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使用分布式碳纳米管 X 射线源阵列的高分辨率静态数字乳腺断层合成术。

High resolution stationary digital breast tomosynthesis using distributed carbon nanotube x-ray source array.

机构信息

Department of Physics and Astronomy, University of North Carolina, Chapel Hill, NC 27599, USA.

出版信息

Med Phys. 2012 Apr;39(4):2090-9. doi: 10.1118/1.3694667.

Abstract

PURPOSE

The purpose of this study is to investigate the feasibility of increasing the system spatial resolution and scanning speed of Hologic Selenia Dimensions digital breast tomosynthesis (DBT) scanner by replacing the rotating mammography x-ray tube with a specially designed carbon nanotube (CNT) x-ray source array, which generates all the projection images needed for tomosynthesis reconstruction by electronically activating individual x-ray sources without any mechanical motion. The stationary digital breast tomosynthesis (s-DBT) design aims to (i) increase the system spatial resolution by eliminating image blurring due to x-ray tube motion and (ii) reduce the scanning time. Low spatial resolution and long scanning time are the two main technical limitations of current DBT technology.

METHODS

A CNT x-ray source array was designed and evaluated against a set of targeted system performance parameters. Simulations were performed to determine the maximum anode heat load at the desired focal spot size and to design the electron focusing optics. Field emission current from CNT cathode was measured for an extended period of time to determine the stable life time of CNT cathode for an expected clinical operation scenario. The source array was manufactured, tested, and integrated with a Selenia scanner. An electronic control unit was developed to interface the source array with the detection system and to scan and regulate x-ray beams. The performance of the s-DBT system was evaluated using physical phantoms.

RESULTS

The spatially distributed CNT x-ray source array comprised 31 individually addressable x-ray sources covering a 30 angular span with 1 pitch and an isotropic focal spot size of 0.6 mm at full width at half-maximum. Stable operation at 28 kV(peak) anode voltage and 38 mA tube current was demonstrated with extended lifetime and good source-to-source consistency. For the standard imaging protocol of 15 views over 14, 100 mAs dose, and 2 × 2 detector binning, the projection resolution along the scanning direction increased from 4.0 cycles/mm [at 10% modulation-transfer-function (MTF)] in DBT to 5.1 cycles/mm in s-DBT at magnification factor of 1.08. The improvement is more pronounced for faster scanning speeds, wider angular coverage, and smaller detector pixel sizes. The scanning speed depends on the detector, the number of views, and the imaging dose. With 240 ms detector readout time, the s-DBT system scanning time is 6.3 s for a 15-view, 100 mAs scan regardless of the angular coverage. The scanning speed can be reduced to less than 4 s when detectors become faster. Initial phantom studies showed good quality reconstructed images.

CONCLUSIONS

A prototype s-DBT scanner has been developed and evaluated by retrofitting the Selenia rotating gantry DBT scanner with a spatially distributed CNT x-ray source array. Preliminary results show that it improves system spatial resolution substantially by eliminating image blur due to x-ray focal spot motion. The scanner speed of s-DBT system is independent of angular coverage and can be increased with faster detector without image degration. The accelerated lifetime measurement demonstrated the long term stability of CNT x-ray source array with typical clinical operation lifetime over 3 years.

摘要

目的

本研究旨在通过用专门设计的碳纳米管(CNT)X 射线源阵列替换旋转乳腺 X 射线管,来提高 Hologic Selenia Dimensions 数字乳腺断层合成(DBT)扫描仪的系统空间分辨率和扫描速度。该阵列通过电子激活单个 X 射线源而无需任何机械运动,生成断层合成重建所需的所有投影图像。静态数字乳腺断层合成(s-DBT)设计旨在(i)通过消除 X 射线管运动引起的图像模糊来提高系统空间分辨率,(ii)减少扫描时间。低空间分辨率和长扫描时间是当前 DBT 技术的两个主要技术限制。

方法

设计了 CNT X 射线源阵列,并针对一系列目标系统性能参数进行了评估。进行了模拟以确定在所需焦点尺寸下最大的阳极热负荷,并设计电子聚焦光学器件。对 CNT 阴极的场发射电流进行了长时间测量,以确定 CNT 阴极在预期临床操作场景下的稳定寿命。制造、测试并将源阵列集成到 Selenia 扫描仪中。开发了一个电子控制单元,用于将源阵列与检测系统接口,并扫描和调节 X 射线束。使用物理体模评估 s-DBT 系统的性能。

结果

空间分布的 CNT X 射线源阵列由 31 个可单独寻址的 X 射线源组成,覆盖 30 个角跨度,具有 1 个间距和 0.6mm 的各向同性焦点尺寸,半高全宽处为 0.6mm。在 28kV(峰值)阳极电压和 38mA 管电流下,证明了稳定的工作,具有扩展的寿命和良好的源到源一致性。对于 15 个视图的标准成像协议,14 个视图,100mAs 剂量和 2×2 探测器 binning,在放大因子为 1.08 时,沿扫描方向的投影分辨率从 DBT 的 4.0 个周期/mm[在 10%调制传递函数(MTF)]提高到 s-DBT 的 5.1 个周期/mm。对于更快的扫描速度、更宽的角度覆盖范围和更小的探测器像素尺寸,这种改进更为明显。扫描速度取决于探测器、视图数量和成像剂量。使用 240ms 的探测器读出时间,无论角度覆盖范围如何,s-DBT 系统的扫描时间均为 6.3s,用于 15 个视图,100mAs 扫描。当探测器更快时,扫描速度可以降低到 4 秒以下。初步的体模研究表明,重建图像质量良好。

结论

通过用空间分布的 CNT X 射线源阵列对 Selenia 旋转龙门 DBT 扫描仪进行改装,已经开发并评估了原型 s-DBT 扫描仪。初步结果表明,它通过消除由于 X 射线焦点运动引起的图像模糊,大大提高了系统的空间分辨率。s-DBT 系统的扫描速度与角度覆盖范围无关,可以通过使用更快的探测器而不会降低图像质量来提高。加速寿命测试证明了 CNT X 射线源阵列具有典型临床操作寿命超过 3 年的长期稳定性。

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