1、de Vries NE, Webers CAB, Touwslager WRH, et al. Dissatisfaction after implantation of multifocal intraocular lenses[ J]. J Cataract Refract Surg, 2011, 37(5): 859-865.de Vries NE, Webers CAB, Touwslager WRH, et al. Dissatisfaction after implantation of multifocal intraocular lenses[ J]. J Cataract Refract Surg, 2011, 37(5): 859-865.
2、Seiler T, Wegner A, Senfft T, et al. Dissatisfaction after trifocal IOL
implantation and its improvement by selective wavefront-guided
LASIK[ J]. J Refract Surg, 2019, 35(6): 346-352.Seiler T, Wegner A, Senfft T, et al. Dissatisfaction after trifocal IOL
implantation and its improvement by selective wavefront-guided
LASIK[ J]. J Refract Surg, 2019, 35(6): 346-352.
3、Wang Q, Jiang W, Lin T, et al. Meta-analysis of accuracy of intraocular
lens power calculation formulas in short eyes[ J]. Clin Exp Ophthalmol,
2018, 46(4): 356-363.Wang Q, Jiang W, Lin T, et al. Meta-analysis of accuracy of intraocular
lens power calculation formulas in short eyes[ J]. Clin Exp Ophthalmol,
2018, 46(4): 356-363.
4、Li H, Ye Z, Luo Y, et al. Comparing the accuracy of the new-generation
intraocular lens power calculation formulae in axial myopic eyes: a
meta-analysis[ J]. Int Ophthalmol, 2022, 43: 619-633.Li H, Ye Z, Luo Y, et al. Comparing the accuracy of the new-generation
intraocular lens power calculation formulae in axial myopic eyes: a
meta-analysis[ J]. Int Ophthalmol, 2022, 43: 619-633.
5、Simon SS, Chee YE, Haddadin RI, et al. Achieving target refraction
after cataract surgery[ J]. Ophthalmology, 2014, 121(2): 440-444.Simon SS, Chee YE, Haddadin RI, et al. Achieving target refraction
after cataract surgery[ J]. Ophthalmology, 2014, 121(2): 440-444.
6、Melles RB, Kane JX, Olsen T, et al. Update on intraocular lens
calculation formulas[ J]. Ophthalmology, 2019, 126(9): 1334-1335.Melles RB, Kane JX, Olsen T, et al. Update on intraocular lens
calculation formulas[ J]. Ophthalmology, 2019, 126(9): 1334-1335.
7、Kane JX, Chang DF. Intraocular lens power formulas, biometry,
and intraoperative aberrometry: a review[ J]. Ophthalmology, 2021,
128(11): e94-e114.Kane JX, Chang DF. Intraocular lens power formulas, biometry,
and intraoperative aberrometry: a review[ J]. Ophthalmology, 2021,
128(11): e94-e114.
8、Cheng H, Wang L, Kane JX, et al. Accuracy of artificial intelligence formulas and axial length adjustments for highly myopic eyes[ J]. Am J Ophthalmol, 2021, 223: 100-107.
Cheng H, Wang L, Kane JX, et al. Accuracy of artificial intelligence formulas and axial length adjustments for highly myopic eyes[ J]. Am J Ophthalmol, 2021, 223: 100-107.
9、Wang L, Shirayama M, Ma XJ, et al. Optimizing intraocular lens power
calculations in eyes with axial lengths above 25.0 mm[ J]. J Cataract
Refract Surg, 2011, 37(11): 2018-2027.Wang L, Shirayama M, Ma XJ, et al. Optimizing intraocular lens power
calculations in eyes with axial lengths above 25.0 mm[ J]. J Cataract
Refract Surg, 2011, 37(11): 2018-2027.
10、Wang L, Koch DD. Modified axial length adjustment formulas in long
eyes[ J]. J Cataract Refract Surg, 2018, 44(11): 1396-1397.Wang L, Koch DD. Modified axial length adjustment formulas in long
eyes[ J]. J Cataract Refract Surg, 2018, 44(11): 1396-1397.
