Literature DB >> 20459273

System development for high frequency ultrasound-guided fluorescence quantification of skin layers.

Josiah D Gruber1, Akshat Paliwal, Venkataramanan Krishnaswamy, Hamid Ghadyani, Michael Jermyn, Julie A O'Hara, Scott C Davis, Joanna S Kerley-Hamilton, Nicholas W Shworak, Edward V Maytin, Tayyaba Hasan, Brian W Pogue.   

Abstract

A high frequency ultrasound-coupled fluorescence tomography system, primarily designed for imaging of protoporphyrin IX production in skin tumors in vivo, is demonstrated for the first time. The design couples fiber-based spectral sampling of the protoporphyrin IX fluorescence emission with high frequency ultrasound imaging, allowing thin-layer fluorescence intensities to be quantified. The system measurements are obtained by serial illumination of four linear source locations, with parallel detection at each of five interspersed detection locations, providing 20 overlapping measures of subsurface fluorescence from both superficial and deep locations in the ultrasound field. Tissue layers are defined from the segmented ultrasound images and diffusion theory used to estimate the fluorescence in these layers. The system calibration is presented with simulation and phantom validation of the system in multilayer regions. Pilot in-vivo data are also presented, showing recovery of subcutaneous tumor tissue values of protoporphyrin IX in a subcutaneous U251 tumor, which has less fluorescence than the skin.

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Year:  2010        PMID: 20459273      PMCID: PMC2866260          DOI: 10.1117/1.3374040

Source DB:  PubMed          Journal:  J Biomed Opt        ISSN: 1083-3668            Impact factor:   3.170


  14 in total

1.  Design of near-infrared imaging probe with the assistance of ultrasound localization.

Authors:  Q Zhu; N G Chen; D Piao; P Guo; X Ding
Journal:  Appl Opt       Date:  2001-07-01       Impact factor: 1.980

Review 2.  Review of tissue simulating phantoms for optical spectroscopy, imaging and dosimetry.

Authors:  Brian W Pogue; Michael S Patterson
Journal:  J Biomed Opt       Date:  2006 Jul-Aug       Impact factor: 3.170

3.  Subsurface diffuse optical tomography can localize absorber and fluorescent objects but recovered image sensitivity is nonlinear with depth.

Authors:  Dax S Kepshire; Scott C Davis; Hamid Dehghani; Keith D Paulsen; Brian W Pogue
Journal:  Appl Opt       Date:  2007-04-01       Impact factor: 1.980

4.  Utilizing optical tomography with ultrasound localization to image heterogeneous hemoglobin distribution in large breast cancers.

Authors:  Quing Zhu; Scott H Kurtzma; Poornima Hegde; Susan Tannenbaum; Mark Kane; Minming Huang; Nan Guang Chen; Bipin Jagjivan; Kristen Zarfos
Journal:  Neoplasia       Date:  2005-03       Impact factor: 5.715

5.  Boundary Recovery For Delaunay Tetrahedral Meshes Using Local Topological Transformations.

Authors:  Hamid Ghadyani; John Sullivan; Ziji Wu
Journal:  Finite Elem Anal Des       Date:  2010-01-01       Impact factor: 2.972

6.  Effectiveness of delta-aminolevulinic acid-induced protoporphyrin as a photosensitizer for photodynamic therapy in vivo.

Authors:  Z Hua; S L Gibson; T H Foster; R Hilf
Journal:  Cancer Res       Date:  1995-04-15       Impact factor: 12.701

7.  Image-guided diffuse optical fluorescence tomography implemented with Laplacian-type regularization.

Authors:  Scott C Davis; Hamid Dehghani; Jia Wang; Shudong Jiang; Brian W Pogue; Keith D Paulsen
Journal:  Opt Express       Date:  2007-04-02       Impact factor: 3.894

Review 8.  Endogenous protoporphyrin IX, a clinically useful photosensitizer for photodynamic therapy.

