1、Ang M, Cai Y, Shahipasand S, et al. En face optical coherence
tomography angiography for corneal neovascularisation[ J]. Br J
Ophthalmol, 2016, 100(5): 616-621.Ang M, Cai Y, Shahipasand S, et al. En face optical coherence
tomography angiography for corneal neovascularisation[ J]. Br J
Ophthalmol, 2016, 100(5): 616-621.
2、Cai S, Zhao F, Du C, et al. Repeatability of ocular surface vessel density measurements with optical coherence tomography angiography[ J].
BMC Ophthalmol, 2019, 19(1): 248.Cai S, Zhao F, Du C, et al. Repeatability of ocular surface vessel density measurements with optical coherence tomography angiography[ J].
BMC Ophthalmol, 2019, 19(1): 248.
3、Zhao F, Cai S, Huang Z, et al. Optical coherence tomography angiography
in pinguecula and pterygium[ J]. Cornea, 2020, 39(1): 99-103.Zhao F, Cai S, Huang Z, et al. Optical coherence tomography angiography
in pinguecula and pterygium[ J]. Cornea, 2020, 39(1): 99-103.
4、Aicher NT, Nagahori K, Inoue M, et al. Vascular density of the anterior
segment of the eye determined by optical coherence tomography angiography
and slit-lamp photography[J]. Ophthalmic Res, 2020, 63(6): 572-579.Aicher NT, Nagahori K, Inoue M, et al. Vascular density of the anterior
segment of the eye determined by optical coherence tomography angiography
and slit-lamp photography[J]. Ophthalmic Res, 2020, 63(6): 572-579.
5、Cai Y, Alio Del Barrio JL, Wilkins MR, et al. Serial optical coherence
tomography angiography for corneal vascularization[ J]. Graefes Arch
Clin Exp Ophthalmol, 2017, 255(1): 135-139.Cai Y, Alio Del Barrio JL, Wilkins MR, et al. Serial optical coherence
tomography angiography for corneal vascularization[ J]. Graefes Arch
Clin Exp Ophthalmol, 2017, 255(1): 135-139.
6、Oie Y, Nishida K, et al. Evaluation of corneal neovascularization using
optical coherence tomography angiography in patients with limbal stem
cell deficiency[ J]. Cornea, 2017, 36 Suppl 1: S72-S75.Oie Y, Nishida K, et al. Evaluation of corneal neovascularization using
optical coherence tomography angiography in patients with limbal stem
cell deficiency[ J]. Cornea, 2017, 36 Suppl 1: S72-S75.
7、Devarajan K, Ong HS, Lwin NC, et al. Optical coherence tomography
angiography imaging to monitor anti-VEGF treatment of corneal
vascularization in a rabbit model[ J]. Sci Rep, 2019, 9(1): 17576.Devarajan K, Ong HS, Lwin NC, et al. Optical coherence tomography
angiography imaging to monitor anti-VEGF treatment of corneal
vascularization in a rabbit model[ J]. Sci Rep, 2019, 9(1): 17576.
8、Stanzel TP, Devarajan K, Lwin NC, et al. Comparison of optical
coherence tomography angiography to indocyanine green angiography
and slit lamp photography for corneal vascularization in an animal
model[ J]. Sci Rep, 2018, 8(1): 11493.Stanzel TP, Devarajan K, Lwin NC, et al. Comparison of optical
coherence tomography angiography to indocyanine green angiography
and slit lamp photography for corneal vascularization in an animal
model[ J]. Sci Rep, 2018, 8(1): 11493.
9、Nanji A, Redd T, Chamberlain W, et al. Application of corneal optical
coherence tomography angiography for assessment of vessel depth in
corneal neovascularization[ J]. Cornea, 2020, 39(5): 598-604.Nanji A, Redd T, Chamberlain W, et al. Application of corneal optical
coherence tomography angiography for assessment of vessel depth in
corneal neovascularization[ J]. Cornea, 2020, 39(5): 598-604.
