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ULTRASOUND-BASED PATTERNING OF PARTICLES AND CELLS WITHIN FLUID MATRICES

机译:基于超声的粒子和细胞在流体矩阵内的图案化

摘要

Method of ultrasound-assisted 3D bioprinting includes depositing a bioink fluid matrix containing a suspension of cells into a chamber comprising two piezo transducers on opposing ends of the chamber. The method further includes vibrating the piezo transducers to generate longitudinal bulk acoustic waves within the bioink fluid matrix such that waves from opposing piezo transducers superimpose to form a standing bulk acoustic wave to drive the cells to cluster and align along one or more nodes or nodal planes formed within the bioink fluid matrix at points of intersection of the standing bulk acoustic wave. The nodes or nodal planes are spaced apart from each other by a distance equaling half a wavelength of the standing bulk acoustic wave. The nodes or nodal planes further mimic a contour of the vibrating surfaces of the piezo transducers.
机译:超声辅助3D生物监测的方法包括将包含细胞悬架的生物液液体沉积到包括在腔室的相对端上的两个压电换能器的腔室中。 该方法还包括振动压电换能器以在生物液矩阵内产生纵向体声波,使得来自相对的压电换能器的波以形成驻扎的散装声波以使电池沿一个或多个节点或节点沿着一个或多个节点对齐并对齐 形成在驻扎块声波的交叉点处的生物晶体基质中。 节点或节点平面彼此间隔开,距离等于常设散装声波的半波长。 节点或节点平面进一步模仿压电换能器的振动表面的轮廓。

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