Wu Wen, Liu Siyu, Wang Lei, Wu Bing, Zhao Lulu, Jiang Wenbo, Dai Kerong, Hao Yongqiang, Fu Lingjie, Ai Songtao
Department of Orthopaedics, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai Key Laboratory of Orthopaedic Implants, Shanghai, China.
Department of Radiology, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Front Genet. 2022 Jul 22;13:955643. doi: 10.3389/fgene.2022.955643. eCollection 2022.
The objective of the study was to investigate the effectiveness of applying the individualized guide plate which is based on digital image processing and 3D printing technology to percutaneous needle biopsy of periacetabular tumor. From July 2017 to August 2019, 11 patients (5 males and 6 females, aged 13-70 years, mean 42.3 years) with acetabular tumors diagnosed by needle biopsy in our hospital were enrolled in this retrospective study. Preoperative CT and MRI enhancement examination were performed routinely, and the DICOM data were collected and imported into Medraw Print software. According to the specific anatomical morphology of acetabula, this study adopted the reverse calculation and direct design to print the individualized puncture guide plate using 3D printing technology. The puncture point and sampling approaches were determined by the guide plate morphology and the "double guide-hole and slideable groove" design. First, we evaluated the fitness of the 3D guide plate to the local anatomical structure, its assisted-puncture accuracy was estimated by imaging examinations, and postoperative complications were recorded. The accuracy of the needle biopsy pathological result was estimated with reference to that of the tumor resection. Our results showed that the 3D printing individualized guide plate matched the patients' pelvic skin well, the puncture approach was consistent with the preoperative design, and no significant anatomical injuries including vascular and neural complications occurred after surgery. Nine patients' (90%) biopsy results were consistent with their postoperative pathological results, and one patient gave up the tumor resection. Based on digital image processing and 3D printing technology, the individualized guide plate can be used to guide the needle biopsy of acetabular tumors which makes the operation simpler and more precise.
本研究的目的是探讨基于数字图像处理和3D打印技术的个体化导板在髋臼周围肿瘤经皮穿刺活检中的应用效果。2017年7月至2019年8月,对我院经穿刺活检确诊为髋臼肿瘤的11例患者(男5例,女6例,年龄13 - 70岁,平均42.3岁)进行了这项回顾性研究。常规进行术前CT和MRI增强检查,收集DICOM数据并导入Medraw Print软件。根据髋臼的具体解剖形态,本研究采用逆向计算和直接设计,利用3D打印技术打印个体化穿刺导板。穿刺点和取材路径由导板形态及“双导孔和可滑动槽”设计确定。首先,评估3D导板与局部解剖结构的适配性,通过影像学检查评估其辅助穿刺准确性,并记录术后并发症。参照肿瘤切除病理结果评估穿刺活检病理结果的准确性。结果显示,3D打印个体化导板与患者骨盆皮肤贴合良好,穿刺路径与术前设计一致,术后未发生包括血管和神经并发症在内的明显解剖损伤。9例患者(90%)的活检结果与术后病理结果一致,1例患者放弃肿瘤切除。基于数字图像处理和3D打印技术的个体化导板可用于指导髋臼肿瘤的穿刺活检,使操作更简单、精确。