Smith Gennifer T, Lurie Kristen L, Zlatev Dimitar V, Liao Joseph C, Ellerbee Bowden Audrey K
Department of Electrical Engineering, Stanford University, Stanford, CA 94305, USA.
Department of Urology, Stanford University School of Medicine, Stanford, CA 94305, USA; Veterans Affairs Palo Alto Health Care System, Palo Alto, CA 94304, USA.
Biomed Opt Express. 2016 Jan 25;7(2):648-62. doi: 10.1364/BOE.7.000648. eCollection 2016 Feb 1.
Three-dimensional (3D) organ-mimicking phantoms provide realistic imaging environments for testing various aspects of optical systems, including for evaluating new probe designs, characterizing the diagnostic potential of new technologies, and assessing novel image processing algorithms prior to validation in real tissue. We introduce and characterize the use of a new material, Dragon Skin (Smooth-On Inc.), and fabrication technique, air-brushing, for fabrication of a 3D phantom that mimics the appearance of a real organ under multiple imaging modalities. We demonstrate the utility of the material and technique by fabricating the first 3D, hollow bladder phantom with realistic normal and multi-stage pathology features suitable for endoscopic detection using the gold standard imaging technique, white light cystoscopy (WLC), as well as the complementary imaging modalities of optical coherence tomography and blue light cystoscopy, which are aimed at improving the sensitivity and specificity of WLC to bladder cancer detection. The flexibility of the material and technique used for phantom construction allowed for the representation of a wide range of diseased tissue states, ranging from inflammation (benign) to high-grade cancerous lesions. Such phantoms can serve as important tools for trainee education and evaluation of new endoscopic instrumentation.
三维(3D)器官模拟体模为测试光学系统的各个方面提供了逼真的成像环境,包括评估新的探头设计、表征新技术的诊断潜力以及在实际组织中进行验证之前评估新的图像处理算法。我们介绍并描述了一种新材料——龙皮(Smooth-On公司)和一种制作技术——喷枪喷涂法,用于制作在多种成像模式下模拟真实器官外观的3D体模。我们通过制作首个具有逼真的正常和多阶段病理特征的3D中空膀胱体模,展示了该材料和技术的实用性,该体模适用于使用金标准成像技术——白光膀胱镜检查(WLC)以及光学相干断层扫描和蓝光膀胱镜检查等辅助成像模式进行内镜检测,这些模式旨在提高WLC对膀胱癌检测的敏感性和特异性。用于构建体模的材料和技术的灵活性使得能够呈现从炎症(良性)到高级别癌性病变等广泛的病变组织状态。此类体模可作为培训学员和评估新型内镜器械的重要工具。