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    • 2. 发明授权
    • Bone substitute materials
    • 骨替代材料
    • US6136029A
    • 2000-10-24
    • US942557
    • 1997-10-01
    • Wesley D. JohnsonJames R. JohnsonJeffrey G. Marx
    • Wesley D. JohnsonJames R. JohnsonJeffrey G. Marx
    • A61L27/00A61F2/00A61F2/28A61F2/30A61F2/36A61F2/38A61L27/42A61L27/56
    • A61F2/28A61F2/30767A61L27/425A61L27/427A61L27/56A61F2/36A61F2/367A61F2/389A61F2002/2817A61F2002/30092A61F2002/30884A61F2002/30968A61F2210/0014A61F2310/00017A61F2310/00023A61F2310/00029A61F2310/00131A61F2310/00179A61F2310/00203A61F2310/00239A61F2310/00293A61L2430/02
    • A strong, porous article useful as a bone substitute material and having an outer surface defining a shape having a bulk volume and having open interconnecting interstices extending throughout said volume and opening through said surface. The article comprises a continuous strong framework structure having interstices which interconnect throughout the bulk volume and a second continuous material occupying at least a portion of the same bulk volume as the framework structure. The second material comprises an osteoinductive and/or osteoconductive composition. This composition may be present in one of several forms. One of these is as a coating on the surface of the framework structure. A second form is in the form of a composite, intimately mixed with the framework material within the framework struts. The third form is as a porous mass within the interstices of the framework structure, having pores which are interconnecting with themselves, and with the interstices of the framework structure. Desirably, the porous osteoinductive or osteoconductive composition extends throughout said bulk volume. In a preferred embodiment, the framework structure is formed of a ceramic material. In a further embodiment, the framework structure may be further structurally reinforced with a dense material component integrally affixed thereto.
    • 用作骨替代材料并具有限定具有本体体积的形状的外表面并且具有贯穿所述体积延伸并且穿过所述表面的开放互连间隙的强的多孔制品。 该制品包括具有互连整个本体体积的间隙的连续强框架结构和占据框架结构相同体积体积的至少一部分的第二连续材料。 第二种材料包括骨诱导和/或骨传导性组合物。 该组合物可以以几种形式之一存在。 其中之一是作为框架结构表面上的涂层。 第二种形式是复合物的形式,与框架支柱内的框架材料密切混合。 第三种形式是在框架结构的空隙内形成多孔质量,具有与其自身相互连接的孔隙以及框架结构的间隙。 期望地,多孔骨诱导或骨传导性组合物延伸贯穿整个体积。 在优选实施例中,框架结构由陶瓷材料形成。 在另一个实施例中,框架结构可以进一步在结构上用与其一体地固定的致密材料部件加强。
    • 5. 发明授权
    • Process for producing rigid reticulated articles
    • 刚性网状制品的制造方法
    • US06977095B1
    • 2005-12-20
    • US09440144
    • 1999-11-15
    • Jeffrey G. MarxBradley R. HeckendorfJames R. JohnsonJohn Jeffrey Venarsky
    • Jeffrey G. MarxBradley R. HeckendorfJames R. JohnsonJohn Jeffrey Venarsky
    • A61L27/30A61L27/32A61L27/42A61L27/56B05D3/00
    • A61L27/425A61L27/306A61L27/32A61L27/427A61L27/56
    • A process for producing a rigid reticulated article involves coating a reticulated substrate which has open, interconnected porosity with a first dispersion comprising a ceramic or metal powder to form a first coating thereon; drying the coated reticulated substrate; contacting the coated reticulated substrate with one or more additional dispersions in succession to form one or more additional coatings thereon; drying the additional coatings between the steps of contacting; heating the coated reticulated substrate to pyrolyze organic components; and sintering the coated reticulated substrate to form a reticulated article, wherein each dispersion has a viscosity less than that of all preceding dispersions. A rigid reticulated article includes inner, intermediate and outer sintered layers of material in which the inner and outer layers are of different composition and the intermediate layer is a composite of the inner and outer layers.
    • 用于生产刚性网状制品的方法包括用具有开放的互连多孔性的网状基底涂覆包含陶瓷或金属粉末的第一分散体以在其上形成第一涂层; 干燥涂覆的网状基材; 使涂覆的网状基材与一种或多种另外的分散体连续接触以在其上形成一种或多种另外的涂层; 在接触步骤之间干燥附加的涂层; 加热涂覆的网状基底以热解有机组分; 并烧结涂覆的网状基底以形成网状制品,其中每种分散体的粘度小于所有先前分散体的粘度。 刚性网状制品包括材料的内部,中间和外部烧结层,其中内层和外层具有不同的组成,中间层是内层和外层的复合材料。
    • 7. 发明申请
    • PORTABLE ELECTRICAL DEVICE CHARGING SYSTEM AND METHOD USING THERMAL ENERGY
    • 便携式电气装置充电系统和使用热能的方法
    • US20140164797A1
    • 2014-06-12
    • US14100185
    • 2013-12-09
    • Jeffrey G. MarxLance A. Marx
    • Jeffrey G. MarxLance A. Marx
    • H02J7/00G06F1/26F21L4/08
    • H02J7/32F21L4/085
    • A portable electrical device charging system and method for using thermal energy, especially for use in the field or as part of military operations, is disclosed. The inventive electrical device charging system has one or more thermal electric generators attached, physically connected to, or incorporated within a container or pouch that is used to heat packaged meals-ready-to-eat (“MRE”). With the generation of heat to cook the MRE, the heat transfer through the container or pouch activates the thermal electric generators which generates electricity, in the form of an electric current, that can be used to charge any electrical device including an electrical storage device. More particularly, the generated electrical current may be used to charge radios, batteries, cell phones, personal data assistant devices, tablets, cameras, flashlights, or any other similar device.
    • 公开了一种用于使用热能的便携式电气装置充电系统和方法,特别是用于现场或军事作业的一部分。 本发明的电气设备充电系统具有一个或多个热发电机,其连接到物理上连接到或结合在容器或小袋中,用于加热包装即食即食(“MRE”)。 通过产生热量来烹调MRE,通过容器或小袋的热传递激活了以电流形式发电的热发电机,其可用于对包括电存储装置的任何电气装置充电。 更具体地,所产生的电流可用于对无线电装置,电池,手机,个人数据助理装置,平板电脑,照相机,手电筒或任何其它类似装置充电。