11、Wang L, Holladay JT, Koch DD. Wang-Koch axial length adjustment
for the Holladay 2 formula in long eyes[ J]. J Cataract Refract Surg,2018, 44(10): 1291-1292.Wang L, Holladay JT, Koch DD. Wang-Koch axial length adjustment
for the Holladay 2 formula in long eyes[ J]. J Cataract Refract Surg,2018, 44(10): 1291-1292.
12、Zhang J, Tan X, Wang W, et al. Effect of axial length adjustment
methods on intraocular lens power calculation in highly myopic
eyes[ J]. Am J Ophthalmol, 2020, 214: 110-118.Zhang J, Tan X, Wang W, et al. Effect of axial length adjustment
methods on intraocular lens power calculation in highly myopic
eyes[ J]. Am J Ophthalmol, 2020, 214: 110-118.
13、Kieren D, David G, Shokufeh T, et al. Assessment of the accuracy of
new and updated intraocular lens power calculation formulas in 10 930
eyes from the UK National Health Service[ J]. J Cataract Refract Surg,
2020, 46(1): 2-7.Kieren D, David G, Shokufeh T, et al. Assessment of the accuracy of
new and updated intraocular lens power calculation formulas in 10 930
eyes from the UK National Health Service[ J]. J Cataract Refract Surg,
2020, 46(1): 2-7.
14、Lin P, Xu J, Miao A, et al. A comparative study on the accuracy of
IOL calculation formulas in nanophthalmos and relative anterior
microphthalmos[ J]. Am J Ophthalmol, 2023, 245: 61-69.Lin P, Xu J, Miao A, et al. A comparative study on the accuracy of
IOL calculation formulas in nanophthalmos and relative anterior
microphthalmos[ J]. Am J Ophthalmol, 2023, 245: 61-69.
15、Reitblat O, Levy A, Kleinmann G, et al. Intraocular lens power
calculation for eyes with high and low average keratometry readings:
comparison between various formulas[ J]. J Cataract Refract Surg,
2017, 43(9): 1149-1156.Reitblat O, Levy A, Kleinmann G, et al. Intraocular lens power
calculation for eyes with high and low average keratometry readings:
comparison between various formulas[ J]. J Cataract Refract Surg,
2017, 43(9): 1149-1156.
16、Qin Y, Liu L, Mao Y, et al. Accuracy of intraocular lens power
calculation based on total keratometry in patients with flat and steep
corneas[ J]. Am J Ophthalmol, 2023, 247: 103-110.Qin Y, Liu L, Mao Y, et al. Accuracy of intraocular lens power
calculation based on total keratometry in patients with flat and steep
corneas[ J]. Am J Ophthalmol, 2023, 247: 103-110.
17、Zhang C, Dai G, Pazo E, et al. Accuracy of intraocular lens calculation formulas in cataract patients with steep corneal curvature[ J]. PLoS One, 2020, 15(11): e0241630.Zhang C, Dai G, Pazo E, et al. Accuracy of intraocular lens calculation formulas in cataract patients with steep corneal curvature[ J]. PLoS One, 2020, 15(11): e0241630.
18、Savini G, Abbate R, Hoffer KJ, et al. Intraocular lens power calculation
in eyes with keratoconus[ J]. J Cataract Refract Surg, 2019, 45(5): 576-
581.Savini G, Abbate R, Hoffer KJ, et al. Intraocular lens power calculation
in eyes with keratoconus[ J]. J Cataract Refract Surg, 2019, 45(5): 576-
581.
19、Kane JX, Connell B, Yip H, et al. Accuracy of intraocular lens power
formulas modified for patients with keratoconus[ J]. Ophthalmology,
2020, 127(8): 1037-1042.Kane JX, Connell B, Yip H, et al. Accuracy of intraocular lens power
formulas modified for patients with keratoconus[ J]. Ophthalmology,
2020, 127(8): 1037-1042.
