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Collimator interchange system for adaptive cardiac imaging in C-SPECT

机译:C-SPECT自适应心脏成像的准直器交换系统

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Use of a small field of view can greatly improve the imaging performance of cardiac SPECT systems, compared to using conventional whole-body SPECT system that use a large field of view for cardiac imaging. To maximize the benefits, however, it is important to locate the heart and place it accurately into the small FOV. To achieve high performance across the general population, a system must provide imaging configurations optimized for different size and location of the heart and the size of the patient. Because of the critical role the collimator plays in SPECT, it would be ideal if a dedicated collimator could be used for each of the different patient groups. The ability to exchange collimators without moving the patient can enable serial studies with different imaging options while preserving anatomic registration. We developed a slit exchange system for the slit-slat collimator of the C-SPECT cardiac platform. The full-scale prototype, a precision link conveyor following a curved, body contouring path, allows four distinct transaxial collimation options and can be expanded further. The collimators can be exchanged in 10 seconds without disturbing the patient, allowing truly adaptive clinical SPECT imaging The positioning precision for all elements of the system is within 0.1 mm and has shown no degradation over 100,000 complete revolutions of the conveyor - well above the expected usage for a clinical system. We believe that the rapid and precise operation allowing optimal collimation for different imaging tasks is an important technological step for SPECT.
机译:与使用使用大视野用于心脏成像的传统全身SPECT系统,使用小视野可以大大提高心脏SPECT系统的成像性能。然而,为了最大限度地提高好处,重要的是要找到心脏并准确地放入小FOV中。为了实现普通人群的高性能,系统必须提供针对不同大小和心脏位置和患者尺寸优化的成像配置。由于准直器在SPECT中发挥的关键作用,如果专用准直器可以用于每个不同的患者组,则是理想的。在不移动患者的情况下交换准直器的能力可以在保持解剖学配准的同时使不同的成像选项进行串行研究。我们开发了C-SPECT心平台的狭缝直升机的狭缝交换系统。全尺寸原型,弯曲的车身轮廓路径之后的精密连杆输送机,允许四种不同的横向同准合选项,并且可以进一步扩展。准直器可以在10秒内交换,而不会扰乱患者,允许真正的自适应临床SPECT成像,系统的所有元件的定位精度在0.1毫米内,显示出在100,000多个完全转动的情况下没有降低 - 远高于预期使用对于临床系统。我们认为,允许对不同成像任务的最佳准直的快速和精确的操作是SPECT的重要技术步骤。

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