1 |
苏红, 李世洋. 新鲜异体角膜基质透镜移植治疗角膜溃疡的临床观察[J]. 中国医学工程, 2019, 27(8):75-78.
|
2 |
李世洋, 肖建和, 刘雪艳. 角膜基质透镜植入联合羊膜移植治疗角膜溃疡[J]. 实用医药杂志, 2015, 32(4):334-335.
|
3 |
Mastropasqua L, Nubile M. Corneal thickening and central flattening induced by femtosecond laser hyperopic-shaped intrastromal lenticule implantation[J]. Int Ophthalmol, 2017, 37(4):893-904.
|
4 |
张晶, 翟长斌, 郑燕. 全飞秒激光角膜基质透镜植入术矫治中高度远视的一年随访研究[J]. 中华实验眼科杂志, 2018, 36(5):355-359.
|
5 |
Liu YC, Teo EPW, Ang HP, et al. Biological corneal inlay for presbyopia derived from small incision lenticule extraction (SMILE)[J]. Sci Rep, 2018, 8(1):1831.
|
6 |
Yang H, Zhou Y, Zhao H, et al. Application of the SMILE-derived lenticule in therapeutic keratoplasty[J]. Int Ophthalmol, 2020, 40(3):689-695.
|
7 |
Sachdev MS, Gupta D, Sachdev G, et al. Tailored stromal expansion with a refractive lenticule for crosslinking the ultrathin cornea[J]. J Cataract Refract Surg, 2015, 41(5):918-923.
|
8 |
Liu R, Zhao J, Xu Y, et al. Femtosecond laser-assisted corneal small incision allogenic intrastromal lenticule implantation in monkeys: a pilot study[J]. Invest Ophthalmol Vis Sci, 2015, 56(6):3715-3720.
|
9 |
Sun L, Yao P, Li M, et al. The safety and predictability of implanting autologous lenticule obtained by SMILE for hyperopia[J]. J Refract Surg, 2015, 31(6):374-379.
|
10 |
Williams GP, Wu B, Liu YC, et al. Hyperopic refractive correction by LASIK, SMILE or lenticule reimplantation in a non-human primate model[J]. PLoS One, 2018, 13(3):e0194209.
|
11 |
刘娴. 角膜基质透镜联合羊膜移植术治疗真菌性角膜溃疡[J]. 中华眼外伤职业眼病杂志, 2017, 39(6):413-415.
|
12 |
薛春燕, 夏元, 陈月芹. 多层角膜基质透镜重叠治疗角膜溃疡穿孔[J]. 中华眼科杂志, 2015, 51(9):655-659.
|
13 |
高颖, 张俐娜, 何娜. 飞秒激光角膜基质透镜用于周边板层角膜移植的实验研究[J]. 浙江医学, 2018, 40(2):126-129, 216-217.
|
14 |
姚涛, 何伟. 角膜基质透镜染色联合纤维蛋白胶在角膜溃疡穿孔修复中应用的临床观察[J]. 临床眼科杂志, 2020, 28(5):427-429.
|
15 |
黎彪, 吴园园, 邵毅. 圆锥角膜的治疗进展[J]. 国际眼科杂志, 2020, 20(3):464-467.
|
16 |
李金晶, 薛劲松, 蒋沁. 角膜胶原交联术治疗圆锥角膜的研究进展[J]. 国际眼科杂志, 2020, 20(3):477-480.
|
17 |
Doroodgar F, Jabbarvand M, Niazi S, et al. Customized stromal lenticule implantation for keratoconus[J]. J Refract Surg, 2020, 36(12):786-794.
|
18 |
苏红, 李世洋, 马红利. 异体角膜基质透镜移植治疗角膜皮样瘤[J]. 中华眼外伤职业眼病杂志, 2019(2):122-125.
|
19 |
Wan Q, Tang J, Han Y, et al. Surgical treatment of corneal dermoid by using intrastromal lenticule obtained from small-incision lenticule extraction[J]. Int Ophthalmol, 2020, 40(1):43-49.