20、Vandevenne MMS, Webers VSC, Segers MHM, et al. Accuracy of intraocular lens calculations in eyes with keratoconus[ J]. J Cataract Refract Surg, 2023, 49(3): 229-233Vandevenne MMS, Webers VSC, Segers MHM, et al. Accuracy of intraocular lens calculations in eyes with keratoconus[ J]. J Cataract Refract Surg, 2023, 49(3): 229-233
21、Diogo HF, Elisa LM, Rita SP, et al. Anterior chamber depth, lens
thickness and intraocular lens calculation formula accuracy: nine
formulas comparison[ J]. Br J Ophthalmol, 2022, 106(3):349-355.Diogo HF, Elisa LM, Rita SP, et al. Anterior chamber depth, lens
thickness and intraocular lens calculation formula accuracy: nine
formulas comparison[ J]. Br J Ophthalmol, 2022, 106(3):349-355.
22、G%C3%B6kce%20SE%2C%20Montes%20De%20Oca%20I%2C%20Cooke%20DL%2C%20et%20al.%20Accuracy%20of%208%20intraocular%20%0Alens%20calculation%20formulas%20in%20relation%20to%20anterior%20chamber%20depth%20in%20%0Apatients%20with%20normal%20axial%20lengths%5B%20J%5D.%20J%20Cataract%20Refract%20Surg%2C%202018%2C%20%0A44(3)%3A%20362-368.G%C3%B6kce%20SE%2C%20Montes%20De%20Oca%20I%2C%20Cooke%20DL%2C%20et%20al.%20Accuracy%20of%208%20intraocular%20%0Alens%20calculation%20formulas%20in%20relation%20to%20anterior%20chamber%20depth%20in%20%0Apatients%20with%20normal%20axial%20lengths%5B%20J%5D.%20J%20Cataract%20Refract%20Surg%2C%202018%2C%20%0A44(3)%3A%20362-368.
23、Priyanka P, Zahra A, Viraj V, et al. Comparison of intraocular lens calculation methods after myopic laser-assisted in situ keratomileusis and radial keratotomy w ithout prior refractive data[ J]. Br J Ophthalmol, 2022, 106(1): 47-53.Priyanka P, Zahra A, Viraj V, et al. Comparison of intraocular lens calculation methods after myopic laser-assisted in situ keratomileusis and radial keratotomy w ithout prior refractive data[ J]. Br J Ophthalmol, 2022, 106(1): 47-53.
24、Pantanelli SM, Lin CC, Al-Mohtaseb Z, et al. Intraocular lens power
calculation in eyes with previous excimer laser surgery for myopia: a
report by the American academy of ophthalmology[ J]. Ophthalmology,
2021, 128(5): 781-792.Pantanelli SM, Lin CC, Al-Mohtaseb Z, et al. Intraocular lens power
calculation in eyes with previous excimer laser surgery for myopia: a
report by the American academy of ophthalmology[ J]. Ophthalmology,
2021, 128(5): 781-792.
25、Ferguson TJ, Downes RA, Randleman JB. IOL power calculations after LASIK or PRK: Barrett True-K biometer-only calculation strategy yields equivalent outcomes as a multiple formula approach[ J]. J Cataract Refract Surg, 2022, 48(7): 784-789.Ferguson TJ, Downes RA, Randleman JB. IOL power calculations after LASIK or PRK: Barrett True-K biometer-only calculation strategy yields equivalent outcomes as a multiple formula approach[ J]. J Cataract Refract Surg, 2022, 48(7): 784-789.
26、Turnbull AMJ, Crawford GJ, Barrett GD. Methods for intraocular lens power calculation in cataract surgery after radial keratotomy[ J]. Ophthalmology, 2020, 127(1): 45-51.Turnbull AMJ, Crawford GJ, Barrett GD. Methods for intraocular lens power calculation in cataract surgery after radial keratotomy[ J]. Ophthalmology, 2020, 127(1): 45-51.
