Literatur
- 1
Krasnov M M.
Laser puncture of the anterior chamber angle in glaucoma (a preliminary report).
Vestn Oftalmol.
1972;
3
27-31
- 2
Epstein D L, Melamed S, Puliafito C A et al.
Neodymium : YAG laser trabeculopuncture in open-angle glaucoma.
Ophthalmology.
1985;
92
931-937
- 3
Melamed S, Latina M A, Epstein D L.
Neodymium : YAG laser trabeculopuncture in juvenile open-angle glaucoma.
Ophthalmology.
1987;
94
163-170
- 4
Worthen D M, Wickham M G.
Argon laser trabeculotomy.
Trans Am Acad Ophthalmol Otolaryngol.
1974;
78
371-375
- 5
Gaasterland D, Kupfer C.
Experimental glaucoma in the rhesus monkey.
Invest Ophthalmol Vis Sci.
1974;
13
455-457
- 6
Wise J B, Witter S L.
Argon laser therapy for open angle glaucoma: a pilot study.
Archives Ophthalmology.
1979;
97
319-322
- 7
van der Zypen E, Fankhauser F.
Ultrastructural changes of the trabecular meshwork of the monkey (Macaca speciosa)
following irradiation light.
Graefes Arch Clin Exp Ophthalmol.
1984;
221
249-261
- 8
Latina M, Park C.
Selective targeting of trabecular meshwork cells: in vitro studies of pulse and continuous
laser interactions.
Exp Eye Res.
1995;
60
359-371
- 9
Kramer T, Noecker R.
Comparison of the morphologic changes after selective laser trabeculoplasty and argon
laser trabeculoplasty in human eye bank eyes.
Ophthalmology.
2001;
108
773-779
- 10
Thomas J, Simmons R, Belcher C.
Argon laser trabeculoplasty in the presurgical glaucoma patient.
Ophthalmology.
1982;
89
187-197
- 11
Brubaker R, Liesegang T.
Effect of trabecular photocoagulation on the aqueous humor dynamics of the human eye.
Am J Ophthalmol.
1983;
96
139-147
- 12
Melamed S, Pei J, Epstein D L.
Short-term effect of argon laser trabeculoplasty in monkeys.
Arch Ophthalmol.
1985;
103
1546-1552
- 13
Melamed S, Pei J, Epstein D.
Delayed response to argon laser trabeculoplasty in monkeys. Morphological and morphometric
analysis.
Arch Ophthalmol.
1986;
104
1078-1083
- 14
Acott T, Samples J, Bradley J et al.
Trabecular repopulation by anterior trabecular meshwork cells after laser trabeculoplasty.
Am J Ophthalmol.
1989;
107
1-6
- 15
Parshley D, Bradley J, Fisk A et al.
Laser trabeculoplasty induces stromelysin expression by trabecular juxtacanalicular
cells.
Invest Ophthalmol Vis Sci.
1996;
37
795-804
- 16
Bradley J, Anderssohn A, Colvis C et al.
Mediation of laser trabeculoplasty-induced matrix metalloproteinase expression by
IL-1beta and TNFalpha.
Invest Ophthalmol Vis Sci.
2000;
41
422-430
- 17
Yablonski M E, Cook D J, Gray J.
A fluorophotometric study of the effect of argon laser trabeculoplasty on aqueous
humor dynamics.
Am J Ophthalmol.
1985;
99
579-582
- 18
Alvarado J A, Katz L J, Trivedi S et al.
Monocyte modulation of aqueous outflow and recruitment to the trabecular meshwork
following selective laser trabeculoplasty.
Arch Ophthalmol.
2010;
128
731-737
- 19
Alvarado J, Alvarado R, Yeh R et al.
A new insight into the cellular regulation of aqueous outflow: how trabecular meshwork
endothelial cells drive a mechanism that regulates the permeability of Schlemm's canal
endothelial cells.
Br J Ophthalmol.
2005;
89
1500-1505
- 20
Alvarado J A, Yeh R F, Franse-Carman L et al.
Interactions between endothelia of the trabecular meshwork and of Schlemm's canal:
a new insight into the regulation of aqueous outflow in the eye.
Trans Am Ophthalmol Soc.
2005;
103
148-162
- 21
Goyal S, Beltran-Agullo L, Rashid S et al.
Effect of primary selective laser trabeculoplasty on tonographic outflow facility:
a randomised clinical trial.
Br J Ophthalmol.
2010;
94
1443-1447
- 22
Glaucoma Laser Trial Research Group .
The Glaucoma Laser Trial (GLT): 6. Treatment group differences in visual field changes.
Am J Ophthalmol.
1995;
120
10-22
- 23
Glaucoma Laser Trial Research Group .
The Glaucoma Laser Trial (GLT) and glaucoma laser trial follow-up study: 7. Results.
Am J Ophthalmol.
1995;
120
718-731
- 24
Schwartz A L, Love D C, Schwartz M A.
