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BAB V SIMPULAN DAN SARAN

5.2 Saran

1. Perlu dilakukan penelitian prospektif dengan desain randomized controlled trial untuk melihat hasil implantasi LIO iris-claw dengan menggunakan konstanta optimalisasi.

2. Perlu dilakukan proses optimalisasi pada lebih banyak data dengan panjang aksial bola mata yang bervariasi.

DAFTAR PUSTAKA

1. Lestari YD, Rif’ati L, Simanjuntak R, Fetty I. InfoDATIN. Pusat Data dan Informasi Kementrian Kesehatan Republik Indonesia; 2018.

2. The American Academy of Ophtalmology. Cataract in the Adult Eye Preferred Practice Pattern. Elsevier; 2016.

3. Manoharan N, Prasad P. Secondary Intraocular Lens. IntechOpen [Internet].

2019 [dikutip 28 Juli 2020]; Tersedia pada:

https://www.intechopen.com/books/intraocular-lens/secondary-intraocular-lens

4. Brunin G, Sajjad A, Kim EJ, Montes de Oca I, Weikert MP, Wang L, dkk.

Secondary intraocular lens implantation: Complication rates, visual acuity, and refractive outcomes. J Cataract Refract Surg. 1 Maret 2017;43(3):369–76.

5. Toro MD, Longo A, Avitabile T, Nowomiejska K, Gagliano C, Tripodi S, dkk.

Five-year follow-up of secondary iris-claw intraocular lens implantation for the treatment of aphakia: Anterior chamber versus retropupillary implantation.

PLoS ONE. 10 April 2019;14(4):1–13.

6. Ganesh S, Brar S, Relekar K. Long Term Clinical and Visual Outcomes of Retrofixated Iris Claw Lenses Implantation in Complicated Cases. Open Ophthalmol J. 29 April 2016;10:111–8.

7. Anbari A, Lake DB. Posteriorly enclavated iris claw intraocular lens for aphakia: long-term corneal endothelial safety study. Eur J Ophthalmol. Juni 2015;25(3):208–13.

8. Chalkiadakis SE, Parikakis EA, Taylor SRJ. Sutureless 25-Gauge Pars Plana Vitrectomy Combined with Retropupillary Fixation of an Iris-Claw Intraocular Lens. Case Rep Ophthalmol. 2016;7(3):433–9.

9. Mohr A, Hengerer F, Eckardt C. [Retropupillary fixation of the iris claw lens in aphakia. 1 year outcome of a new implantation techniques]. Ophthalmol Z Dtsch Ophthalmol Ges. Juli 2002;99(7):580–3.

10. Sugiarti ED, Latuasan A, Knoch AMH, Budiman B. Safety and Efficacy of Artisan Aphakia Iris-Claw Intraocular Lens in Tertiary Hospital in Indonesia.

Open J Ophthalmol. 2021;11(01):25–35.

11. Linke SJ, Katz, Toam. Complications in corneal laser surgery. Switzerland:

Springer; 2016. 12–13 hlm.

12. Aristodemou P, Sparrow JM, Kaye S. Evaluating Refractive Outcomes after Cataract Surgery. Ophthalmology. Januari 2019;126(1):13–8.

13. The Royal College of Ophtalmologists. Cataract Surgery Guidelines. London.

2010;

14. Choragiewicz T, Rejdak R, Grzybowski A, Nowomiejska K, Moneta-Wielgoś J, Ozimek M, dkk. Outcomes of Sutureless Iris-Claw Lens Implantation. J Ophthalmol. 2016;2016:1–7.

15. Gonnermann J, Klamann MKJ, Maier A-K, Rjasanow J, Joussen AM, Bertelmann E, dkk. Visual outcome and complications after posterior iris-claw aphakic intraocular lens implantation. J Cataract Refract Surg. Desember 2012;38(12):2139–43.

58

16. Huerva V, Ascaso FJ, Caral I, Grzybowski A. Calculation of iris-claw IOL power for correction of late in-the-bag IOL complex dislocation. BMC Ophthalmol. 11 Juli 2017;17(1):122.

17. Forlini M, Soliman W, Bratu A, Rossini P, Cavallini GM, Forlini C. Long-term follow-up of retropupillary iris-claw intraocular lens implantation: a retrospective analysis. BMC Ophthalmol. 27 Oktober 2015;15(1):143.

