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    • 3. 发明授权
    • Distributed sensor grid, surface, and skin systems and methods
    • 分布式传感器网格,表面和皮肤系统和方法
    • US09389105B2
    • 2016-07-12
    • US13922364
    • 2013-06-20
    • Faramarz FarahiMehrdad Abolbashari
    • Faramarz FarahiMehrdad Abolbashari
    • G01D21/02H04N5/378G01D21/00H04N5/335H04N5/341
    • G01D21/00H04N5/335H04N5/341H04N5/378
    • The present disclosure provides distributed sensor grid, surface, and skin systems and methods that utilize compressive sampling systems and methods for reading and processing the outputs of sensor arrays (serial and/or parallel) such that increased speed can be achieved. These sensor arrays can be functionalized or sensitized in any desired manner and functions are derived from the outputs, as opposed to individual data points. The sensor arrays can be made in the form of a textile, a fiber optic network, a MEMS network, or a CMOS camera, for example. In general, in accordance with the systems and methods of the present disclosure, a Code is applied to a distributed sensor as part of the compressive sampling technique and derives the functions.
    • 本公开提供了分布式传感器网格,表面和皮肤系统和方法,其利用压缩采样系统和用于读取和处理传感器阵列(串行和/或并行)的输出的方法,使得可以实现增加的速度。 这些传感器阵列可以以任何期望的方式被功能化或致敏,并且功能来自于输出,而不是单独的数据点。 传感器阵列可以例如由纺织品,光纤网络,MEMS网络或CMOS照相机的形式制成。 通常,根据本公开的系统和方法,将代码应用于作为压缩采样技术的一部分的分布式传感器并且导出功能。
    • 8. 发明授权
    • Fiberoptic interferometer and associated method for analyzing tissue
    • 光纤干涉仪及相关分析方法
    • US5920390A
    • 1999-07-06
    • US882848
    • 1997-06-26
    • Faramarz FarahiMohammad Yasin Akhtar RajaRobert Splinter
    • Faramarz FarahiMohammad Yasin Akhtar RajaRobert Splinter
    • A61B5/00G01B9/02
    • A61B5/0084A61B5/0086G01B9/02007G01B9/02088G01B9/02091A61B5/0066
    • The fiberoptic interferometer includes a broadband light source which is selected to illuminate tissue of predetermined organ with light having a wavelength within a predetermined range of wavelengths. Within the predetermined range of wavelengths, the attenuation characteristics of tissue of the predetermined organ define a region of minimum attenuation upon illumination with light having a first wavelength. As a result, the fiberoptic interferometer can precisely determine the optical properties of the tissue and can therefore identify the tissue by comparing the interferometric signal produced upon illumination of the tissue sample with predetermined interferometric signals corresponding to illumination of different types of tissue of the predetermined organ with light having the first wavelength. The fiberoptic interferometer can also include a light source which includes wavelength selection means for controllably selecting the predetermined wavelength of light emitted by the light source. Thus, the optical properties of the tissue can be analyzed at the different wavelengths emitted by the light source to individually determine the optimum wavelength of light for subsequent treatment of the tissue.
    • 光纤干涉仪包括宽带光源,其被选择为用波长在预定波长范围内的光照射预定器官的组织。 在预定范围的波长范围内,预定器官的组织的衰减特性在具有第一波长的光照射时限定最小衰减的区域。 因此,光纤干涉仪可以精确地确定组织的光学特性,因此可以通过将组织样本的照射产生的干涉信号与预定的器官的不同类型的组织的照明相对应的预定干涉信号进行比较来识别组织 具有第一波长的光。 光纤干涉仪还可以包括光源,其包括用于可控地选择由光源发射的光的预定波长的波长选择装置。 因此,可以在由光源发射的不同波长处分析组织的光学性质,以分别确定光的最佳波长以用于随后的组织处理。