Van Eeden Déte, Du Plessis Freek C P
Department of Medical Physics, University of the Free State, Bloemfontein, South Africa.
J Med Phys. 2019 Apr-Jun;44(2):106-112. doi: 10.4103/jmp.JMP_48_18.
Photon-counting detectors and breast computed tomography imaging have been an active area of research. With these detectors, photons are assigned an equal weight and weighting schemes can be enabled. More weight can be assigned to lower energies, resulting in an increase in the contrast-to-noise ratio (CNR).
The aim of this study is to develop and evaluate an energy weighting imaging technique to improve the CNR of simulated breast phantoms and to improve tumour detection.
Breast phantoms consisting of adipose, glandular, malignant tissues and iodine contrast were constructed with BreastSimulator software. The phantoms were used in egs_cbct simulations for energies ranging between 20 and 65 keV from which multiple images were reconstructed. A new CNR-based image weighting method was proposed based on the CNR values obtained from the images. This method improves on previous methods and can be applied to complicated phantoms since no structural information is needed.
An increase in the CNR can be seen for lower energies. A sharp increase in the CNR is seen just above the K-edge for the phantoms with the iodine contrast. The CNR-based image weighting leads to a 68.47% (1.68-fold) increase in the CNR for the malignant tissue without iodine. For the malignant tissue with iodine contrast, the increase in the CNR was 96.14% (1.96-fold).
The new proposed CNR-based image weighting scheme is easy to implement and can be used for complicated phantoms with varying structures. A large increase in the CNR is seen with or without the use of iodine contrast.
光子计数探测器和乳腺计算机断层扫描成像一直是一个活跃的研究领域。使用这些探测器时,光子被赋予相等的权重,并且可以启用加权方案。可以给较低能量赋予更多权重,从而提高对比度噪声比(CNR)。
本研究的目的是开发和评估一种能量加权成像技术,以提高模拟乳腺体模的CNR并改善肿瘤检测。
使用BreastSimulator软件构建由脂肪、腺体、恶性组织和碘造影剂组成的乳腺体模。这些体模用于egs_cbct模拟,模拟能量范围为20至65keV,从中重建多幅图像。基于从图像中获得的CNR值,提出了一种新的基于CNR的图像加权方法。该方法改进了以前的方法,并且由于不需要结构信息,因此可以应用于复杂的体模。
对于较低能量,可以看到CNR有所增加。对于含有碘造影剂的体模,在K边缘上方可以看到CNR急剧增加。基于CNR的图像加权使不含碘的恶性组织的CNR提高了68.47%(1.68倍)。对于含有碘造影剂的恶性组织,CNR的增加为96.14%(1.96倍)。
新提出的基于CNR的图像加权方案易于实施,可用于具有不同结构的复杂体模。无论是否使用碘造影剂,CNR都有大幅提高。