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    • 2. 发明申请
    • FOAM SCAFFOLD MATERIALS
    • 泡沫材料
    • WO9933641A9
    • 1999-09-30
    • PCT/US9827397
    • 1998-12-23
    • MOLECULAR GEODESICS INCINGBER DONALD EMEUSE ARTHUR JROBERTS ERIC R
    • INGBER DONALD EMEUSE ARTHUR JROBERTS ERIC R
    • A61L27/56B29C67/00A61L27/00B29C33/38C08J9/00
    • A61L27/56
    • A foam structure comprising a scaffold material including a predetermined repeating arrangement of polyhedral modules may have shapes of truncated octahedra, Kelvin minimal surface tetrakaidecahedra, or other polyhedral shapes. The foam may be open-cell, in which the polyhedral modules are formed of elongated members defining their edges, or closed-cell, in which the polyhedral modules are formed of substantially planar members defining their faces. The foam can be formed by computer-aided manufacturing techniques, self-assembly techniques, or lost core molding techniques. With this arrangement, a variety of idealized foam material shapes and sizes can be provided, for use in a variety of applications. In addition, the foam material can be designed to be multi-functional and to provide mechanical load-bearing along with other desired properties as required.
    • 包括支架材料的泡沫结构体包括多面体模块的预定重复排列可以具有截断的八面体,开尔文最小表面四面体开口或其它多面体形状的形状。 泡沫可以是开孔的,其中多面体模块由限定其边缘的细长构件或闭孔形成,其中多面体模块由限定其面的基本平坦的构件形成。 泡沫可以通过计算机辅助制造技术,自组装技术或失去的芯成型技术形成。 通过这种布置,可以提供各种理想化的泡沫材料形状和尺寸,用于各种应用中。 此外,泡沫材料可以被设计为多功能的,并且根据需要提供机械承载以及其它所需的性能。
    • 6. 发明申请
    • THERMAL MANAGEMENT OF TRANSPARENT MEDIA
    • 透明媒体的热管理
    • WO2012118956A3
    • 2012-11-08
    • PCT/US2012027253
    • 2012-03-01
    • HARVARD COLLEGEINGBER DONALD EHATTON BENJAMIN DWHEELDON IAN R
    • INGBER DONALD EHATTON BENJAMIN DWHEELDON IAN R
    • H05B3/84
    • E06B3/6715E06B3/66323E06B3/66333E06B3/6722F24D17/0015F24J2/0433F24J2/20Y02B10/20Y02E10/44
    • A bio-inspired window can be created by applying one or more heat exchange layers to one or more surfaces of a window of a building, boat, vehicle or any other structure. The heat exchange layer can include an interconnected network or array of channels or microchannels that can be used to flow a fluid over the surface of the window. The fluid can be used to heat or cool the surface of the window panel to control the flow of heat across the window and reduce the heating or cooling energy load of building. The fluid can be heated or cooled using the ambient air in the building. The refractive index of the fluid can be adjusted to change of optical transparency properties of the window. In some embodiments, the window can appear nearly as clear as an ordinary panel of glass. In other embodiments, the window can color, block or scatter the incoming light.
    • 可以通过将一个或多个热交换层施加到建筑物,船,车辆或任何其他结构的窗户的一个或多个表面来创建生物启发的窗户。 热交换层可以包括可用于使流体在窗口表面上流动的通道或微通道的互连网络或阵列。 流体可用于加热或冷却窗户面板的表面,以控制跨过窗户的热量流动,并减少建筑物的加热或冷却能量负荷。 流体可以使用建筑物中的环境空气进行加热或冷却。 可以调节流体的折射率以改变窗口的光学透明性。 在一些实施例中,窗口可以看起来像普通的玻璃板几乎一样清楚。 在其他实施例中,窗口可以着色,阻挡或散射入射光。
    • 9. 发明申请
    • GUIDED SELF-ASSEMBLY OF MATRICES WITH ORDERD NANO-SCALE STRUCTURE FOR TISSUE ENGINEERING
    • 指导用于组织工程的订单纳米尺度结构的矩阵自组装
    • WO2008127295A2
    • 2008-10-23
    • PCT/US2007022397
    • 2007-10-22
    • CHILDRENS MEDICAL CENTERINGBER DONALD E
    • INGBER DONALD E
    • H04Q7/22
    • C12N5/0075C12N2533/56C12N2535/10
    • Described herein are methods for producing structures useful, for example, for tissue engineering. In their most general form, the methods described herein involve an enzyme activity immobilized on a surface, which is placed in contact with a solution comprising polypeptide monomers. The activity of the enzyme modifies the polypeptide monomers to promote polymerization of the monomers to form polymer structures associated with the surface. Thus, the methods described herein provide a guided self-assembly of polypeptide structures. In preferred embodiments, the self assembly is guided to form regular lattices or other specific structures by specifying the arrangement of the surfaces to which the enzyme, optionally with one or more co-factors, is attached.
    • 这里描述的是用于产生可用于例如组织工程的结构的方法。 在其最一般的形式中,本文描述的方法涉及固定在表面上的酶活性,其被置于与包含多肽单体的溶液接触。 酶的活性改变多肽单体以促进单体的聚合以形成与表面相关的聚合物结构。 因此,本文所述的方法提供多肽结构的引导自组装。 在优选的实施方案中,通过指定酶,任选地与一个或多个辅因子连接的表面的布置,引导自组装形成规则晶格或其它特定结构。