18. Gu X, Wang L, Breen M, Merchea M. IOL Lens Constant Optimization. Alcon.

2019;

19. Latuasan A, Sugiarti ED. KARAKTERISTIK KLINIS DAN HASIL IMPLANTASI LENSA INTRA OKULAR IRIS-CLAW PADA KASUS AFAKIA DI RUMAH SAKIT MATA CICENDO. 2019;

20. Fyodorov SN, Galin MA, Linksz A. Calculation of the optical power of intraocular lenses. Invest Ophthalmol Vis Sci. 1 Agustus 1975;14(8):625–8.

21. Sanders D, Retzlaff J, Kraff M, Kratz R, Gills J, Levine R, dkk. Comparison of the accuracy of the Binkhorst, Colenbrander, and SRK implant power prediction formulas. J - Am Intra-Ocul Implant Soc. 1981;7(4):337–40.

22. Hutauruk JA, Prakoso H, Riyanto SB. Katarak dan Fakoemulsifikasi. Kedua.

Indonesian Society of Cataract and Refractive Surgery; 2018. 162–169 hlm.

23. Randleman BJ, Ahmed IIK. Intraocular Lens Surgery Selection, Complication, and Complex Cases. New York: Thieme; 2016. 28–38 hlm.

24. Sheard R. Optimising biometry for best outcomes in cataract surgery. Eye.

Februari 2014;28(2):118–25.

25. Xia T, Martinez CE, Tsai LM. Update on Intraocular Lens Formulas and Calculations. Asia-Pac J Ophthalmol. Juni 2020;9(3):186–93.

26. Barrett GD. An improved universal theoretical formula for intraocular lens power prediction. J Cataract Refract Surg. 1 November 1993;19(6):713–20.

27. Devgan U. Refining the A-constant yields more accurate refractive results after cataract surgery [Internet]. 2012 [dikutip 9 Februari 2021]. Tersedia pada:

https://www.healio.com/news/ophthalmology/20120820/refining-the-a-constant-yields-more-accurate-refractive-results-after-cataract-surgery

28. Henderson BA, Pineda II R, Chen SH. Essentials of Cataract Surgery. Kedua.

USA: SLACK; 2014. 160 hlm.

29. Bonfadini G, Ladas JG, Moreira H, Campos M, Matthaei M, Muñoz B, dkk.

Optimization of Intraocular Lens Constant Improves Refractive Outcomes in Combined Endothelial Keratoplasty and Cataract Surgery. Ophthalmology [Internet]. Februari 2013 [dikutip 27 Juli 2020];120(2). Tersedia pada:

https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3816366/

30. Norrby S. Sources of error in intraocular lens power calculation. J Cataract Refract Surg. Maret 2008;34(3):368–76.

31. Sidhartha E, Gupta P, Liao J, Tham Y-C, Cheung CY, He M, dkk. Assessment of iris surface features and their relationship with iris thickness in Asian eyes.

Ophthalmology. Mei 2014;121(5):1007–12.

32. Wang D, He M, Wu L, Yaplee S, Singh K, Lin S. Differences in iris structural measurements among American Caucasians, American Chinese and mainland Chinese. Clin Experiment Ophthalmol. Maret 2012;40(2):162–9.

33. Lee RY, Huang G, Porco TC, Chen Y-C, He M, Lin SC. Differences in iris thickness among African Americans, Caucasian Americans, Hispanic Americans, Chinese Americans, and Filipino-Americans. J Glaucoma.

Desember 2013;22(9):673–8.

34. Wang D, Amoozgar B, Porco T, Wang Z, Lin SC. Ethnic differences in lens parameters measured by ocular biometry in a cataract surgery population.

PLOS ONE. 27 Juni 2017;12(6):e0179836.

35. Siguan-Bell CS, Chansangpetch S, Perez CI, Kutzscher A, Wang D, He M, dkk. Anterior Segment Parameters of Filipino-Americans Compared to Chinese-Americans and Caucasian Americans Using Anterior Segment Optical Coherence Tomography. Transl Vis Sci Technol. April 2019;8(2):11.

