Quantitative characterization of signal-to-noise ratios in diagnostic imaging instrumentation.

Progress in nuclear medicine Pub Date : 1981-01-01
L Kaufman, D Shosa
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引用次数: 0

Abstract

Different imaging modalities can operate on basically different object (biologic) parameters. In addition to an understanding of the intrinsic differences among modalities, it is useful to also understand how these differences translate into information on the output image. Thus, given a defined diagnostic situation, it is important to estimate the confidence (or signal-to-noise level) with which a particular abnormality is observed. For this purpose, we have extended the Rose model for characterization of signal to noise in images by taking into account the sources of degradation of contrast found in diagnostic imaging instrumentation. The model is not only useful in comparing different instruments applied to the identical physiologic state, but can also be used to compare signal to noise in images resulting from different instruments imaging the same subject under different conditions (for instance, positron and planar imaging in the head). The model can also be formulated so as to compare the signal to noise in images obtained from the same object by totally different modalities. A particularly useful feature of this model is its ability to yield an understanding of the intrinsic limitations of any one modality.

诊断成像仪器中信噪比的定量表征。
不同的成像方式可以对基本上不同的物体(生物)参数进行操作。除了了解模态之间的内在差异之外,了解这些差异如何转化为输出图像上的信息也是有用的。因此,给定一个明确的诊断情况,估计一个特定异常被观察到的置信度(或信噪比)是很重要的。为此,我们扩展了Rose模型,通过考虑到诊断成像仪器中发现的对比度下降的来源,来表征图像中的信号到噪声。该模型不仅可用于比较不同仪器在相同生理状态下的成像,还可用于比较不同仪器在不同条件下对同一受试者进行成像(例如,头部的正电子和平面成像)所产生的图像中的信号和噪声。该模型也可以用来比较用完全不同的模态从同一物体获得的图像中的信号和噪声。该模型的一个特别有用的特征是它能够产生对任何一种模态的内在局限性的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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