...
首页> 外文期刊>Molecular imaging and biology: MIB : the official publication of the Academy of Molecular Imaging >Investigation of a new input function validation approach for dynamic mouse microPET studies.
【24h】

Investigation of a new input function validation approach for dynamic mouse microPET studies.

机译:研究用于动态鼠标microPET研究的新输入功能验证方法。

获取原文
获取原文并翻译 | 示例
           

摘要

PURPOSE: Image-derived input functions are desirable for quantifying biological functions in dynamic mouse micro positron emission tomography (PET) studies, but the input function so derived needs to be validated. Conventional validation using serial blood samples is difficult in mice. We introduced the theoretical basis and used computer simulations to show the capability of a new approach that requires only a small number of blood samples per mouse but uses multiple animals. PROCEDURES: 2-Deoxy-2-[(18)F]fluoro-D-glucose (FDG) kinetics (60 minutes) were simulated for 10 to 20 animals with three to six blood samples available per animal. Various amounts/types of noise/errors in the blood measurements were assumed, and different amounts/types of errors were added to the true input function to simulate image-derived input function. Deviations between blood samples and the derived input function were examined by statistical techniques to evaluate the capability of the approach for detecting the simulated errors in the derived input function. RESULTS: For a total of 60 blood samples and a 10% measurement noise, a 5% contaminating error in image-derived input function can be detected with a statistical power of approximately 0.9 and with a 95% confidence. The power of the approach is directly related to the error magnitude in the image-derived input function, and is related to the total number of blood samples taken, but is inversely related to the measurement noise of the blood samples. CONCLUSION: The new validation approach is expected to be useful for validating input functions derived with image-based methods in dynamic mouse microPET studies.
机译:目的:在动态小鼠微正电子发射断层扫描(PET)研究中,图像量化的输入功能对于量化生物学功能是理想的,但是需要验证由此得出的输入功能。使用连续血样的常规验证很难在小鼠中进行。我们介绍了理论基础并使用计算机模拟来展示一种新方法的功能,该方法每只小鼠仅需要少量血液样本,却使用了多只动物。程序:模拟了10至20只动物的2-脱氧-2-[((18)F]氟-D-葡萄糖(FDG)动力学(60分钟),每只动物有3至6个血液样本。假设血液测量中存在各种数量/类型的噪声/错误,并且将不同数量/类型的错误添加到真实输入函数中,以模拟源自图像的输入函数。通过统计技术检查了血液样本和导出的输入函数之间的差异,以评估该方法检测导出的输入函数中的模拟错误的能力。结果:对于总共60个血液样本和10%的测量噪声,可以以大约0.9的统计功效和95%的置信度检测到图像输入功能中的5%污染误差。该方法的功效与图像输入功能中的误差大小直接相关,并且与所采集的血样总数有关,但与血样的测量噪声成反比。结论:新的验证方法有望用于验证动态鼠标microPET研究中基于图像的方法得出的输入函数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号