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    • 1. 发明授权
    • System for real time, non-invasive metrology of microfluidic chips
    • 微流控芯片的实时,非侵入式计量系统
    • US06868347B2
    • 2005-03-15
    • US10393109
    • 2003-03-19
    • Guann-Pyng LiMark BachmanZhongping Chen
    • Guann-Pyng LiMark BachmanZhongping Chen
    • G01B9/02G01N11/00
    • G06F19/00G01B9/0201G01B9/02027G01B9/02045G01B9/02072G01B9/02091G01B2290/35G01B2290/45G01B2290/70
    • A system integration of multicomponent technologies includes an automated microfluidic probe station and the use of that station for the systematic study of nonideal, nonhomogeneous biological fluids such as blood in microfluidic chips. The probe station provides for real-time, non-invasive metrology of microfluidic chips employing optical coherence tomography and optical Doppler tomography to allow for collection of flow data at any location or depth within a microfluidics chip. Also included is a programmable fluidic loader and actuator platform as part of the probe station, and a semi-automated rapid prototyping tool used to fabricate the microfluidic chips measured on the probe station. The resulting data library produced by measurements on the probe station contains all the necessary information needed to develop mature, accurate microfluidic modeling and simulation CAD tools.
    • 多组分技术的系统集成包括自动化微流体探针站和该站的用途,用于系统研究非流体,非均质生物流体,如微流控芯片中的血液。 探针台提供使用光学相干断层扫描和光学多普勒层析成像的微流控芯片的实时非侵入式计量,以允许在微流体芯片内的任何位置或深度收集流量数据。 还包括作为探测台的一部分的可编程流体装载器和致动器平台,以及用于制造在探针台上测量的微流体芯片的半自动化快速成型工具。 通过探针台上的测量产生的结果数据库包含开发成熟,精确的微流体建模和仿真CAD工具所需的全部必要信息。
    • 2. 发明授权
    • Therapeutic agent delivery systems and devices
    • 治疗剂递送系统和装置
    • US08617143B2
    • 2013-12-31
    • US11952626
    • 2007-12-07
    • Mark BachmanBaruch KuppermannAsheesh DivetiaGuann Pyng Li
    • Mark BachmanBaruch KuppermannAsheesh DivetiaGuann Pyng Li
    • A61K9/22
    • A61K9/0024A61F9/0017A61K9/025
    • Devices, systems and methods for delivering pre-determined quantities of an active ingredient to a biological system are provided. In various embodiments, a device for controlled release of an active ingredient is provided, including a release aperture operably associated with a deflectable member, a base with a porous membrane substrate layer, and at least one chamber juxtaposed between the release aperture and the porous membrane layer. The chamber may contain a matrix including one or more active ingredients and an agent that expands when contacted with an aqueous solution. The device is suitable for implantation in a biological system and can be used for delayed and/or time release of specific drug dosages for various indications.
    • 提供了将预定量的活性成分输送到生物系统的装置,系统和方法。 在各种实施例中,提供了用于控制释放活性成分的装置,包括与可偏转构件可操作地相关联的释放孔,具有多孔膜基底层的基底和并置在释放孔和多孔膜之间的至少一个腔室 层。 该室可以含有包含一种或多种活性成分的基质和当与水溶液接触时膨胀的试剂。 该装置适于植入生物系统中,并且可用于各种适应症的特定药物剂量的延迟和/或时间释放。
    • 10. 发明授权
    • Micro-bubble plate for patterning biological and non-biological materials
    • 用于生物和非生物材料图案的微泡板
    • US08383378B2
    • 2013-02-26
    • US11539695
    • 2006-10-09
    • Yuli WangMark BachmanChristopher E. SimsGuann-Pyng LiNancy Allbritton
    • Yuli WangMark BachmanChristopher E. SimsGuann-Pyng LiNancy Allbritton
    • C12N11/02C12Q1/68C12M1/34
    • B01L3/5085B01L3/5088B01L2200/0642B01L2200/12B01L2300/0819C12M25/06C12M29/20
    • Systems and methods are provided for patterning biological and non-biological material at specific sites on a plate, as well as growing three dimensional structures. Preferred embodiments comprise a plate with regions that will trap gas, usually in the form of bubbles, when the plate is submerged in liquid. Other embodiment of the present invention include a method for placing materials on the plate at pre-determined locations through the use of trapped gas to prevent materials from collecting at unwanted regions. The plate has great utility for plating cells and tissues at specific sites, such as on an array. The disclosed method can also be used to coat the surface of a plate with coatings at specific locations for patterned coating applications and to build up materials to produce three dimensional structures, including micro-mechanical structures—where the structures may be formed from living or non-living material, tissue or non-tissue, organic or inorganic, and the like.
    • 提供了系统和方法,用于在板上的特定位置图案化生物和非生物材料,以及生长三维结构。 优选实施例包括具有区域的板,当板被浸没在液体中时,其具有通常以气泡形式捕获气体的区域。 本发明的其它实施方案包括通过使用捕获的气体将材料放置在预定位置处的材料的方法,以防止材料在不需要的区域收集。 该板对于在特定位置(例如阵列)上的电镀细胞和组织具有很大的用途。 所公开的方法还可以用于在具有特定位置的涂层涂覆板的表面以用于图案化涂布应用,并且建立材料以产生三维结构,包括微机械结构,其中结构可以由活的或非 - 生物材料,组织或非组织,有机或无机物等。