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人胸腔的光动力疗法光通量体模建模:一项概念验证性临床前研究。

PDT Light Fluence Phantom Modeling of the Human Pleural Cavity: A Proof-of-Concept Pre-Clinical Study.

作者信息

Sourvanos Dennis, Sun Hongjing, Cengel Keith A, Fiorellini Joseph P, Zhu Timothy C

机构信息

Department of Periodontics, School of Dental Medicine, University of Pennsylvania, PA, USA.

Center for Innovation and Precision Dentistry (CiPD), School of Dental Medicine, School of Engineering, University of Pennsylvania, PA, USA.

出版信息

Proc SPIE Int Soc Opt Eng. 2023 Jan-Feb;12359. doi: 10.1117/12.2654485. Epub 2023 Mar 14.

Abstract

We have developed a novel scanning protocol for a life-sized human phantom model using handheld three-dimensional (3D) surface acquisition devices. This technology will be utilized to develop light fluence modeling of the internal pleural cavity space during Photodynamic Therapy (PDT) of malignant mesothelioma. The external aspect of the chest cavity phantom was prefabricated of a hardened synthetic polymer resembling ordinary human anatomy (pleural cavity space) and the internal aspect remained hollow without any characterizations. Both surfaces were layered with non-reflective adhesive paper to create non-uniformed surface topographies. These surface characteristics were established in randomized X-Y-Z coordinates ranging in dimensions from 1-15mm. This protocol utilized the handheld Occipital Scanner and the MEDIT i700. The Occipital device required a minimum scanner-to-surface distance of 24cm and the MEDIT device 1cm respectively. The external and internal aspects of the phantom model were successfully scanned acquiring digital measurements in actual value and converted into a digital image file. The initial surface rendering was acquired by the Occipital device and applied with proprietary software to guide the MEDIT device to fill voided areas. This protocol is accompanied by a visualization tool that allows for real-time inspection of surface acquisition in 2D and 3D. This scanning protocol can be utilized to scan the pleural cavity for real-time guidance for light fluence modeling during PDT, which will be expanded to ongoing clinical trials.

摘要

我们使用手持式三维(3D)表面采集设备,为真人大小的人体模型开发了一种新颖的扫描协议。该技术将用于在恶性间皮瘤的光动力疗法(PDT)期间,对内部胸腔空间进行光通量建模。胸腔模型的外部由类似普通人体解剖结构(胸腔空间)的硬化合成聚合物预制而成,内部保持中空,没有任何特征。两个表面都覆盖有非反射贴纸,以创建不均匀的表面地形。这些表面特征在尺寸范围为1 - 15毫米的随机X - Y - Z坐标中确定。该协议使用了手持式枕骨扫描仪和MEDIT i700。枕骨设备要求扫描仪到表面的最小距离分别为24厘米,MEDIT设备为1厘米。人体模型的外部和内部均成功扫描,获取了实际值的数字测量结果,并转换为数字图像文件。初始表面渲染由枕骨设备获取,并应用专有软件来指导MEDIT设备填充空白区域。该协议配有一个可视化工具,可对2D和3D表面采集进行实时检查。这种扫描协议可用于扫描胸腔,为PDT期间的光通量建模提供实时指导,这将扩展到正在进行的临床试验中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f264/10193695/df1d7aee5433/nihms-1897347-f0001.jpg

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