1) adaptive free-form deformation
自适应自由变形法
1.
Thorax multimodal medical image registration based on adaptive free-form deformation and gradient descent
基于自适应自由变形法和梯度下降法的胸部多模医学图像配准
2.
In order to realize the automatic registration of thorax multimodal medical images,a rapid image registration method based on hierarchical adaptive free-form deformation is proposed.
首先采用C-V水平集方法实现感兴趣区域的提取,并基于并行计算实现自动配对特征点;接着,采用矩主轴法对多模医学图像进行全局粗配准;最后,基于层次B样条自适应自由变形法对多模态医学图像进行自动细配准,并且采用梯度下降法以及最大信息熵准则加速求自由变形系数。
3) adaptive routing algorithm
自适应路由算法
1.
New self-adaptive routing algorithm
一种新型自适应路由算法
2.
In this paper, we discuss routing algorithms and give deterministic routing algorithm and adaptive routing algorithm, which has tolerate fault ability and can run effectively in Intel ASCI Red.
互连网络是大规模并行计算机的重要组成部分 ,路由算法是其中决定网络性能的重要因素 ,根据世界上首台达到每秒万亿次浮点运算的 Intel ASCI Red的结构特点提出了具有容错功能的确定性路由算法和自适应路由算法各一种 ,以实现高效的路由通
3.
At the same time,a novel adaptive routing algorithm called torus dimensional bubble routing algorithm(TADBR)is also presented.
介绍了一个称为环网维度气泡流控(TDBFC)的新型流控策略和称为环网维度气泡路由(TAD-BR)算法的新型自适应路由算法。
4) adaptive routing
自适应路由算法
1.
In this paper,the performance of 3-D Mesh networks adaptive routing and deterministic routing under the model in which each network node has independent failure probability is studied.
主要研究的是自适应路由算法和确定性路由算法在3D-Mesh网络上的性能。
2.
In the research of fault tolerant parallel computer systems, adaptive routing algorithm is a very important subject.
在研究并行计算机系统的容错时 ,自适应路由算法是一个极为重要的研究课题 。
5) topologically adaptable snakes
自适应形变模型
1.
An improved topologically adaptable snakes(T-Snake) was proposed in the paper,which could avoid the self-collisions of the T-Snake and had the advantage of higher numerical precision.
提出一种改进的自适应形变模型(T-Snake),该模型能够解决基本T-Snake模型中的自交(Self-collisions)问题,并有着更高的数值计算精度。
6) Shape Adaptive Transform(SAT)
形状自适应变换
补充资料:自适
【诗文】:
紫陌奔驰不暂停,送迎终日在郊坰。年来鬓畔未垂白,
雨后江头且蹋青。浮蚁满杯难暂舍,贯珠一曲莫辞听。
春风只有九十日,可合花前半日醒。
【注释】:
【出处】:
全唐诗:卷676-39
紫陌奔驰不暂停,送迎终日在郊坰。年来鬓畔未垂白,
雨后江头且蹋青。浮蚁满杯难暂舍,贯珠一曲莫辞听。
春风只有九十日,可合花前半日醒。
【注释】:
【出处】:
全唐诗:卷676-39
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