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Fiber optic illumination and detection patterns, shapes, and locations for use in spectroscopic analysis

机译:光谱分析中使用的光纤照明和检测图案,形状和位置

摘要

The invention provides a design process that is used in the determination of the pattern of detector and illumination optical fibers at the sampling area of a subject. Information about the system, specifically a monochromator (e.g. to determine the optimal number of fibers at an output slit) and the bundle termination at a detector optics stack (e.g. to determine the optimal number of fibers at the bundle termination), is of critical importance to this design. It is those numbers that determine the ratio and number of illumination to detection fibers, significantly limiting and constraining the solution space. Additional information about the estimated signal and noise in the skin is necessary to maximize the signal-to-noise ratio in the wavelength range of interest. Constraining the fibers to a hexagonal perimeter and prescribing a hex-packed pattern, such that alternating columns contain illumination and detection fibers, yields optimal results. In the preferred embodiment of the invention, two detectors share the totality of the detection fibers at the sampling interface. A third group of detection fibers is used for classification purposes.
机译:本发明提供了一种设计方法,该设计方法用于确定对象的采样区域处的检测器和照明光纤的图案。与系统有关的信息,特别是单色仪(例如,确定输出狭缝处的最佳光纤数量)和检测器光学堆栈处的束终端(例如,确定束终端处的最佳光纤数量)的信息至关重要这个设计。正是这些数字确定了与检测光纤的照明比例和数量,从而极大地限制和限制了溶液空间。为了使目标波长范围内的信噪比最大化,需要有关皮肤中估计信号和噪声的其他信息。将光纤限制为六边形周长并指定十六进制填充图案,以使交替的列包含照明和检测光纤,可产生最佳结果。在本发明的优选实施例中,两个检测器在采样接口处共享全部检测光纤。第三组检测纤维用于分类目的。

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