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Editorial

Non-invasive electrical stimulation for vision restoration: dream or reality?

, , &
Pages 325-327 | Received 28 Apr 2016, Accepted 19 Jul 2016, Published online: 22 Aug 2016

References

  • Dor H. Beiträge zur Electrotherapie der Augenkrankheiten. von Graefes Archkin Exp Ophthalmol. 1873;19:352.
  • Nitsche MA, Paulus W. Excitability changes induced in the human motor cortex by weak transcranial direct current stimulation. J Physiol. 2000;527(Pt 3):633–639.
  • Antal A, Paulus W, Nitsche MA. Electrical stimulation and visual network plasticity. Restor Neurol Neurosci. 2011;29(6):365–374.
  • Abd Hamid AI, Gall C, Speck O, et al. Effects of alternating current stimulation on the healthy and diseased brain. Front Neurosci. 2015;9:391.
  • Fu L, Lo AC, Lai JS, et al. The role of electrical stimulation therapy in ophthalmic diseases. Graefes Arch Clin Exp Ophthalmol. 2015;253(2):171–176.
  • Zaehle T, Rach S, Herrmann CS. Transcranial alternating current stimulation enhances individual alpha activity in human EEG. PLoS One. 2010;5(11):e13766.
  • Haan N, Song B. Therapeutic application of electric fields in the injured nervous system. Adv Wound Care (New Rochelle). 2014;3(2):156–165.
  • Morimoto T, Miyoshi T, Matsuda S, et al. Transcorneal electrical stimulation rescues axotomized retinal ganglion cells by activating endogenous retinal IGF-1 system. Invest Ophthalmol Vis Sci. 2005;46(6):2147–2155.
  • Ni YQ, Gan DK, Xu HD, et al. Neuroprotective effect of transcorneal electrical stimulation on light-induced photoreceptor degeneration. Exp Neurol. 2009;219(2):439–452.
  • Tagami Y, Kurimoto T, Miyoshi T, et al. Axonal regeneration induced by repetitive electrical stimulation of crushed optic nerve in adult rats. Jpn J Ophthalmol. 2009;53(3):257–266.
  • Zaghi S, Acar M, Hultgren B, et al. Noninvasive brain stimulation with low-intensity electrical currents: putative mechanisms of action for direct and alternating current stimulation. Neuroscientist. 2010;16(3):285–307.
  • Antal A, Kincses TZ, Nitsche MA, et al. Excitability changes induced in the human primary visual cortex by transcranial direct current stimulation: direct electrophysiological evidence. Invest Ophthalmol Vis Sci. 2004;45(2):702–707.
  • Antal A, Boros K, Poreisz C, et al. Comparatively weak after-effects of transcranial alternating current stimulation (tACS) on cortical excitability in humans. Brain Stimul. 2008;1(2):97–105.
  • Bikson M, Grossman P, Thomas C, et al. Safety of transcranial direct current stimulation: evidence based update 2016. Brain Stimul. Forthcoming 2016. [Epub ahead of print].
  • Sergeeva EG, Fedorov AB, Henrich-Noack P, et al. Transcorneal alternating current stimulation induces EEG “aftereffects” only in rats with an intact visual system but not after severe optic nerve damage. J Neurophysiol. 2012;108(9):2494–2500.
  • Miyake K, Yoshida M, Inoue Y, et al. Neuroprotective effect of transcorneal electrical stimulation on the acute phase of optic nerve injury. Invest Ophthalmol Vis Sci. 2007;48(5):2356–2361.
  • Wang X, Mo X, Li D, et al. Neuroprotective effect of transcorneal electrical stimulation on ischemic damage in the rat retina. Exp Eye Res. 2011;93(5):753–760.
  • Rock T, Schatz A, Naycheva L, et al. [Effects of transcorneal electrical stimulation in patients with Stargardt’s disease]. Ophthalmologe. 2013;110(1):68–73.
  • Fujikado T, Morimoto T, Matsushita K, et al. Effect of transcorneal electrical stimulation in patients with nonarteritic ischemic optic neuropathy or traumatic optic neuropathy. Jpn J Ophthalmol. 2006;50(3):266–273.
  • Ozeki N, Shinoda K, Ohde H, et al. Improvement of visual acuity after transcorneal electrical stimulation in case of Best vitelliform macular dystrophy. Graefes Arch Clin Exp Ophthalmol. 2013;251(7):1867–1870.
  • Sergeeva EG, Bola M, Wagner S, et al. Repetitive transcorneal alternating current stimulation reduces brain idling state after long-term vision loss. Brain Stimul. 2015;8(6):1065–1073.
  • Schatz A, Rock T, Naycheva L, et al. Transcorneal electrical stimulation for patients with retinitis pigmentosa: a prospective, randomized, sham-controlled exploratory study. Invest Ophthalmol Vis Sci. 2011;52(7):4485–4496.
  • Sabel BA, Fedorov AB, Naue N, et al. Non-invasive alternating current stimulation improves vision in optic neuropathy. Restor Neurol Neurosci. 2011;29(6):493–505.
  • Fedorov A, Jobke S, Bersnev V, et al. Restoration of vision after optic nerve lesions with noninvasive transorbital alternating current stimulation: a clinical observational study. Brain Stimul. 2011;4(4):189–201.
  • Gall C, Sgorzaly S, Schmidt S, et al. Noninvasive transorbital alternating current stimulation improves subjective visual functioning and vision-related quality of life in optic neuropathy. Brain Stimul. 2011;4(4):175–188.
  • Anastassiou G, Schneegans AL, Selbach M, et al. Transpalpebral electrotherapy for dry age-related macular degeneration (AMD): an exploratory trial. Restor Neurol Neurosci. 2013;31(5):571–578.
  • Plow EB, Obretenova SN, Halko MA, et al. Combining visual rehabilitative training and noninvasive brain stimulation to enhance visual function in patients with hemianopia: a comparative case study. PM R. 2011;3(9):825–835.
  • Spiegel DP, Li J, Hess RF, et al. Transcranial direct current stimulation enhances recovery of stereopsis in adults with amblyopia. Neurotherapeutics. 2013;10(4):831–839.
  • Plow EB, Obretenova SN, Jackson ML, et al. Temporal profile of functional visual rehabilitative outcomes modulated by transcranial direct current stimulation. Neuromodulation. 2012;15(4):367–373.
  • Morimoto T, Miyoshi T, Fujikado T, et al. Electrical stimulation enhances the survival of axotomized retinal ganglion cells in vivo. Neuroreport. 2002;13(2):227–230.
  • Antal A, Nitsche MA, Paulus W. Transcranial magnetic and direct current stimulation of the visual cortex. Suppl Clin Neurophysiol. 2003;56:291–304.
  • Lang N, Siebner HR, Chadaide Z, et al. Bidirectional modulation of primary visual cortex excitability: a combined tDCS and rTMS study. Invest Ophthalmol Vis Sci. 2007;48(12):5782–5787.

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