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Integrated Photoacoustic Ophthalmoscopy and Spectral-domain Optical Coherence Tomography
Published on: January 15, 2013
Real-time monitoring and quantitative analysis of PAG-mediated chemical cochleostomy using 1.06-µm swept-source
You-Nan Tsai1, Chuan-Bor Chueh1, Ting-Hao Tsai1
1Graduate Institute of Photonics and Optoelectronics, National Taiwan University, Taipei, Taiwan.
Abstract:
Traditional cochleostomy relies on mechanical drilling, which carries inherent risks of acoustic and thermal trauma. In this study, we performed a quantitative analysis of phosphoric acid gel (PAG)-mediated chemical cochleostomy in ex vivo mouse cochleae using a 1.06-µm swept-source optical coherence tomography (SS-OCT) system. The imaging results demonstrated that 1.06-µm OCT provides high contrast for visualizing internal anatomic features, such as the organ of Corti, and changes in cochlear architecture during the chemical etching process. Quantitative evaluation revealed a reduction in bony wall thickness and enhanced visibility of intracochlear conduits post-PAG-application. Notably, the PAG-mediated thinning mitigates signal attenuation by reducing scattering from the dense bony wall, thereby improving OCT imaging contrast of internal structures. Real-time M-mode OCT imaging successfully captured dynamic reaction kinetics, providing a reliable feedback mechanism for identifying the etching endpoint. These findings suggest that 1.06-µm SS-OCT is a feasible guidance tool for precise, hearing-preservation cochlear interventions.

