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Phenomenological Models for intraoperative Positron Emission Surface Imaging using Handheld Probes

机译:使用手持式探针进行术中正电子发射表面成像的现象学模型

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One of the major issues in cancer resection is to guarantee that the complete tumor is included within the extracted tissue. Today beyond the eye of the surgeon, the only intraoperative confirmatory technique is the use of frozen sections.Novel methods [1] have suggested lately the use of positron-emitting radiotracers for controlling resection borders by imaging the radiotracer distribution on the tumor bed. If successful, this method can provide information complementary to frozen sections, such as a better spatial resolution and the possibility of evaluating the borders iteratively. Furthermore, in some cases where frozen section biopsy is not standardized for specific tissues (like in bonny structures [2]), surface radioactivity imaging can be a break-through.Generating 3D surface images of the positron emission distribution requires however proper models of the detection process if meant to be done using one dimensional handheld probes.In this paper, we introduce phenomelogical models for positron detection using handheld beta probes as logical extensions of the methods proposed in [1]. These models were implemented, their parameters determined and validated experimentally. By introducing more a priori information in this yet experimental imaging modality we strongly believe that its quality can be boosted and thus it can be brought closer to application towards a securer cancer resection.
机译:癌症切除术中的主要问题之一是要确保完整的肿瘤包含在提取的组织内。如今,在外科医师的视线范围之外,唯一的术中确证技术是冷冻切片的使用。 新型方法[1]最近建议通过对肿瘤床上的放射性示踪剂进行成像来使用正电子发射放射性示踪剂来控制切除边界。如果成功,此方法可以提供与冻结部分互补的信息,例如更好的空间分辨率以及迭代评估边界的可能性。此外,在某些情况下,对于特定组织,冷冻切片的活检没有标准化的情况(如骨性组织[2]),表面放射性成像可能会成为突破。 但是,如果要使用一维手持式探头完成,则生成正电子发射分布的3D表面图像需要正确的检测过程模型。 在本文中,我们介绍了使用手持式β探针的正电子学现象学模型,作为[1]中提出的方法的逻辑扩展。实施了这些模型,确定并通过实验验证了它们的参数。我们坚信,通过在这种尚处于实验阶段的成像方式中引入更多先验信息,我们坚信可以提高其质量,因此可以更接近地应用于更安全的癌症切除。

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