Real-time radio-transparent dosimeter for X-ray imaging system

被引:4
|
作者
Staub, D [1 ]
Cailleret, J [1 ]
Guyonnet, JL [1 ]
Le, TD [1 ]
Wurtz, J [1 ]
机构
[1] Univ Strasbourg 1, CNRS, IN2P3, IReS Inst Rech Subatom, F-67037 Strasbourg 2, France
关键词
X-ray imaging; dosimetry; real time; transparent dosimeter; scintillating fibers; multianode PMT;
D O I
10.1016/j.nima.2004.03.078
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Possible consequences of using X-ray devices as imaging support during surgical practices may be the development of skin diseases due to the combination of high local dose and long exposition time. Our group developed an original dosimeter which meets the following requirements: transparency to X-ray to avoid image degradation, measurement and localization in real-time of the dose absorbed by the skin on the whole exposed surface. The main purpose of this dosimeter is to allow the practitioner to change the beam orientation during the intervention in order to reduce the local dose and then avoid, in the extreme cases, the development of tumors. The dosimeter is composed of a lattice of scintillator fibers connected to a 64 channels photomultiplier tube. The detector combined with an appropriate electronics provides in real time an accurate measurement of the dose on the whole exposed surface. A linear relation between the photon count rate and the dose is demonstrated. Our dosimeter provides also in real time a map of the dose which leads to a very efficient monitoring of the dose during all the exposition time. (C) 2004 Elsevier B.V. All rights reserved.
引用
收藏
页码:303 / 307
页数:5
相关论文
共 50 条
  • [21] X-ray based real-time tracking
    Nguyen, D. T.
    RADIOTHERAPY AND ONCOLOGY, 2022, 170 : S617 - S618
  • [22] Real-time simulation for x-ray microanalysis
    Brundle, D
    Uritsky, Y
    Chernoff, D
    SOLID STATE TECHNOLOGY, 1996, 39 (03) : 105 - &
  • [23] Flat X-ray image intensifier system for real-time fluoroscopy
    Onihashi, H
    Aida, H
    Nou, K
    Noji, T
    Murakoshi, Y
    Saito, K
    Koma, J
    MEDICAL IMAGING 2000: PHYSICS OF MEDICAL IMAGING, 2000, 3977 : 145 - 150
  • [24] A real-time weld defect inspection system in X-ray images
    Sun, Y
    Wang, EL
    Zhou, P
    Li, M
    OPTICAL INFORMATION PROCESSING TECHNOLOGY, 2002, 4929 : 282 - 287
  • [25] X-RAY REAL-TIME IMAGING FOR WELD INSPECTION - IIW PROGRESS REPORT
    不详
    BRITISH JOURNAL OF NON-DESTRUCTIVE TESTING, 1986, 28 (02): : 89 - 92
  • [26] Key techniques of the X-ray inspection real-time imaging pipeline robot
    Deng, Zongquan
    Xu, Fengping
    Zhang, Xiaohua
    Chen, Hongjun
    High Technology Letters, 2004, 10 (02) : 54 - 56
  • [27] Real-time wavelet denoising with edge enhancement for medical x-ray imaging
    Luo, Gaoyong
    Osypiw, David
    Hudson, Chris
    REAL-TIME IMAGE PROCESSING 2006, 2006, 6063
  • [28] Development and validation of real-time simulation of X-ray imaging with respiratory motion
    Vidal, Franck P.
    Villard, Pierre-Frederic
    COMPUTERIZED MEDICAL IMAGING AND GRAPHICS, 2016, 49 : 1 - 15
  • [29] DIGITAL VIDEO IMAGE PROCESSOR FOR REAL-TIME X-RAY SUBTRACTION IMAGING
    KRUGER, RA
    MISTRETTA, CA
    LANCASTER, J
    HOUK, TL
    GOODSITT, M
    SHAW, CG
    RIEDERER, SJ
    HICKS, J
    SACKETT, J
    CRUMMY, AB
    FLEMING, D
    OPTICAL ENGINEERING, 1978, 17 (06) : 652 - 657
  • [30] Real-time observation of electrorheological fluids using synchrotron X-ray imaging
    Yoon, Seok Ho
    Seol, Seung Kwon
    Je, Jung Ho
    Kim, Hun-Sik
    Choi, Hyoung Jin
    Jin, Hyoung-Joon
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2008, 313 : 557 - 561