectal temperature probe N401 (YSI) were used. Each probe and matching recording unit was calibrated over a range of 30–40 °C against a reference quartz thermometer (Hewlett packard Model 2801 A) in a thermostated water bath before the investigation. Five measuring points distributed over the whole period of rewarming were evaluated. Patients were assigned to groups with slow and fast rewarming, respectively. Agreement between the methods of measurement was assessed as described by Bland and Altman. Furthermore, differences between the oesophageal and bladder or rectal temperature were checked at each measuring point for statistical significance using the t-test. Results: In regard to oesophageal temperature, the bladder and rectal temperatures had biases of –0.01 °C and –0.03 °C, respectively. Limits of agreement (±2 s) were ±0.68 °C and ±0.82 °C, respectively. The bias of the bladder temperature was independent of the rate of rewarming (Fig. 3). The bias of the rectal temperature, however, differed in regard to the rewarming rate, being +0.06 °C in the group with slow rewarming and –0.13 °C in the group with fast rewarming (Tables 1 and 2, Fig. 1 and 2). These differences were significant for the measuring points 4 and 5 (Fig. 4). Conclusions: Bladder and rectal temperatures can accurately indicate the oesophageal temperature with a very small bias in postoperatively sedated and ventilated patients. Since the rate of rewarming influences the accuracy of rectal temperature readings, monitoring of bladder temperature seems to be more favourable in the postoperative period.
    Notes: Zusammenfassung In einer retrospektiven Untersuchung wurden bei 60 postoperativ nachbeatmeten Patienten während der Phase der Wiedererwärmung die Temperaturen in Ösophagus, Blase und Rektum miteinander verglichen. Ziel der Untersuchung war zu klären, wie gut Blasen- und Rektaltemperatur mit der Ösophagustemperatur übereinstimmten und ob die Wiedererwärmungsgeschwindigkeit einen Einfluß auf die Genauigkeit dieser beiden Meßorte hatte. Material und Methoden: Es wurden fünf Meßpunkte pro Patient berücksichtigt, die zu gleichen Teilen über die Wiedererwärmungsperiode verteilt wurden. Um den Einfluß der Wiedererwärmungsgeschwindigkeit zu erfassen, wurden die Patienten retrospektiv einer Gruppe mit schneller oder langsamer Wiedererwärmung zugeordnet. Ergebnisse: Die Blasentemperatur weist gegenüber der Ösophagustemperatur eine systematische Abweichung von –0,01 °C und eine Meßunsicherheit (±2 s) von ±0,68 °C auf und ist unabhängig von der Wiedererwärmungsgeschwindigkeit. Die Rektaltemperatur zeigt eine systematische Abweichung von –0,03 °C und eine Meßunsicherheit von ±0,82 °C. Die systematische Abweichung der Rektaltemperatur betrug bei langsamer Wiedererwärmung ±0,06 °C, bei schneller Wiedererwärmung hingegen –0,13 °C. Die Unterschiede waren für die Meßpunkte 4 und 5 statistisch signifikant. Schlußfolgerung: Aus diesem Grund scheint die Messung der Blasentemperatur in der postoperativen Phase vorteilhafter zu sein als die Messung der Rektaltemperatur.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    New York, NY [u.a.] : Wiley-Blackwell
    Advanced Materials for Optics and Electronics 3 (1994), S. 283-288 
    ISSN: 1057-9257
    Keywords: Phosphors ; Alkaline ; Earth sulphides ; Photoluminescence ; CaS ; SrS ; Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Electrical Engineering, Measurement and Control Technology , Physics
    Notes: Ca1 - xSrxS Solid Solutions at 10 m/o intervals have been prepared by coprecipitation of sulphates from aqueous solution followed by reduction at 1000°C with hydrogen. Phosphorescence emission spectra have been determined for these solid solutions doped with 0.1 m/o cerium and show a blue shift with increasing strontium content from 2.46 to 2.59 eV. Hyperbolic phosphorescent decay curves were observed at both room and liquid nitrogen temperatures across the composition range and have been broken down into three exponential components by graphical and computer-programme-based methods. At room temperature trap depth values of 0.366, 0.316 and 0.282 eV with measured lifetimes of 1.9, 0.26 and 0.07 ms respectively were determined with little dependence on composition. At liquid nitrogen temperature shallower traps were observed at 0.103, 0.086 and 0.076 eV with respective decay times of 5, 0.4 and 0.09 ms having little sensitivity to changes in the host compostion. These traps are related to intrinsic defects, some of which may be surface in character. The blue shift in emission peak energy with the decrease in band gap from CaS to SrS is discussed.
    Additional Material: 3 Ill.
    Type of Medium: Electronic Resource
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