Biomedical Engineering, Illinois Institute of Technology, Chicago, Illinois, USA.
Medical Imaging Research Center, Illinois Institute of Technology, Chicago, Illinois, USA.
Animal Model Exp Med. 2023 Oct;6(5):427-432. doi: 10.1002/ame2.12340. Epub 2023 Oct 19.
As mammography X-ray imaging technologies advance and provide elevated contrast in soft tissues, a need has developed for reliable imaging phantoms for use in system design and component calibration. In advanced imaging modalities such as refraction-based methods, it is critical that developed phantoms capture the biological details seen in clinical precancerous and cancerous cases while minimizing artifacts that may be caused due to phantom production. This work presents the fabrication of a breast tissue imaging phantom from cadaveric breast tissue suitable for use in both transmission and refraction-enhanced imaging systems.
Human cancer cell tumors were grown orthotopically in nude athymic mice and implanted into the fixed tissue while maintaining the native tumor/adipose tissue interface.
The resulting human-murine tissue hybrid phantom was mounted on a clear acrylic housing for absorption and refraction X-ray imaging. Digital breast tomosynthesis was also performed.
Both attenuation-based imaging and refraction-based imaging of the phantom are presented to confirm the suitability of this phantom's use in both imaging modalities.
随着乳腺 X 射线成像技术的进步,软组织对比度提高,因此需要可靠的成像体模来进行系统设计和组件校准。在折射等先进成像方式中,开发的体模必须能够捕捉到临床癌前和癌性病例中的生物细节,同时最大限度地减少由于体模制作可能产生的伪影。本工作从尸体乳腺组织中制作了一种适合用于透射和折射增强成像系统的乳腺组织成像体模。
在裸鼠中进行原位种植人源癌细胞肿瘤,并在保持肿瘤/脂肪组织天然界面的情况下将其植入固定组织中。
生成的人-鼠组织混合体模安装在透明丙烯酸外壳中,用于吸收和折射 X 射线成像。还进行了数字乳腺断层合成。
呈现了基于衰减的成像和基于折射的成像,以确认该体模在两种成像方式中的适用性。