VOLUME RENDERING AND MANIPULATION IN TOMOGRAPGIC IMAGING
VOLUME RENDERING AND MANIPULATION IN TOMOGRAPGIC IMAGING
批准号:
3200559
负责人:
JAYARAM K UDUPA
金额:
$19.53万
依托单位国家:
美国
项目类别:
财政年份:
1992
资助国家:
美国
项目状态:
已结题
起止时间:
1992-04-01 至 1995-03-31
中文摘要
测量的数据,例如由断层摄影设备生成的图像,
本质上不精确。 以前的和目前的大多数方法,
结构的可视化和分析依赖于对
以这样或那样的方式精确地基于普通(硬)集的结构
理论 所谓的体绘制过程认识到需要
以某种方式模拟不精确性本身。 虽然背后的哲学
体绘制看起来很自然,它还没有超越3D
结构可视化 此外,即使局限于可视化,
密集的计算和存储成本使得难以
追求许多重要的应用使用体积渲染。 最
重要的是,它还不可能分析结构,
可量化的方式,例如测量和操纵它们,
这种能力越来越多地用于各种诊断
治疗和生物医学研究应用。
本研究的具体目标是进行交互式渲染,
测量和操纵结构,所有这些都在体积渲染中
范例,可行。 该方法包括概括现象,
作为渲染、隐藏部分移除、操作和测量,
从普通集合到模糊集合。 在这个过程中,
保留了基于普通集合的算法。 的概念
通过以下概念将结构赋予体绘制现象:
(模糊连接的)模糊对象和模糊边界。
这项研究的一个长期目标是发展理论和算法,
多维结构的分析(例如,心脏运动与关节
运动学)从测量的图像序列,使用模糊理论
子集 这似乎是一个非常明智和有益的方向。
英文摘要
Measured data, such as the images generated by tomographic devices, are
inherently imprecise . Previous, and a majority of current approaches, to
visualization and analysis of structures have relied on modeling the
structures precisely based, in one way or another, on ordinary (hard) set
theory. The so called volume rendering processes recognized the need to
somehow model the imprecision itself. While the philosophy underlying
volume rendering seems very natural, it has not been pursued beyond just 3D
structure visualization. Additionally, confining even to visualization,
the intense computational and storage costs have made it difficult to
pursue many important applications using volume rendering. Most
importantly, it has not been possible to analyze structures in a
quantifiable fashion, for example to measure and manipulate them, an
ability which is increasingly being used in a variety of diagnostic
therapeutic, and biomedical research applications.
The specific aims of this research are to make interactive rendering,
measurement, and manipulation of structures, all in the volume rendering
paradigm, feasible. The approach consists of generalizing phenomena such
as rendering, hidden-part removal, manipulation, and measurement that are
based on ordinary sets to fuzzy sets. In the process, the efficiency of
the algorithms that are based on ordinary sets are retained. The notion of
a structure is imparted to volume rendering phenomenon through the notion
of (fuzzily connected) fuzzy objects and fuzzy boundaries.
A long-term goal of this research is to develop theory and algorithms for
the analysis of multidimensional structures (e.g., cardiac motion and joint
kinematics) from measured image sequences using the theory of fuzzy
subsets. This seems to be a very sensible and useful direction to pursue.
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批准号:3200560
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项目类别:
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