36. Tan DKL, Chong W, Tay WT, Yuen LH, He M, Aung T, dkk. Anterior chamber dimensions and posterior corneal arc length in Malay eyes: an anterior segment optical coherence tomography study. Invest Ophthalmol Vis Sci. 20 Juli 2012;53(8):4860–7.

37. Ning X, Yang Y, Yan H, Zhang J. Anterior chamber depth — a predictor of refractive outcomes after age-related cataract surgery. BMC Ophthalmol [Internet]. 25 Juni 2019 [dikutip 21 Februari 2021];19. Tersedia pada:

https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6591866/

38. Jeong J, Song H, Lee JK, Chuck RS, Kwon J-W. The effect of ocular biometric factors on the accuracy of various IOL power calculation formulas. BMC Ophthalmol. 2 Mei 2017;17(1):62.

39. Gale RP, Saldana M, Johnston RL, Zuberbuhler B, McKibbin M. Benchmark standards for refractive outcomes after NHS cataract surgery. Eye Lond Engl.

Januari 2009;23(1):149–52.

40. Aristodemou P, Knox Cartwright NE, Sparrow JM, Johnston RL. Intraocular lens formula constant optimization and partial coherence interferometry biometry: Refractive outcomes in 8108 eyes after cataract surgery. J Cataract Refract Surg. Januari 2011;37(1):50–62.

41. Brar VS, Law SK, Lindsey JL, Mackey DA, Schultze RL, Singh RSJ, dkk.

Fundamentals and Principles of Ophtalmology. Dalam: Basic and Clinical Science Course. San Fransisco: American Academy of Ophtalmology; 2019.

hlm. 68–72.

42. Ansari MW, Nadeem A. Atlas of Ocular Anatomy. Switzerland: Springer;

2016. 17–18 hlm.

43. Moazed KT. The Iris Understanding The Essentials. Switzerland: Springer;

2020. 23 hlm.

44. Bloom J, Motlagh M, Czyz CN. Anatomy, Head and Neck, Eye Iris Sphincter Muscle. Dalam: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2020 [dikutip 11 Agustus 2020]. Tersedia pada:

http://www.ncbi.nlm.nih.gov/books/NBK532252/

45. Ophtec BV. ARTISAN® Aphakia IOL Training Manual. 2010;

46. Worst JG. Iris claw lens. J - Am Intra-Ocul Implant Soc. April 1980;6(2):166–

7.

60

47. Schallenberg M, Dekowski D, Hahn A, Laube T, Steuhl K-P, Meller D.

Aphakia correction with retropupillary fixated iris-claw lens (Artisan) - long-term results. Clin Ophthalmol Auckl NZ. 2014;8:137–41.

48. Fechner PU, van der Heijde GL, Worst JG. The correction of myopia by lens implantation into phakic eyes. Am J Ophthalmol. 15 Juni 1989;107(6):659–63.

49. Simões PS, Ferreira TB. Iris-Fixated Intraocular Lenses for Ametropia and Aphakia. Med Hypothesis Discov Innov Ophthalmol. 2014;3(4):116–22.

50. Artisan Aphakia | Ophtec [Internet]. [dikutip 17 Januari 2021]. Tersedia pada:

https://www.ophtec.com/products/cataract-surgery/iols/artisan-aphakia

51. Helvaci S. Iris-claw intraocular lens implantation: Anterior chamber versus retropupillary implantation. Indian J Ophthalmol. 10 Februari 2016;64:45–9.

52. Güell JL, Verdaguer P, Elies D, Gris O, Manero F, Mateu-Figueras G, dkk.

Secondary iris-claw anterior chamber lens implantation in patients with aphakia without capsular support. Br J Ophthalmol. Mei 2014;98(5):658–63.

53. Touriño Peralba R, Lamas-Francis D, Sarandeses-Diez T, Martínez-Pérez L, Rodríguez-Ares T. Iris-claw intraocular lens for aphakia: Can location influence the final outcomes? J Cataract Refract Surg. Juli 2018;44(7):818–26.

54. Gicquel J-J, Guigou S, Bejjani RA, Briat B, Ellies P, Dighiero P. Ultrasound biomicroscopy study of the Verisyse aphakic intraocular lens combined with penetrating keratoplasty in pseudophakic bullous keratopathy. J Cataract Refract Surg. Maret 2007;33(3):455–64.

