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    • 1. 发明授权
    • Object observing apparatus, object observing method, and storage medium
    • 物体观测装置,物体观察方法和存储介质
    • US09297752B2
    • 2016-03-29
    • US14388358
    • 2013-04-04
    • ADVANCED TELECOMMUNICATIONS RESEARCH INSTITUTE INTERNATIONAL
    • Takeaki ShimokawaTakashi KosakaOkito YamashitaMasaaki Sato
    • G01D18/00G01N21/47A61B10/00A61B5/00
    • G01N21/4785A61B5/0042A61B5/0073A61B5/0091A61B10/0041G01N2201/121G01N2201/12753
    • In order to solve a problem that a local optical characteristic-changed region inside an object cannot be accurately estimated, an object observing apparatus includes: a light intensity information acquiring unit that acquires light intensity information received by each light-receiving probe; a light intensity change information acquiring unit that acquires, for each probe set, light intensity change information, from reference light intensity information and light intensity information; an estimating unit that acquires three-dimensional optical characteristic-changed region information, using the light intensity change information; and an output unit that outputs the optical characteristic-changed region information; the estimating unit including a correcting part that performs correction according to sensitivity attenuation in accordance with a depth; and a sparseness applying part that introduces sparseness for improving a space resolution, thereby acquiring the optical characteristic-changed region information. Accordingly, it is possible to accurately estimate a local optical characteristic-changed region inside an object.
    • 为了解决不能准确地估计对象内的局部光学特性变化区域的问题,物体观测装置包括:光强度信息获取单元,其获取由各受光探针接收的光强度信息; 光强度变化信息获取单元,对于每个探针组,从参考光强度信息和光强度信息获取光强度变化信息; 估计单元,使用光强度变化信息获取三维光学特性变化区域信息; 以及输出单元,其输出所述光学特性变化区域信息; 所述估计单元包括根据深度执行根据灵敏度衰减的校正的校正部分; 以及引入稀疏性以提高空间分辨率的稀疏性施加部,从而获取光学特性变化区域信息。 因此,可以精确地估计物体内部的局部光学特性变化区域。
    • 2. 发明申请
    • OBJECT OBSERVING APPARATUS, OBJECT OBSERVING METHOD, AND STORAGE MEDIUM
    • 对象观察装置,对象观察方法和存储介质
    • US20150090869A1
    • 2015-04-02
    • US14388358
    • 2013-04-04
    • ADVANCED TELECOMMUNICATIONS RESEARCH INSTITUTE INTERNATIONAL
    • Takeaki ShimokawaTakashi KosakaOkito YamashitaMasaaki Sato
    • G01N21/47
    • G01N21/4785A61B5/0042A61B5/0073A61B5/0091A61B10/0041G01N2201/121G01N2201/12753
    • In order to solve a problem that a local optical characteristic-changed region inside an object cannot be accurately estimated, an object observing apparatus includes: a light intensity information acquiring unit that acquires light intensity information received by each light-receiving probe; a light intensity change information acquiring unit that acquires, for each probe set, light intensity change information, from reference light intensity information and light intensity information; an estimating unit that acquires three-dimensional optical characteristic-changed region information, using the light intensity change information; and an output unit that outputs the optical characteristic-changed region information; wherein the estimating unit includes: a correcting part that performs correction according to sensitivity attenuation in accordance with a depth; and a sparseness applying part that introduces sparseness for improving a space resolution, thereby acquiring the optical characteristic-changed region information. Accordingly, it is possible to accurately estimate a local optical characteristic-changed region inside an object.
    • 为了解决不能准确地估计对象内的局部光学特性变化区域的问题,物体观测装置包括:光强度信息获取单元,其获取由各受光探针接收的光强度信息; 光强度变化信息获取单元,对于每个探针组,从参考光强度信息和光强度信息获取光强度变化信息; 估计单元,使用光强度变化信息获取三维光学特性变化区域信息; 以及输出单元,其输出所述光学特性变化区域信息; 其中所述估计单元包括:校正部,其根据深度根据灵敏度衰减进行校正; 以及引入稀疏性以提高空间分辨率的稀疏性施加部,从而获取光学特性变化区域信息。 因此,可以精确地估计物体内部的局部光学特性变化区域。