首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Mapping electrical properties heterogeneity of tumor using boundary informed electrical properties tomography (BIEPT) at 7T
【24h】

Mapping electrical properties heterogeneity of tumor using boundary informed electrical properties tomography (BIEPT) at 7T

机译:使用边界通知电性质断层扫描(BIEPT)在7T中映射肿瘤的电特性异质性

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Purposes To develop and evaluate a boundary informed electrical properties tomography (BIEPT) technique for high‐resolution imaging of tumor electrical properties (EPs) heterogeneity on a rodent tumor xenograft model. Methods Tumor EP distributions were inferred from a reference area external to the tumor, as well as internal EP spatial variations derived from a plurality of relative transmit B 1 measurements at 7T. Edge sparsity constraint was enforced to enhance numerical stability. Phantom experiments were performed to determine the imaging accuracy and sensitivity for structures of various EP values, as well as geometrical sizes down to 1.5 mm. Numerical simulation of a realistic rodent model was used to quantify the algorithm performance in the presence of noise. Eleven athymic rats with human breast cancer xenograft were imaged in vivo, and representative pathological samples were acquired for comparison. Results Reconstructed EPs of the phantoms correspond well to the ground truth acquired from dielectric probe measurements, with the smallest structure reliably detectable being 3 mm. EPs heterogeneity inside a tumor is successfully retrieved in both simulated and experimental cases. In vivo tumor imaging results demonstrate similar local features and spatial patterns to anatomical MRI and pathological slides. The imaged conductivity of necrotic tissue is higher than that of viable tissues, which agrees with our expectation. Conclusion BIEPT enables robust detection of tumor EPs heterogeneity with high accuracy and sensitivity to small structures. The retrieved quantitative EPs reflect tumor pathological features (e.g., necrosis). These results provide strong rationale to further expand BIEPT studies toward pathological conditions where EPs may yield valuable, non‐invasive biomarkers.
机译:目的是开发和评估啮齿动物肿瘤异种移植模型对肿瘤电学性质(EPS)异质性的高分辨率成像的边界通知电容断层扫描(BIEPT)技术。方法从肿瘤外部的参考区域推断出肿瘤EP分布,以及从7T的多个相对发射B 1测量导出的内部EP空间变化。强制执行边缘稀疏限制以提高数值稳定性。进行幻像实验以确定各种EP值结构的成像精度和灵敏度,以及几何尺寸下降至1.5mm。现实啮齿动物模型的数值模拟用于量化噪声存在下的算法性能。具有人乳腺癌异种移植物的11大鼠在体内成像,获得了代表性的病理样品进行比较。结果幽灵的重建EPS对应于从介电探针测量获得的地面真理,最小的结构可靠地检测为3mm。在模拟和实验案例中成功检索肿瘤内的EPS异质性。体内肿瘤成像结果证明了对解剖MRI和病理载玻片的类似局部特征和空间模式。坏死组织的成像电导率高于可行组织的导电性,这与我们的期望同意。结论BIEPT使肿瘤的鲁棒检测能够高精度和对小型结构的敏感性。检索到的定量EPS反映了肿瘤病理特征(例如,坏死)。这些结果提供了强烈的理由,以进一步扩大双重研究的病理条件,其中EPS可以产生有价值的非侵入性生物标志物。

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