1. Articles from Hani Salehi-Had

    1-3 of 3
    1. Image Registration and Multimodal Imaging of Reticular Pseudodrusen

      Image Registration and Multimodal Imaging of Reticular Pseudodrusen
      Purpose. To characterize reticular pseudodrusen (RPD) by using a point-to-point comparison of the reticular pattern on infrared reflectance (IR), autofluorescence (AF), and red-free (RF) images registered with en face sections of the choroid from spectral domain optical coherence tomography (SD-OCT) scans. Methods. A cross-sectional, retrospective study of all patients with the diagnosis of AMD who presented to the Doheny Retina Institute between December 2007 and November 2009 was conducted to identify patients with RPD. IR, AF, and RF images were obtained using confocal scanning laser ophthalmoscopy and were manually registered to OCT choroidal sections to study the location of RPD ...
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    2. Image Registration and Multimodal Imaging of Reticular Pseudodrusen

      Image Registration and Multimodal Imaging of Reticular Pseudodrusen
      Purpose: To characterize reticular pseudodrusen (RPD) by utilizing a point-to-point comparison of the reticular pattern on infrared reflectance (IR), autofluorescence (AF), and red-free (RF) images registered with en face sections of the choroid from spectral domain optical coherence tomography (SD-OCT) scans. Methods: A cross-sectional, retrospective study of all patients with the diagnosis of age-related macular degeneration (AMD), who presented to the Doheny Retina Institute from 12/2007 to 11/2009 was conducted to identify patients with RPD. IR, AF, and RF images were obtained using confocal scanning laser ophthalmoscopy and were manually registered to OCT choroidal sections to study the ...
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    3. Utilizing Targeted Gene Therapy with Nanoparticles Binding Alpha v Beta 3 for Imaging and Treating Choroidal Neovascularization

      Utilizing Targeted Gene Therapy with Nanoparticles Binding Alpha v Beta 3 for Imaging and Treating Choroidal Neovascularization
      Purpose The integrin αvβ3 is differentially expressed on neovascular endothelial cells. We investigated whether a novel intravenously injectable αvβ3 integrin-ligand coupled nanoparticle (NP) can target choroidal neovascular membranes (CNV) for imaging and targeted gene therapy. Methods CNV lesions were induced in rats using laser photocoagulation. The utility of NP for in vivo imaging and gene delivery was evaluated by coupling the NP with a green fluorescing protein plasmid (NP-GFPg). Rhodamine labeling (Rd-NP) was used to localize NP in choroidal flatmounts. Rd-NP-GFPg particles were injected intravenously on weeks 1, 2, or 3. In the treatment arm, rats received NP containing a ...
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    1-3 of 3
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  2. Topics in the News

    1. (2 articles) University of Southern California
    2. (2 articles) Srinivas R. Sadda
    3. (1 articles) Massachusetts Eye and Ear Infirmary
    4. (1 articles) Stanford University
    5. (1 articles) Harvard University
    6. (1 articles) Columbia University
    7. (1 articles) Massachusetts Institute of Technology
    8. (1 articles) Andrea Giani
    9. (1 articles) Topcon Medical Systems
    10. (1 articles) Boston University
    11. (1 articles) University of Sydney
    12. (1 articles) Nicolaus Copernicus University
    13. (1 articles) University of Miami
    14. (1 articles) Miguel Servet University Hospital
    15. (1 articles) UCLA
    16. (1 articles) Northwestern University
    17. (1 articles) Srinivas R. Sadda
    18. (1 articles) Giovanni Staurenghi
    19. (1 articles) Topcon Medical Systems
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