Performance of a small CdTe gamma camera for radio-guided surgery

Performance of a small CdTe gamma camera for radio-guided surgery
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用于无线电引导手术的小型 CdTe 伽玛相机的性能

DOI:
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发表时间:
2001
期刊:
Optics + Photonics
影响因子:
--
通讯作者:
E. Nygård
E. Nygård
中科院分区:
--
文献类型:
--
作者:
M. Tsuchimochi;Harmui Sakahara;Kazuhide Hayama;M. Funaki;T. Shirahata;T. Orskaug;G. Maehlum;K. Yoshioka;E. Nygård

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前哨淋巴结活检已被证明是高度准确的检测转移性疾病,如黑色素瘤和乳腺癌。仅测量放射性相对存在的γ探针通常用于识别前哨淋巴结。我们开发了一种小型半导体伽马相机(SSGC),可以可视化靶组织的大小、形状和位置。本研究的目的是表征SSGC用于转移性病变的放射导向手术以及用于诊断适用于与该原型成像系统相关的较小格式的其他疾病的性能。方法与设计:探测器头由32 x 32碲化镉半导体阵列和具有钨准直器的专用集成电路(ASIC)组成。整个组件封装在尺寸为152 mm x 166 mm x 65 mm的电极导线外壳中。有效视野为44.8 mm x 44.8 mm。使用两个直径为5 mm的球形Tc-99 m放射源模拟前哨淋巴结和注射部位,放射性分别为0.15 MBq和100 MBq。使用新的探测器和传统的闪烁相机的相对检测能力,这些焦点进行了比较。还在各种临床应用中对患者使用原型进行了探索。结果:SSGC在体模研究中提供了比传统伽马相机控制更好的空间分辨率。两个病灶都可以通过SSGC使用15秒的采集时间清楚地可视化,而在可比条件下使用常规系统不能容易地识别它们。SSGC的初步临床试验被发现在各种组织中的成像疾病中是成功的,包括唾液腺和甲状腺、颞下颌关节和前哨淋巴结。结论:SSGC在诊断疾病和促进随后的放射导向手术中具有重要的潜力。(This该项目得到了日本文部科学省科学研究补助金的支持)。
Sentinel lymph node biopsy has been shown to be highly accurate for detecting metastatic diseases, such as melanoma and breast cancer. Gamma probes that measure only the relative presence of radioactivity are commonly used to identify sentinel lymph nodes. We have developed a small semiconductor gamma camera (SSGC) that allows the size, shape, and location of the target tissues to be visualized. The purpose of this study is to characterize the performance of the SSGC for radioguided surgery of metastatic lesions and for diagnosing other diseases amenable to the smaller- format associated with this prototype imaging system. Methods & Design: The detector head was comprised of a 32 x 32 Cadmium Telluride semiconductor array and application- specific integrated circuit (ASIC) with a tungsten collimator. The entire assembly was encased in a lead housing measuring 152 mm x 166 mm x 65 mm. The effective visual field was 44.8 mm x 44.8 mm. Two spherical 5 mm diameter Tc-99m radioactive sources having activities of 0.15 MBq and 100 MBq were used to simulate sentinel lymph nodes and injection site. The relative detectability of these foci was compared using the new detector and a conventional scintillation camera. Use of the prototype was also explored on patients in a variety of clinical applications. Results: the SSGC provided better spatial resolution on phantom studies than the conventional gamma camera control. Both foci could be visualized clearly by the SSGC using a 15 second acquisition time, whereas they could not be readily identified using the conventional system under comparable conditions. Preliminary clinical tests of the SSGC were found to be successful in imaging diseases in a variety of tissues including salivary and thyroid glands, temporomandibular joints, and sentinel lymph nodes. Conclusion: The SSGC has significant potential for use in diagnosing diseases and for facilitating subsequent radioguided surgery. (This project was supported by a Grant- in-aid for Scientific Research from the Ministry of Education, Science, Sports, and Culture of Japan).
DOI: 10.1001/archsurg.1992.01420040034005
发表时间: 1992-04
影响因子: --
作者:
D. Morton;Wenger Dr;J. Wong;J. Economou;L. Cagle;Storm Fk;L. Foshag;A. Cochran
通讯作者: D. Morton;Wenger Dr;J. Wong;J. Economou;L. Cagle;Storm Fk;L. Foshag;A. Cochran
DOI: 10.1056/nejm199810013391401
发表时间: 1998-10-01
影响因子: 158.5
作者:
Krag, D;Weaver, D;Beitsch, P
通讯作者: Beitsch, P