27、Katz HR , Forster RK. Intraocular lens calculation in combined
penetrating keratoplasty, cataract extraction and intraocular lens
implantation[ J]. Ophthalmology, 1985, 92(9): 1203-1207.Katz HR , Forster RK. Intraocular lens calculation in combined
penetrating keratoplasty, cataract extraction and intraocular lens
implantation[ J]. Ophthalmology, 1985, 92(9): 1203-1207.
28、Gruenauer-Kloevekorn%20C%2C%20Kloevekorn-Norgall%20K%2C%20Duncker%20GIW%2C%20et%20%0Aal.%20Refractive%20error%20after%20triple%20and%20non-simultaneous%20procedures%3A%20is%20%0Athe%20application%20of%20a%20standard%20constant%20keratometry%20value%20in%20IOL%20power%20%0Acalculation%20advisable%3F%5B%20J%5D.%20Acta%20Ophthalmol%20Scand%2C%202006%2C%2084(5)%3A%20679-%0A683.Gruenauer-Kloevekorn%20C%2C%20Kloevekorn-Norgall%20K%2C%20Duncker%20GIW%2C%20et%20%0Aal.%20Refractive%20error%20after%20triple%20and%20non-simultaneous%20procedures%3A%20is%20%0Athe%20application%20of%20a%20standard%20constant%20keratometry%20value%20in%20IOL%20power%20%0Acalculation%20advisable%3F%5B%20J%5D.%20Acta%20Ophthalmol%20Scand%2C%202006%2C%2084(5)%3A%20679-%0A683.
29、Geerards AJ, Hassmann E, Beekhuis WH, et al. Triple procedure;
analysis of outcome, refraction, and intraocular lens power
calculation[ J]. Br J Ophthalmol, 1997, 81(9): 774-777.Geerards AJ, Hassmann E, Beekhuis WH, et al. Triple procedure;
analysis of outcome, refraction, and intraocular lens power
calculation[ J]. Br J Ophthalmol, 1997, 81(9): 774-777.
30、Marco P, Luca F, Niccolò S, et al. Accuracy of intraocular lens
power calculation for cataract surgery after deep anterior lamellar
keratoplasty[ J]. Clin Exp Ophthalmol, 2021, 50(1): 17-22.Marco P, Luca F, Niccolò S, et al. Accuracy of intraocular lens
power calculation for cataract surgery after deep anterior lamellar
keratoplasty[ J]. Clin Exp Ophthalmol, 2021, 50(1): 17-22.
31、Campbell JA, Ladas JG, Wang K, et al. Refractive accuracy in eyes
undergoing combined cataract extraction and Descemet membrane
endothelial keratoplasty[ J]. Br J Ophthalmol, 2022, 106(5): 623-627.Campbell JA, Ladas JG, Wang K, et al. Refractive accuracy in eyes
undergoing combined cataract extraction and Descemet membrane
endothelial keratoplasty[ J]. Br J Ophthalmol, 2022, 106(5): 623-627.
32、Augustin VA, Weller JM, Kruse FE, et al. Refractive outcomes after
descemet membrane endothelial keratoplasty + cataract/intraocular
lens triple procedure: a fellow eye comparison[ J]. Cornea, 2021, 40(7):
883-887.Augustin VA, Weller JM, Kruse FE, et al. Refractive outcomes after
descemet membrane endothelial keratoplasty + cataract/intraocular
lens triple procedure: a fellow eye comparison[ J]. Cornea, 2021, 40(7):
883-887.
33、Zhang J, Xia Z, Han X, et al. Accuracy of intraocular lens calculation
formulas in patients undergoing combined phakic intraocular lens
removal and cataract surgery[ J]. Am J Ophthalmol, 2022, 234: 241-
249.Zhang J, Xia Z, Han X, et al. Accuracy of intraocular lens calculation
formulas in patients undergoing combined phakic intraocular lens
removal and cataract surgery[ J]. Am J Ophthalmol, 2022, 234: 241-
249.
