1) body image
体像
1.
The preliminary research on the influence of plastic and aesthetic surgery on the body image;
整形美容外科手术对受术者体像影响的初步研究
2.
Comparision of self-body image between local and military undergraduates;
地方大学生与军队大学生自我体像的比较
3.
Self-body image diversity analysis of cosmetology accepter and undergraduates;
整形美容受术者与大学生自我体像差异分析
2) human body image
人体图像
1.
Self-adaptive filtering processing of human body image based on wavelet transformation;
基于小波变换的人体图像自适应滤波处理
2.
According to the peculiarity of human body image, dyadic wavelet transform is successfully applied to detecting the face and profile edges of human body image and the Mallat algorithm is used in the wavelet decomposition in this paper.
根据人体图像的特点 ,利用三次样条二进小波 ,采用Mallat快速算法进行小波分解 ,提取了人体图像的正面和侧面边缘 。
3) body dysmorphic disorder
体像障碍
1.
Objective The purpose of the research was to find out the prevalence of the body dysmorphic disorder seeking plastic and aesthetic surgery, to observe the characteristic of the body image of the plastic and aesthetic populations,and to identify the influence of plastic and aesthetic surgery on the body image.
目的:了解整形美容外科受术者体像障碍的患病率,观察整形美容外科受术者的体像特点以及手术对其体像的影响。
4) stereo image
立体图像
1.
General composition method for optical-plate-based LCD multi-view stereo image;
一种光栅普适的LCD多视点立体图像合成方法
2.
Error analysing and processing in computer aided lenticular screen covering color stereo image;
计算机辅助彩色立体图像生成中的误差分析与处理
3.
Lenticular-based 2D anti-aliasing digital filtering method for stereo image
一种基于棱柱镜的立体图像二维抗混叠数字滤波方法
5) Receptor imaging
受体显像
1.
Advances of ~(11)C-flumazenil receptor imaging in ischemic penumbra;
~(11)C-flumazenil受体显像在缺血半暗带研究中的进展
2.
Model-based methods for quantitative analysis of receptor imaging, including kinetic, graphical and equilibrium methods, are introduced in detail.
阐述了以模型为基础的受体显像定量分析方法,包括动力学法、绘图法和平衡法,并对受体显像定量分析中的几个技术问题,如示踪剂体内代谢的校正、血池放射性的校正以及组织内不可置换配体浓度的估测等进行了简述。
6) phantom image
仿体图像
补充资料:神经受体体层显(成)像
神经受体体层显(成)像
放射性核素显(成)像方法之一。利用放射性核素标记的,能与神经受体特异结合的配体作为显(成)像剂,用正电子发射体层(PET)或单光子发射体层(SPECT)得到的脑神经受体的影像。用于了解神经受体的分布部位、数量和功能,并能计算出内源性神经递质的释放速率。目前研究较深的神经受体有多巴胺D2受体,阿片受体和乙酰胆碱能受体。
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