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Optical fiber ultrasound transmitter with electrospun carbon nanotube-polymer composite

机译:带有静电纺丝碳纳米管-聚合物复合材料的光纤超声发射器

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摘要

All-optical ultrasound transducers are promising for imaging applications in minimally invasive surgery. In these devices, ultrasound is transmitted and received through laser modulation, and they can be readily miniaturized using optical fibers for light delivery. Here, we report optical ultrasound transmitters fabricated by electrospinning an absorbing polymer composite directly onto the end-face of optical fibers. The composite coating consisting of an aqueous dispersion of multi-walled carbon nanotubes (MWCNTs) in polyvinyl alcohol was directly electrospun onto the cleaved surface of a multimode optical fiber and subsequently dip-coated with polydimethylsiloxane (PDMS). This formed a uniform nanofibrous absorbing mesh over the optical fiber end-face wherein the constituent MWCNTs were aligned preferentially along individual nanofibers. Infiltration of the PDMS through this nanofibrous mesh onto the underlying substrate was observed and the resulting composites exhibited high optical absorption (>97%). Thickness control from 2.3 μm to 41.4 μm was obtained by varying the electrospinning time. Under laser excitation with 11 μJ pulse energy, ultrasound pressures of 1.59 MPa were achieved at 1.5 mm from the coatings. On comparing the electrospun ultrasound transmitters with a dip-coated reference fabricated using the same constituent materials and possessing identical optical absorption, a five-fold increase in the generated pressure and wider bandwidth was observed. The electrospun transmitters exhibited high optical absorption, good elastomer infiltration, and ultrasound generation capability in the range of pressures used for clinical pulse-echo imaging. All-optical ultrasound probes with such transmitters fabricated by electrospinning could be well-suited for incorporation into catheters and needles for diagnostics and therapeutic applications.
机译:全光超声换能器有望用于微创手术的成像应用。在这些设备中,超声波是通过激光调制来发送和接收的,使用光纤进行光传输可以很容易地使超声波小型化。在这里,我们报告了通过将吸收性聚合物复合材料直接静电纺到光纤的端面上而制成的光学超声波发射器。将由多壁碳纳米管(MWCNT)在聚乙烯醇中的水分散体组成的复合涂层直接电纺到多模光纤的劈裂表面上,然后用聚二甲基硅氧烷(PDMS)浸涂。这在光纤端面上形成了均匀的纳米纤维吸收网,其中组成的MWCNT优先沿着单个纳米纤维排列。观察到PDMS通过该纳米纤维网渗透到下面的基底上,并且所得的复合材料表现出高的光吸收(> 97%)。通过改变静电纺丝时间,可以将厚度控制在2.3μm至41.4μm之间。在11μJ脉冲能量的激光激发下,在距涂层1.5 mm处获得1.59 MPa的超声压力。通过将电纺超声波发射器与使用相同成分的材料制成且具有相同光吸收率的浸涂参考进行比较,观察到产生的压力增加了五倍,带宽更宽。在用于临床脉冲回波成像的压力范围内,电纺发​​射器表现出较高的光吸收,良好的弹性体渗透能力和超声生成能力。具有通过静电纺丝制造的这种发射器的全光超声探头可能非常适合用于诊断和治疗应用的导管和针头中。

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