Vedantham S, Karellas A, Suryanarayanan S, Levis I, Sayag M, Kleehammer R, Heidsieck R, D'Orsi C J
Department of Radiology, UMass Memorial Health Care, University of Massachusetts Medical School, Worcester 01655, USA.
Med Phys. 2000 Aug;27(8):1832-40. doi: 10.1118/1.1286720.
The physical characteristics of a clinical charge coupled device (CCD)-based imager (Senovision, GE Medical Systems, Milwaukee, WI) for small-field digital mammography have been investigated. The imager employs a MinR 2000 (Eastman Kodak Company, Rochester, NY) scintillator coupled by a 1:1 optical fiber to a front-illuminated 61 x 61 mm CCD operating at a pixel pitch of 30 microns. Objective criteria such as modulation transfer function (MTF), noise power spectrum (NPS), detective quantum efficiency (DQE), and noise equivalent quanta (NEQ) were employed for this evaluation. The results demonstrated a limiting spatial resolution (10% MTF) of 10 cy/mm. The measured DQE of the current prototype utilizing a 28 kVp, Mo-Mo spectrum beam hardened with 4.5 cm Lucite is approximately 40% at close to zero spatial frequency at an exposure of 8.2 mR, and decreases to approximately 28% at a low exposure of 1.1 mR. Detector element nonuniformity and electronic gain variations were not significant after appropriate calibration and software corrections. The response of the imager was linear and did not exhibit signal saturation under tested exposure conditions.
已对用于小视野数字乳腺摄影的基于临床电荷耦合器件(CCD)的成像器(Senovision,通用电气医疗系统公司,威斯康星州密尔沃基)的物理特性进行了研究。该成像器采用MinR 2000(伊士曼柯达公司,纽约州罗切斯特)闪烁体,通过1:1光纤耦合到像素间距为30微米的前照式61×61毫米CCD。评估采用了调制传递函数(MTF)、噪声功率谱(NPS)、探测量子效率(DQE)和噪声等效量子(NEQ)等客观标准。结果表明极限空间分辨率(10% MTF)为10 cy/mm。使用28 kVp的钼-钼光谱束并通过4.5厘米厚的有机玻璃进行束硬化处理的当前原型,在8.2 mR的曝光量下,接近零空间频率时测得的DQE约为40%,在1.1 mR的低曝光量下降至约28%。经过适当校准和软件校正后,探测器元件的不均匀性和电子增益变化不显著。在测试的曝光条件下,成像器的响应呈线性,未出现信号饱和现象。