55. Hernández Martínez A, Almeida González CV. Iris-claw intraocular lens implantation: Efficiency and safety according to technique. J Cataract Refract Surg. Oktober 2018;44(10):1186–91.

56. Helvaci S, Demirduzen S, Oksuz H. Iris-claw intraocular lens implantation:

Anterior chamber versus retropupillary implantation. Indian J Ophthalmol.

Januari 2016;64(1):45–9.

57. Sekundo W, Bertelmann T, Schulze S. [Retropupillary iris claw intraocular lens implantation technique for aphakia]. Ophthalmol Z Dtsch Ophthalmol Ges. April 2014;111(4):315–9.

58. Mohan P, Chakrabarti A. Intraocular lens power calculation in 2019: The cutting edge. Kerala J Ophthalmol. 2019;31(3):191.

59. Steinert RF, Fine IH, Gimbel HV, Koch DD, Lindstorm RL, Neuhann TF, dkk.

Cataract Surgery Technique Complications Managements. Kedua.

Philadelphia: Saunders; 2004. 36–38 hlm.

60. Olsen T. Improved accuracy of intraocular lens power calculation with the Zeiss IOLMaster. Acta Ophthalmol Scand. Februari 2007;85(1):84–7.

61. Schröder S, Langenbucher A. Relationship between effective lens position and axial position of a thick intraocular lens. PLOS ONE. 14 Juni 2018;13(6):e0198824.

62. Carter PC, Oetting TA. Anterior Chamber Intraocular Lens Placement Technique [Internet]. 2016 [dikutip 14 Februari 2021]. Tersedia pada:

http://eyerounds.org/tutorials/AC-IOL-Placement.htm

63. Binkhorst RD. Intraocular lens power. Int Ophthalmol Clin. 1979;19(3):83–94.

64. Melles RB, Holladay JT, Chang WJ. Accuracy of Intraocular Lens Calculation Formulas. Ophthalmology. Februari 2018;125(2):169–78.

65. Jick SL, Breadsley TL, Brasington CR, Buznego C, Grostern RJ, Park L, dkk.

Lens and Cataract. Dalam: Basic Science and Clinical Course. San Fransisco:

American Academy of Ophtalmology; 2019. hlm. 107.

66. Akman A, Asena L, Güngör SG. Evaluation and comparison of the new swept source OCT-based IOLMaster 700 with the IOLMaster 500. Br J Ophthalmol.

September 2016;100(9):1201–5.

67. Kaswin G, Rousseau A, Mgarrech M, Barreau E, Labetoulle M. Biometry and intraocular lens power calculation results with a new optical biometry device:

comparison with the gold standard. J Cataract Refract Surg. April 2014;40(4):593–600.

68. Chen Y-A, Hirnschall N, Findl O. Evaluation of 2 new optical biometry devices and comparison with the current gold standard biometer. J Cataract Refract Surg. Maret 2011;37(3):513–7.

69. Bullimore M, Slade S, Yoo P, Otani T. An Evaluation of the IOLMaster 700.

Eye Contact Lens Sci Clin Pract. 1 Oktober 2018;45:1.

70. Karabela Y, Eliacik M, Kocabora MS, Erdur SK, Baybora H. Predicting the refractive outcome and accuracy of IOL power calculation after phacoemulsification using the SRK/T formula with ultrasound biometry in medium axial lengths. Clin Ophthalmol Auckl NZ. 15 Juni 2017;11:1143–9.

71. Going beyond the A-constant for IOL calculations [Internet]. [dikutip 11 Juni

2021]. Tersedia pada:

https://www.healio.com/news/ophthalmology/20170508/going-beyond-the-aconstant-for-iol-calculations

72. Holladay JT, Prager TC, Chandler TY, Musgrove KH, Lewis JW, Ruiz RS. A three-part system for refining intraocular lens power calculations. J Cataract Refract Surg. Januari 1988;14(1):17–24.

73. Li S, Hu Y, Guo R, Shao Y, Zhao J, Zhang J, dkk. The effects of different shapes of capsulorrhexis on postoperative refractive outcomes and the effective position of the intraocular lens in cataract surgery. BMC Ophthalmol. 21 Februari 2019;19(1):59.

