Douglas David B, Petricoin Emanuel F, Liotta Lance, Wilson Eugene
Department of Radiology, Stanford University, Palo Alto, CA.
Center for Applied Proteomics and Molecular Medicine, George Mason University, Manassas, VA.
Med Devices (Auckl). 2016 Aug 9;9:277-83. doi: 10.2147/MDER.S110756. eCollection 2016.
The purpose of this article is to present images from simulated breast microcalcifications and assess the pattern of the microcalcifications with a technical development called "depth 3-dimensional (D3D) augmented reality".
A computer, head display unit, joystick, D3D augmented reality software, and an in-house script of simulated data of breast microcalcifications in a ductal distribution were used. No patient data was used and no statistical analysis was performed.
The D3D augmented reality system demonstrated stereoscopic depth perception by presenting a unique image to each eye, focal point convergence, head position tracking, 3D cursor, and joystick fly-through.
The D3D augmented reality imaging system offers image viewing with depth perception and focal point convergence. The D3D augmented reality system should be tested to determine its utility in clinical practice.
本文旨在展示模拟乳腺微钙化的图像,并使用一种名为“深度三维(D3D)增强现实”的技术发展来评估微钙化的模式。
使用一台计算机、头戴式显示单元、操纵杆、D3D增强现实软件以及一个内部编写的导管分布中乳腺微钙化模拟数据脚本。未使用患者数据,也未进行统计分析。
D3D增强现实系统通过向每只眼睛呈现独特图像、焦点汇聚、头部位置跟踪、3D光标和操纵杆飞行浏览展示了立体深度感知。
D3D增强现实成像系统提供具有深度感知和焦点汇聚的图像查看。应测试D3D增强现实系统以确定其在临床实践中的效用。