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    • 1. 发明申请
    • BIOMATERIAL, METHOD OF CONSTRUCTING THE SAME AND USE THEREOF
    • 生物材料,其构造方法及其用途
    • US20100075419A1
    • 2010-03-25
    • US12442860
    • 2007-09-25
    • Masahiko InagakiAkira Watazu
    • Masahiko InagakiAkira Watazu
    • B32B3/26B29C41/42C12N5/00B29C33/42A61F2/02A61F2/28
    • A61L27/56Y10T428/2495Y10T428/249953Y10T428/249978
    • The present provides a biomaterial composed in part of a porous material having an internal structure that has been completely controlled so as to optimize living tissue infiltration or cell introduction, a method of manufacturing, and uses thereof, including bio-implant materials for artificial bones, artificial joints and artificial tooth roots, and cell culture supports; the biomaterial undergoes increased infiltration by living tissues and the like owing to the formation of a porous region in at least a portion of the material, wherein the porous region is a porous body having therein a group of oriented pores that has an orientation and is made up of pores whose size, shape and direction have been controlled to optimize living tissue infiltration or cell introduction, and also having formed therein connecting pores that link together the primary pores and enable the passage of bodily fluids and gas bubbles, and formed with a spatial configuration in which the oriented pores are not directly connected to other oriented pores and the connecting pores which link together the oriented pores are not directly connected to other connecting pores.
    • 本发明提供一种生物材料,其部分由具有完全控制的内部结构的多孔材料组成,以优化活体组织浸润或细胞引入,其制造方法及其用途,包括用于人造骨的生物植入材料, 人造关节和人造牙根,细胞培养支架; 生物材料由于在至少一部分材料中形成多孔区域而由活组织等引起渗透增加,其中多孔区域是多孔体,其中具有取向的一组定向孔,并且被制成 其尺寸,形状和方向被控制以优化活组织浸润或细胞引入的孔的形状,并且还在其中形成连接孔,其连接一起的初级孔并使体液和气泡的通过,并形成有空间 定向孔不直接连接到其它取向孔的构造,并且将取向孔连接在一起的连接孔不直接连接到其它连接孔。