Sistema de iluminación para obtención de imágenes optoacústicas basado en LEDs y EDU-CIAA
DOI:
https://doi.org/10.37537/rev.elektron.4.2.107.2020Palabras clave:
optoacústica, LED, sistema embebidoResumen
La obtención de imágenes optoacústicas es una técnica híbrida que se beneficia tanto del rico y versátil contraste óptico como de la alta resolución espacial asociada a la baja dispersión de propagación de las ondas ultrasónicas. Usualmente, se utilizan láseres de elevada energía (> 10 mJ) como fuente de luz los cuales son caros, no portátiles y tienen una baja tasa de repetición (~20 Hz). En los últimos años se ha estado investigando el uso de diodos emisores de luz (LEDs) como sustituto ya que son menos costosos, más confiables y compactos, y pueden proporcionar miles de pulsos en un segundo para obtener imágenes en tiempo real. En esta trabajo se presenta la implementación de un sistema de iluminación basado en LEDs y en el sistema embebido EDU-CIAA que es capaz de emitir pulsos de luz de corta duración (< 1 us), con gran intensidad y elevada frecuencia (> 1 kHz).Descargas
Referencias
M. Xu and L. Wang, “Photoacoustic imaging in biomedicine,” Rev. Sci. Instrum., vol. 77, pp. 041 101–1–23, 2006.
L. V. Wang, “Tutorial on photoacoustic microscopy and computed tomography,” IEEE J. of Selected Topics in Quantum Electronics, vol. 14, pp. 171–179, 2008.
J. Bauer-Marschallinger, K. Felbermayer, and T. Berer, “All-optical photoacoustic projection imaging,” J. Biomed. Opt. Express, vol. 8, pp. 3938–3951, 2017.
G. Paltauf, P. Hartmair, G. Kovachev, and R. Nuster, “Piezoelectric line detector array for photoacoustic tomography,” Photoacoustics, vol. 8, pp. 28–36, 2017.
A. Hariri, J. Lemaster, J. Wang, A. Jeevarathinam, D. Chao, and J. Jokerst, “The characterization of an economic and portable LED-based photoacoustic imaging system to facilitate molecular imaging,” Photoacoustics, vol. 9, pp. 10–20, 2018.
P. Upputuri and M. Pramanik, “Fast photoacoustic imaging systems using pulsed laser diodes: a review,” Biomed. Eng. Lett., vol. 2018, pp. 167–181, 2018.
R. Ma, A. Taruttis, V. Ntziachristos, and D. Razansky, “Multispectral optoacoustic tomography (msot) scanner for whole-body small animal imaging,” Opt. Express, vol. 17, pp. 21 414–1–13, 2009.
S. Agrawal, C. Fadden, A. Dangi, X. Yang, H. Albahrani, N. Frings, S. Zadi, and S. Kothapalli, “Light-emitting-diode-based multispectral photoacoustic computed tomography system,” Sensors, vol. 19, pp. 4861–1–13, 2019.
H. Zhong, T. Duan, H. Lan, M. Zhou, and F. Fao, “Review of low-cost photoacoustic sensing and imaging based on laser diode and light-emitting diode,” Sensors, vol. 18, pp. 1–24, 2018.
T. Allen and P. Beard, “High power visible light emitting diodes as pulsed excitation sources for biomedical photoacoustics,” Biomed. Opt. Express, vol. 7, pp. 1261–1270, 2016.
M. Singh. (Editor), LED-Based Photoacoustic Imaging. Springer, 2020.
“Proyecto computadora industrial abierta argentina,” Argentina. [Online]. Available: http://www.proyecto-ciaa.com.ar/
M. G. Gonzalez, B. Abadi, L. C. Brazzano, and P. Sorichetti, “Linear piezoelectric sensor for optoacoustic tomography: electroacoustic characterization,” in Proc. IEEE Argencon, 2018, pp. 1–4.