34、Yeh Oliver L, Bojikian Karine D, Slabaugh Mark A, et al. Refractive
outcome of cataract surgery in eyes with prior trabeculectomy: risk
factors for postoperative myopia[ J]. J Glaucoma, 2017, 26(1): 65-70.Yeh Oliver L, Bojikian Karine D, Slabaugh Mark A, et al. Refractive
outcome of cataract surgery in eyes with prior trabeculectomy: risk
factors for postoperative myopia[ J]. J Glaucoma, 2017, 26(1): 65-70.
35、Won BH, Ha LY, Do Wook K, et al. Effect of trabeculectomy on the
accuracy of intraocular lens calculations in patients with open-angle
glaucoma[ J]. Clin Exp Ophthalmol, 2016, 44(6): 465-71.Won BH, Ha LY, Do Wook K, et al. Effect of trabeculectomy on the
accuracy of intraocular lens calculations in patients with open-angle
glaucoma[ J]. Clin Exp Ophthalmol, 2016, 44(6): 465-71.
36、Tan X, Zhang J, Zhu Y, et al. Accuracy of new generation intraocular
lens calculation formulas in vitrectomized eyes[ J]. Am J Ophthalmol,
2020, 217: 81-90.Tan X, Zhang J, Zhu Y, et al. Accuracy of new generation intraocular
lens calculation formulas in vitrectomized eyes[ J]. Am J Ophthalmol,
2020, 217: 81-90.
37、Zhang J, Wang W, Liu Z, et al. Accuracy of new-generation intraocular
lens calculation formulas in eyes undergoing combined silicone oil
removal and cataract surgery[ J]. J Cataract Refract Surg, 2021, 47(5):
593-598.Zhang J, Wang W, Liu Z, et al. Accuracy of new-generation intraocular
lens calculation formulas in eyes undergoing combined silicone oil
removal and cataract surgery[ J]. J Cataract Refract Surg, 2021, 47(5):
593-598.
38、Zhang J, Han X, Chen X, et al. Choice of intraocular lens calculation formula for cataract patients with prior pars plana vitrectomy. J Cataract Refract Surg 2023; 49(9): 956-63.Zhang J, Han X, Chen X, et al. Choice of intraocular lens calculation formula for cataract patients with prior pars plana vitrectomy. J Cataract Refract Surg 2023; 49(9): 956-63.
39、Zhang J, Han X , Zhang M, et al. Comparison of axial length
measurements in silicone oil-filled eyes using SS-OCT and partial
coherence interferometry[ J]. J Cataract Refract Surg, 2022, 48(12):
1375-1380.Zhang J, Han X , Zhang M, et al. Comparison of axial length
measurements in silicone oil-filled eyes using SS-OCT and partial
coherence interferometry[ J]. J Cataract Refract Surg, 2022, 48(12):
1375-1380.
40、Hayashi K , Hayashi H, Nakao F, et al. Intraocular lens tilt and
decentration, anterior chamber depth, and refractive error after trans-scleral suture fixation surgery 1[ J]. Ophthalmology, 1999, 106(5): 878-
882.Hayashi K , Hayashi H, Nakao F, et al. Intraocular lens tilt and
decentration, anterior chamber depth, and refractive error after trans-scleral suture fixation surgery 1[ J]. Ophthalmology, 1999, 106(5): 878-
882.
41、Suto C, Hori S, Fukuyama E, et al. Adjusting intraocular lens power for
sulcus fixation[ J]. J Cataract Refract Surg, 2003, 29(10): 1913-1917.Suto C, Hori S, Fukuyama E, et al. Adjusting intraocular lens power for
sulcus fixation[ J]. J Cataract Refract Surg, 2003, 29(10): 1913-1917.
42、Dubey R, Birchall W, Grigg J. Improved refractive outcome for ciliary
sulcus-implanted intraocular lenses[ J]. Ophthalmology, 2012, 119(2):
261-265.Dubey R, Birchall W, Grigg J. Improved refractive outcome for ciliary
sulcus-implanted intraocular lenses[ J]. Ophthalmology, 2012, 119(2):
261-265.
