Refine
Year of publication
- 2004 (323) (remove)
Institute
- Fachbereich Medizintechnik und Technomathematik (85)
- Fachbereich Wirtschaftswissenschaften (37)
- Fachbereich Elektrotechnik und Informationstechnik (35)
- Fachbereich Energietechnik (35)
- INB - Institut für Nano- und Biotechnologien (35)
- IfB - Institut für Bioengineering (30)
- Fachbereich Maschinenbau und Mechatronik (24)
- Fachbereich Luft- und Raumfahrttechnik (23)
- Fachbereich Bauingenieurwesen (20)
- Fachbereich Chemie und Biotechnologie (15)
Language
- English (161)
- German (160)
- Portuguese (2)
Document Type
- Article (214)
- Conference Proceeding (37)
- Book (35)
- Lecture (6)
- Report (6)
- Part of a Book (5)
- Doctoral Thesis (4)
- Patent (4)
- Study Thesis (4)
- Other (3)
Keywords
- Bauingenieurwesen (4)
- Betriebswirtschaftslehre (4)
- Bologna-Prozess (4)
- CAD (4)
- ECTS (4)
- Filmregie (4)
- Finanzierung (4)
- Liquiditätspolitik (4)
- civil engineering (4)
- Aachen University of Applied Sciences (3)
Wasserwirtschaft
(2004)
This paper examines the positive and negative aspects of a range of interpretations of nearest-neighbours models. Measures-oriented and distributionoriented verification methods are applied to categorial, probabilistic and descriptive interpretations of nearest neighbours used operationally in avalanche forecasting in Scotland and Switzerland. The dependence of skill and accuracy measures on base rate is illustrated. The purpose of the forecast and the definition of events are important variables in determining the quality of the forecast. A discussion of the application of different interpretations in operational avalanche forecasting is presented.
Verfahren zur Bestimmung des enzymatischen Status humaner Haut in vitro [Offenlegungsschrift]
(2004)
The ClearPET™ project is proposed by working groups of the Crystal Clear Collaboration (CCC) to develop a 2nd generation high performance small animal positron emission tomograph (PET). High sensitivity and high spatial resolution is foreseen for the ClearPET™ camera by using a phoswich arrangement combining mixed lutetium yttrium aluminum perovskite (LuYAP:Ce) and lutetium oxyorthosilicate (LSO) scintillating crystals. Design optimizations for the first photomultiplier tube (PMT) based ClearPET camera are done with a Monte-Carlo simulation package implemented on GEANT3 (CERN, Geneva, Switzerland). A dual-head prototype has been built to test the frontend electronics and was used to validate the implementation of the GEANT3 simulation tool. Multiple simulations were performed following the experimental protocols to measure the intrinsic resolution and the sensitivity profile in axial and radial direction. Including a mean energy resolution of about 27.0% the simulated intrinsic resolution is about (1.41±0.11)mm compared to the measured of (1.48±0.06)mm. The simulated sensitivity profiles show a mean square deviation of 12.6% in axial direction and 3.6% in radial direction. Satisfactorily these results are representative for all designs and confirm the scanner geometry.
Bei der Einführung von Bachelor- und Masterstudiengängen sind die entsprechenden gesetzlichen Anforderungen zu beachten sowie die Anforderungen von Akkreditierungsrat und Akkreditierungsagentur. Bachelor- und Masterstudiengänge müssen modularisiert sein und in ein Leistungspunktesystem integriert. Die Leistungspunkte müssen auf der tatsächlichen Arbeitsbelastung der Studierenden basieren. Bei der Konzeption von Bachelor- und Masterstudiengängen soll zunächst eine Bedarfsermittlung erfolgen. Besteht ein Bedarf, soll ein Abschlussprofil basierend auf den Kompetenzen (besondere Beachtung verdienen die Schlüsselqualifikationen), über die der Absolvent verfügen soll, erstellt werden. Aus diesem wird ein Curriculum mit Modulen abgeleitet. Die Module werden mit Leistungspunkten versehen und auf einem Modulbogen zwecks Transparenz beschrieben. Dabei ist der Paradigmenwechsel vom Lehrenden zum Lernenden zu beachten – Lernergebnisse statt Lernziele. Die Lernergebnisse werden mittels Kompetenzen ausgedrückt. Der Studiengang wird des weiteren im Diploma Supplement, welches der Studierende bei Abschluss zusätzlich zum Zeugnis erhält, dokumentiert. ECTS ist aber auch mit weiteren Auflagen verbunden. Noch herrührend von ECTS als reinem Transfersystem müssen beim Austausch von Studierenden die Formulare ECTS Application, Learning Agreement und Transcript of Records vom Fachbereich in Abstimmung mit der jeweiligen Partnerhochschule ausgefüllt werden, (siehe Anlagen 4 und 5). Zur Information aller Studierenden sollen die folgenden Dokumente bereitstehen: Ein Ratgeber für Gaststudierende, eine Beschreibung der Hochschule und der Fachbereiche (nach bestimmten Kriterien) sowie Beschreibungen aller Module (siehe Anlage). Die Fachhochschule hat diese Informationen schon zum größten Teil auf ihrer Website dargestellt. Wichtig ist die Pflege der Daten, die von den einzelnen Fachbereichen bzw. den Lehrenden übernommen werden muss, da nur sie die Richtigkeit und Aktualität der Daten gewährleisten können.
