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核医学探针:我们的现状与未来展望。

Nuclear-medicine probes: Where we are and where we are going.

机构信息

Instituto de Instrumentación para Imagen Molecular (I3M), Centro Mixto CSIC Universitat Politècnica de València, Valencia, Spain.

Urology Department, La Fe Hospital, Valencia, Spain.

出版信息

Med Phys. 2022 Jul;49(7):4372-4390. doi: 10.1002/mp.15690. Epub 2022 May 20.

Abstract

Nuclear medicine probes turned into the key for the identification and precise location of sentinel lymph nodes and other occult lesions (i.e., tumors) by using the systemic administration of radiotracers. Intraoperative nuclear probes are key in the surgical management of some malignancies as well as in the determination of positive surgical margins, thus reducing the extent and potential surgery morbidity. Depending on their application, nuclear probes are classified into two main categories, namely, counting and imaging. Although counting probes present a simple design, are handheld (to be moved rapidly), and provide only acoustic signals when detecting radiation, imaging probes, also known as cameras, are more hardware-complex and also able to provide images but at the cost of an increased intervention time as displacing the camera has to be done slowly. This review article begins with an introductory section to highlight the relevance of nuclear-based probes and their components as well as the main differences between ionization- (semiconductor) and scintillation-based probes. Then, the most significant performance parameters of the probe are reviewed (i.e., sensitivity, contrast, count rate capabilities, shielding, energy, and spatial resolution), as well as the different types of probes based on the target radiation nature, namely: gamma (γ), beta (β) (positron and electron), and Cherenkov. Various available intraoperative nuclear probes are finally compared in terms of performance to discuss the state-of-the-art of nuclear medicine probes. The manuscript concludes by discussing the ideal probe design and the aspects to be considered when selecting nuclear-medicine probes.

摘要

核医学探针通过全身给予放射性示踪剂,成为识别和精确定位前哨淋巴结和其他隐匿性病变(即肿瘤)的关键。术中核探针是某些恶性肿瘤手术管理以及确定阳性手术切缘的关键,从而减少手术范围和潜在的手术发病率。根据其应用,核探针可分为两类,即计数和成像。虽然计数探针设计简单,为手持式(可快速移动),并且在检测辐射时仅提供声学信号,但成像探针,也称为相机,硬件更为复杂,也能够提供图像,但需要增加干预时间,因为需要缓慢移动相机。本文综述文章首先介绍了核探针及其组件的相关性及其主要差异,以及基于电离(半导体)和闪烁的探针。然后,回顾了探针的最重要性能参数(即灵敏度、对比度、计数率能力、屏蔽、能量和空间分辨率),以及基于目标辐射性质的不同类型的探针,即:γ(γ)、β(β)(正电子和电子)和切伦科夫。最后,根据性能比较了各种可用的术中核探针,讨论了核医学探针的最新技术。本文最后讨论了理想的探针设计以及选择核医学探针时需要考虑的方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6e6/9545507/59e05d178926/MP-49-4372-g009.jpg

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