43、Eom Y, Hwang HS, Hwang JY, et al. Posterior vault distance of ciliary
sulcus–implanted three-piece intraocular lenses according to ciliary
sulcus diameter[ J]. Am J Ophthalmol, 2017, 175: 52-59.Eom Y, Hwang HS, Hwang JY, et al. Posterior vault distance of ciliary
sulcus–implanted three-piece intraocular lenses according to ciliary
sulcus diameter[ J]. Am J Ophthalmol, 2017, 175: 52-59.
44、Eom Y, Song JS, Kim HM. Modified haigis formula effective lens
position equation for ciliary sulcus–implanted intraocular lenses[ J].
Am J Ophthalmol, 2016, 161: 142-149.e2.Eom Y, Song JS, Kim HM. Modified haigis formula effective lens
position equation for ciliary sulcus–implanted intraocular lenses[ J].
Am J Ophthalmol, 2016, 161: 142-149.e2.
45、Lian Z, Cao Q, Qi H, et al. Accuracy of intraocular lens power formulas for eyes with scleral-sutured intraocular lenses in congenital ectopia lentis[ J]. J Cataract \& Refract Surg, 2021, 48: 469-474.Lian Z, Cao Q, Qi H, et al. Accuracy of intraocular lens power formulas for eyes with scleral-sutured intraocular lenses in congenital ectopia lentis[ J]. J Cataract \& Refract Surg, 2021, 48: 469-474.
46、Zou M, Lian Z, Young CA, et al. Improving effective lens position
prediction for transscleral fixation of intraocular lens among congenital
ectopia lentis patients[ J]. Am J Ophthalmol, 2023, 252: 121-129.Zou M, Lian Z, Young CA, et al. Improving effective lens position
prediction for transscleral fixation of intraocular lens among congenital
ectopia lentis patients[ J]. Am J Ophthalmol, 2023, 252: 121-129.
47、Lee B, Lee SM, Kim JH, et al. Predictability of formulae for intraocular
lens power calculation according to the age of implantation in paediatric
cataract[ J]. Br J Ophthalmol, 2018, 103: 106-111.Lee B, Lee SM, Kim JH, et al. Predictability of formulae for intraocular
lens power calculation according to the age of implantation in paediatric
cataract[ J]. Br J Ophthalmol, 2018, 103: 106-111.
48、Eppley SE, Tadros D, Pasricha N, et al. Accuracy of a universal
theoretical formula for lens power calculation in pediatric intraocular
lens implantation[ J]. J Am Assoc Pediatr Ophthalmol Strabismus,
2021, 25(4): e17-e18.Eppley SE, Tadros D, Pasricha N, et al. Accuracy of a universal
theoretical formula for lens power calculation in pediatric intraocular
lens implantation[ J]. J Am Assoc Pediatr Ophthalmol Strabismus,
2021, 25(4): e17-e18.
49、Vanderveen DK , Trivedi RH, Nizam A, et al. Predictability of
intraocular lens power calculation formulae in infantile eyes with
unilateral congenital cataract: results from the Infant Aphakia
Treatment Study[ J]. Am J Ophthalmol, 2013, 156(6): 1252-1260.e2.Vanderveen DK , Trivedi RH, Nizam A, et al. Predictability of
intraocular lens power calculation formulae in infantile eyes with
unilateral congenital cataract: results from the Infant Aphakia
Treatment Study[ J]. Am J Ophthalmol, 2013, 156(6): 1252-1260.e2.
50、Liu Z, Zou Y, Yu Y, et al. Accuracy of intraocular lens power calculation
in pediatric secondary implantation: In-the-bag versus sulcus
placement[ J]. Am J Ophthalmol, 2023, 249: 137-143.Liu Z, Zou Y, Yu Y, et al. Accuracy of intraocular lens power calculation
in pediatric secondary implantation: In-the-bag versus sulcus
placement[ J]. Am J Ophthalmol, 2023, 249: 137-143.