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High power visible light emitting diodes as pulsed excitation sources for biomedical photoacoustics

机译:高功率可见光发光二极管作为生物医学光声的脉冲激发源

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摘要

The use of visible light emitting diodes (LEDs) as an alternative to Q-switched lasers conventionally used as photoacoustic excitation sources has been explored. In common with laser diodes, LEDs offer the advantages of compact size, low cost and high efficiency. However, laser diodes suitable for pulsed photoacoustic generation are typically available only at wavelengths greater than 750nm. By contrast, LEDs are readily available at visible wavelengths below 650nm where haemoglobin absorption is significantly higher, offering the prospect of increased SNR for superficial vascular imaging applications. To demonstrate feasibility, a range of low cost commercially available LEDs operating in the 420-620nm spectral range were used to generate photoacoustic signals in physiologically realistic vascular phantoms. Overdriving with 200ns pulses and operating at a low duty cycle enabled pulse energies up to 10µJ to be obtained with a 620nm LED. By operating at a high pulse repetition frequency (PRF) in order to rapidly signal average over many acquisitions, this pulse energy was sufficient to generate detectable signals in a blood filled tube immersed in an Intralipid suspension (µs’ = 1mm−1) at a depth of 15mm using widefield illumination. In addition, a compact four-wavelength LED (460nm, 530nm, 590nm, 620nm) in conjunction with a coded excitation scheme was used to illustrate rapid multiwavelength signal acquisition for spectroscopic applications. This study demonstrates that LEDs could find application as inexpensive and compact multiwavelength photoacoustic excitation sources for imaging superficial vascular anatomy.Published by The Optical Society under the terms of the . Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI.
机译:已经研究了使用可见光发光二极管(LED)替代传统上用作光声激发源的Q开关激光器。与激光二极管一样,LED具有尺寸紧凑,成本低和效率高的优点。但是,通常仅在大于750nm的波长下才能使用适用于脉冲光声产生的激光二极管。相比之下,LED可以在650nm以下的可见波长轻易获得,其中血红蛋白的吸收明显更高,为浅层血管成像应用提供了更高SNR的前景。为了证明可行性,将一系列在420-620nm光谱范围内运行的低成本商用LED用于在生理逼真的血管幻象中生成光声信号。以200ns的脉冲过驱动并在低占空比下工作,使得620nm LED可获得的脉冲能量高达10µJ。通过在高脉冲重复频率(PRF)下运行以便在许多采集中快速获得平均信号,该脉冲能量足以在浸没在脂质悬液中的充血管中产生可检测的信号(µs'= 1mm -1 )在15mm的深度使用广角照明。此外,紧凑的四波长LED(460nm,530nm,590nm,620nm)与编码激励方案一起用于说明光谱应用中的快速多波长信号采集。这项研究表明,LED可以用作廉价和紧凑的多波长光声激发光源,用于成像浅表血管解剖学。进一步分发此作品必须保持作者的归属以及已发表文章的标题,期刊引文和DOI。

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