1) Three Dimensional Range Imaging
三维测距成像
3) 3D distance image
三维距离像
1.
According to the theory of laser radar imaging, the front view imaging formula of laser radar is deduced, and the algorithm which identifies barrier from the 3D distance image is presented.
飞行器前视激光雷达通过测距得到前方三维距离像 ,由三维距离像可以获得飞行器前面障碍物的形状、高度、宽度等信息 ,从而为飞行器进行地形跟踪和障碍物回避提供依据。
4) 3-D imaging
三维成像
1.
3-D imaging by a 2-D ultrasonic phased array;
基于二维阵列的相控阵超声三维成像实现
2.
Microwave 3-D imaging echo simulation for discrete targets;
微波三维成像离散点目标回波数据模拟
3.
Analysis and compensation of mismatching between two ISAR images in interferometric inverse synthetic aperture radar 3-D imaging;
InISAR三维成像中的ISAR像失配准分析及其补偿方法
5) three-dimensional imaging
三维成像
1.
Clinical value of three-dimensional imaging of complex renal calculi with CT data for the access of percutaneous nephrolithotomy
复杂肾结石CT三维成像与PCNL通道选择的临床意义
2.
A mathematical model of three-dimensional imaging has been built and proved according to the physiological features of visual organs in three-dimensional imaging,the optical property of lenticular screen and the relative coordinate of both eyes.
根据三维像形成过程中人们视觉器官的生理特征、柱镜板的光学特性及双目相对坐标建立起三维成像数学模型 ,并对这一模型进行了理论验证 ,为提高柱镜板三维成像质量提高了理论依据和途
3.
The model of the interferometric inverse synthetic aperture radar(InISAR) three-dimensional imaging is proposed when the angle between the target and the antenna axis is relatively large.
建立了在目标与天线电轴间存在较大斜角情况下的干涉式逆合成孔径雷达(InISAR)三维成像模型。
6) 3D imaging
三维成像
1.
PACS-Based 3D Imaging Study of Bones;
基于PACS系统上的骨骼三维成像研究
2.
Application of helical CT 3D imaging technique in larynx diseases;
喉部螺旋CT三维成像技术的应用价值
3.
The development of ultrasonic imaging diagnostic technique is mainly introduced and various kinds of ultrasonic imaging diagnostic techniques are mentioned including A-mode,M-mode and B-mode ultrasonic diagnostic techniques,Doppler imaging technique,3D imaging technique and harmonic imaging technique.
主要论述超声图像诊断技术的发展历史和A型、M型、B型超声诊断技术、超声多普勒成像技术、三维成像技术以及谐波成像技术及其临床应用现状。
补充资料:三维成像技术
通常我们说一个客观的世界是三维的,客观世界的三维图像通过某种技术把它记录下来然后处理、压缩再传输出去,显示出来,最终在人的大脑中再现客观世界的图像,这个过程就是三维成像技术的全过程。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条