74. Nemeth G, Nagy A, Berta A, Modis L. Comparison of intraocular lens power prediction using immersion ultrasound and optical biometry with and without formula optimization. Graefes Arch Clin Exp Ophthalmol Albrecht Von Graefes Arch Klin Exp Ophthalmol. September 2012;250(9):1321–5.

75. Holladay JT. International Intraocular Lens & Implant Registry 2003. J Cataract Refract Surg. 1 Januari 2003;29(1):176–97.

76. Haigis W. ULIB [Internet]. [dikutip 14 Februari 2021]. Tersedia pada:

http://ocusoft.de/ulib/index.htm

77. Hill W. #1 Eye Doctor Mesa AZ Ophthalmologist Optometrist [Internet]. East Valley Ophthalmology. [dikutip 14 Februari 2021]. Tersedia pada:

https://doctor-hill.com/

78. IOLMaster With Advanced Technology Software Released 5.xx User Manual.

Zeiss; 2007.

79. Levy PS, Lemeshow S. Sampling of Population : Methods, and Application.

Keempat. John Wiley & Sons; 2008.

62

80. Setiawan J, Permatasari WI. PROSES MASUK DAN PERSEBARAN PENINGGALAN KEBUDAYAAN PROTO-DEUTERO MELAYU DI INDONESIA. Fajar Hist. Juni 2019;3(1):11–22.

81. Thulasidas M. Retropupillary Iris-Claw Intraocular Lenses: A Literature Review. Clin Ophthalmol Auckl NZ. 25 Juni 2021;15:2727–39.

82. Drolsum L, Kristianslund O. Implantation of retropupillary iris-claw lenses: A review on surgical management and outcomes. Acta Ophthalmol (Copenh) [Internet]. [dikutip 15 Juli 2021];n/a(n/a). Tersedia pada:

https://onlinelibrary.wiley.com/doi/abs/10.1111/aos.14824

83. Kristianslund O, Østern AE, Drolsum L. Astigmatism and Refractive Outcome After Late In-The-Bag Intraocular Lens Dislocation Surgery: A Randomized Clinical Trial. Invest Ophthalmol Vis Sci. 1 September 2017;58(11):4747–53.

84. IOLCon. https://iolcon.org/lensesTable.php.

85. Lee MW. Comparing the Lenstar Optical Biometer and the Verion Image- Guided System for intraocular lens power calculation. Malays J Ophtalmol.

2020;4:236–43.

86. Teshigawara T, Meguro A, Mizuki N. Comparison of tendency and accuracy in predicted post-operative refraction and recommended IOL power between IOL Master and VERION before and after optimizing IOL-constant in the VERION. Res Sq.

87. Baykara M, Ozcetin H, Yilmaz S, Timuçin ÖB. Posterior Iris Fixation of the Iris-Claw Intraocular Lens Implantation through a Scleral Tunnel Incision. Am J Ophthalmol. 1 Oktober 2007;144(4):586-591.e2.

88. Faria MY, Ferreira NP, Pinto JM, Sousa DC, Leal I, Neto E, dkk.

Retropupillary iris claw intraocular lens implantation in aphakia for dislocated intraocular lens. Int Med Case Rep J. 29 Agustus 2016;9:261–5.

LAMPIRAN 1 : LEMBAR PERSETUJUAN ETIK

64

LAMPIRAN 2 : DATA PASIEN

No Rekam

Medis Usia Jenis

Kelamin Suku Indikasi Status Vitreous Status lensa Panjang aksial Silindris pre

operasi Silindris subjektif pasca

operasi

Kekuatan

LIO Target

konstanta pabrikan

Target konstanta optimalisasi

Spherical Equivalent pasca operasi

Prediksi Eror Konstanta

Pabrikan

Prediksi Eror Konstanta Optimalisasi 1

784360 22 L Jawa Afakia pasca komplikasi

operasi katarak Vitreous afakia 24,26 -1,02 -1 16,5 -0,79 -0,3 -0,5 0,29 -0,20

2

542777 79 P

Sunda Afakia pasca komplikasi

operasi katarak Vitreous afakia 23,78 -1,99 -2,5 19 -0,19 0,28 -0,75 -0,56 -1,03

3 791521 61 L Jawa drop LIO pasca vitrektomi afakia 25,41 -1,52 0 17,5 -0,22 0,32 -1 -0,78 -1,32

