Literature DB >> 26588021

Chemical Exchange Saturation Transfer MR Imaging: Preliminary Results for Differentiation of Malignant and Benign Thoracic Lesions.

Yoshiharu Ohno1, Masao Yui1, Hisanobu Koyama1, Takeshi Yoshikawa1, Shinichiro Seki1, Yoshiko Ueno1, Mitsue Miyazaki1, Cheng Ouyang1, Kazuro Sugimura1.   

Abstract

PURPOSE: To prospectively evaluate the capability of amide proton transfer-weighted chemical exchange saturation transfer magnetic resonance (MR) imaging for characterization of thoracic lesions.
MATERIALS AND METHODS: The institutional review board approved this study, and written informed consent was obtained from 21 patients (13 men and eight women; mean age, 72 years) prior to enrollment. Each patient underwent chemical exchange saturation transfer MR imaging by using respiratory-synchronized half-Fourier fast spin-echo imaging after a series of magnetization transfer pulses. Next, a magnetization transfer ratio asymmetry at 3.5 ppm map was computationally generated. Pathology examinations resulted in a diagnosis of 13 malignant and eight benign thoracic lesions. The malignant lesions were further diagnosed as being nine lung cancers, comprising six adenocarcinomas, three squamous cell carcinomas, and four other thoracic malignancies. The Student t test was used to evaluate the capability of magnetization transfer ratio asymmetry (at 3.5 ppm), as assessed by means of region of interest measurements, for differentiating benign and malignant lesions, lung cancers and other thoracic lesions, and adenocarcinomas and squamous cell carcinomas.
RESULTS: Magnetization transfer ratio asymmetry (at 3.5 ppm) was significantly higher for malignant tumors (mean ± standard deviation, 3.56% ± 3.01) than for benign lesions (0.33% ± 0.38, P = .008). It was also significantly higher for other thoracic malignancies (6.71% ± 3.46) than for lung cancer (2.16% ± 1.41, P = .005) and for adenocarcinoma (2.88% ± 1.13) than for squamous cell carcinoma (0.71% ± 0.17, P = .02).
CONCLUSION: Amide proton transfer-weighted chemical exchange saturation transfer MR imaging allows characterization of thoracic lesions. (©) RSNA, 2015.

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Year:  2015        PMID: 26588021     DOI: 10.1148/radiol.2015151161

Source DB:  PubMed          Journal:  Radiology        ISSN: 0033-8419            Impact factor:   11.105


  17 in total

Review 1.  Amide proton transfer imaging of tumors: theory, clinical applications, pitfalls, and future directions.

Authors:  Kiyohisa Kamimura; Masanori Nakajo; Tomohide Yoneyama; Koji Takumi; Yuichi Kumagae; Yoshihiko Fukukura; Takashi Yoshiura
Journal:  Jpn J Radiol       Date:  2018-10-19       Impact factor: 2.374

2.  Differentiation of Malignant and Benign Head and Neck Tumors with Amide Proton Transfer-Weighted MR Imaging.

Authors:  Lu Yu; Chunmei Li; Xiaojie Luo; Jinyuan Zhou; Chen Zhang; Yi Zhang; Min Chen
Journal:  Mol Imaging Biol       Date:  2019-04       Impact factor: 3.488

3.  Differentiating the histologic grades of gliomas preoperatively using amide proton transfer-weighted (APTW) and intravoxel incoherent motion MRI.

Authors:  Tianyu Zou; Hao Yu; Chunxiu Jiang; Xianlong Wang; Shanshan Jiang; Qihong Rui; Yingjie Mei; Jinyuan Zhou; Zhibo Wen
Journal:  NMR Biomed       Date:  2017-11-03       Impact factor: 4.044

4.  Effect of changes in the menstrual cycle and age on the signal intensity of amide proton transfer imaging in the normal uterus: a preliminary study.

Authors:  Ya-Qing Kong; Qian-Qian Qu; Lei Ming; Zhe Wang; Xiao-Tong Chi; Kai Deng
Journal:  Abdom Radiol (NY)       Date:  2022-09-13

5.  Liver MRI with amide proton transfer imaging: feasibility and accuracy for the characterization of focal liver lesions.

Authors:  Nieun Seo; Ha-Kyu Jeong; Jin-Young Choi; Mi-Suk Park; Myeong-Jin Kim; Yong Eun Chung
Journal:  Eur Radiol       Date:  2020-08-12       Impact factor: 5.315

6.  Identification of histological features of endometrioid adenocarcinoma based on amide proton transfer-weighted imaging and multimodel diffusion-weighted imaging.

Authors:  Fangfang Fu; Nan Meng; Zhun Huang; Jing Sun; Xuejia Wang; Jie Shang; Ting Fang; Pengyang Feng; Kaiyu Wang; Dongming Han; Meiyun Wang
Journal:  Quant Imaging Med Surg       Date:  2022-02

7.  Amide Proton Transfer-weighted MRI in the Diagnosis of Major Salivary Gland Tumors.

Authors:  Yun Jung Bae; Byung Se Choi; Woo-Jin Jeong; Young Ho Jung; Jung Hyun Park; Leonard Sunwoo; Cheolkyu Jung; Jae Hyoung Kim
Journal:  Sci Rep       Date:  2019-06-06       Impact factor: 4.379

8.  Feasibility evaluation of amide proton transfer-weighted imaging in the parotid glands: a strategy to recognize artifacts and measure APT value.

Authors:  Yu Chen; Xiaoqi Wang; Tong Su; Zhentan Xu; Yunting Wang; Zhuhua Zhang; Huadan Xue; Zhizheng Zhuo; Yuanli Zhu; Zhengyu Jin; Tao Zhang
Journal:  Quant Imaging Med Surg       Date:  2021-06

9.  B1 Power Optimization for Chemical Exchange Saturation Transfer Imaging: A Phantom Study Using Egg White for Amide Proton Transfer Imaging Applications in the Human Brain.

Authors:  Yuki Kanazawa; Yasutaka Fushimi; Naotaka Sakashita; Tomohisa Okada; Yoshiki Arakawa; Mitsue Miyazaki
Journal:  Magn Reson Med Sci       Date:  2017-05-31       Impact factor: 2.471

10.  Imaging Lung Cancer by Using Chemical Exchange Saturation Transfer MRI With Retrospective Respiration Gating.

Authors:  Kyle M Jones; Carol A Stuehm; Charles C Hsu; Phillip H Kuo; Mark D Pagel; Edward A Randtke
Journal:  Tomography       Date:  2017-12
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