Published August 2014 | Version Published
Journal Article Open

Handheld photoacoustic tomography probe built using optical-fiber parallel acoustic delay lines

  • 1. ROR icon Texas A&M University
  • 2. ROR icon University of Pittsburgh
  • 3. ROR icon Pohang University of Science and Technology
  • 4. ROR icon Washington University in St. Louis

Abstract

The development of the first miniaturized parallel acoustic delay line (PADL) probe for handheld photoacoustic tomography (PAT) is reported. Using fused-silica optical fibers with low acoustic attenuation, we constructed two arrays of eight PADLs. Precision laser micromachining was conducted to produce robust and accurate mechanical support and alignment structures for the PADLs, with minimal acoustic distortion and interchannel coupling. The 16 optical-fiber PADLs, each with a different time delay, were arranged to form one input port and two output ports. A handheld PADL probe was constructed using two single-element transducers and two data acquisition channels (equal to a channel reduction ratio of 8:1). Photoacoustic (PA) images of a black-ink target embedded in an optically scattering phantom were successfully acquired. After traveling through the PADLs, the eight channels of differently time-delayed PA signals reached each single-element ultrasonic transducer in a designated nonoverlapping time series, allowing clear signal separation for PA image reconstruction. Our results show that the PADL technique and the handheld probe can potentially enable real-time PAT, while significantly reducing the complexity and cost of the ultrasound receiver system.

Additional Information

© 2014 SPIE. Paper 140087R received Feb. 13, 2014; revised manuscript received Jun. 30, 2014; accepted for publication Jul. 14, 2014; published online Aug. 7, 2014. This work was supported in part by a grant (CMMI-1131758) from the National Science Foundation to J.Z., a grant (U54-CA136398) from the National Institutes of Health to L.V. W., and by MSIP (Ministry of Science, ICT, and Future Planning), Korea, under the "IT Consilience Creative Program" (NIPA-2013-H0203-13-1001) supervised by the NIPA (National IT Industry Promotion Agency) and NRF grant of Korea government (MSIP) (2011-0030075) to C.K. L. V. Wang has a financial interest in Microphotoacoustics, Inc., and in Endra, Inc., which, however, did not support this work.

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Additional details

Identifiers

PMCID
PMC4407766
Eprint ID
69015
Resolver ID
CaltechAUTHORS:20160713-155306524

Funding

NSF
CMMI-1131758
NIH
U54-CA136398
Ministry of Science, ICT, and Future Planning (Korea)
NIPA-2013-H0203-13-1001
National Research Foundation of Korea
2011-0030075

Dates

Created
2016-07-28
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Updated
2021-11-11
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