4 326650 54 P Sunda dislokasi LIO vitreous pseudofakia 26,34 -0,34 0 14 0,13 0,69 0,5 0,37 -0,19

5

812471 66 L Sunda Afakia pasca komplikasi

operasi katarak Vitreous afakia 22,38 -1,03 -2,25 23 -0,75 -0,31 -1,125 -0,38 -0,82

6

809286 56 L

Sunda Drop nukleus (katarak

traumatika) pasca vitrektomi afakia 25,10 -0,57 -0,5 18

-0,87 -0,79 -0,75 0,12 0,04

7 793063 64 L Sunda Subluksasi lensa Vitreous fakik 24,71 -0,78 0 16,5 -0,56 -0,05 0 0,56 0,05

8 812075 77 L Sunda dislokasi LIO Vitreous pseudofakia 23,60 -0,97 0 18,5 -0,96 -0,48 -0,5 0,46 -0,02

9 806035 43 L Jawa Afakia pasca katarak

traumatika pasca vitrektomi afakia 23,59 -1,59 0 19,5 -0,68 -0,2 0 0,68 0,20

10 660903 23 L Sunda dislokasi LIO Vitreous pseudofakia 27,03 -0,79 -1 12 -0,86 -0,29 0,25 1,11 0,54

11 826808 50 L Sunda dislokasi LIO Vitreous pseudofakia 25,01 -0,76 0 15 -0,75 -0,24 0 0,75 0,24

12 852842 50 L Sunda Subluksasi lensa e.c trauma Vitreous fakik 23,36 -0,69 0 19,5 -0,7 -0,06 0 0,70 0,06

13

860571 57 L Sunda Afakia pasca komplikasi

operasi katarak pasca vitrektomi afakia 24,45 -0,51 -1 17 -0,67 -0,13 -0,5 0,17 -0,37

14 850535 48 L dislokasi LIO pasca vitrektomi pseudofakia 22,43 -0,06 -0,5 22 -0,66 -0,22 -0,25 0,41 -0,03

15 841725 59 L Sunda drop LIO Vitreous afakia 23,53 -0,33 -3 20 -0,58 -0,11 0 0,58 0,11

16 554486 54 L Sunda drop LIO Vitreous afakia 26,59 -1,49 -3 11 -0,73 -0,41 0 0,73 0,41

17 696826 44 L Batak dislokasi LIO e.c PEX pasca vitrektomi pseudofakia 26,36 -0,41 0 17,5 -1,36 -0,64 0,5 1,86 1,14

18 696826 44 L Batak drop LIO pasca vitrektomi afakia 25,41 -1,68 -1 18,5 -0,67 -0,26 1 1,67 1,26

19 845786 56 L Sunda dislokasi LIO pasca vitrektomi pseudofakia 23,97 -0,85 0 18,5 -0,68 -0,18 -0,5 0,18 -0,32

20 792346 65 L Jawa drop LIO Vitreous afakia 22,72 -1,01 -1,5 19 -0,28 0,15 0,25 0,53 0,10

21

843757 60 L Afakia pasca komplikasi

operasi katarak Vitreous afakia 23,51 -1,7 -1,25 18 -0,63 -0,04 -0,625 0,01 -0,59

22

361958 18 L

Sunda Subluksasi lensa e.c

Marfan Vitreous fakik 27,52 -1,77 -0,5 8 -0,6 -0,03 -0,25 0,35 -0,22

23

828968 66 L Sunda Afakia pasca komplikasi

operasi katarak Viitreous

afakia 23,01 -0,98 0 21 -1,04 -0,33 0 1,04 0,33

24

846859 23 L

Jawa Subluksasi lensa e.c

Marfan pasca vitrektomi fakik 27,8 -0,57 -1 12 -1,53 -0,97 -0,5 1,03 0,47

25

877678 50 L Minan

g Subluksasi lensa e.c

Marfan pasca vitrektomi fakik 24,08 -0,91 0 18,5 -1,08 -0,48 0 1,08 0,48

26 884461 57 L Sunda drop LIO vitreous afakia 23,12 -1,73 0 20 -1,03 -0,35 0 1,03 0,35

27 647340 18 L Sunda drop LIO pasca vitrektomi afakia 24,53 -1,83 -1,25 18 -0,92 -0,72 -0,625 0,30 0,10

