期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
我国亚热带东部山区坡面净辐射的分布特征 被引量:2
1
作者 孙治安 史兵 +1 位作者 缪启龙 翁笃鸣 《地理学报》 EI CSSCI CSCD 北大核心 1989年第4期441-448,共8页
本文首次计算并分析了我国亚热带东部山区坡面辐射平衡各分量,重点讨论了净辐射的地理分布特征及其变化规律。结果表明,本区各坡向年均净辐射的分布都具有南北高、中间低的特点,湘鄂西部为最低值区。夏季因受副高控制的影响,净辐射... 本文首次计算并分析了我国亚热带东部山区坡面辐射平衡各分量,重点讨论了净辐射的地理分布特征及其变化规律。结果表明,本区各坡向年均净辐射的分布都具有南北高、中间低的特点,湘鄂西部为最低值区。夏季因受副高控制的影响,净辐射分布形势差别较大。净辐射在各坡向间的差异以冬季最大,夏季最小。夏季南、北坡净辐射随坡度的变化形式基本相同,冬季则完全相反。净辐射的年变幅以南坡最小,东、西坡次之,北坡最大。本文计算结果还揭示出冬季在本地区北坡的坡面净辐射可出现负值的新事实。 展开更多
关键词 亚热带 山区 坡度 净辐射 中国 地理分布 坡面 农业资源
在线阅读 下载PDF
Method for Converting Cone-Beam CT Values into Hounsfield Units for Radiation Treatment Planning
2
作者 Tadanori Abe Kunihiko Tateoka +6 位作者 Yuichi Saito Takuya Nakazawa Masaki Yano Kensei Nakata Masanori Someya Masakazu Hori Koichi Sakata 《International Journal of Medical Physics, Clinical Engineering and Radiation Oncology》 2017年第4期361-375,共15页
Cone-beam CT (CBCT) images acquired during radiation treatment can be used to recalculate the dose distribution as well as to confirm the treatment location. However, it is difficult to obtain the electron densities (... Cone-beam CT (CBCT) images acquired during radiation treatment can be used to recalculate the dose distribution as well as to confirm the treatment location. However, it is difficult to obtain the electron densities (EDs) necessary for dose calculation from CBCT images because of the effects of scatter contamination during CBCT image acquisition. This paper presents a mathematical method for converting the pixel values of CBCT images (CBCT values) into Hounsfield units (HUs) of radiation treatment simulation CT (simCT) images for use in radiation treatment planning. CBCT values are converted into HUs by matching the histograms of the CBCT values with the histograms of the HUs for each slice via linear scaling of the CBCT values. For prostate cancer and head-and-neck cancer patients, the EDs obtained from converted CBCT values (mCBCT values) show good agreement with the EDs obtained from HUs, within approximately 3.0%, and the dose calculated on the basis of CBCT images shows good agreement with the dose calculated on the basis of the simCT images, within approximately 2.0%. Because the CBCT values are converted for each slice, this conversion method can account for variation in the CBCT values associated with differences in body size, body shape, and inner tissue structures, as well as in longitudinally displaced positions from the isocenter, unlike conventional methods that use electron density phantoms. This method improves on conventional CBCT-ED conversion and shows considerable potential for improving the accuracy of radiation treatment planning using CBCT images. 展开更多
关键词 CONE-BEAM COMPUTED TOMOGRAPHY Hounsfield Unit ELECTRON Density ra-diation Treatment Planning
暂未订购
上一页 1 下一页 到第
使用帮助 返回顶部