Authors:  J C Kennedy; R H Pottier
Journal:  J Photochem Photobiol B       Date:  1992-07-30       Impact factor: 6.252

9.  Fluorescence tomography characterization for sub-surface imaging with protoporphyrin IX.

Authors:  Dax Kepshire; Scott C Davis; Hamid Dehghani; Keith D Paulsen; Brian W Pogue
Journal:  Opt Express       Date:  2008-06-09       Impact factor: 3.894

10.  Topical application of 5-aminolevulinic acid, DMSO and EDTA: protoporphyrin IX accumulation in skin and tumours of mice.

Authors:  Z Malik; G Kostenich; L Roitman; B Ehrenberg; A Orenstein
Journal:  J Photochem Photobiol B       Date:  1995-06       Impact factor: 6.252

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  13 in total

1.  Temperature-modulated fluorescence tomography in a turbid media.

Authors:  Yuting Lin; Linden Bolisay; Michael Ghijsen; Tiffany C Kwong; Gultekin Gulsen
Journal:  Appl Phys Lett       Date:  2012-02-15       Impact factor: 3.791

Review 2.  Using in-vivo fluorescence imaging in personalized cancer diagnostics and therapy, an image and treat paradigm.

Authors:  Y Ardeshirpour; V Chernomordik; J Capala; M Hassan; R Zielinsky; G Griffiths; S Achilefu; P Smith; A Gandjbakhche
Journal:  Technol Cancer Res Treat       Date:  2011-12

3.  Vision 20/20: Molecular-guided surgical oncology based upon tumor metabolism or immunologic phenotype: Technological pathways for point of care imaging and intervention.

Authors:  Brian W Pogue; Keith D Paulsen; Kimberley S Samkoe; Jonathan T Elliott; Tayyaba Hasan; Theresa V Strong; Daniel R Draney; Joachim Feldwisch
Journal:  Med Phys       Date:  2016-06       Impact factor: 4.071

4.  Quantitative photoacoustic image reconstruction improves accuracy in deep tissue structures.

Authors:  Michael A Mastanduno; Sanjiv S Gambhir
Journal:  Biomed Opt Express       Date:  2016-09-01       Impact factor: 3.732

5.  Techniques for fluorescence detection of protoporphyrin IX in skin cancers associated with photodynamic therapy.

Authors:  Kishore R Rollakanti; Stephen C Kanick; Scott C Davis; Brian W Pogue; Edward V Maytin
Journal:  Photonics Lasers Med       Date:  2013-11-01

6.  Ultracompact fluorescence smartphone attachment using built-in optics for protoporphyrin-IX quantification in skin.

Authors:  Brady Hunt; Samuel S Streeter; Alberto J Ruiz; M Shane Chapman; Brian W Pogue
Journal:  Biomed Opt Express       Date:  2021-10-19       Impact factor: 3.732

Review 7.  Preoperative mapping of nonmelanoma skin cancer using spatial frequency domain and ultrasound imaging.

Authors:  Daniel J Rohrbach; Daniel Muffoletto; Jonathan Huihui; Rolf Saager; Kenneth Keymel; Anne Paquette; Janet Morgan; Nathalie Zeitouni; Ulas Sunar
Journal:  Acad Radiol       Date:  2014-02       Impact factor: 3.173

8.  White light-informed optical properties improve ultrasound-guided fluorescence tomography of photoactive protoporphyrin IX.

Authors:  Brendan P Flynn; Alisha V DSouza; Stephen C Kanick; Scott C Davis; Brian W Pogue
Journal:  J Biomed Opt       Date:  2013-04       Impact factor: 3.170

9.  Simulation-based evaluation of the resolution and quantitative accuracy of temperature-modulated fluorescence tomography.

Authors:  Yuting Lin; Farouk Nouizi; Tiffany C Kwong; Gultekin Gulsen
Journal:  Appl Opt       Date:  2015-09-01       Impact factor: 1.980

10.  Nanoparticle uptake in tumors is mediated by the interplay of vascular and collagen density with interstitial pressure.

Authors:  Sason Torosean; Brendan Flynn; Johan Axelsson; Jason Gunn; Kimberley S Samkoe; Tayyaba Hasan; Marvin M Doyley; Brian W Pogue
Journal:  Nanomedicine       Date:  2012-07-25       Impact factor: 5.307

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