A Novel Endoscopic Cerenkov Luminescence Imaging System for Intraoperative Surgical Navigation
Cerenkov luminescence imaging is an emerging optical technique for imaging the distribution of radiopharmaceuticals in vivo. However, because of the light scattering effect, it cannot obtain optical information from deep internal organs. To overcome this challenge, we established a novel endoscopic...
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2015-08-01
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Series: | Molecular Imaging |
Online Access: | https://doi.org/10.2310/7290.2015.00018 |
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doaj-762ac6a564bc4c99b1a5268485cbe8e02021-04-02T14:32:08ZengHindawi - SAGE PublishingMolecular Imaging1536-01212015-08-011410.2310/7290.2015.0001810.2310_7290.2015.00018A Novel Endoscopic Cerenkov Luminescence Imaging System for Intraoperative Surgical NavigationTianming SongXia LiuYawei QuHaixiao LiuChengpeng BaoChengcai LengZhenhua HuKun WangJie TianCerenkov luminescence imaging is an emerging optical technique for imaging the distribution of radiopharmaceuticals in vivo. However, because of the light scattering effect, it cannot obtain optical information from deep internal organs. To overcome this challenge, we established a novel endoscopic Cerenkov luminescence imaging system that used a clinically approved laparoscope and an electron-multiplying charge-coupled device camera. We assessed the performance of the system through a series of in vitro and in vivo experiments. The results demonstrated superior superficial imaging resolution (0.1 mm), a large field of view (500 mm 2 with 10 mm imaging distance), and superb imaging sensitivity (imaging 1 μCi) of our system. It captured the weak Cerenkov signal from internal organs successfully and was applied to intraoperative surgical navigation of tumor resection. It offered objective information of the tumor location and tumor residual during the surgical operation. This technique holds great potential for clinical translation.https://doi.org/10.2310/7290.2015.00018 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tianming Song Xia Liu Yawei Qu Haixiao Liu Chengpeng Bao Chengcai Leng Zhenhua Hu Kun Wang Jie Tian |
spellingShingle |
Tianming Song Xia Liu Yawei Qu Haixiao Liu Chengpeng Bao Chengcai Leng Zhenhua Hu Kun Wang Jie Tian A Novel Endoscopic Cerenkov Luminescence Imaging System for Intraoperative Surgical Navigation Molecular Imaging |
author_facet |
Tianming Song Xia Liu Yawei Qu Haixiao Liu Chengpeng Bao Chengcai Leng Zhenhua Hu Kun Wang Jie Tian |
author_sort |
Tianming Song |
title |
A Novel Endoscopic Cerenkov Luminescence Imaging System for Intraoperative Surgical Navigation |
title_short |
A Novel Endoscopic Cerenkov Luminescence Imaging System for Intraoperative Surgical Navigation |
title_full |
A Novel Endoscopic Cerenkov Luminescence Imaging System for Intraoperative Surgical Navigation |
title_fullStr |
A Novel Endoscopic Cerenkov Luminescence Imaging System for Intraoperative Surgical Navigation |
title_full_unstemmed |
A Novel Endoscopic Cerenkov Luminescence Imaging System for Intraoperative Surgical Navigation |
title_sort |
novel endoscopic cerenkov luminescence imaging system for intraoperative surgical navigation |
publisher |
Hindawi - SAGE Publishing |
series |
Molecular Imaging |
issn |
1536-0121 |
publishDate |
2015-08-01 |
description |
Cerenkov luminescence imaging is an emerging optical technique for imaging the distribution of radiopharmaceuticals in vivo. However, because of the light scattering effect, it cannot obtain optical information from deep internal organs. To overcome this challenge, we established a novel endoscopic Cerenkov luminescence imaging system that used a clinically approved laparoscope and an electron-multiplying charge-coupled device camera. We assessed the performance of the system through a series of in vitro and in vivo experiments. The results demonstrated superior superficial imaging resolution (0.1 mm), a large field of view (500 mm 2 with 10 mm imaging distance), and superb imaging sensitivity (imaging 1 μCi) of our system. It captured the weak Cerenkov signal from internal organs successfully and was applied to intraoperative surgical navigation of tumor resection. It offered objective information of the tumor location and tumor residual during the surgical operation. This technique holds great potential for clinical translation. |
url |
https://doi.org/10.2310/7290.2015.00018 |
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