Long-term follow up of argon laser trabeculoplasty for uncontrolled glaucoma.
Arch Ophthalmol.
1985;
103
1482-1484
- 25
Moulin F, Haut J.
Argon laser trabeculoplasty: a 10-year follow-up.
Ophthalmologica.
1993;
207
196-201
- 26
Threlkeld A, Hertzmark E, Sturm R et al.
Comparative study of the efficacy of argon laser trabeculoplasty for exfoliation and
primary open-angle glaucoma.
J Glaucoma.
1996;
5
311-316
- 27
Ritch R, Liebmann J, Robin A et al.
Argon laser trabeculoplasty in pigmentary glaucoma.
Ophthalmology.
1993;
100
909-913
- 28
Lai J S, Chua J K, Tham C C et al.
Five-year follow up of selective laser trabeculoplasty in Chinese eyes.
Clin Experiment Ophthalmol.
2004;
32
368-72
- 29
McIlraith I, Strasfeld M, Colev G et al.
Selective laser trabeculoplasty as initial and adjunctive treatment for open-angle
glaucoma.
J Glaucoma.
2006;
15
124-130
- 30
Nagar M, Ogunyomade A, O'Brart D P et al.
A randomised, prospective study comparing selective laser trabeculoplasty with latanoprost
for the control of intraocular pressure in ocular hypertension and open angle glaucoma.
Br J Ophthalmol.
2005;
89
1413-1417
- 31
Nagar M, Luhishi E, Shah N.
Intraocular pressure control and fluctuation: the effect of treatment with selective
laser trabeculoplasty.
Br J Ophthalmol.
2009;
93
497-501
- 32
Juzych M S, Chopra V, Banitt M R et al.
Comparison of long-term outcomes of selective laser trabeculoplasty versus argon laser
trabeculoplasty in open-angle glaucoma.
Ophthalmology.
2004;
111
1853-1859
- 33
Russo V, Barone A, Cosma A et al.
Selective laser trabeculoplasty versus argon laser trabeculoplasty in patients with
uncontrolled open-angle glaucoma.
Eur J Ophthalmol.
2009;
19
429-434
- 34
Best U, Domack H, Schmidt V.
Pressure reduction after selective laser trabeculoplasty with two different laser
systems and after argon laser trabeculoplasty – a controlled prospective clinical
trial on 284 eyes.
Klin Monbl Augenheilkd.
2007;
224
173-179
- 35
Damji K F, Bovell A M, Hodge W G et al.
Selective laser trabeculoplasty versus argon laser trabeculoplasty: results from a
1-year randomised clinical trial.
Br J Ophthalmol.
2006;
90
1490-1494
- 36
Martinez-de-la-Casa J M, Garcia-Feijoo J, Castillo A et al.
Selective vs. argon laser trabeculoplasty: hypotensive efficacy, anterior chamber
inflammation, and postoperative pain.
Eye.
2004;
18
498-502
- 37
Feldman R M, Katz L J, Spaeth G L et al.
Long-term efficacy of repeat argon laser trabeculoplasty.
Ophthalmology.
1991;
98
1061-1065
- 38
Weber P A, Burton G D, Epitropoulos A T.
Laser trabeculoplasty retreatment.
Ophthalmic Surg.
1989;
20
702-706
- 39
Hong B K, Winer J C, Martone J F et al.
Repeat selective laser trabeculoplasty.
J Glaucoma.
2009;
18
180-183
- 40
Cvenkel B, Hvala A, Drnovsek-Olup B et al.
Acute ultrastructural changes of the trabecular meshwork after selective laser trabeculoplasty
and low power argon laser trabeculoplasty.
Lasers Surg Med.
2003;
33
204-208
- 41
Kano K, Kuwayama Y, Mizoue S et al.
Clinical results of selective laser trabeculoplasty.
Nippon Ganka Gakkai Zasshi.
1999;
103
612-616
- 42
Birt C M.
Selective laser trabeculoplasty retreatment after prior argon laser trabeculoplasty:
1-year results.
Can J Ophthalmol.
2007;
42
715-719
- 43
Wilensky J T, Weinreb R N.
Low-dose trabeculoplasty.
Am J Ophthalmol.
1983;
95
423-426
- 44
Honrubia F, Ferrer E, Leciñena J et al.
Long term follow-up of the argon laser trabeculoplasty in eyes treated 180 degrees
and 360 degrees of the trabeculum.
Int Ophthalmol Clin.
1992;
16
375-379
- 45
Shibata M, Sugiyama T, Ishida O et al.
Clinical results of selective laser trabeculoplasty in open-angle glaucoma in Japanese
eyes: comparison of 180 degree with 360 degree SLT.
J Glaucoma.
2010;
epub ahead of print 2010 Dec 16
- 46
Prasad N, Murthy S, Dagianis J et al.
A comparison of the intervisit intraocular pressure fluctuation after 180 and 360
degrees of selective laser trabeculoplasty (SLT) as a primary therapy in primary open
angle glaucoma and ocular hypertension.