IASSE-2004 - 13th International Conference on Intelligent and Adaptive Systems and Software Engineering eds. W. Dosch, N. Debnath, pp. 245-250, ISCA, Cary, NC, 1-3 July 2004, Nice, France We introduce a UML-based model for conceptual design support in civil engineering. Therefore, we identify required extensions to standard UML. Class diagrams are used for elaborating building typespecific knowledge: Object diagrams, implicitly contained in the architect’s sketch, are validated against the defined knowledge. To enable the use of industrial, domain-specific tools, we provide an integrated conceptual design extension. The developed tool support is based on graph rewriting. With our approach architects are enabled to deal with semantic objects during early design phase, assisted by incremental consistency checks.
TOP-Energy : softwaregestützte Analyse und Optimierung industrieller Energieversorgungssysteme
(2004)
The entangled Universe
(2004)
A 2nd generation high performance small animal PET scanner, called ClearPET™, has been designed and a first prototype is built by working groups of the Crystal Clear Collaboration (CCC). In order to achieve high sensitivity and maintain good uniform spatial resolution over the field of view in high resolution PET systems, it is necessary to extract the depth of interaction (DOI) information and correct for spatial degradation. The design of the first ClearPET™ Demonstrator based on the use of the multi-anode photomultiplier tube (Hamamatsu R7600-M64) and a LSO/LuYAP phoswich matrix. The two crystal layers of 8*8 crystals (2*2*10 mm3) are stacked on each other and mounted without light guide as one to one on the PMT. A unit of four PMTs arranged in-line represents one of 20 sectors of the ring design. The opening diameter of the crystal ring is 137 mm, the axial detector length is 110 mm. The PMT pulses are digitized by free-running ADCs and digital data processing determines the gamma energy, the phoswich layer and even the pulse arrival time. Single gamma interactions are recorded and coincidences are found by software. The gantry allows rotation of the detector modules around the field of view. The measurements have been done using the first LSO/LuYAP detector cassettes.
The ClearPET project
(2004)
The Crystal Clear Collaboration has designed and is building a high-resolution small animal PET scanner. The design is based on the use of the Hamamatsu R7600-M64 multi-anode photomultiplier tube and a LSO/LuYAP phoswich matrix with one to one coupling between the crystals and the photo-detector. The complete system will have 80 PM tubes in four rings with an inner diameter of 137 mm and an axial field of view of 110 mm. The PM pulses are digitized by free-running ADCs and digital data processing determines the gamma energy, the phoswich layer and even the pulse arrival time. Single gamma interactions are recorded and coincidences are found by software. The gantry allows rotation of the detector modules around the field of view. Simulations, and measurements a 2×4 module test set-up predict a spatial resolution of 1.5 mm in the centre of the field of view and a sensitivity of 5.9% for a point source in the centre of the field of view.
Within the Crystal Clear Collaboration a modular system for a small animal PET scanner (ClearPET™) has been developed. The modularity allows the assembly of scanners of different sizes and characteristics in order to fit the specific needs of the individual member institutions. Now a first demonstrator is being completed in Julich. The system performs depth of interaction detection by using a phoswich arrangement combining LSO and LuYAP scintillators which are coupled to multi-channel photomultipliers (PMTs). A free-running ADC digitizes the signal from the PMT and the complete scintillation pulses are sampled by an FPGA and sent with 20 MB/S to a PC for preprocessing. The pulse provides information about the gamma energy and the scintillator material which identifies the interaction layer. Furthermore, the exact pulse starting time is obtained from the sampled data. This is important as no hardware coincidence detection is implemented. All single events are recorded and coincidences are identified by software. An advantage of that is that the coincidence window and the dimensions of the field of view can be adjusted easily. The ClearPET™ demonstrator is equipped with 10240 crystals on 80 PMTs. This paper presents an overview of the data acquisition system.
Stahlbau
(2004)