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Updated: Jul 2, 2026

Application of Optical Coherence Tomography to a Mouse Model of Retinopathy
Published on: January 12, 2022
Ultra-widefield optical coherence tomography demonstrates subtle vitreoretinal interface changes driving conversion
Alberto Quarta1,2,3, Rouzbeh Abbasgholizadeh2,3, Saghar Bagheri2,3
1Department of Neurosciences, Imaging and Clinical Sciences, University "G. d'Annunzio" Chieti-Pescara, Chieti, Italy.
Purpose:
To report a case of retinoschisis associated with retinal detachment, documented with ultra-widefield optical coherence tomography (OCT), and to highlight subtle vitreoretinal interface changes not previously described.
Methods:
A patient with retinoschisis was evaluated using multimodal imaging, including ultra-widefield OCT. Serial OCT scans were reviewed to assess structural alterations of the outer and inner retinal layers, vitreoretinal interface, and hyaloid status.
Results:
Ultra-widefield OCT demonstrated the development of a retinal detachment secondary to an isolated outer retinal hole within the region of retinoschisis, occurring in the context of traction from a thickened inner retinoschisis leaf, without evidence of communication with an inner retinal hole. Additionally, undulations on the inner surface of the outer leaf of the retinoschisis cavity were observed possibly representing residua of a tractional separation between the outer and inner leaf of the retinoschisis cavity. These subtle features were only appreciable through the extended coverage of ultra-widefield OCT imaging.
Conclusion:
Ultra-widefield OCT provided critical structural insights into the progression from retinoschisis to a retinal detachment. It revealed the development of an isolated outer retinal hole with associated inner leaf traction and undulations on the inner surface of the outer leaf of the retinoschisis cavity without detectable inner leaf holes, underscoring OCT's value in detecting and better understanding subtle vitreoretinal changes in this condition.