10、Ang M, Devarajan K, Das S, et al. Comparison of anterior segment
optical coherence tomography angiography systems for corneal
vascularisation[ J]. Br J Ophthalmol, 2018, 102(7): 873-877.Ang M, Devarajan K, Das S, et al. Comparison of anterior segment
optical coherence tomography angiography systems for corneal
vascularisation[ J]. Br J Ophthalmol, 2018, 102(7): 873-877.
11、Kiritoshi S, Oie Y, Nampei K , et al. Anterior segment optical
coherence tomography angiography in patients following cultivated
oral mucosal epithelial transplantation[ J]. Am J Ophthalmol, 2019,
208: 242-250.Kiritoshi S, Oie Y, Nampei K , et al. Anterior segment optical
coherence tomography angiography in patients following cultivated
oral mucosal epithelial transplantation[ J]. Am J Ophthalmol, 2019,
208: 242-250.
12、Roberts PK, Goldstein DA, Fawzi AA, et al. Anterior segment optical
coherence tomography angiography for identification of iris vasculature
and staging of iris neovascularization: a pilot study[ J]. Curr Eye Res,
2017, 42(8): 1136-1142.Roberts PK, Goldstein DA, Fawzi AA, et al. Anterior segment optical
coherence tomography angiography for identification of iris vasculature
and staging of iris neovascularization: a pilot study[ J]. Curr Eye Res,
2017, 42(8): 1136-1142.
13、Wells AP, Crowston JG, Marks J, et al. A pilot study of a system for
grading of drainage blebs after glaucoma surgery[ J]. J Glaucoma, 2004,
13(6): 454-460.Wells AP, Crowston JG, Marks J, et al. A pilot study of a system for
grading of drainage blebs after glaucoma surgery[ J]. J Glaucoma, 2004,
13(6): 454-460.
14、Seo JH, Kim YA, Park KH, et al. Evaluation of functional filtering bleb
using optical coherence tomography angiography[ J]. Transl Vis Sci
Technol, 2019, 8(3): 14.Seo JH, Kim YA, Park KH, et al. Evaluation of functional filtering bleb
using optical coherence tomography angiography[ J]. Transl Vis Sci
Technol, 2019, 8(3): 14.
15、Chan TK, Rosenbaum AL, Rao R, et al. Indocyanine green angiography
of the anterior segment in patients undergoing strabismus surgery[ J].
Br J Ophthalmol, 2001, 85(2): 214-218.Chan TK, Rosenbaum AL, Rao R, et al. Indocyanine green angiography
of the anterior segment in patients undergoing strabismus surgery[ J].
Br J Ophthalmol, 2001, 85(2): 214-218.
16、Aicher NT, Nagahori K, Inoue M, et al. Vascular density of the anterior
segment of the eye determined by optical coherence tomography
angiography and slit-lamp photography[ J]. Ophthalmic Res, 2020,
63(6): 572-579.Aicher NT, Nagahori K, Inoue M, et al. Vascular density of the anterior
segment of the eye determined by optical coherence tomography
angiography and slit-lamp photography[ J]. Ophthalmic Res, 2020,
63(6): 572-579.
17、Velez FG, Davila JP, Diaz A, et al. Association of change in iris vessel
density in optical coherence tomography angiography with anterior
segment ischemia after strabismus surgery[ J]. JAMA Ophthalmol,
2018, 136(9): 1041-1045.Velez FG, Davila JP, Diaz A, et al. Association of change in iris vessel
density in optical coherence tomography angiography with anterior
segment ischemia after strabismus surgery[ J]. JAMA Ophthalmol,
2018, 136(9): 1041-1045.
