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Items: 1 to 20 of 117

1.

Positioning of electronic subretinal implants in blind retinitis pigmentosa patients through multimodal assessment of retinal structures.

Kusnyerik A, Greppmaier U, Wilke R, Gekeler F, Wilhelm B, Sachs HG, Bartz-Schmidt KU, Klose U, Stingl K, Resch MD, Hekmat A, Bruckmann A, Karacs K, Nemeth J, Suveges I, Zrenner E.

Invest Ophthalmol Vis Sci. 2012 Jun 20;53(7):3748-55. doi: 10.1167/iovs.11-9409.

PMID:
22562517
2.

Extraocular surgery for implantation of an active subretinal visual prosthesis with external connections: feasibility and outcome in seven patients.

Besch D, Sachs H, Szurman P, Gülicher D, Wilke R, Reinert S, Zrenner E, Bartz-Schmidt KU, Gekeler F.

Br J Ophthalmol. 2008 Oct;92(10):1361-8. doi: 10.1136/bjo.2007.131961. Epub 2008 Jul 28.

PMID:
18662916
3.

Angiographic findings following tack fixation of a wireless epiretinal retina implant device in blind RP patients.

Roessler G, Laube T, Brockmann C, Kirschkamp T, Mazinani B, Menzel-Severing J, Bornfeld N, Walter P; EPIRET Group.

Graefes Arch Clin Exp Ophthalmol. 2011 Sep;249(9):1281-6. doi: 10.1007/s00417-011-1653-5. Epub 2011 Apr 5.

PMID:
21465287
4.

Subretinal implantation of semiconductor-based photodiodes: durability of novel implant designs.

Chow AY, Pardue MT, Perlman JI, Ball SL, Chow VY, Hetling JR, Peyman GA, Liang C, Stubbs EB Jr, Peachey NS.

J Rehabil Res Dev. 2002 May-Jun;39(3):313-21.

PMID:
12173752
5.

Visual perception in a blind subject with a chronic microelectronic retinal prosthesis.

Humayun MS, Weiland JD, Fujii GY, Greenberg R, Williamson R, Little J, Mech B, Cimmarusti V, Van Boemel G, Dagnelie G, de Juan E.

Vision Res. 2003 Nov;43(24):2573-81.

6.

Implantation and explantation of a wireless epiretinal retina implant device: observations during the EPIRET3 prospective clinical trial.

Roessler G, Laube T, Brockmann C, Kirschkamp T, Mazinani B, Goertz M, Koch C, Krisch I, Sellhaus B, Trieu HK, Weis J, Bornfeld N, Röthgen H, Messner A, Mokwa W, Walter P.

Invest Ophthalmol Vis Sci. 2009 Jun;50(6):3003-8. doi: 10.1167/iovs.08-2752. Epub 2009 May 6.

PMID:
19420330
7.

Functional outcome in subretinal electronic implants depends on foveal eccentricity.

Stingl K, Bartz-Schmidt KU, Gekeler F, Kusnyerik A, Sachs H, Zrenner E.

Invest Ophthalmol Vis Sci. 2013 Nov 19;54(12):7658-65. doi: 10.1167/iovs.13-12835.

PMID:
24150759
8.

Implantation of silicon chip microphotodiode arrays into the cat subretinal space.

Chow AY, Pardue MT, Chow VY, Peyman GA, Liang C, Perlman JI, Peachey NS.

IEEE Trans Neural Syst Rehabil Eng. 2001 Mar;9(1):86-95.

PMID:
11482368
9.

Optical coherence tomography-guided retinal prosthesis design: model of degenerated retinal curvature and thickness for patient-specific devices.

Opie NL, Ayton LN, Apollo NV, Ganesan K, Guymer RH, Luu CD.

Artif Organs. 2014 Jun;38(6):E82-94. doi: 10.1111/aor.12287. Epub 2014 Apr 1.

PMID:
24689741
10.

Visual performance using a retinal prosthesis in three subjects with retinitis pigmentosa.