28 854701 52 L Sunda drop LIO pasca vitrektomi afakia 24.88 -0,39 0 17 -1,36 -0,83 0 1,36 0,83

29 880796 58 L drop LIO vitreous afakia 24,14 -0,5 -1 18 -0,43 -0,07 -0,5 -0,07 -0,43

30 458547 59 L drop LIO pasca vitrektomi afakia 28,23 -0,86 0 9 -1,1 -0,85 -1,25 -0,15 -0,40

31 881697 68 L Sunda Dislokasi LIO vitreous pseudofakia 24,54 -1,06 -1 17,5 -0,98 -0,42 -0,5 0,48 -0,08

32 878794 49 L drop LIO pasca vitrektomi afakia 25,26 -0,83 -0,5 16 -1,1 -0,32 -0,25 0,85 0,07

33 826179 50 P dislokasi LIO pasca vitrektomi pseudofakia 28,00 -2 -2 8 -1,02 -0,79 -2,5 -1,48 -1,71

34 767318 52 L Sunda drop LIO Vitreous afakia 22,73 -1,17 -0,25 20,5 -1,12 -0,42 0,375 1,50 0,80

35

864305 69 L Sunda Afakia pasca komplikasi

operasi katarak Vitreous afakia 1,01 -0,22 0 18 -1,19 -0,61 0 1,19 0,61

36 826273 57 L Sunda dislokasi LIO pasca vitrektomi pseudofakia 23,27 -1,1 0 20 -0,63 -0,16 0 0,63 0,16

37 656791 47 L Sunda drop LIO pasca vitrektomi afakia 24,75 -1,81 0 16,5 -0,46 0,89 0 0,46 -0,89

DAFTAR RIWAYAT HIDUP

Nama : Azalia Latuasan

NPM : 131221170008

Tempat & Tanggal Lahir : Jakarta, 9 Juli 1989

Alamat : Jl. Pintu Air IV No.26, Pasar Baru, Jakarta Pusat Nama Orang tua : dr. Ronald Latuasan, SpOG, dr. I Gusti Ayu Ariwati Nama Suami : Rico Dwi Saputra Dariman

Nama Anak : Letizia Arashel Dariman

Riwayat Pendidikan Formal:

1. SDK 1 BPK Penabur (1995-2001) 2. SMPK 1 BPK Penabur (2001-2004) 3. SMAN 8 Jakarta (2004-2007)

4. Program Studi Sarjana Kedokteran, Fakultas Kedokteran Universitas Padjajaran (2007-2011)

5. Program Studi Profesi Dokter, Fakultas Kedokteran Universitas Padjajaran (2011-2013)

6. Program Pendidikan Dokter Spesialis I, Ilmu Kesehatan Mata, Fakultas Kedokteran Universitas Padjajaran – Pusat Mata Nasional Rumah Sakit Mata Cicendo, Bandung (2017-2021)

66

Pengalaman Kerja:

1. Dokter internship RSUD Jampang Kulon, Sukabumi (2013-2014) 2. Dokter internship Puskesmas Lengkong, Sukabumi (2014)

3. Dokter umum RS Agung, Jakarta (2015-2016)

4. Dokter umum PTT RSUD Pemangkat, Kalimantan Barat (2016-2017) 5. Dokter magang Poli Mata RSUD Cibabat, Cimahi (2017)

Pengalaman Organisasi:

1. Anggota divisi Standing Commitee on Public Health (SCOPH), Center for Indonesian Medical Students Activities (CIMSA), Fakultas Kedokteran

Universitan Padjajaran (2007-2011)

2. Anggota Persekutuan Mahasiswa Kristen (PMK), Fakultas Kedokteran Universitan Padjajaran (2007-2011)

3. Panitia divisi acara 1st Cicendo International Meeting (CIOM)

Penelitian/ Penulisan Karya Ilmiah:

1. Pola Penyakit Mata Anak di Rumah Sakit Mata Cicendo Bandung Periode Januari-Desember 2009 (2011)

2. Karakteristik Klinis dan Hasil Implantasi Lensa Intra Okular Iris-Claw pada Kasus Afakia di Rumah Sakit Mata Cicendo (2019)

3. Safety and Efficacy of Artisan Aphakia Iris-Claw Intraocular Lens in Tertiary Hospital in Indonesia (2021)

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