J Glaucoma.
2009;
18
157-160
- 47
George M K, Emerson J W, Cheema S A et al.
Evaluation of a modified protocol for selective laser trabeculoplasty.
J Glaucoma.
2008;
17
197-202
- 48
Alvarado J A, Iguchi R, Juster R et al.
From the bedside to the bench and back again: predicting and improving the outcomes
of SLT glaucoma therapy.
Trans Am Ophthalmol Soc.
2009;
107
167-181
- 49
Scherer W J.
Effect of topical prostaglandin analog use on outcome following selective laser trabeculoplasty.
J Ocul Pharmacol Ther.
2007;
23
503-512
- 50
Rhodes K M, Weinstein R, Saltzmann R M et al.
Intraocular pressure reduction in the untreated fellow eye after selective laser trabeculoplasty.
Curr Med Res Opin.
2009;
25
787-796
- 51
Ingvoldstad D D, Krishna R, Willoughby L.
Micropulse diode laser trabeculoplasty versus argon laser trabeculoplasty in the treatment
of open-angle glaucoma.
Invest Ophthalmol Vis Sci.
2005;
46
E-Abstract 123
- 52
Fea A, Bosone A, Rolle T et al.
Micropulse diode laser trabeculoplasty (MDLT): A phase II clinical study with 12 months
follow-up.
Clin Ophthalmol.
2008;
2
247-252
- 53
Detry-Morel M, Muschart F, Pourjavan S.
Micropulse diode laser (810 nm) versus argon laser trabeculoplasty in the treatment
of open-angle glaucoma: comparative short-term safety and efficacy profile.
Bull Soc Belge Ophtalmol.
2008;
308
21-28
- 54
Rantala E, Välimäki J.
Micropulse diode laser trabeculoplasty – 180-degree treatment.
Acta Ophthalmologica.
2010;
10
1755-3768
- 55
El Mallah M K, Walsh M M, Stinnett S S et al.
Selective laser trabeculoplasty reduces mean IOP and IOP variation in normal tension
glaucoma patients.
Clin Ophthalmol.
2010;
4
889-893
- 56
Mahdaviani S, Kitnarong N, Kropf J K et al.
Efficacy of laser trabeculoplasty in phakic and pseudophakic patients with primary
open-angle glaucoma.
Ophthalmic Surg Lasers Imaging.
2006;
37
394-398
- 57
Schwartz A L, Wilson M C, Schwartz L W.
Efficacy of argon laser trabeculoplasty in aphakic and pseudophakic eyes.
Ophthalmic Surg Lasers.
1997;
28
215-218
- 58
AGIS Investigators .
The Advanced Glaucoma Intervention Study (AGIS): 9. Comparison of glaucoma outcomes
in black and white patients within treatment groups.
Am J Ophthalmol.
2001;
132
311-320
- 59
Francis B A, Ianchulev T, Schofield J K et al.
Selective laser trabeculoplasty as a replacement for medical therapy in open-angle
glaucoma.
Am J Ophthalmol.
2005;
140
524-525
- 60
Rubin B, Taglienti A, Rothman R F et al.
The effect of selective laser trabeculoplasty on intraocular pressure in patients
with intravitreal steroid-induced elevated intraocular pressure.
J Glaucoma.
2008;
17
287-292
- 61
Rhee D J, Krad O, Pasquale L R.
Hyphema following selective laser trabeculoplasty.
Ophthalmic Surg Lasers Imaging.
2009;
40
493-494
- 62
Shihadeh W A, Ritch R, Liebmann J M.
Hyphema occurring during selective laser trabeculoplasty.
Ophthalmic Surg Lasers Imaging.
2006;
37
432-433
- 63
Barnes S D, Campagna J A, Dirks M S et al.
Control of intraocular pressure elevations after argon laser trabeculoplasty: comparison
of brimonidine 0, 2 % to apraclonidine 1, 0 %.
Ophthalmology.
1999;
106
2033-2037
- 64
Diestelhorst M, Thull D, Krieglstein G K.
The effect of argon laser trabeculoplasty on the blood-aqueous barrier and intraocular
pressure in human glaucomatous eyes treated with diclofenac 0, 1 %.
Graefes Arch Clin Exp Ophthalmol.
1995;
233
559-562
- 65
Holz H, Pirouzian A.
Bilateral diffuse lamellar keratitis following consecutive selective laser trabeculoplasty
in LASIK patient.
J Cataract Refract Surg.
2010;
36
847-849
- 66
AGIS Investigators .
The Advanced Glaucoma Intervention Study (AGIS): 4. Comparison of treatment outcomes
within race. Seven-year results.
Ophthalmology.
1998;
105
1146-1164
Priv. Doz. Dr. (Univ. Tel-Aviv, med. Fak) habil. Aharon Wegner
Glaukomambulanz
Augenklinik
Klinikum rechts der Isar
Technische Universität München
Ismaninger Straße 22
81675 München
Email: a.wegner@lrz.tum.de