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    • 3. 发明申请
    • OPTICAL DEVICES AND METHODS INVOLVING NANOPARTICLES
    • 涉及纳米颗粒的光学器件和方法
    • WO2004059347A2
    • 2004-07-15
    • PCT/US0341258
    • 2003-12-22
    • MINERVA BIOTECHNOLOGIES CORPBAMDAD CYNTHIA C
    • BAMDAD CYNTHIA C
    • G02B1/10G02B5/20G02B
    • B82Y30/00B82Y10/00B82Y20/00G02B1/10G02B1/11G02B5/20G02B5/206G02F1/17G02F2203/10G11B7/242
    • The present invention relates generally to optical materials and applications of optical materials and, more particularly, to optical materials incorporating particles such as nanoparticles, methods of forming such materials, and applications of such materials in various devices, for example, for filters, displays, coatings for glare reduction, and the like. The present invention can provide control over fabrication dimensions at very small scale, for example, at the molecular scale rather than at a macroscopic scale. The invention also involves, in some cases, controlling the interaction of many wavelengths of electromagnetic radiation with these materials. The optical materials and devices of the invention may be constructed and arranged for a response to, control of, and/or interaction with essentially any electromagnetic radiation, electric field, and/or magnetic field.
    • 本发明一般涉及光学材料的光学材料和应用,更具体地说,涉及纳入颗粒的光学材料,例如纳米颗粒,形成这种材料的方法,以及这些材料在各种装置中的应用,例如用于过滤器 ,显示器,用于减少眩光的涂层等。 本发明可以以非常小的尺度提供对制造尺寸的控制,例如在分子尺度而不是宏观尺度。 在一些情况下,本发明还涉及控制许多波长的电磁辐射与这些材料的相互作用。 本发明的光学材料和器件可以构造和布置成对基本上任何电磁辐射,电场和/或磁场的响应,控制和/或相互作用。
    • 5. 发明申请
    • CUSTOMIZED THERAPEUTICS AND IN SITU DIAGNOSTICS
    • 定制的治疗方法和原位诊断
    • WO2002076248A2
    • 2002-10-03
    • PCT/US2002/008809
    • 2002-03-22
    • MINERVA BIOTECHNOLOGIES CORPORATIONBAMDAD, Cynthia, C.BAMDAD, R., Shoshana
    • BAMDAD, Cynthia, C.BAMDAD, R., Shoshana
    • A41B
    • G01N33/585A61K47/6923B82Y5/00B82Y15/00B82Y30/00G01N33/5438G01N2610/00
    • Customized therapeutics and in situ diagnostics for patient therapy and diagnosis takes advantage of tools including techniques for derivatizing colloids with self-assembled monolayers. This provides the capability of a wide variety of assays including chemical or biochemical agent/agent interaction studies. Bio-derivatized colloids, with or without signaling entities, are used to probe interactions with species on non-colloidal structures. The invention provides techniques for immobilizing colloidal particles on a wide variety of non-colloidal structures. Included is the ability to decorate a variety of non-colloidal structures including beads, with colloids as a detectable assay. This allows, in many cases, assays detectable via the unaided human eye, as well as assays detectable via automated determination of a change of interaction of electromagnetic radiation with the colloids, e.g., absorption, light-scattering, and the like.
    • 用于患者治疗和诊断的定制治疗和原位诊断利用工具,包括用自组装单层衍生胶体的技术。 这提供了各种测定的能力,包括化学或生物化学试剂/药物相互作用研究。 具有或不具有信号传导实体的生物衍生胶体用于探测与非胶体结构物质的相互作用。 本发明提供了将胶体颗粒固定在各种非胶体结构上的技术。 包括装饰各种非胶体结构(包括珠粒)的能力,胶体作为可检测的测定法。 这在许多情况下允许通过无辅助人眼可检测的测定,以及通过自动测定电磁辐射与胶体的相互作用变化(例如吸收,光散射等)可检测的测定。