首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   528242篇
  免费   28181篇
  国内免费   499篇
耳鼻咽喉   6692篇
儿科学   16888篇
妇产科学   12551篇
基础医学   92363篇
口腔科学   12353篇
临床医学   48227篇
内科学   94827篇
皮肤病学   11862篇
神经病学   34118篇
特种医学   19805篇
外国民族医学   53篇
外科学   78009篇
综合类   7612篇
现状与发展   2篇
一般理论   107篇
预防医学   38420篇
眼科学   11849篇
药学   41550篇
  1篇
中国医学   1076篇
肿瘤学   28557篇
  2019年   3918篇
  2018年   5763篇
  2017年   4145篇
  2016年   4899篇
  2015年   5392篇
  2014年   7158篇
  2013年   10588篇
  2012年   15664篇
  2011年   17482篇
  2010年   10004篇
  2009年   8872篇
  2008年   15816篇
  2007年   17558篇
  2006年   17038篇
  2005年   16351篇
  2004年   15968篇
  2003年   15326篇
  2002年   14825篇
  2001年   22448篇
  2000年   22966篇
  1999年   18834篇
  1998年   4993篇
  1997年   4089篇
  1996年   4130篇
  1995年   4115篇
  1992年   14428篇
  1991年   15840篇
  1990年   15972篇
  1989年   15645篇
  1988年   14317篇
  1987年   14204篇
  1986年   13182篇
  1985年   12711篇
  1984年   9402篇
  1983年   8005篇
  1982年   4170篇
  1979年   8942篇
  1978年   6371篇
  1977年   5139篇
  1976年   5499篇
  1975年   6607篇
  1974年   7415篇
  1973年   7158篇
  1972年   6593篇
  1971年   6308篇
  1970年   5887篇
  1969年   5461篇
  1968年   5160篇
  1967年   4619篇
  1966年   3963篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
21.
22.
23.
24.
25.
26.
27.
BACKGROUND AND PURPOSE:Increased cellular density is a hallmark of gliomas, both in the bulk of the tumor and in areas of tumor infiltration into surrounding brain. Altered cellular density causes altered imaging findings, but the degree to which cellular density can be quantitatively estimated from imaging is unknown. The purpose of this study was to discover the best MR imaging and processing techniques to make quantitative and spatially specific estimates of cellular density.MATERIALS AND METHODS:We collected stereotactic biopsies in a prospective imaging clinical trial targeting untreated patients with gliomas at our institution undergoing their first resection. The data included preoperative MR imaging with conventional anatomic, diffusion, perfusion, and permeability sequences and quantitative histopathology on biopsy samples. We then used multiple machine learning methodologies to estimate cellular density using local intensity information from the MR images and quantitative cellular density measurements at the biopsy coordinates as the criterion standard.RESULTS:The random forest methodology estimated cellular density with R2 = 0.59 between predicted and observed values using 4 input imaging sequences chosen from our full set of imaging data (T2, fractional anisotropy, CBF, and area under the curve from permeability imaging). Limiting input to conventional MR images (T1 pre- and postcontrast, T2, and FLAIR) yielded slightly degraded performance (R2 = 0.52). Outputs were also reported as graphic maps.CONCLUSIONS:Cellular density can be estimated with moderate-to-strong correlations using MR imaging inputs. The random forest machine learning model provided the best estimates. These spatially specific estimates of cellular density will likely be useful in guiding both diagnosis and treatment.

Increased cellular density (CD) is a hallmark of cancer and a key feature in histologic glioma analysis.1 Mapping cellular density throughout a tumor would be a valuable tool to probe how tumors infiltrate and analyze the transition between diseased and healthy brain. However, measuring CD requires tissue, which entails additional risks and is expensive to obtain. There is no currently accepted clinical algorithm to translate imaging data into quantitative assessments of CD.There is great need for a method to estimate CD noninvasively in human patients with gliomas. In this article, we describe the development of such a method using MR imaging data inputs by correlating with multiple biopsy specimens acquired during a prospective human clinical trial. We obtained comprehensive MR imaging, including conventional, diffusion, perfusion, and permeability imaging sequences. We used machine learning approaches to correlate imaging findings with CD measurements from pathology, devised an algorithm to estimate CD from MR imaging inputs, and generated CD maps for the visual display of the predictions. We identified the most informative imaging data subset. This work has multiple applications in the diagnosis and treatment of patients with gliomas: For example, the method can be used to guide biopsy, resection, and surgery and delineate tumor borderzones both pre- and postoperatively.2  相似文献   
28.
29.
30.
Biomedical Engineering - A mathematical model of a thermoelectric device for the treatment of whitlow by local hypothermia is discussed. The model is based on a solution of the heat conduction task...  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号