Yanai D, Weiland JD, Mahadevappa M, Greenberg RJ, Fine I, Humayun MS.

Am J Ophthalmol. 2007 May;143(5):820-827. Epub 2007 Mar 23.

PMID:
17362868
11.

Effect of sham surgery on retinal function after subretinal transplantation of the artificial silicone retina.

Del Priore LV.

Arch Ophthalmol. 2005 Aug;123(8):1156; author reply 1156-7. No abstract available.

PMID:
16087860
12.

Fluorescein angiographic findings in eyes of patients with a subretinal electronic implant.

Stingl K, Gekeler F, Bartz-Schmidt KU, Kögel A, Zrenner E, Gelisken F.

Curr Eye Res. 2013 May;38(5):588-96. doi: 10.3109/02713683.2013.767349. Epub 2013 Feb 14.

PMID:
23410193
13.

The Detection of Motion by Blind Subjects With the Epiretinal 60-Electrode (Argus II) Retinal Prosthesis.

Dorn JD, Ahuja AK, Caspi A, da Cruz L, Dagnelie G, Sahel JA, Greenberg RJ, McMahon MJ; gus II Study Group.

JAMA Ophthalmol. 2013 Feb;131(2):183-9.

14.

Spatial resolution and perception of patterns mediated by a subretinal 16-electrode array in patients blinded by hereditary retinal dystrophies.

Wilke R, Gabel VP, Sachs H, Bartz Schmidt KU, Gekeler F, Besch D, Szurman P, Stett A, Wilhelm B, Peters T, Harscher A, Greppmaier U, Kibbel S, Benav H, Bruckmann A, Stingl K, Kusnyerik A, Zrenner E.

Invest Ophthalmol Vis Sci. 2011 Jul 29;52(8):5995-6003. doi: 10.1167/iovs.10-6946.

PMID:
21693599
15.

Visualisation of active subretinal implants with external connections by high-resolution CT.

Gekeler F, Kopp A, Sachs H, Besch D, Greppmaier U, Zrenner E, Bartz-Schmidt KU, Szurman P.

Br J Ophthalmol. 2010 Jul;94(7):843-7. doi: 10.1136/bjo.2009.170654.

PMID:
20606022
16.

Subretinal implantation and testing of polyimide film electrodes in cats.

Sachs HG, Schanze T, Wilms M, Rentzos A, Brunner U, Gekeler F, Hesse L.

Graefes Arch Clin Exp Ophthalmol. 2005 May;243(5):464-8. Epub 2004 Dec 1.

PMID:
15578200
17.

Safety evaluation of "retina implant alpha IMS"--a prospective clinical trial.

Kitiratschky VB, Stingl K, Wilhelm B, Peters T, Besch D, Sachs H, Gekeler F, Bartz-Schmidt KU, Zrenner E.

Graefes Arch Clin Exp Ophthalmol. 2015 Mar;253(3):381-7. doi: 10.1007/s00417-014-2797-x. Epub 2014 Sep 16.

PMID:
25219982
18.

The artificial silicon retina microchip for the treatment of vision loss from retinitis pigmentosa.

Chow AY, Chow VY, Packo KH, Pollack JS, Peyman GA, Schuchard R.

Arch Ophthalmol. 2004 Apr;122(4):460-9.

PMID:
15078662
19.

Compound subretinal prostheses with extra-ocular parts designed for human trials: successful long-term implantation in pigs.

Gekeler F, Szurman P, Grisanti S, Weiler U, Claus R, Greiner TO, Völker M, Kohler K, Zrenner E, Bartz-Schmidt KU.

Graefes Arch Clin Exp Ophthalmol. 2007 Feb;245(2):230-41.

PMID:
16645861
20.

Transscleral implantation and neurophysiological testing of subretinal polyimide film electrodes in the domestic pig in visual prosthesis development.

Sachs HG, Schanze T, Brunner U, Sailer H, Wiesenack C.

J Neural Eng. 2005 Mar;2(1):S57-64. Epub 2005 Feb 22.

PMID:
15876656
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