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    • 31. 发明申请
    • BIOLOGICAL INFORMATION ACQUIRING SYSTEM
    • 生物信息获取系统
    • WO2016075938A1
    • 2016-05-19
    • PCT/JP2015/005633
    • 2015-11-11
    • NIHON KOHDEN CORPORATION
    • SUDO, KentaSUZUKI, YoshimotoKANEKO, Takayuki
    • A61B5/00A61B5/11G06F19/00H04N7/18A61B5/0476
    • A61B5/002A61B5/0006A61B5/0476A61B5/1113A61B5/4094A61B2560/0431G06F19/00G06F19/321G06F19/3418H04N5/268H04N7/181
    • A biological signal acquirer (2) is attached to the subject and acquires a biological signal of a subject (200). A transmitter (3) is carried by the subject (200) and transmits the biological signal. A first communication port (4) and a first camera (5) are installed in a first location (110) and connectable to a network (100). A second communication port (6) and a second camera (7) are installed in a second location (120) and connectable to the network (100). A biological information acquiring device (8) is connectable to the network (100) and provided with a switcher (81). The switcher (81) acquires, when communication establishment between the transmitter (3) and the first communication port (4) is detected, the biological signal through the first communication port (4) as well as a first image taken by the first camera (5), and acquires, when communication establishment between the transmitter (3) and the second communication port (6) is detected, the biological signal through the second communication port (6) as well as a second image taken by the second camera (7).
    • 将生物信号获取器(2)附着于被检体并取得被检体(200)的生物体信号。 发射机(3)由对象(200)承载并发送生物信号。 第一通信端口(4)和第一相机(5)安装在第一位置(110)中并可连接到网络(100)。 第二通信端口(6)和第二相机(7)安装在第二位置(120)中并可连接到网络(100)。 生物信息获取装置(8)可连接到网络(100)并设置有切换器(81)。 当检测到发射器(3)和第一通信端口(4)之间的通信建立时,切换器(81)获取通过第一通信端口(4)的生物信号以及由第一相机拍摄的第一图像 5),并且当检测到发射机(3)和第二通信端口(6)之间的通信建立时,获取通过第二通信端口(6)的生物信号以及由第二相机(7)拍摄的第二图像 )。
    • 36. 发明申请
    • EPIDERMAL PHOTONIC SYSTEMS AND METHODS
    • EPIDERMAL PHOTONIC SYSTEMS和方法
    • WO2016025430A1
    • 2016-02-18
    • PCT/US2015/044573
    • 2015-08-11
    • THE BOARD OF TRUSTEES OF THE UNIVERSITY OF ILLINOIS
    • ROGERS, John A.
    • A61B5/00
    • A61B5/14521A61B5/002A61B5/0537A61B5/14532A61B5/14546A61B5/1455A61B5/1468A61B10/0041A61B2560/0214A61B2562/0233A61B2562/164
    • The invention provides systems and methods for tissue-mounted photonics. Devices of some embodiments implement photonic sensing and actuation in flexible and/ stretchable device architectures compatible with achieving long term, mechanically robust conformal integration with a range of tissue classes, including in vivo biometric sensing for internal and external tissues. Tissue-mounted photonic systems of some embodiments include colorimetric, fluorometric and/or spectroscopic photonics sensors provided in pixelated array formats on soft, elastomeric substrates to achieve spatially and/or or temporally resolved sensing of tissue and/or environmental properties, while minimize adverse physical effects to the tissue. Tissue-mounted photonic systems of some embodiments enable flexible passive or active optical sensing modalities, including sensing compatible with optical readout using a mobile electronic devices such as a mobile phone or tablet computer.
    • 本发明提供了用于组织安装光子学的系统和方法。 一些实施例的装置实现柔性和/可拉伸装置结构中的光子感测和致动,其与实现与包括用于内部和外部组织的体内生物特征感测的组织类别的范围的长期,机械稳定的保形整合相兼容。 一些实施例的组织安装的光子系统包括在柔性弹性体基底上以像素化阵列格式提供的比色,荧光和/或光谱光子传感器,以实现组织和/或环境性质的空间和/或或时间分辨的感测,同时使不利的物理 对组织的影响。 一些实施例的组织安装的光子系统使得能够使用诸如移动电话或平板计算机的移动电子设备的灵活的无源或有源光学感测模式,包括与光学读出兼容的感测。