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Focal spot size reduction using asymmetric collimation to enable reduced anode angles with a conventional angiographic x-ray tube for use with high resolution detectors

机译:使用非对称准直来减小焦点尺寸从而可以与高分辨率探测器一起使用的常规血管造影X射线管减小阳极角度

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摘要

The high-resolution requirements for neuro-endovascular image-guided interventions (EIGIs) necessitate the use of a small focal-spot size; however, the maximum tube output limits for such small focal-spot sizes may not enable sufficient x-ray fluence after attenuation through the human head to support the desired image quality. This may necessitate the use of a larger focal spot, thus contributing to the overall reduction in resolution. A method for creating a higher-output small effective focal spot based on the line-focus principle has been demonstrated and characterized. By tilting the C-arm gantry, the anode-side of the x-ray field-of-view is accessible using a detector placed off-axis. This tilted central axis diminishes the resultant focal spot size in the anode-cathode direction by the tangent of the effective anode angle, allowing a medium focal spot to be used in place of a small focal spot with minimal losses in resolution but with increased tube output. Images were acquired of two different objects at the central axis, and with the C-arm tilted away from the central axis at 1° increments from 0°–7°. With standard collimation settings, only 6° was accessible, but using asymmetric extended collimation a maximum of 7° was accessed for enhanced comparisons. All objects were positioned perpendicular to the anode-cathode direction and images were compared qualitatively. The increasing advantage of the off-axis focal spots was quantitatively evidenced at each subsequent angle using the Generalized Measured-Relative Object Detectability metric (GM-ROD). This anode-tilt method is a simple and robust way of increasing tube output for a small field-of-view detector without diminishing the overall apparent resolution for neuro-EIGIs.
机译:对神经血管内图像引导干预(EIGI)的高分辨率要求使得必须使用较小的焦点区域;然而,在如此小的焦点尺寸下,最大的管输出极限可能无法在通过人头衰减后实现足够的X射线通量,以支持所需的图像质量。这可能需要使用更大的焦点,从而有助于整体降低分辨率。已经证明并表征了一种基于线聚焦原理的高输出小有效焦点的创建方法。通过倾斜C型臂架,可以使用离轴放置的检测器访问X射线视野的阳极侧。该倾斜的中心轴通过有效阳极角的切线减小了阳极-阴极方向上的最终焦点尺寸,从而可以使用中等焦点代替较小的焦点,从而在分辨率上损失最小,但增加了显像管的输出。在中心轴上获取了两个不同对象的图像,并且C型臂从0°–7°以1°的增量远离中心轴倾斜。在标准准直设置下,只能访问6°,但是在使用非对称扩展准直时,最多可以访问7°,以进行增强的比较。所有物体均垂直于阳极-阴极方向放置,并定性比较图像。使用广义相对相对物体可检测性度量(GM-ROD)在每个后续角度上定量地证明了离轴焦点的优势不断增加。这种阳极倾斜方法是一种用于小型视野探测器的增加管输出的简单而可靠的方法,而不会降低神经EIGI的整体视在分辨率。

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