首页> 外文会议>Multimodal Biomedical Imaging II; Progress in Biomedical Optics and Imaging; vol.8 no.8; Proceedings of SPIE-The International Society for Optical Engineering; vol.6431 >Design of a Frequency Domain Instrument for Simultaneous Optical Tomography and Magnetic Resonance Imaging of Small Animals
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Design of a Frequency Domain Instrument for Simultaneous Optical Tomography and Magnetic Resonance Imaging of Small Animals

机译:小型动物同时进行光学层析成像和磁共振成像的频域仪器设计

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摘要

We present a design for frequency domain instrument that allows for simultaneous gathering of magnetic resonance and diffuse optical tomographic imaging data. This small animal imaging system combines the high anatomical resolution of magnetic resonance imaging (MRI) with the high temporal resolution and physiological information provided by diffuse optical tomography (DOT). The DOT hardware comprises laser diodes and an intensified CCD camera, which are modulated up to 1 GHz by radio frequency (RF) signal generators. An optical imaging head is designed to fit inside the 4 cm inner diameter of a 9.4 T MRI system. Graded index fibers are used to transfer light between the optical hardware and the imaging head within the RF coil. Fiducial markers are integrated into the imaging head to allow the determination of the positions of the source and detector fibers on the MR images and to permit co-registration of MR and optical tomographic images. Detector fibers are arranged compactly and focused through a camera lens onto the photocathode of the intensified CCD camera.
机译:我们提出了一种频域仪器的设计,该仪器可以同时收集磁共振和散射光学层析成像数据。这种小型动物成像系统将磁共振成像(MRI)的高解剖分辨率与由扩散光学层析成像(DOT)提供的高时间分辨率和生理信息结合在一起。 DOT硬件包括激光二极管和增强型CCD摄像头,它们通过射频(RF)信号发生器调制至1 GHz。光学成像头设计为可安装在9.4 T MRI系统的4 cm内径内。渐变折射率光纤用于在光学硬件和RF线圈内的成像头之间传输光。基准标记被集成到成像头中,以允许确定MR图像上的源纤维和检测器纤维的位置,并允许MR和光学断层图像的共配准。探测器光纤排列紧凑,并通过摄像机镜头聚焦到增强型CCD摄像机的光电阴极上。

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