|
20 |
Kalinnikov Y, Leontyeva G, Zinovyeva A, et al. Simultaneous implantation of refractive lenticule and intracorneal ring segment in the management of pellucid marginal degeneration[J]. J Refract Surg, 2019, 35(9):606-609.
|
21 |
Jiang Y, Li Y, Yang S, et al. Tuck-in Lamellar keratoplasty with an lenticule obtained by small incision lenticule extraction for treatment of post-LASIK ectasia[J]. Scientific Reports, 2017, 7:6.
|
22 |
Ganesh S, Brar S, Bowry R. Management of small-incision lenticule extraction ectasia using tissue addition and pocket crosslinking[J]. J Cataract Refract Surg, 2021, 47(3):407-412.
|
23 |
晏利, 凌玲, 喻理, 等. 飞秒激光辅助的角膜基质透镜植入术矫正远视的早期临床观察[J]. 眼科新进展, 2020, 40(8):751-754, 760.
|
24 |
Pradhan KR, Reinstein DZ, Carp GI, et al. Femtosecond laser-assisted keyhole endokeratophakia: correction of hyperopia by implantation of an allogeneic lenticule obtained by SMILE from a myopic donor[J]. J Refract Surg, 2013, 29(11):777-782.
|
25 |
Ganesh S, Brar S, Rao PA. Cryopreservation of extracted corneal lenticules after small incision lenticule extraction for potential use in human subjects[J]. Cornea, 2014, 33(12):1355-1362.
|
26 |
Li M, Li M, Sun L, et al. Predictive formula for refraction of autologous lenticule implantation for hyperopia correction[J]. J Refract Surg, 2017, 33(12):827-833.
|
27 |
Damgaard IB, Ivarsen A, Hjortdal J. Biological lenticule implantation for correction of hyperopia: an ex vivo study in human corneas[J]. J Refract Surg, 2018, 34(4):245-252.
|
28 |
Zhao J, Liu R, Shen Y, et al. Two-year observation of morphologic and histopathologic changes in the monkey cornea following small incision allogenic lenticule implantation[J]. Exp Eye Res, 2020, 192:107935.
|
29 |
Ong Hon Shing, Chan Anita S, Yau Christine W. Corneal inlays for presbyopia explanted due to corneal haze[J]. J Refract Surg, 2018, 34(5):357-360.
|
30 |
Ganesh S, Brar S. Femtosecond intrastromal lenticular implantation combined with accelerated collagen cross-linking for the treatment of keratoconus - initial clinical result in 6 eyes[J]. Cornea, 2015, 34(10):1331-1339.
|
31 |
Liu YC, Williams GP, George BL, et al. Corneal lenticule storage before reimplantation[J]. Mol Vis, 2017, 23:753-764.
|
32 |
Tripathi H, Mehdi MU, Gupta D, et al. Long-term preservation of donor corneas in glycerol for keratoplasty: exploring new protocols[J]. Br J Ophthalmol, 2016, 100(2):284-290.
|
33 |
Liang G, Wang L, Pan Z, et al. Comparison of the different preservative methods for refractive lenticules following SMILE[J]. Curr Eye Res, 2019, 44(8):832-839.
|
34 |
Shang Y, Li Y, Wang Z, et al. Risk evaluation of human corneal stromal lenticules from SMILE for reuse[J]. J Refract Surg, 2021, 37(1):32-40.
|
35 |
Yam GH, Yusoff NZ, Goh TW, et al. Decellularization of human stromal refractive lenticules for corneal tissue engineering[J]. Sci Rep, 2016, 6:26339.
|
36 |
Jin H, Liu L, Ding H, et al. Small incision femtosecond laser-assisted X-ray-irradiated corneal intrastromal xenotransplantation in rhesus monkeys: a preliminary study[J]. Curr Mol Med, 2018, 18(9):612-621.
|
37 |
Damgaard IB, Riau AK, Liu YC, et al. Reshaping and customization of SMILE-derived biological lenticules for intrastromal implantation[J]. Invest Ophthalmol Vis Sci, 2018, 59(6):2555-2563.
|