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首页> 外文期刊>Квантовая электроника: Ежемес. журн. >Spatial resolution and scanning time in the optical tomography of absorbing 'phantoms' under multiple scattering conditions
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Spatial resolution and scanning time in the optical tomography of absorbing 'phantoms' under multiple scattering conditions

机译:在多个散射条件下吸收“幽灵”的光学断层扫描中的空间分辨率和扫描时间

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摘要

Photon-counting optical tomography was used in visualisation and projective reconstruction of the image of a strongly absorbing inclusion (a 'phantom'), 6 mm in diameter, hidden by multiple scattering processes in a model object (diameter 140 mm, absorption and scattering coefficients 0.005 and 1.4 mm{sup}(-1), respectively). It was demonstrated experimentally that when the probe radiation power was 10-13 mW the minimal (corresponding to the poorest signal/ratio amounting to ~1) measurement time (photon-counting time) was 0.8 s per one measurement point and the total time needed to scan the whole object was less than 410 s.
机译:光子计数光学断层扫描用于可视化和投影重建的强烈吸收夹杂物(“幻象”),直径为6mm的图像,隐藏在模型物体(直径140mm,吸收和散射系数中)隐藏 0.005和1.4 mm {sup}( - 1))。 实验证明,当探针辐射功率为10-13 mW时,每次测量点(光子计数时间)的最小(对应于〜1的最贫困信号/比率)测量时间(光子计数时间)为0.8秒和所需的总时间 扫描整个对象小于410秒。

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