Vargas Jiménez Abelino, Ochoa Cabezas Diana Carolina, Delay Michael, González Gómez Itziar, Camacho Marcela
Laboratorio de Biofísica, Departamento de Biología, Facultad de Ciencias, Universidad Nacional de Colombia Bogotá Colombia
Centro Internacional de Física (CIF) Bogotá Colombia.
RSC Adv. 2025 Jul 18;15(31):25473-25482. doi: 10.1039/d5ra02351c. eCollection 2025 Jul 15.
In this article we describe new hybrid microfluidic acoustic devices (HMADs) composed of two types of materials: soft elastic lateral walls made of Parafilm® that include a channel, and rigid top and bottom walls consisting of a glass slide and a glass coverslip. Depending on the selected vibration frequency of two small piezoelectric transducers, these HMADs can operate as Bulk Acoustic Wave (BAW) or as Flexural Plate Wave (FPW) devices, which induce either levitating circular or linear particle aggregates at higher frequencies when operating as BAW-like devices, or at acoustic frequencies close to those of the transducer's thickness mode when operating as FPW-like devices. The use of a soft, elastic material permits a range of different geometrical channel configurations. These HMADs in the BAW-like mode induce the formation of very stable aggregates, and in the FPW-like mode allow manipulation and control of the position or angular motion of particles and cells with micrometric precision when a phase change is induced between the two transducers.
在本文中,我们描述了一种新型的混合微流控声学器件(HMADs),它由两种材料组成:由Parafilm®制成的柔软弹性侧壁,其中包含一个通道,以及由载玻片和盖玻片组成的刚性顶壁和底壁。根据两个小型压电换能器选定的振动频率,这些HMADs可以作为体声波(BAW)器件或弯曲板波(FPW)器件运行。当作为类似BAW的器件运行时,它们在较高频率下会产生悬浮的圆形或线性颗粒聚集体;当作为类似FPW的器件运行时,它们在接近换能器厚度模式的声学频率下工作。使用柔软的弹性材料允许采用一系列不同的几何通道配置。这些处于类似BAW模式的HMADs会诱导形成非常稳定的聚集体,而处于类似FPW模式时,当在两个换能器之间引起相位变化时,允许以微米级精度操纵和控制颗粒及细胞的位置或角向运动。