18、D'Aloisio R, Viggiano P, Borrelli E, et al. Changes in iris perfusion
follow ing scleral buckle surger y for rhegmatogenous retinal
detachment: an anterior segment optical coherence tomography
angiography (AS-OCTA) study[ J]. J Clin Med, 2020, 9(4): 1231.D'Aloisio R, Viggiano P, Borrelli E, et al. Changes in iris perfusion
follow ing scleral buckle surger y for rhegmatogenous retinal
detachment: an anterior segment optical coherence tomography
angiography (AS-OCTA) study[ J]. J Clin Med, 2020, 9(4): 1231.
19、Liu Z, Karp CL, Galor A, et al. Role of optical coherence tomography
angiography in the characterization of vascular network patterns of ocular
surface squamous neoplasia[ J]. Ocul Surf, 2020, 18(4): 926-935.Liu Z, Karp CL, Galor A, et al. Role of optical coherence tomography
angiography in the characterization of vascular network patterns of ocular
surface squamous neoplasia[ J]. Ocul Surf, 2020, 18(4): 926-935.
20、Kang AS, Welch RJ, Sioufi K, et al. Optical coherence tomography
angiography of iris microhemangiomatosis[ J]. Am J Ophthalmol Case
Rep, 2017, 6: 24-26.Kang AS, Welch RJ, Sioufi K, et al. Optical coherence tomography
angiography of iris microhemangiomatosis[ J]. Am J Ophthalmol Case
Rep, 2017, 6: 24-26.
21、Naseripour M, Ghasemi Falavarjani K, Mirshahi R, et al. Optical
coherence tomography angiography (OCTA) applications in ocular
oncology[ J]. Eye (Lond), 2020, 34(9): 1535-1545.Naseripour M, Ghasemi Falavarjani K, Mirshahi R, et al. Optical
coherence tomography angiography (OCTA) applications in ocular
oncology[ J]. Eye (Lond), 2020, 34(9): 1535-1545.
22、Allegrini D, Montesano G, Pece A, et al. Optical coherence tomography
angiography of iris nevus: a case report[ J]. Case Rep Ophthalmol,
2016, 7(3): 172-178.Allegrini D, Montesano G, Pece A, et al. Optical coherence tomography
angiography of iris nevus: a case report[ J]. Case Rep Ophthalmol,
2016, 7(3): 172-178.
23、Chien JL, Sioufi K, Ferenczy S, et al. Optical coherence tomography
angiography features of Iris Racemose Hemangioma in 4 cases[ J].
JAMA Ophthalmol, 2017, 135(10): 1106-1110.Chien JL, Sioufi K, Ferenczy S, et al. Optical coherence tomography
angiography features of Iris Racemose Hemangioma in 4 cases[ J].
JAMA Ophthalmol, 2017, 135(10): 1106-1110.
24、Skalet AH, Li Y, Lu CD, et al. Optical coherence tomography
angiography characteristics of iris melanoc y tic tumors[ J].
Ophthalmology, 2017, 124(2): 197-204.Skalet AH, Li Y, Lu CD, et al. Optical coherence tomography
angiography characteristics of iris melanoc y tic tumors[ J].
Ophthalmology, 2017, 124(2): 197-204.
25、Ang M, Cai Y, Tan AC, et al. Swept source optical coherence tomography
angiography for contact lens-related corneal vascularization[ J]. J
Ophthalmol, 2016, 2016: 9685297.Ang M, Cai Y, Tan AC, et al. Swept source optical coherence tomography
angiography for contact lens-related corneal vascularization[ J]. J
Ophthalmol, 2016, 2016: 9685297.
26、Gimenez-Sanchis I, Palacios-Carmen B, García-Garrigós A, et al.
Anterior segment optical coherence tomography angiography to
evaluate the peripheral fitting of scleral contact lenses[ J]. Clin Optom
(Auckl), 2018, 10: 103-108.Gimenez-Sanchis I, Palacios-Carmen B, García-Garrigós A, et al.
Anterior segment optical coherence tomography angiography to
evaluate the peripheral fitting of scleral contact lenses[ J]. Clin Optom
(Auckl), 2018, 10: 103-108.