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1 es depending upon the presence or absence of Descemet's membrane.
2 dle into the deep stroma without penetrating Descemet's membrane.
3 rior stroma and the anterior banded layer of Descemet's membrane.
4 development of guttae, focal excrescences of Descemet's membrane.
5  COL8A2 was observed in the anterior half of Descemet's membrane.
6 al stroma as well as immediately adjacent to Descemet's membrane.
7 nectin and collagen type IV, constituents of Descemet's membrane.
8 , but there is no staining in the underlying Descemet's membrane.
9 malfunctioning corneal endothelial cells and Descemet's membrane.
10 idually variable distances of keratocytes to Descemet's membrane.
11 nd abnormal assembly of collagen VIII within Descemet's membrane, a process that is presumed to begin
12                   It is a major component of Descemet's membrane, a thick basement membrane under the
13                                Human corneal Descemet's membrane and corneal endothelial cells were d
14                HCECs were then isolated from Descemet's membrane and cultivated.
15 hat A. castellanii is capable of penetrating Descemet's membrane and entering the AC.
16      The number of collagen lamellae between Descemet's membrane and most posterior keratocytes varie
17  proposed that trophozoites cannot penetrate Descemet's membrane and the corneal endothelium to enter
18 e IV collagen on the endothelial face of the Descemet's membrane; and abnormal deposition of stromal
19                           The epithelium and Descemet's membrane appeared normal.
20 tures (trabecular meshwork, Schlemm's canal, Descemet's membrane), better postural comfort for the su
21 al epithelium, epithelial basement membrane, Descemet's membrane, ciliary epithelium, lens capsule, r
22                                              Descemet's membrane detachment has been reported after n
23  patients had successful reattachment of the Descemet's membrane (DM) after the intervention.
24 rneal epithelial basement membrane (EBM) and Descemet's membrane (DM) components exhibit heterogeneou
25                                              Descemet's membrane (DM) helps maintain phenotype and fu
26 the posterior stroma and interfacial zone of Descemet's membrane (DM) in canine eyes.
27              Analysis of the endothelium and Descemet's membrane (DM) was performed using transmissio
28 1) creation of BB followed by peeling of the Descemet's membrane (DM); (2) peeling off of the DM foll
29                   The increasing adoption of Descemet's membrane endothelial keratoplast is changing
30 ry (33.3%), corneal decompensation requiring Descemet's Membrane Endothelial Keratoplasty (20%), and
31       This study compared the outcomes after Descemet's membrane endothelial keratoplasty (DMEK) in p
32 r treatment for endothelial dysfunction, but Descemet's membrane endothelial keratoplasty (DMEK) now
33 igher-order aberrations (HOAs) in eyes after Descemet's membrane endothelial keratoplasty (DMEK), Des
34                       As surgeons transit to Descemet's membrane endothelial keratoplasty (DMEK), eye
35 SAEK are comparable with those published for Descemet's membrane endothelial keratoplasty and better
36 pping automated endothelial keratoplasty and Descemet's membrane endothelial keratoplasty in their ma
37              While the literature on complex Descemet's membrane endothelial keratoplasty is limited,
38                                     However, Descemet's membrane endothelial keratoplasty may be more
39                  However, limitations of the Descemet's membrane endothelial keratoplasty procedure h
40          Recent literature demonstrates that Descemet's membrane endothelial keratoplasty provides be
41 antation, including increasing acceptance of Descemet's membrane endothelial keratoplasty, may alter
42                         However, unlike with Descemet's membrane endothelial keratoplasty, preparatio
43 much less frequent than those reported after Descemet's membrane endothelial keratoplasty.
44 orneoscleral buttons (n = 10) obtained after Descemet's membrane endothelial keratoplasty.
45 or toxic injury of the endothelium, stripped Descemet's membrane, epithelial toxicity and disruption,
46 or toxic injury of the endothelium, stripped Descemet's membrane, epithelial toxicity and disruption,
47 led a corneal ulcer with feathery margin and Descemet's membrane folding.
48 This technique facilitates the separation of Descemet's membrane from the stroma without affecting en
49 lagenase A, but not Dispase, of the stripped Descemet's membrane generated HCEC aggregates, which pre
50          Human corneal endothelial cells and Descemet's membrane (HCEC-DM) complex was dissected from
51               Human corneal endothelial cell-Descemet's membrane (HCEC-DM) complexes from normal and
52 tes were observed at variable distances from Descemet's membrane, increasing from 1.5 to 12 mum (mean
53                                              Descemet's membrane is markedly thinned.
54                                       Intact Descemet's membranes isolated from bovine corneas were m
55 riate number of fibroblastic cell layers and Descemet's membrane of appropriate thickness.
56  reconstruction of endothelium and guttae in Descemet's membrane over large tissue volumes.
57 osterior stroma (P<0.0001), opacification of Descemet's membrane (P<0.0001), and corneal guttae (P<0.
58  pigmented cells on the posterior surface of Descemet's membrane, pointing to a possible iris injury.
59 age 5 demonstrates hydrops; 5a, acute onset: Descemet's membrane rupture and dilaceration of collagen
60 -stromal scarring with a remaining aspect of Descemet's membrane rupture.
61 basement membranes in wild-type eyes, except Descemet's membrane, showed immunogold labeling with ant
62 MEK consists merely of donor endothelium and Descemet's membrane, so DMEK does not create a stromal i
63 sterior polymorphous membrane dystrophy from Descemet's membrane specimens removed from each eye.
64  the current study revealed that in the pre- Descemet's membrane stroma of the periphery, the degener
65                                              Descemet's membrane supports corneal endothelial cell re
66 ated with the characteristic deformations of Descemet's membrane, termed guttae.
67  of endothelial guttae, small protrusions of Descemet's membrane that are characteristic of FCD.
68                                              Descemet's membrane was formed by a normal anterior band
69                                              Descemet's membrane was isolated from pig corneas and wa
70                             Stripping of the Descemet's membrane was performed under air and the graf
71                         In the L450W mutant, Descemet's membrane was several times thicker than norma
72 rane was absent, whereas its localization to Descemet's membrane was unchanged.
73                    CE cells scraped from the Descemet's membrane were counted.
74 scopy of the junction between the stroma and Descemet's membrane were performed.
75 tes at the lower portions of guttae, next to Descemet's membrane, whereas CLU localized mostly on top
76 a was easily and reproducibly separated from Descemet's membrane with a combination of intrastromal c
77                  Corneas were trephined, and Descemet's membrane with HCECs was stripped from the cen
78                                              Descemet's membrane with intact endothelium was dissecte
79                       The amoebae penetrated Descemet's membrane within 24 hours of in vitro culture.
80 e also greatly increased in the of posterior Descemet's membrane, yet another general feature shared