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公开(公告)号:US20050197581A1
公开(公告)日:2005-09-08
申请号:US10946572
申请日:2004-09-20
申请人: Scott Ferguson , Douglas Stevenson , John Fralick , Larry Brim , Jack Peterson , Kelvin Lau , Eric Moore , Lyle Gunderson
发明人: Scott Ferguson , Douglas Stevenson , John Fralick , Larry Brim , Jack Peterson , Kelvin Lau , Eric Moore , Lyle Gunderson
CPC分类号: A61B5/0059 , A61B5/1495 , A61B2560/0233 , G01N21/65
摘要: Methods, apparatus, and compositions calibrate a bio-photonic scanner detecting selected molecular structures of tissues, nondestructively, in vivo. The apparatus may include a processor, memory, and scanner. The scanner directs light nondestructively onto tissue in vivo, then receives back a radiant response through a system of mirrors and lenses back into the detector. Software for controlling the scanner and processing its output may be calibrated using a synthetic material to mimic the radiant response of tissue. Calibration may account for background fluorescence and elastic scattering, mimicking skin tissue materials having substantially no Raman scattering response of interest. Dopants may be added to the matrix of white scan material to mimic selected molecular structures in tissue. Matrix materials include a dilatant compound, and dopants include biological materials as well as K-type polarizing film and other materials.
摘要翻译: 方法,装置和组合物校准生物光子扫描仪,在体内非破坏性地检测组织的选定分子结构。 该装置可以包括处理器,存储器和扫描器。 扫描仪将光非破坏性地引导到体内的组织上,然后通过反射镜和透镜系统将辐射响应传回回检测器。 用于控制扫描仪和处理其输出的软件可以使用合成材料来校准,以模拟组织的辐射响应。 校准可以解释背景荧光和弹性散射,模拟基本上没有感兴趣的拉曼散射响应的皮肤组织材料。 可以将掺杂剂添加到白色扫描材料的基质中以模拟组织中选定的分子结构。 基质材料包括稀释剂,掺杂剂包括生物材料以及K型偏光膜等材料。
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公开(公告)号:US20050197580A1
公开(公告)日:2005-09-08
申请号:US10946367
申请日:2004-09-20
申请人: Scott Ferguson , Douglas Stevenson , John Fralick , Larry Brim , Jack Peterson , Kelvin Lau , Eric Moore , Lyle Gunderson
发明人: Scott Ferguson , Douglas Stevenson , John Fralick , Larry Brim , Jack Peterson , Kelvin Lau , Eric Moore , Lyle Gunderson
CPC分类号: A61B5/0059 , A61B5/1495 , A61B2560/0233 , G01N21/65
摘要: A method, apparatus, and set of compositions are disclosed for calibrating a bio-photonic scanner. The scanner detects selected molecular structures of tissues, nondestructively, in vivo. The apparatus may include a computer, including processor and memory connecting to the scanner, including an illuminator to direct light nondestructively onto tissue in vivo, a detector to detect an intensity of a radiant response of the tissue to the light, and a probe to direct light onto the subject and receive a radiant response back into the detector. The apparatus is calibrated using a synthetic material to mimic the radiant response of live tissue, correcting for background fluorescence and elastic scattering. Dopants in a matrix of synthetic material mimic selected molecular structures of tissue. Matrix materials include a dilatant compound, and dopants include biological materials as well as K-type polarizing film powdered and mixed.
摘要翻译: 公开了用于校准生物光子扫描仪的方法,装置和组合。 扫描仪在体内非破坏性地检测组织的选定分子结构。 该装置可以包括计算机,包括连接到扫描器的处理器和存储器,包括用于将光非破坏性地将光引导到体内的照明器,用于检测组织对光的辐射响应的强度的检测器,以及用于引导 将光照射到被摄体上并接收到辐射响应回到检测器中。 使用合成材料校准装置以模拟活组织的辐射响应,校正背景荧光和弹性散射。 合成材料基质中的掺杂剂模拟组织的选定分子结构。 基质材料包括膨胀化合物,掺杂剂包括生物材料以及K型偏光膜粉末和混合物。
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公开(公告)号:US10183784B2
公开(公告)日:2019-01-22
申请号:US15653254
申请日:2017-07-18
申请人: Kelvin Lau
发明人: Kelvin Lau
摘要: Embodiments disclosed herein describe systems and methods for a stabilized and dynamic storage system. Embodiments may be configured to be secured to a support structure, such as a fence, wall, etc. at a plurality of locations, while allowing objects to be stored within the storage system. By coupling the storage system to the support structure at a plurality of locations, stress applied by the objects positioned within the storage system may be distributed across the storage system.
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公开(公告)号:US20180044065A1
公开(公告)日:2018-02-15
申请号:US15653254
申请日:2017-07-18
申请人: Kelvin Lau
发明人: Kelvin Lau
摘要: Embodiments disclosed herein describe systems and methods for a stabilized and dynamic storage system. Embodiments may be configured to be secured to a support structure, such as a fence, wall, etc. at a plurality of locations, while allowing objects to be stored within the storage system. By coupling the storage system to the support structure at a plurality of locations, stress applied by the objects positioned within the storage system may be distributed across the storage system.
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