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    • 1. 发明授权
    • Method and apparatus for non-invasive detection of physiological
chemicals, particularly glucose
    • 用于非侵入性检测生理化学品,特别是葡萄糖的方法和装置
    • US5459317A
    • 1995-10-17
    • US195709
    • 1994-02-14
    • Gary W. SmallMark Arnold
    • Gary W. SmallMark Arnold
    • A61B5/00A61B5/145A61B5/1455G01J3/45G01N21/35G01J3/28
    • G01J3/45A61B5/14532A61B5/1455A61B5/7257G01N21/35G01N21/359
    • Non-invasive measurements of physiological chemicals such as glucose are made using infrared radiation and a signal processing system that permits the construction of a device suited for home use. The level of a selected physiological chemical in a test subject is determined in a non-invasive and quantitative manner by a method comprising the steps of: (a) irradiating a portion of the test subject with near-infrared radiation such that the radiation is transmitted through or reflected from the test subject; (b) collecting data concerning the transmitted or reflected infrared radiation using a detector; (c) digitally filtering the collected data to isolate a portion of the data indicative of the physiological chemical; and (d) determining the amount of physiological chemical in the test subject by applying a defined mathematical model to the digitally filtered data. The data collected may be in the form of an absorbance spectrum, i.e., a representation of the variation in absorbance as a function of wavelength; or in the form of an interferogram, i.e., a representation of infrared light intensity as a function of the retardation of the moving mirror in the interferometer, and thus of time.
    • 使用红外辐射和信号处理系统制造生物化学品如葡萄糖的非侵入性测量,其允许构造适于家庭使用的装置。 通过包括以下步骤的方法以非侵入性和定量的方式测定受检对象中所选择的生理化学物质的水平:(a)用近红外辐射照射被测物体的一部分,使得辐射被传输 通过或反映在考试科目; (b)使用检测器收集关于发射或反射的红外辐射的数据; (c)对所收集的数据进行数字滤波以分离指示生理化学品的数据的一部分; 和(d)通过将定义的数学模型应用于数字滤波数据来确定测试对象中生理化学物质的量。 收集的数据可以是吸收光谱的形式,即作为波长的函数的吸光度变化的表示; 或者以干涉图的形式,即作为干涉仪中的移动镜的延迟的函数的红外光强度的表示,以及因此的时间。
    • 2. 发明授权
    • Method and apparatus for non-invasive determination of physiological
chemicals, particularly glucose
    • 用于非侵入性测定生理化学品,特别是葡萄糖的方法和装置
    • US6061582A
    • 2000-05-09
    • US860850
    • 1997-06-11
    • Gary W. SmallMark Arnold
    • Gary W. SmallMark Arnold
    • A61B5/00A61B5/145A61B5/1455G01J3/45G01N21/35
    • G01J3/45A61B5/14532A61B5/1455A61B5/7257G01N21/35G01N21/359
    • Non-invasive measurements of physiological chemicals such as glucose in a test subject are made using infrared radiation and a signal processing system. The level of a selected physiological chemical in the test subject is determined in a non-invasive and quantitative manner by a method comprising the steps of: (a) irradiating a portion of the test subject with near infrared radiation; (b) collecting data concerning the irradiated light on the test subject; (c) digitally filtering the collected data to isolate a portion of the data indicative of the physiological chemical; and (d) determining the amount of physiolgocial chemical in the test subject by applying a defined mathematical model to the digitally filtered data. The collected data is in the form of either an absorbance spectrum or an interferogram.
    • PCT No.PCT / US95 / 01556 Sec。 371日期:1997年6月11日 102(e)日期1997年6月11日PCT提交1995年2月7日PCT公布。 公开号WO95 / 22046 日期1995年8月17日使用红外辐射和信号处理系统对测试对象中生理化学物质(如葡萄糖)进行非侵入性测量。 通过包括以下步骤的方法以非侵入性和定量的方式确定测试对象中所选择的生理化学品的水平:(a)用近红外辐射照射测试对象的一部分; (b)收集关于受试对象的照射光的数据; (c)对所收集的数据进行数字滤波以分离指示生理化学品的数据的一部分; 和(d)通过将定义的数学模型应用于数字滤波数据来确定测试对象中的生物化学物质的量。 收集的数据是吸收光谱或干涉图的形式。
    • 5. 发明授权
    • Vacuum system for pre-wash removal of food/grease materials in dishwasher facilities
    • 用于在洗碗机设备中预清洗食品/油脂材料的真空系统
    • US06434783B1
    • 2002-08-20
    • US09350633
    • 1999-07-09
    • Mark ArnoldKenneth C. Turner
    • Mark ArnoldKenneth C. Turner
    • A47L538
    • A47L7/0009A47L7/0014A47L7/0042A47L17/00
    • A method and apparatus for reducing food and grease in a wastewater stream from a food service facility. Vacuum is supplied to a suction hose, which is used to remove food and grease from plates and utensils prior to these being introduced into the water flow. The food and grease is collected in a waste container for separate disposal. The suction hose may be fitted with a scrubber head for breaking up and removing the materials. The vacuum may be supplied by an air pressure operated vacuum transducer, or by an exhaust blower. The invention thus solves the problem of high BOD, FOG and TSS levels in wastewater streams from food service facilities, which generate excessive loads on both on-site septic systems and municipal waste water treatment plants.
