Department of Biomedical Engineering, Tulane University, New Orleans, LA, 70118, USA.
Bioinnovation Program, Tulane University, New Orleans, LA, 70118, USA.
Sci Rep. 2020 Jan 10;10(1):131. doi: 10.1038/s41598-019-56939-1.
Positive surgical margins, or cancer cells found at the boundary of an excised tumor mass, are a significant problem in the management of many cancers resulting in worsened patient outcomes. The problem is exacerbated in organ sites such as the prostate, where unnecessarily wide local excisions can result in significant deterioration of post-operative quality of life due to collateral damage to neighboring structures. Yet, at the same time, incomplete tumor removal results in worsened prognosis and need for additional interventions. Here, we report the design and development of a rapid and completely automated system for intraoperative gigapixel ex vivo microscopy of the circumferential surgical prostate margin within intra-operative timeframes, called the Automated Prostate Positioning System (APPS). The APPS leverages the rotational geometry of the prostate and high speed structured illumination microscopy (SIM) to generate continuous gigapixel panoramas of the fresh intact prostate circumference, including areas of the prostate adjacent to the neurovascular bundles, the rectum, and the bladder wall. Our previous work using SIM and a manual prostate handling method demonstrated the promise of the imaging technique for accurate detection of positive surgical margins. Our work here advances the technology toward clinical adoption, by demonstrating 10% greater tissue surface coverage fraction, 1.6× faster imaging throughput, and reduced number of required operator steps, compared to our prior approach. The APPS may be operated by a single person in the operating room suite within intraoperative time limits, while simultaneously delivering nearly two orders of magnitude higher tissue surface coverage than destructive and labor-intensive frozen section analysis techniques.
阳性手术切缘,即在切除的肿瘤组织边缘发现癌细胞,是许多癌症治疗中的一个重大问题,会导致患者预后恶化。在前列腺等器官部位,这个问题更加严重,因为不必要的广泛局部切除会导致术后生活质量显著恶化,因为邻近结构会受到附带损伤。然而,与此同时,肿瘤切除不完全会导致预后恶化,并需要额外的干预。在这里,我们报告了一种用于在手术过程中快速、全自动地对手术前列腺边缘进行术中千兆像素离体显微镜检查的系统的设计和开发,称为自动前列腺定位系统(APPS)。APPS 利用前列腺的旋转几何形状和高速结构光照明显微技术(SIM),生成新鲜完整前列腺圆周的连续千兆像素全景图,包括靠近神经血管束、直肠和膀胱壁的前列腺区域。我们之前使用 SIM 和手动前列腺处理方法的工作证明了该成像技术在准确检测阳性手术切缘方面的前景。与我们之前的方法相比,我们的工作在将该技术推向临床应用方面取得了进展,实现了 10%更大的组织表面覆盖率、1.6 倍的更快成像吞吐量和更少的操作员步骤。APPS 可以在手术室内由单人在手术时间内操作,同时提供比破坏性和劳动强度大的冷冻切片分析技术高两个数量级的组织表面覆盖率。