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    • 1. 发明申请
    • METHOD AND SYSTEM FOR PRODUCING A MOISTURE CONTENT MAP FOR USE IN MOISTURE SORTING GREEN VENEER USING LIGHT TRANSMISSION
    • 生产水分含量图的方法和系统,用于使用光传输的湿度分配绿色喷雾器
    • WO2004091815A3
    • 2005-03-03
    • PCT/CA2004000608
    • 2004-04-14
    • FORINTEK CANADA CORPDAI CHUNPINGTHOMAS TONYGROVES KEVINXU HENG
    • DAI CHUNPINGTHOMAS TONYGROVES KEVINXU HENG
    • B07C5/14B07C5/34G01N21/59G01N21/89
    • B07C5/3416B07C5/14G01N21/59G01N21/8914
    • Disclosed is a method and system for sorting a plurality of green wood veneer sheets (10) into a plurality of subsets of sheets, the subsets including a "driest" subset, a "wettest" subset, and one or more "intermediate" subsets. The system has a light source (30) for transmitting light (32) through a sheet of veneer (10) as it passes along a conveyor system, and a light sensor (40) for sensing the light (34) passing through the sheet (10). The pattern of light is recorded by an image acquisition and processing subsystem (50) as an image, which is fed to an image analysis subsystem (60) programmed to analyse the light pattern and to produce a mathematical representation of the image. An integrated moisture content value (IMCV) is set for the particular veneer sheet (10). Based on this value, a controller (70) sends signals (65) to the conveyor system (20) to convey the particular sheet to a location storing sheets having similar IMCV values for drying.
    • 公开了一种用于将多个绿色木皮单板(10)分类成多个片材子集的方法和系统,所述子集包括“最干”子集,“最低”子集和一个或多个“中间”子集。 该系统具有一个光源(30),用于在沿着传送系统通过时通过一片胶合板(10)传送光(32);以及光传感器(40),用于感测通过该纸张的光(34) 10)。 光图案由图像获取和处理子系统(50)记录为图像,该图像被馈送到图像分析子系统(60),其被编程为分析光图案并产生图像的数学表示。 为特定的单板(10)设置综合水分含量值(IMCV)。 基于该值,控制器(70)将信号(65)发送到输送系统(20),以将特定的纸张传送到存储具有相似IMCV值的纸张的位置用于干燥。
    • 8. 发明申请
    • BIOCOMPATIBLE FLUORESCENT METAL OXIDE NANOPARTICLES
    • 生物易燃荧光金属氧化物纳米颗粒
    • WO2007136413A3
    • 2008-10-30
    • PCT/US2006049222
    • 2006-12-22
    • VISEN MEDICAL INCGROVES KEVINRAJOPADHYE MILIND
    • GROVES KEVINRAJOPADHYE MILIND
    • A61K49/00A61K49/18
    • A61K49/1866A61K49/0002A61K49/0032A61K49/0056A61K49/0093A61K49/1833A61K49/186B82Y5/00
    • The present invention provides fluorescent metal oxide nanopartic.es that are exceptionally fluorescent or have very high fluorescent brightness and can be used in a variety of in vitro and vivo applications. The fluorescent metal oxide nansparticles are particularly useful as imaging agents that can be used for in vivo imaging. The fluorescent metal oxide nanoparticles may also have magnetic properties and, therefore, can be used for MRI, thus providing a multi-modality imaging agent. Specifically, the design of the agents of the present invention provide fluorescent metal oxide nanoparticles with one or more of the following features: (I) a polymer coating suitable for attaching a plurality of fhiorochromes thereby achieving large extinction coefficients (in excess of 1,000,000 M -1 cm -1 ), (2) a non-crosslinked polymer coating suitable for attaching from about 10 to about 300 fluorochromes per particle, (3) a polymer coating suitable for attaching a plurality of fluorochromes in a manner that does not significantly compromise tht; quantum yield of the fluorochromes (e.g., the nanoparticles retain at least 50% of the fluorescent signal that is created by substantially the same number of free fluorochromes when tested under the same conditions), and (4) a polymer coating that is amenable to efficient chemical linking of biomolecules with retention of their biological properties to yield molecuSar imaging agents. The fluorescent metal oxide nanoparticles are highly stable molecular imaging agents in vitro, both before and after chemical Sinking of fluorochromes and biomolecules, but yet are labile and/or degradable in vivo.
    • 本发明提供荧光金属氧化物纳米颗粒,其是特别荧光的或具有非常高的荧光亮度,并且可以用于各种体外和体内应用。 荧光金属氧化物纳米粒子特别可用作可用于体内成像的成像剂。 荧光金属氧化物纳米颗粒也可以具有磁性,因此可以用于MRI,从而提供多模态成像剂。 具体地,本发明的试剂的设计提供具有以下特征中的一个或多个的荧光金属氧化物纳米颗粒:(I)适合于附着多个荧光体的聚合物涂层,从而实现大的消光系数(超过1,000,000M, (2)适用于每颗颗粒附着约10至约300个荧光染料的非交联聚合物涂层,(3)适用于 以不显着损害的方式附着多个荧光染料; 荧光染料的量子产率(例如,当在相同条件下测试时,纳米颗粒保留由基本上相同数量的游离荧光染料产生的荧光信号的至少50%),和(4)适合于有效的聚合物涂层 生物分子的化学连接和保留其生物学特性以产生分子显像剂。 荧光金属氧化物纳米颗粒是体外高度稳定的分子显像剂,在染料和生物分子的化学沉淀之前和之后,但在体内是不稳定和/或可降解的。