Remembering Professor Sohan Singh Hayreh, 1927–2022, MD, MS (Punjab), PhD (London), DSc (London), FRCS (England & Edinburgh), FRCOphth (Hon)

缅怀 Sohan Singh Hayreh 教授,1927–2022,医学博士、理学硕士(旁遮普邦)、哲学博士(伦敦)、理学博士(伦敦)、英国皇家外科学院院士(英格兰和爱丁堡)、英国皇家眼科学院院士(荣誉)

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Abstract

Abnormal intraocular fluid flow or clearance is involved with a variety of eye diseases such as glaucoma and diabetic retinopathy, but measurement of water exchange dynamics in the vitreous and aqueous remain challenging. (2)H MRI can be used to image deuterium oxide (D₂O) as a tracer, but the signal-to-noise ratio for deuterium is low due to its low concentration, which has hampered its application to imaging the eye. To overcome this challenge, we investigated the feasibility of direct D(2)O MRI to measure water dynamics in the mouse eye. The balanced steady-state free precession (bSSFP) sequence provided substantially higher signal-to-noise ratio for imaging D(2)O in fluid compared to standard gradient echo and spin echo sequences. bSSFP allowed dynamic imaging of intraocular water inflow in the mouse with 41 s temporal resolution. The inflow rate in the vitreous was found to be faster than in the aqueous. These studies demonstrate the feasibility of in vivo imaging of water inflow dynamics into the both the vitreous and aqueous in mice, which could be useful in studies of abnormal fluid exchange in rodent models of eye disease.

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