bioRxiv Science⌕ Search

Biology subjects

Narawane, A.

Publications and source records attributed to Narawane, A..

2 recordsLinked to original sources

Optical Coherence Tomography with Fluorescein Optical Clearing for Transscleral Image Guidance

1.Optical coherence tomography (OCT) is a non-invasive, three-dimensional imaging modality demonstrated to yield a wealth of high-resolution structural and functional information in a variety of biomedical imaging applications. However, there is a significant limitation on the penetration depth of the modality in most tissues due to their high optical scattering, hindering imaging of more deeply embedded targets. In ophthalmic applications, this makes transscleral imaging of targets such as suprachoroidal injection volumes, lesions, and malignancies challenging. Here, we investigate the novel application of fluorescein, a commonly applied biomedical dye, as an optical clearing agent for increasing the depth of OCT imaging in scleral tissues. The effect is characterized in ex-vivo models including the sclera of porcine and human eyes, examining its time and concentration dependence, reversibility, and potential for application in the enhancement of intrasurgical trabeculectomy image guidance. We demonstrate that fluorescein can serve not only as a biomedical fluorophore, but also as an optical clearing agent capable of significantly increasing OCT imaging depth in tissue. As a common and accessible ophthalmic agent with a long history of clinical application, we believe that this new potential use could have substantial positive impact in the enhancement of biomedical imaging in scattering tissue.

bioengineering↗

Optical Clearing with Tartrazine Enables Deep Transscleral Imaging with Optical Coherence Tomography

Suprachoroidal injections are a relatively new method of drug delivery to treat retinal disease. At present, it is difficult to visualize the distribution of injection-delivered product beneath the sclera into the suprachoroidal space. Imaging the suprachoroidal space with OCT is hindered by scattering of light from densely packed collagen fibers of the sclera, limiting depth penetration of the OCT light. In this Letter, we demonstrate the first use of tartrazine (Yellow 5) as an optical clearing agent for suprachoroidal research imaging with OCT in an ex vivo eye model. Our results show that this clearing agent dramatically improves visualization of the choroid and suprachoroidal space with transscleral OCT and allows for improved imaging of the location and extent of delivered suprachoroidal fluid. We believe these methods will enable use of optical techniques such as OCT to image through a variety of previously optically inaccessible, highly scattering tissue samples.

bioengineering↗