会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 22. 发明授权
    • Integrated nanomechanical sensor array chips
    • 集成纳米机械传感器阵列芯片
    • US07655269B2
    • 2010-02-02
    • US10423832
    • 2003-04-25
    • Theresa S. MayerChristine D. Keating
    • Theresa S. MayerChristine D. Keating
    • G01N1/33
    • G01N33/54373Y10S977/702Y10S977/877
    • The invention provides sensor, preferably biosensor devices and method of fabrication. The devices have significant advantages over the prior art methods having compatibility with future trends in clinical diagnostics and chemical detection. The underlying principle involves the integration of nanometer diameter, micron long metal or semiconductor rods onto a substrate to form a suspended nanomechanical cantilevers. The cantilever rods are rigidly attached to the substrate on one or both ends, and resonate at a characteristic frequency depending on the diameter, length, and stiffness of the rod. The metal or semiconductor rods are integrated onto the substrate using electrofluidic or fluidic assembly techniques. A receptor coating is placed on the metal or semiconductor rods prior to or following rod alignment using self-assembly chemistries. Sensing is accomplished when the target agent binds to the receptor substance, causing a change in the mass of the cantilever rod, and a corresponding change in the resonant frequency. This change in resonant frequency can be detected using an electrical readout. The sensing circuitry is integrated with CMOS or TFT technologies to form compact multi-analyte senor arrays on single crystal silicon, glass, or polymeric substrates. Circuits can also be included on the substrate to transmit the array data via wireless methods to a remote workstation for analysis. Devices may be integrated on chips with other analysis devices.
    • 本发明提供了传感器,优选地是生物传感器装置和制造方法。 与现有技术方法相比,这些装置具有与临床诊断和化学检测中的未来趋势相容的显着优点。 其基本原理涉及将纳米直径,微米长金属或半导体棒整合到基底上以形成悬浮的纳米机械悬臂。 悬臂杆在一端或两端刚性连接到基板上,并以取决于杆的直径,长度和刚度的特征频率共振。 使用电流或流体组装技术将金属或半导体棒集成到衬底上。 在使用自组装化学物质的杆对准之前或之后,将受体涂层放置在金属或半导体棒上。 当靶剂与受体物质结合时,可以实现感应,引起悬臂杆质量的变化以及谐振频率的相应变化。 可以使用电读出来检测谐振频率的这种变化。 感测电路与CMOS或TFT技术集成,以在单晶硅,玻璃或聚合物基板上形成紧凑的多分析物传感器阵列。 电路也可以包括在基板上,以通过无线方式将阵列数据传输到远程工作站进行分析。 设备可以与其他分析设备集成在芯片上。
    • 24. 发明申请
    • Laser-Activated Nanothermolysis of Cells
    • 激光激活的细胞纳米热解
    • US20080160090A1
    • 2008-07-03
    • US11795857
    • 2006-01-23
    • Alexander OraevskyDmitri Lapotko
    • Alexander OraevskyDmitri Lapotko
    • A61K9/14A61P35/02A61K33/38
    • B82Y5/00A61K41/0052A61K47/6873A61K47/6891A61K47/6923A61K47/6929Y10S977/70Y10S977/702
    • Provided herein are methods and system to increase selective thermomechanical damage to a biological body, such as a cancer cell or cell associated with a pathophysiological condition. The biological body or cancer cell is specifically targeted with nanoparticulates comprising one or more targeting moieties which form nanoparticulate clusters thereon or therewithin. Pulsed electromagnetic radiation, e.g., optical radiation, having a wavelength spectrum selected for a peak wavelength near to or matching a peak absorption wavelength of the nanoparticulates selectively heats the nanoparticulates thereby generating vapor microbubbles around the clusters causing damage to the targets without affecting any surrounding medium or normal cells or tissues. Also provided is a method of treating leukemia using the methods and system described herein.
    • 本文提供了增加对生物体(例如癌细胞或与病理生理条件相关的细胞)的选择性热机械损伤的方法和系统。 生物体或癌细胞特异性靶向包含一个或多个在其上形成纳米颗粒簇的靶向部分的纳米颗粒。 对于接近或匹配纳米颗粒的峰值吸收波长的峰值波长的脉冲电磁辐射,例如光学辐射,选择性地加热纳米颗粒,从而在簇附近产生蒸汽微泡,从而对靶进行破坏而不影响任何周围介质 或正常细胞或组织。 还提供了使用本文所述的方法和系统治疗白血病的方法。