Electrophysiology and Ophthalmology: Diagnostic Principles and Clinical Applications

Özet

Referanslar

Frishman LJ. Electrophysiological methods in ophthalmology. Prog Retin Eye Res. 2019; 73:100766.

Spaide RF, Fujimoto JG, Waheed NK. Optical coherence tomography angiography. Prog Retin Eye Res. 2018; 64:1–55.

Hood DC. Assessing retinal function with electrophysiology. Vision Res. 2020; 174:51–60.

Bach M, Poloschek CM. Electrophysiology and the eye: a practical guide. Curr Opin Ophthalmol. 2019; 30:459–465.

Cideciyan AV, Jacobson SG. Functional biomarkers in gene therapy trials for inherited retinal diseases. Prog Retin Eye Res. 2022; 88:101021.

Hood DC, Bach M, Brigell M, et al. ISCEV standard for clinical electroretinography (2022 update). Doc Ophthalmol. 2022; 144:1–24.

McCulloch DL, Marmor MF, Brigell MG, et al. ISCEV standard for full-field clinical electroretinography (2015 update). Doc Ophthalmol. 2015; 130:1–12.

Robson AG, Frishman LJ, Grigg J, et al. Signal origins of the a-wave and b-wave of the electroretinogram. Prog Retin Eye Res. 2018; 64:1–23.

Berson EL. Retinitis pigmentosa and allied diseases: diagnosis and prognosis. Ophthalmology. 2020; 127:1560–1572.

Stone EM, Andorf JL, Whitmore SS, et al. Clinically focused molecular investigation of inherited retinal disease. Genet Med. 2017; 19:137–147.

Russell S, Bennett J, Wellman JA, et al. Efficacy and safety of voretigene neparvovec (AAV2-hRPE65v2). Lancet. 2017; 390:849–860.

Viswanathan S, Frishman LJ, Robson JG. The photopic negative response of the flash ERG in glaucoma. Invest Ophthalmol Vis Sci. 1999; 40:1124–1132.

Bach M, Hoffmann MB. Visual evoked potentials. Handb Clin Neurol. 2021; 173:47–68.

Hood DC. Multifocal electroretinography. Clin Exp Optom. 2017; 100:323–337.

Maturi RK, Yu M, Weleber RG. Multifocal electroretinographic evaluation of drug toxicity. Retina. 2020; 40:1395–1406.

Li X, Yang Q, Hood DC. Advances in multifocal ERG technology. Retina. 2019; 39:1701–1712.

Strauss O. The retinal pigment epithelium in visual function. Physiol Rev. 2020; 100:775–842.

Romano PE, Zanoni D, Testa F, et al. Electro-oculography in Best disease. Graefes Arch Clin Exp Ophthalmol. 2016; 254:1731–1739.

Boon CJF, Klevering BJ, den Hollander AI, et al. Clinical and genetic heterogeneity in Best disease. Ophthalmology. 2009; 116:1193–1201.

Khandhadia S, Cherry J, Lotery AJ. Electro-oculography: clinical applications today. Eye (Lond). 2021; 35:2471–2482.

Odom JV, Bach M, Brigell M, et al. ISCEV standard for clinical visual evoked potentials. Doc Ophthalmol. 2016; 133:1–9.

Fraser CL, Davagnanam I, Radon M, Plant GT. The visual evoked potential in optic neuritis. J Neurol Neurosurg Psychiatry. 2020; 91:350–357.

Klistorner A, Graham SL. Visual evoked potentials in optic neuropathies. Eye (Lond). 2017; 31:1291–1302.

Hood DC, Zhang X, Ramachandran R, et al. Structure–function relationships in retinal disease. Prog Retin Eye Res. 2021; 83:100911.

Fulton AB, Hansen RM. Electrophysiology in inherited retinal disease. Eye (Lond). 2016; 30:214–223.

Park JC, Cao D, Collison FT, et al. Chromatic pupillometry as a functional biomarker. Invest Ophthalmol Vis Sci. 2019; 60:2588–2596.

Bach M, Brigell MG, Hawlina M, et al. Guidelines for calibration of electrophysiology equipment. Doc Ophthalmol. 2018; 137:185–194.

Jarc-Vidmar M, Brecelj J. Artificial intelligence in visual electrophysiology. Doc Ophthalmol. 2021; 143:83–95.

Tzekov R, Arden GB. Portable ERG devices: clinical applications. Eye (Lond). 2020; 34:1247–1255.

McCague S, Palczewski K. Visual stimulation paradigms in electrophysiology. Prog Retin Eye Res. 2022; 87:100997.

Daruich A, Korobelnik JF, Behar-Cohen F. Central serous chorioretinopathy: recent pathophysiological insights. Prog Retin Eye Res. 2022; 86:100987.

