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用于全光学超声和光声成像的铜铟硫量子点与聚二甲基硅氧烷纳米复合材料

CuInS Quantum Dot and Polydimethylsiloxane Nanocomposites for All-Optical Ultrasound and Photoacoustic Imaging.

作者信息

Bodian Semyon, Colchester Richard J, Macdonald Thomas J, Ambroz Filip, Briceno de Gutierrez Martha, Mathews Sunish J, Fong Yu Man Mandy, Maneas Efthymios, Welsby Kathryn A, Gordon Ross J, Collier Paul, Zhang Edward Z, Beard Paul C, Parkin Ivan P, Desjardins Adrien E, Noimark Sacha

机构信息

Department of Medical Physics and Biomedical Engineering University College London London WC1E 6BT UK.

Wellcome/ESPRC Centre for Surgical and Interventional Sciences University College London Charles Bell House, 67-73 Riding House Street London W1W 7EJ UK.

出版信息

Adv Mater Interfaces. 2021 Oct 22;8(20):2100518. doi: 10.1002/admi.202100518. Epub 2021 Sep 16.

Abstract

Dual-modality imaging employing complementary modalities, such as all-optical ultrasound and photoacoustic imaging, is emerging as a well-suited technique for guiding minimally invasive surgical procedures. Quantum dots are a promising material for use in these dual-modality imaging devices as they can provide wavelength-selective optical absorption. The first quantum dot nanocomposite engineered for co-registered laser-generated ultrasound and photoacoustic imaging is presented. The nanocomposites developed, comprising CuInS quantum dots and medical-grade polydimethylsiloxane (CIS-PDMS), are applied onto the distal ends of miniature optical fibers. The films exhibit wavelength-selective optical properties, with high optical absorption (> 90%) at 532 nm for ultrasound generation, and low optical absorption (< 5%) at near-infrared wavelengths greater than 700 nm. Under pulsed laser irradiation, the CIS-PDMS films generate ultrasound with pressures exceeding 3.5 MPa, with a corresponding bandwidth of 18 MHz. An ultrasound transducer is fabricated by pairing the coated optical fiber with a Fabry-Pérot (FP) fiber optic sensor. The wavelength-selective nature of the film is exploited to enable co-registered all-optical ultrasound and photoacoustic imaging of an ink-filled tube phantom. This work demonstrates the potential for quantum dots as wavelength-selective absorbers for all-optical ultrasound generation.

摘要

采用互补模态的双模态成像,如全光学超声和光声成像,正成为一种非常适合用于引导微创手术的技术。量子点是一种有前途的材料,可用于这些双模态成像设备,因为它们能够提供波长选择性的光吸收。本文展示了首个为共配准激光产生超声和光声成像而设计的量子点纳米复合材料。所开发的纳米复合材料由铜铟硫量子点和医用级聚二甲基硅氧烷(CIS-PDMS)组成,并应用于微型光纤的末端。这些薄膜具有波长选择性光学特性,在532nm处具有高光吸收(>90%)用于超声产生,而在大于700nm的近红外波长处具有低光吸收(<5%)。在脉冲激光照射下,CIS-PDMS薄膜产生的超声压力超过3.5MPa,相应带宽为18MHz。通过将涂覆光纤与法布里-珀罗(FP)光纤传感器配对制作了一个超声换能器。利用薄膜的波长选择性特性,实现了对充满墨水的管状体模的共配准全光学超声和光声成像。这项工作证明了量子点作为全光学超声产生的波长选择性吸收体的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2be4/8573612/13f5fc95bf02/ADMI-8-2100518-g002.jpg

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