Literature DB >> 11800132

Optical phase contrast measurement of ultrasonic fields.

T A Pitts1, A Sagers, J F Greenleaf.   

Abstract

This report describes an optical phase contrast imaging technique for the measurement of wide bandwidth ultrasound fields in water. In this method, a collimated optical wavefront (lambda(l) = 810 nm) impinges on a wide bandwidth ultrasound pulse. The method requires that refractive index perturbations induced by the ultrasound field be sufficiently small. Specifically, on exit from the acoustic field, the phase of the optical wavefront must be proportional to the ray sum of local density taken in the direction of propagation of the incident optical wave. A similar restriction is placed on the dimensions of the ultrasound pulse. Repeated measurement of this phase as the ultrasound field is rotated through 180 degrees about an axis normal to the direction of propagation of the incident optical wave generates the Radon transform of the ultrasonically induced refractive index perturbation. Standard tomographic reconstruction techniques are used to reconstruct the full three-dimensional refractive index perturbation. A simple two-lens imaging system and an optical signal processing element from phase contrast microscopy provide a method of directly measuring an affine function of the desired optical phase for small optical phase shifts. The piezo- and elasto-optic coefficients (the first partial derivatives of refractive index with respect to density and pressure) relate refractive index to density and pressure via a linear model. The optical measurement method described in this paper provides a direct, quantitative measurement of the piezo- and elasto-optic coefficients (from the density or pressure fields).

Entities:  

Year:  2001        PMID: 11800132     DOI: 10.1109/58.971722

Source DB:  PubMed          Journal:  IEEE Trans Ultrason Ferroelectr Freq Control        ISSN: 0885-3010            Impact factor:   2.725


  5 in total

Review 1.  Optical Detection of Ultrasound in Photoacoustic Imaging.

Authors:  Biqin Dong; Cheng Sun; Hao F Zhang
Journal:  IEEE Trans Biomed Eng       Date:  2016-09-01       Impact factor: 4.538

2.  Ultrasound phase contrast thermal imaging with reflex transmission imaging methods in tissue phantoms.

Authors:  Caleb H Farny; Gregory T Clement
Journal:  Ultrasound Med Biol       Date:  2009-08-14       Impact factor: 2.998

Review 3.  Optical ultrasound sensors for photoacoustic imaging: a narrative review.

Authors:  Bo Fu; Yuan Cheng; Ce Shang; Jing Li; Gang Wang; Chenghong Zhang; Jingxuan Sun; Jianguo Ma; Xunming Ji; Boqu He
Journal:  Quant Imaging Med Surg       Date:  2022-02

4.  High resolution three-dimensional photoacoutic tomography with CCD-camera based ultrasound detection.

Authors:  Robert Nuster; Paul Slezak; Guenther Paltauf
Journal:  Biomed Opt Express       Date:  2014-07-16       Impact factor: 3.732

5.  Physical Considerations for In Vitro ESWT Research Design.

Authors:  Cyrill Slezak; Roland Rose; Julia M Jilge; Robert Nuster; David Hercher; Paul Slezak
Journal:  Int J Mol Sci       Date:  2021-12-28       Impact factor: 5.923

  5 in total

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