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Video-rate near infrared tomography to image pulsatile absorption properties in thick tissue

机译:视频速率近红外层析成像对厚组织中的脉动吸收特性进行成像

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摘要

A high frame-rate near-infrared (NIR) tomography system was created to allow transmission imaging of thick tissues with spectral encoding for parallel source implementation. The design was created to maximize tissue penetration through up to 10 cm of tissue, allowing eventual use in human imaging. Eight temperature-controlled laser diodes (LD) are used in parallel with 1.5 nm shifts in their lasing wavelengths. Simultaneous detection is achieved with eight high-resolution, CCD-based spectrometers that were synchronized to detect the intensities and decode their source locations from the spectrum. Static and dynamic imaging is demonstrated through a 64 mm tissue-equivalent phantom, with acquisition rates up to 20 frames per second. Imaging of pulsatile absorption changes through a 72 mm phantom was demonstrated with a 0.5 Hz varying object having only 1% effect upon the transmitted signal. This subtle signal change was used to show that while reconstructing the signal changes in a tissue may not be possible, image-guided recovery of the pulsatile change in broad regions of tissue was possible. The ability to image thick tissue and the capacity to image periodic changes in absorption makes this design well suited for tracking thick tissue hemodynamics in vivo during MR or CT imaging.
机译:创建了高帧速近红外(NIR)断层扫描系统,以对厚组织进行透射成像,并进行频谱编码,以实现并行源。创建该设计的目的是最大程度地延长组织穿过10厘米组织的穿透力,最终允许在人体成像中使用。八个温度控制激光二极管(LD)并联使用,其激光波长偏移1.5 nm。同时使用八台高分辨率,基于CCD的光谱仪进行同步检测,这些光谱仪被同步以检测强度并从光谱中解码其源位置。通过等效于64毫米组织的幻像演示了静态和动态成像,采集速率高达每秒20帧。通过变化为0.5 Hz的物体演示了通过72毫米幻象的脉动吸收变化的成像,该物体对发射信号的影响仅为1%。这种微妙的信号变化用于表明,虽然不可能重建组织中的信号变化,但可以在图像的引导下恢复组织大范围内的搏动变化。对厚组织进行成像的能力以及对吸收的周期性变化进行成像的能力使该设计非常适合在MR或CT成像过程中跟踪体内厚组织的血流动力学。

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