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High-performance imaging systems and related methods of use of diffuse optical tomography

机译:高性能成像系统和相关的使用漫射光学层析成像的方法

摘要

The advanced imaging system for airlight tomography is disclosed. It is compensated by the system of the receiver where the high density lattice which utilizes the illuminant such as the wide dynamic range and low to accompany the channel to channel crosstalk the light-emitting diode which achieves the high performance at high velocity utilized the avalanche photodiode and the like to disperse separates. The illuminant channel has the private reconstruction possible coded control signal, the detector channel has reconstruction possible decoding, these make with largest pliability and frequency and time encoding and the optimum mixture of decoding possible. The respective detector channel, in order for the channel profit switching there is no necessity, is analyzed by the wide bandwidth receiver circuit which exclusive use separates. Imaging arrangement of high density becomes possible depending upon the efficiency improvement of the DOT system which can as a result, quality of the DOT picture improves. The processor is utilized 3 dimensional modeling which is refined and in order to offer noise decrease.
机译:公开了用于航空断层摄影的高级成像系统。它通过接收器系统进行补偿,其中利用发光体的高密度晶格(例如宽动态范围和低动态范围)伴随着通道间的串扰,从而利用雪崩光电二极管在高速下实现高性能,从而实现了高性能的发光二极管。等分散。光源通道具有私有重构可能的编码控制信号,检测器通道具有重构可能的解码,这些使得最大的柔韧性和频率和时间编码以及解码的最佳混合成为可能。通过专用分离的宽带接收器电路来分析各个检测器信道,以便不必进行信道利润切换。取决于DOT系统的效率提高,高密度的成像布置变得可能,其结果是,DOT图片的质量可以提高。处理器利用经过改进的3D建模,以降低噪声。

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