Dose Exposure of Patients Undergoing Comprehensive Stroke Imaging by Multidetector-Row CT: Comparison of 320-Detector Row and 64-Detector Row CT Scanners

被引:77
作者
Diekmann, S. [1 ]
Siebert, E.
Juran, R.
Roll, M. [2 ]
Deeg, W. [2 ]
Bauknecht, H. -C.
Diekmann, F. [3 ]
Klingebiel, R.
Bohner, G.
机构
[1] Charite, Dept Neuroradiol, Charite Ctr 6, Charite Campus Mitte, D-10117 Berlin, Germany
[2] Beuth Hsch Tech, Fachbereich 2, Fachgrp Phys, Lab Rontgentech, Berlin, Germany
[3] Charite Campus Virchow, Charite Ctr 6, Dept Radiol, Berlin, Germany
关键词
CONE-BEAM CT; COMPUTED-TOMOGRAPHY; CLINICAL-EXPERIENCE; RADIATION-DOSIMETRY; FILM DOSIMETRY; 256-SLICE CT; EYE LENS; PROTECTION; PERFUSION; PROFILES;
D O I
10.3174/ajnr.A1971
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
BACKGROUND AND PURPOSE: Recently introduced 320-detector row CT enables whole brain perfusion imaging compared to a limited scanning area in 64-detector row CT. Our aim was to evaluate patient radiation exposure in comprehensive stroke imaging by using multidetector row CT consisting of standard CT of the head, CTA of cerebral and cervical vessels, and CTP. MATERIAL AND METHODS: Organ doses were measured by using LiF-TLDs located at several organ sites in an Alderson-Rando phantom. Effective doses were derived from these measurements. Stroke protocols including noncontrast head CT, CTA of cerebral and cervical vessels, and CTP were performed on 320- and 64-detector row scanners. RESULTS: Measured effective doses for the different scanning protocols ranged between 1.61 and 4.56 mSv, resulting in an effective dose for complete stroke imaging of 7.52/7.54 mSv (m/f) for 64-detector row CT and 10.56/10.6 mSv (m/f) for 320-detector row CT. The highest organ doses within the area of the primary beam were measured in the skin (92 mGy) and cerebral hemispheres (69.91 mGy). Use of an eye-protection device resulted in a 54% decrease of the lens dose measured for the combo protocol for whole-brain perfusion with the 320-detector row CT scanner. CONCLUSIONS: Phantom measurements indicate that comprehensive stroke imaging with multidetector row CT may result in effective radiation doses from 7.52 mSv (64-detector row CT) to 10.6 mSv (320-detector row CT). The technique of 320-detector row CT offers additional information on the time course of vascular enhancement and whole-brain perfusion. Physicians should weigh the potential of the new technique against the higher radiation dose that is needed. Critical doses that would cause organ damage were not reached.
引用
收藏
页码:1003 / 1009
页数:7
相关论文
共 23 条
[1]  
[Anonymous], 2007, ANN ICRP, V37, P1, DOI 10.1016/j.icrp.2007.11.001
[2]   Improved vascular opacification in cerebral computed tomography angiography with 80 kVp [J].
Bahner, ML ;
Bengel, A ;
Brix, G ;
Zuna, I ;
Kauczor, HU ;
Delorme, S .
INVESTIGATIVE RADIOLOGY, 2005, 40 (04) :229-234
[3]  
BOHNER G, 2003, ROFO FORTSCHR RONTG, V1785, P806
[4]   The trouble with CTDI100 [J].
Boone, John M. .
MEDICAL PHYSICS, 2007, 34 (04) :1364-1371
[5]   Parameters affecting bolus geometry in CTA: A review [J].
Cademartiri, F ;
van der Lugt, A ;
Luccichenti, G ;
Pavone, P ;
Krestin, GP .
JOURNAL OF COMPUTER ASSISTED TOMOGRAPHY, 2002, 26 (04) :598-607
[6]  
Cohnen M, 2006, AM J NEURORADIOL, V27, P1741
[7]  
Colombo Paola, 2004, Radiol Med, V108, P560
[8]   FILM DOSIMETRY SYSTEM FOR USE IN COMPUTED TOMOGRAPHY [J].
DIXON, RL ;
EKSTRAND, KE .
RADIOLOGY, 1978, 127 (01) :255-258
[9]   Computed tomography dose assessment for a 160 mm wide, 320 detector row, cone beam CT scanner [J].
Geleijns, J. ;
Artells, M. Salvado ;
Bruin, P. Wde ;
Matter, R. ;
Muramatsu, Y. ;
McNitt-Gray, M. F. .
PHYSICS IN MEDICINE AND BIOLOGY, 2009, 54 (10) :3141-3159
[10]   Low-dose CT of the paranasal sinuses with eye lens protection: effect on image quality and radiation dose [J].
Hein, E ;
Rogalla, P ;
Klingebiel, R ;
Hamm, B .
EUROPEAN RADIOLOGY, 2002, 12 (07) :1693-1696