    • 一种用于减少来自食品服务设施的废水流中的食物和油脂的方法和设备。 真空被供应到抽吸软管,该抽吸软管用于在将它们引入水流之前从板和器具中去除食物和油脂。 食物和油脂被收集在废物容器中以便分开处理。 抽吸软管可以安装有用于分解和去除材料的洗涤器头。 真空可以由空气压力操作的真空传感器或排风机提供。 因此,本发明解决了来自食品服务设施的废水中BOD,FOG和TSS含量高的现象,这些问题在现场脓毒系统和城市废水处理厂产生过大的负荷。
    • 7. 发明申请
    • Packing system
    • 包装系统
    • US20050092645A1
    • 2005-05-05
    • US10699739
    • 2003-11-04
    • Mark Arnold
    • Mark Arnold
    • B65D81/107B65D81/127B65D85/30
    • B65D81/107B65D81/127
    • A unitary foam packing element including a planar piece of foam which is precut with a plurality of score lines. The score lines define a first planar portion and a second planar portion, and enable the first planar portion to be folded over onto the second planar portion to thereby form a flat cavity between the first planar portion and the second planar portion. The score lines further define an end panel adjacent the second planar portion, which is adapted to be folded along a respective one of the score lines so as to form a first end wall of the flat cavity, and an intermediate portion between the first planar portion and the second planar portion, which is adapted to form a second end wall of the flat cavity that is opposite the first end wall.
    • 一种单一的泡沫包装元件,包括用多个刻痕线预先切割的平坦泡沫片。 记分线限定第一平面部分和第二平面部分,并且使得第一平面部分能够折叠到第二平面部分上,从而在第一平面部分和第二平面部分之间形成平坦的空腔。 刻痕线还限定了邻近第二平面部分的端板,其适于沿着相应的刻痕线折叠,以便形成平坦空腔的第一端壁,以及在第一平面部分之间的中间部分 以及第二平面部分,其适于形成与第一端壁相对的平坦腔的第二端壁。
    • 8. 发明申请
    • Reagentless optical analyte detection system
    • 无源光学分析物检测系统
    • US20070066877A1
    • 2007-03-22
    • US11397927
    • 2006-04-04
    • Mark ArnoldJonathon OlesbergChris Coretsopoulos
    • Mark ArnoldJonathon OlesbergChris Coretsopoulos
    • A61B5/00
    • A61B5/0031A61B5/076A61B5/14532A61B5/1459A61B2560/0219
    • Disclosed is an implantable microspectrometer for the reagentless optical detection of an analyte in a sample fluid. The microspectrometer comprises an optical sampling cell having a cell housing defining a fluid inlet port and a fluid outlet port, the fluid inlet port configured to receive an optical sampling fluid from a test subject; an electromagnetic radiation source in communication with a first portion of the optical sampling cell housing and configured to irradiate at least a portion of the optical sampling fluid with electromagnetic radiation; and an electromagnetic radiation detector in communication with a second portion of the optical sampling cell housing and configured to detect electromagnetic radiation emanating from the optical sampling cell. In use, the implantable microspectrometer can optically detect at least one parameter of an analyte contained within the optical sampling fluid in the absence of an added reagent.
    • 公开了一种用于对样品流体中的分析物进行无试剂光学检测的可植入显微光谱仪。 显微光谱仪包括具有限定流体入口端口和流体出口端口的单元壳体的光学采样单元,该流体入口端口被配置为从测试对象接收光学采样流体; 电磁辐射源,其与所述光取样单元壳体的第一部分连通并且被配置成用电磁辐射照射所述光取样流体的至少一部分; 以及电磁辐射检测器,其与所述光取样单元壳体的第二部分连通并被配置为检测从所述光取样单元发出的电磁辐射。 在使用中,可植入显微光谱仪可以在不存在添加的试剂的情况下光学地检测光学取样流体中包含的分析物的至少一个参数。