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134篇 您的检索式:作者名="UlzheimerS"
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1在最后三扫描仪代的 CT 剂量和图象质量显示文摘 AIM: To compare the computed tomography(CT) dose and image quality with the filtered back projection against the iterative reconstruction and CT with a minimal electronic noise detector. METHODS: A lung phantom(Chest Phantom N1 by Kyoto Kagaku) was scanned with 3 different CT scanners: the Somatom Sensation, the Definition Flash and the Definition Edge(all from Siemens, Erlangen, Germany). The scan parameters were identical to the Siemens presetting for THORAX ROUTINE(scan length 35 cm and FOV 33 cm). Nine different exposition levels were examined(reference mAs/peek voltage): 100/120, 100/100, 100/80, 50/120, 50/100, 50/80, 25/120, 25/100 and 25 mAs/80 kVp. Images from the SOMATOM Sensation were reconstructed using classic filtered back projection. Iterative reconstruction(SAFIRE, level 3) was performed for the two other scanners. A Stellar detector was used with the Somatom Definition Edge. The CT doses were represented by the dose length products(DLPs)(mGycm) provided by the scanners. Signal, contrast, noise and subjective image quality were recorded by two different radiologists with 10 and 3 years of experience in chest CT radiology. To determine the average dose reduction between two scanners, the integral of the dose difference was calculated from the lowest to the highest noise level. RESULTS: When using iterative reconstruction(IR) instead of filtered back projection(FBP), the average dose reduction was 30%, 52% and 80% for bone, soft tissue and air, respectively, for the same image quality(P < 0.0001). The recently introduced Stellar detector(Sd) lowered the radiation dose by an additional 27%, 54% and 70% for bone, soft tissue and air, respectively(P < 0.0001). The benefit of dose reduction was larger at lower dose levels. With the same radiation dose, an average of 34%(22%-37%) and 25%(13%-46%) more contrast to noise was achieved by changing from FBP to IR and from IR to Sd, respectively. For the same contrast to noise level, an average of 59%(46%-71%) and 51%(38%-68%) dose reduction was produced for IR and Sd, respectively. For the same subjective image quality, the dose could be reduced by 25%(2%-42%) and 44%(33%-54%) using IR and Sd, respectively. CONCLUSION: This study showed an average dose reduction between 27% and 70% for the new Stellar detector, which is equivalent to using IR instead of FBP.Andreas Christe Johannes Heverhagen Christoph Ozdoba Christian Weisstanner Stefan Ulzheimer Lukas Ebner 2013World Journal of Radiology2013,5,11:10
2Detection of Coronary Artery Stenoses With Thin-Slice Multi-Detector Row Spiral Computed Tomography and Multiplanar Reconstruction显示文摘Dieter Ropers Ulrich Baum Karsten Pohle Katharina Anders Stefan Ulzheimer Bernd Ohnesorge Christian Schlundt Werner Bautz Werner G. Daniel Stephan Achenbach 2003Circulation: Journal of the American Heart Association2003,,5:2
3Investigation of aortocoronary artery bypass grafts by multislice spiral computed tomography with eletrocardiographic-gated image reconstruction显示文摘Ropers D Ulzheimer S Wenkel E 2001Am J Cardiol2001,88,7:1
4Noninvasive coronary angiograph by retrospectively ECG-gated multisliee spiral CT显示文摘Achenbach S Ulzheimer S Baum U 2000Circulation2000,102,:1
5Noninvasive cornary angiograply by retrospectively ECG-Cated multislice spiral CT 显示文摘Achenbach ST Ulzheimers 2000Circulation2000,102,24:1
6Investigation of aortocoronaryartery bypass grafts by multislice spiral computed tomography with electrocardiographic-gated image reconstruction显示文摘Ropers D Ulzheimer S Wenkel E 2001Am J Cardiol2001,88,7:1
7Assessment of calcium scoring performance in cardiac computed tomography显示文摘Ulzheimer S Kalender WA 2003Eur Radiol2003,13,:1
8Noninvasive coronary angiography by retrospectively ECG-gated multislice spiral CT显示文摘 Ulzheimer S Baum U 2000Cimulation2000,102,23:1
9Investigation of aortocoronary artery bypass grafts by multi-slice spiral computed tomography with electrocardiographic-gated image reconstruction 显示文摘Ropers D Ulzheimer S Wenkel E 2001Am J cardiol2001,88,7:1
10ECG-correlated imaging of the heart with subsecond muhislice spiral CT 显示文摘Kachelriess M Ulzheimer S Kalender WA 2000Medical Imaging2000,9,19:1
11Noninvasive coronary angiography by retrospectively ECG gated multi - slice spiral CT显示文摘Achenbaeh S UlzheimerS Baum U 2000Circulation2000,102,12:1
12Image re- construction and image quality evaluation for a 64-slice CT scanner with z-flying focal spot显示文摘FLOHR T G STIERSTORFER K ULZHEIMER S 2005Meal Phys2005,32,8:1
13Assessment of calcium scoring per- formance in cardiac computed tomography显示文摘Ulzheimer S Kalender W A 2003Eur Radiol2003,13,3:1
14Image reconstruction and image quality evaluation for a 64 slice CT scanner with z-fly- ing focal spot显示文摘Flohr TG Stierstorfer K Ulzheimer S 2005Med Phys2005,32,8:1
15Noninvasive coronary angiography by retrospectively ECG-gated multislice spiral CT显示文摘Achenbach S Ulzheimer S Baumu U 2000Circulation2000,102,:1
16Image reconstruction and image quality evaluation for a 64-slice CT scanner with Z-flying focal spot显示文摘Flohr T Stierstorfer K Ulzheimer S 2005Med Phys2005,32,8:1
17Investigation of Aortocoronary Artery Bypass Grafts by Multislice Spiral Computed Tomography with Electrocardiographic-gated Image Reconstruction显示文摘Ropers D Ulzheimer S Wenkel E 2001Am J Cardiol2001,88,7:1
18CARE kV How to Optimize Individualized Dose 显示文摘ULzheimer S Endt H Leidecker C 2011SOMATOM Ses- sions2011,28,5:1
19Invertigation of aortocoronary artery bypass graft by multislice spiral computer tomography with electrocardlographyic-galed image reconstruction 显示文摘Ropers D Ulzheimer S Wenkel W 2001Am J Cardiol2001,88,2:1
20Noninvasive coronary angiography by retrospectively ECG-gated multislice spiral CT显示文摘 Ulzheimer S Baum U 2000Circulation2000,102,28:1
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