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首页> 外文期刊>Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology >An update on carbon nanotube‐enabled X‐ray sources for biomedical imaging
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An update on carbon nanotube‐enabled X‐ray sources for biomedical imaging

机译:用于生物医学成像的碳纳米管X射线源的更新

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摘要

A new imaging technology has emerged that uses carbon nanotubes ( CNT ) as the electron emitter (cathode) for the X‐ray tube. Since the performance of the CNT cathode is controlled by simple voltage manipulation, CNT ‐enabled X‐ray sources are ideal for the repetitive imaging steps needed to capture three‐dimensional information. As such, they have allowed the development of a gated micro‐computed tomography ( CT ) scanner for small animal research as well as stationary tomosynthesis, an experimental technology for large field‐of‐view human imaging. The small animal CT can acquire images at specific points in the respiratory and cardiac cycles. Longitudinal imaging therefore becomes possible and has been applied to many research questions, ranging from tumor response to the noninvasive assessment of cardiac output. Digital tomosynthesis ( DT ) is a low‐dose and low‐cost human imaging tool that captures some depth information. Known as three‐dimensional mammography, DT is now used clinically for breast imaging. However, the resolution of currently‐approved DT is limited by the need to swing the X‐ray source through space to collect a series of projection views. An array of fixed and distributed CNT ‐enabled sources provides the solution and has been used to construct stationary DT devices for breast, lung, and dental imaging. To date, over 100 patients have been imaged on Institutional Review Board‐approved study protocols. Early experience is promising, showing an excellent conspicuity of soft‐tissue features, while also highlighting technical and post‐acquisition processing limitations that are guiding continued research and development. Additionally, CNT ‐enabled sources are being tested in miniature X‐ray tubes that are capable of generating adequate photon energies and tube currents for clinical imaging. Although there are many potential applications for these small field‐of‐view devices, initial experience has been with an X‐ray source that can be inserted into the mouth for dental imaging. Conceived less than 20 years ago, CNT ‐enabled X‐ray sources are now being manufactured on a commercial scale and are powering both research tools and experimental human imaging devices. WIREs Nanomed Nanobiotechnol 2018, 10:e1475. doi: 10.1002/wnan.1475 This article is categorized under: Diagnostic Tools Diagnostic Nanodevices Diagnostic Tools In Vivo Nanodiagnostics and Imaging
机译:已经出现了一种新的成像技术,其使用碳纳米管(CNT)作为X射线管的电子发射器(阴极)。由于CNT阴极的性能由简单的电压操作控制,因此CNT-enaiababled X射线源是捕获三维信息所需的重复成像步骤的理想选择。因此,他们允许开发用于小型动物研究的门控微型计算机断层扫描(CT)扫描仪以及静止的造成的分枝型,这是大型视野人体成像的实验技术。小动物CT可以在呼吸和心脏周期的特定点处获取图像。因此,纵向成像变得可能,并且已应用于许多研究问题,从肿瘤反应对心输出的非侵入性评估。数字Tomos合成(DT)是一种低剂量和低成本的人类影像工具,捕获一些深度信息。被称为三维乳房X线照相术,DT现在临床使用用于乳房成像。然而,当前批准的DT的分辨率受到需要通过空间摆动X射线源以收集一系列投影视图的限制。一系列固定和分布式的CNT-enselce源提供了解决方案,并已用于构建乳房,肺和牙科成像的固定DT器件。迄今为止,超过100名患者在机构审查委员会批准的研究协议上进行了成像。早期经验是有前途的,呈现出软组织特征的出色光临,同时还突出了指导持续研发的技术和后期处理限制。另外,在微型X射线管中测试CNT-enablecces,其能够产生足够的光子能量和管电流进行临床成像。虽然这些小视野视图存在许多潜在的应用,但是初始经验已经具有X射线源,可以插入牙齿成像的嘴中。少于20年前,CNT-enabled X射线源现在正在商业规模制造,并为研究工具和实验人体成像装置提供供电。电线纳米纳米二极管2018,10:E1475。 DOI:10.1002 / WNAN.1475本文分类为:诊断工具&诊断Nanodevices诊断工具&体内纳米杆菌和成像

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    Joint Department of Biomedical EngineeringUniversity of North CarolinaChapel Hill NC USA;

    Department of Physics and AstronomyUniversity of North CarolinaChapel Hill NC USA;

    Department of Physics and AstronomyUniversity of North CarolinaChapel Hill NC USA;

    Department of Applied Physical SciencesUniversity of North CarolinaChapel Hill NC USA;

    Department of RadiologyUniversity of North CarolinaChapel Hill NC USA;

    Department of Physics and AstronomyUniversity of North CarolinaChapel Hill NC USA;

    Department of Physics and AstronomyUniversity of North CarolinaChapel Hill NC USA;

    Joint Department of Biomedical EngineeringUniversity of North CarolinaChapel Hill NC USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医药、卫生;
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