首页> 外文会议>ASME Global Congress on Nanoengineering for Medicine and Biology >'ONCOSENSOR' FOR NONINVASIVE HIGH-SPECIFICITY BREAST CANCER DIAGNOSIS BY CARBOGEN-ENHANCED NEUTRON FEMTO-OXIMETRY
【24h】

'ONCOSENSOR' FOR NONINVASIVE HIGH-SPECIFICITY BREAST CANCER DIAGNOSIS BY CARBOGEN-ENHANCED NEUTRON FEMTO-OXIMETRY

机译:对非侵入性高特异性乳腺癌癌症诊断的“动力传感器”通过肉毒引发增强的中子毫微微血氧血管血管

获取原文

摘要

Based on the first experiment on Differential Femto Oximetry (Paper 13270), we conducted a computer simulated study of the feasibility of conceptual design for our noninvasive malignancy probe, Oncosensor, to diagnose hypoxia of malignancy M=-0.90, measured by pO_2 - which correspond to volume averaged hypoxia M'=-0.09 - in 1cm, 3 cm and 5 cm DIA tumors embedded in the middle of a 10 cm DIA breast. M' is further masked by background γ's from the in vivo tissue by factor x=4.4 - 7 for subcutaneous and central tumor, respectively, to apparent M"=M'/X which, in turn, renders hypoxia non-diagnosable for 1 cm tumors; marginally so for 3 cm ones with specificity S=75%, and fully diagnosable with S=95% in 5 cm ones. To diagnose 1-3 cm and smaller tumors, we propose to enhance M" by a factor of ≈ 3 by replacing air breathing with that of Carbogen (O_2 95%, CO_2 5%). With carbogen breathing, simulations predict hypoxia detection in 1 cm subcutaneous tumor with S=68%, and in 3 cm ones with S=95-99.9%. Carbogen renders possible 2 additional diagnostic tests for redundancy. Significant improvements of the above measurement accuracies are projected. Oncosensor will be tested in vivo with R3230 tumors in Fischer rats at UCI's Center for Functional Onco-Imaging. Oncosensor requires imaging guidance.
机译:基于微分毫微微血氧饱和度(纸13270)第一个实验中,我们进行了概念设计的可行性的计算机模拟研究为我们的非侵入性恶性肿瘤探针,Oncosensor,以诊断恶性M = -0.90的缺氧,通过测量PO_2 - 其对应到体积平均缺氧M'= - 0.09 - 在1厘米,3厘米并嵌入在10cm DIA乳房的中间5厘米DIA肿瘤。 M”进一步由背景γ的从体内组织掩蔽由系数x = 4.4 - 7用于皮下和中央肿瘤,分别表观M“= M'/ X,这反过来,使得缺氧非可诊断为1厘米肿瘤;轻微所以3厘米那些具有特异性的S = 75%,并以S完全诊断的= 95%,5厘米的人要诊断1-3厘米和更小的肿瘤,我们提出以提高M”由≈3倍通过用碳合气(O_2 95%,CO_2 5%)的更换空气呼吸。与卡波金呼吸,模拟预测在1厘米皮下肿瘤与S = 68%缺氧检测,并且在3厘米那些与S = 95-99.9%。卡波金使得冗余可能2次额外的诊断测试。上述测定精度的显著改善预计。 Oncosensor会在体内与UCI的中心功能致癌成像菲舍尔大鼠R3230肿瘤进行测试。 Oncosensor需要成像制导。

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