M. G. Gonzalez, P. Sorichetti, and G. Santiago, “Reducing the capacitance of piezoelectric film sensors,” Rev. Sci. Instrum., vol. 87, pp. 045 003–1–5, 2016.
R. Insabella, M. Gonzalez, E. Acosta, and G. Santiago, “Dielectric antenna effects in integrating line piezoelectric sensors for optoacoustic imaging,” Meas. Sci. and Tech., vol. 31, p. 125103, 2020.
R. Insabella, M. Gonzalez, L. Riobo, K. Hass, and F. Veiras, “Software-defined optoacoustic tomography,” Appl. Opt., vol. 59, pp. 706–711, 2020.
“LED-CBT-120-G-C11 datasheet,” Luminus. [Online]. Available: https://download.luminus.com/datasheets/Luminus
“MOSFET-IRF8707 datasheet,” International Rectifier. [Online]. Available: https://www.infineon.com/dgdl/irf8707pbf.pdf?fileId=5546d462533600a40153560d57f81d6b
“MOSFET driver TC4427 datasheet,” Microchip Technology. [Online]. Available: https://www.microchip.com/wwwproducts/en/TC4427
M. G. Gonzalez, L. Riobo, L. C. Brazzano, F. Veiras, P. Sorichetti, and G. Santiago, “Generation of sub-microsecond quasi-unipolar pressure pulses,” Ultrasonics, vol. 98, pp. 15–19, 2019.
M. G. Gonzalez, E. Acosta, and G. Santiago, “Simple method to determine the resolution and sensitivity of systems for optoacoustic tomography,” Revista Elektron, vol. 2, pp. 63–66, 2018.
P. Ninni, F. Martelli, and G. Zaccanti, “The use of india ink in tissue-simulating phantoms,” Opt. Express, vol. 18, no. 26, pp. 26 854–1–12, 2010.
“Laser Energy Sensor datasheet,” Coherent. [Online]. Available: https://www.coherent.com/measurement-control/measurement/multi purpose-energymax-sensors
“Optical receiver 818-BB-21 datasheet,” Newport. [Online]. Available: https://www.newport.com/p/818-BB-21A
“High Speed Current Amplifier datasheet,” FEMTO. [Online]. Available: https://www.femto.de/images/pdf-dokumente/de-hca-100m-50k-c.pdf
K. Mackenzie, “Nine-term equation for sound speed in the oceans,”J. Acousti. Soc. Am., vol. 70, pp. 807–812, 1981.
P. Binh, V. Trong, P. Renucci, and X. Marie, “A simple sub-nanosecond ultraviolet light pulse generator with high repetition rateand peak power,”Rev. Sci. Instrum., vol. 84, pp. 083 102–1–7, 2013.
“LTspice,”AnalogDevices.[Online].Avail-able:https://www.analog.com/en/design-center/design-tools-and-calculators/ltspice-simulator.html
T. Kishi, H. Tanaka, Y. Umeda, and O. Takyu, “A high-speedLED driver that sweeps out the remaining carriers for visible light communications, ”J. Lightw. Technol., vol. 32, pp. 239–248, 2014.
H. Halbritter, C. Jaeger, R. Weber, M. Schwind, and F. Moellmer, “High-speed LED driver for ns-pulse switching of high-current leds,”IEEE Photonics Tech. Lett., vol. 26, pp. 1871–1873, 2014.
H. Zhang, K. Kondo, M. Yamakawa, and T. Shiina, “Simultane-ous multispectral coded excitation using periodic and unipolar m-sequences for photoacoustic imaging,” inProc. SPIE, vol. 8581, no 85812Y, 2013.
“CyberdyneAcousticX,”Japan.[Online]. Available: https://www.cyberdyne.jp/english/products/pdf/AcousticX-flyer-A4Size-English.pdf
Publicado
Número
Sección
Licencia
Los autores que publican en esta revista están de acuerdo con los términos establecidos en Creative Commons Atribución/Reconocimiento-NoComercial-SinDerivados 4.0 Licencia Pública Internacional — CC BY-NC-ND 4.0.