Use of the specific binding ratio distribution to characterise multiple system atrophy in advanced iodine-123-labelled N-(3-fluoropropyl)-2β-carbomethoxy-3β-(4-iodophenyl) nortropane serotonin transporter imaging.

Kazuya Takahashi, Masanobu Ishiguro, Yoshitaka Inui, Takashi Ichihara, Cong Shang, Ryunosuke Nagao, Yasuaki Mizutani, Mizuki Ito, Hirohisa Watanabe, Nobutoku Motomura, Hiroshi Toyama
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引用次数: 0

Abstract

Objectives: Sudden death in multiple system atrophy (MSA) is caused by decreased serotonergic innervation, but there is no routine test method for this decrease. In addition to dopamine transporters, iodine-123-labelled N-(3-fluoropropyl)-2β-carbomethoxy-3β-(4-iodophenyl) nortropane (123I-FP-CIT) binds serotonin transporters (SERTs). We noted a binding potential to quantify the total quantity of 123I-FP-CIT binding to its receptors.Following Mintun's binding-potential concept, this study aimed to evaluate the relationship between the specific binding ratio (SBR) and total SERT tissue amount, but not SERT binding, and to develop an SBR imaging method to measure brain-stem SERT. We sought to establish a binding-potential imaging procedure using SBR images to examine differences in the brain-stem SERT distribution between healthy subjects and MSA patients.

Methods: Single-photon emission computed tomography (SPECT) and T1-weighted magnetic resonance (MR) images were aligned. The MR (T1) images were used to set a reference site for the occipital-lobe SBR in each subject, and measurements were made from the SPECT image at the same position. The pixel values and accumulation ratios compared with the occipital lobe were calculated, and a regional SBR distribution image was created. We identified areas with SERT accumulation above a certain level.

Results: The SERT accumulation site was visualised as an SBR value on MR images. The accumulation distribution (SERT distribution) on the SBR images significantly differed between the healthy subjects and patients with MSA.

Conclusion: SERT accumulation was noted in the brain-stem region, indicating that SBR imaging was useful for viewing and quantifying SERT accumulation.

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使用特定结合比分布来表征碘-123标记的N-(3-氟丙基)-2β-碳甲氧基-3β-(4-碘苯基)nortropane 5 -羟色胺转运体成像中的多系统萎缩。
目的:多系统萎缩(MSA)猝死是由血清素能神经支配减少引起的,但没有常规的测试方法来检测这种减少。除了多巴胺转运体外,碘-123标记的N-(3-氟丙基)-2β-碳甲氧基-3β-(4-碘苯基)- nortropane (123I-FP-CIT)还能结合5 -羟色胺转运体(SERTs)。我们注意到一种结合潜力,可以量化123I-FP-CIT与其受体结合的总量。根据Mintun的结合电位概念,本研究旨在评估特定结合比(specific binding ratio, SBR)与总SERT组织量之间的关系,而不是SERT结合,并建立一种测量脑干SERT的SBR成像方法。我们试图建立一种结合电位成像程序,使用SBR图像来检查健康受试者和MSA患者之间脑干SERT分布的差异。方法:对单光子发射计算机断层扫描(SPECT)和t1加权磁共振(MR)图像进行比对。使用MR (T1)图像设置每个受试者枕叶SBR的参考位点,并在同一位置使用SPECT图像进行测量。计算与枕叶相比较的像素值和累积比,生成区域SBR分布图像。我们确定了SERT积累超过一定水平的区域。结果:SERT聚集部位在MR图像上显示为SBR值。健康者与MSA患者的SBR图像上的累积分布(SERT)有显著差异。结论:脑干区域可见SERT积累,提示SBR成像可用于观察和定量SERT积累。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Asia Oceania Journal of Nuclear Medicine and Biology
Asia Oceania Journal of Nuclear Medicine and Biology Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
1.80
自引率
0.00%
发文量
28
审稿时长
12 weeks
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