Referanslar

Frishman LJ. Electrophysiological methods in ophthalmology. Prog Retin Eye Res. 2019; 73:100766.

Spaide RF, Fujimoto JG, Waheed NK. Optical coherence tomography angiography. Prog Retin Eye Res. 2018; 64:1–55.

Hood DC. Assessing retinal function with electrophysiology. Vision Res. 2020; 174:51–60.

Bach M, Poloschek CM. Electrophysiology and the eye: a practical guide. Curr Opin Ophthalmol. 2019; 30:459–465.

Cideciyan AV, Jacobson SG. Functional biomarkers in gene therapy trials for inherited retinal diseases. Prog Retin Eye Res. 2022; 88:101021.

Hood DC, Bach M, Brigell M, et al. ISCEV standard for clinical electroretinography (2022 update). Doc Ophthalmol. 2022; 144:1–24.

McCulloch DL, Marmor MF, Brigell MG, et al. ISCEV standard for full-field clinical electroretinography (2015 update). Doc Ophthalmol. 2015; 130:1–12.

Robson AG, Frishman LJ, Grigg J, et al. Signal origins of the a-wave and b-wave of the electroretinogram. Prog Retin Eye Res. 2018; 64:1–23.

Berson EL. Retinitis pigmentosa and allied diseases: diagnosis and prognosis. Ophthalmology. 2020; 127:1560–1572.

Stone EM, Andorf JL, Whitmore SS, et al. Clinically focused molecular investigation of inherited retinal disease. Genet Med. 2017; 19:137–147.

Russell S, Bennett J, Wellman JA, et al. Efficacy and safety of voretigene neparvovec (AAV2-hRPE65v2). Lancet. 2017; 390:849–860.

Viswanathan S, Frishman LJ, Robson JG. The photopic negative response of the flash ERG in glaucoma. Invest Ophthalmol Vis Sci. 1999; 40:1124–1132.

Bach M, Hoffmann MB. Visual evoked potentials. Handb Clin Neurol. 2021; 173:47–68.

Hood DC. Multifocal electroretinography. Clin Exp Optom. 2017; 100:323–337.

Maturi RK, Yu M, Weleber RG. Multifocal electroretinographic evaluation of drug toxicity. Retina. 2020; 40:1395–1406.

Li X, Yang Q, Hood DC. Advances in multifocal ERG technology. Retina. 2019; 39:1701–1712.

Strauss O. The retinal pigment epithelium in visual function. Physiol Rev. 2020; 100:775–842.

Romano PE, Zanoni D, Testa F, et al. Electro-oculography in Best disease. Graefes Arch Clin Exp Ophthalmol. 2016; 254:1731–1739.

Boon CJF, Klevering BJ, den Hollander AI, et al. Clinical and genetic heterogeneity in Best disease. Ophthalmology. 2009; 116:1193–1201.

Khandhadia S, Cherry J, Lotery AJ. Electro-oculography: clinical applications today. Eye (Lond). 2021; 35:2471–2482.

Odom JV, Bach M, Brigell M, et al. ISCEV standard for clinical visual evoked potentials. Doc Ophthalmol. 2016; 133:1–9.

Fraser CL, Davagnanam I, Radon M, Plant GT. The visual evoked potential in optic neuritis. J Neurol Neurosurg Psychiatry. 2020; 91:350–357.

Klistorner A, Graham SL. Visual evoked potentials in optic neuropathies. Eye (Lond). 2017; 31:1291–1302.

Hood DC, Zhang X, Ramachandran R, et al. Structure–function relationships in retinal disease. Prog Retin Eye Res. 2021; 83:100911.

Fulton AB, Hansen RM. Electrophysiology in inherited retinal disease. Eye (Lond). 2016; 30:214–223.

Park JC, Cao D, Collison FT, et al. Chromatic pupillometry as a functional biomarker. Invest Ophthalmol Vis Sci. 2019; 60:2588–2596.

Bach M, Brigell MG, Hawlina M, et al. Guidelines for calibration of electrophysiology equipment. Doc Ophthalmol. 2018; 137:185–194.

Jarc-Vidmar M, Brecelj J. Artificial intelligence in visual electrophysiology. Doc Ophthalmol. 2021; 143:83–95.

Tzekov R, Arden GB. Portable ERG devices: clinical applications. Eye (Lond). 2020; 34:1247–1255.

McCague S, Palczewski K. Visual stimulation paradigms in electrophysiology. Prog Retin Eye Res. 2022; 87:100997.

Daruich A, Korobelnik JF, Behar-Cohen F. Central serous chorioretinopathy: recent pathophysiological insights. Prog Retin Eye Res. 2022; 86:100987.

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16 Nisan 2026

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