Department of Periodontology, School of Dentistry, Kyungpook National University, Daegu 41940, Republic of Korea.
J Synchrotron Radiat. 2020 Jan 1;27(Pt 1):199-206. doi: 10.1107/S1600577519015182.
This study explores the application of synchrotron radiation and conventional microcomputed tomography (SR-µCT and C-µCT, respectively) in evaluating bone-biopsy specimens. Bone-biopsy specimens were obtained using a trephine bur during bone-graft removal for implant placement six months after performing a maxillary sinus bone-graft procedure. Image data of specimens were obtained using SR-µCT and C-µCT. SR-µCT was performed using the 6C biomedical imaging beamline at the Pohang Accelerator Laboratory with a monochromatic X-ray beam of 23 keV, and C-µCT was performed using a table-top CT scanner (Skyscan 1272). Reconstruction images obtained using the two methods were qualitatively compared with 2D images evaluated under 3D visualization. The SR-µCT images, especially of the new-bone-graft-woven-bone formation, were less noisy and sharper than the C-µCT images. To evaluate the new-bone-graft-woven-bone formation, only the SR-µCT images showed areas of new bone (NB) formation with bone substitute (BS; Bio-Oss) and woven bone (WB) contact, and correctly visualized true 3D structures of bone formation. Hence, µCT techniques are non-destructive and can provide detailed images of bone biopsy. In particular, SR-µCT can be used to obtain improved image quality with contrast of NB, BS and WB, demonstrating a level of detail comparable with bone formation. SR-µCT could be an unbiased 3D alternative for imaging WB formation and for high-throughput analysis.
本研究探讨了同步辐射和常规微计算机断层扫描(分别为 SR-µCT 和 C-µCT)在评估骨活检标本中的应用。在进行上颌窦骨移植手术后六个月,为了进行种植体植入,使用环钻从骨移植部位取出骨活检标本。使用 SR-µCT 和 C-µCT 对标本进行图像数据采集。SR-µCT 在浦项加速器实验室的 6C 生物医学成像光束线上进行,使用 23keV 的单色 X 射线束,而 C-µCT 使用桌面 CT 扫描仪(Skyscan 1272)进行。使用两种方法获得的重建图像与在 3D 可视化下评估的 2D 图像进行定性比较。与 C-µCT 图像相比,SR-µCT 图像,特别是新骨-骨移植编织骨形成的图像,噪声更小,更清晰。为了评估新骨-骨移植编织骨形成,只有 SR-µCT 图像显示了具有骨替代物(Bio-Oss)和编织骨(WB)接触的新骨(NB)形成区域,并正确可视化了骨形成的真实 3D 结构。因此,µCT 技术是非破坏性的,可以提供骨活检的详细图像。特别是,SR-µCT 可以获得改善的图像质量,具有 NB、BS 和 WB 的对比度,显示出与骨形成相当的细节水平。SR-µCT 可以成为 WB 形成的无偏 3D 替代方法,并且适用于高通量分析。