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1 creased endothelial marker expression in the cavernosa.
2 h clines in the Caribbean coral, Montastraea cavernosa.
3 tabolized by CYP epoxygenases in rat corpora cavernosa.
4 l analyses of corporotomies from the corpora cavernosa.
7 employs aspiration of blood from the corpora cavernosa and irrigation with a dilute epinephrine solut
9 nt species, Orbicella faveolata, Montastraea cavernosa, and Porites astreoides, had negative calcific
10 ecovery experiments on the coral Montastraea cavernosa, and used quantitative PCR and chlorophyll flu
11 morphic microsatellite loci, we genotyped M. cavernosa colonies from four depth zones at four study s
13 along with MDSCs, are implanted into corpus cavernosa defects in a rabbit model to show good histoco
14 Colonies of the Caribbean coral Montastraea cavernosa exhibit a solar-stimulated orange-red fluoresc
15 lls have been applied exclusively to corpora cavernosa fibrosis owing to its well-established disease
16 ease, urethral stricture and penile (corpora cavernosa) fibrosis are localized fibrotic disorders of
21 tly healthy Colpophyllia natans, Montastraea cavernosa, Meandrina meandrites and Orbicella franksi.
23 n was observed between relatively shallow M. cavernosa populations (10 m, 16 m) and relatively deep (
24 local isolation of shallow and mesophotic M. cavernosa populations in Belize, coupled with the import
26 enetic structure across the seven shallow M. cavernosa sampling sites, the SNP analyses revealed sign
27 This data shows that adult populations of M. cavernosa separated by depths of tens of meters exhibits
29 PH CYP reductase were present in rat corpora cavernosa, which was confirmed by immunohistochemical an
30 on fixation pathways was also observed in M. cavernosa, while in X. muta there was higher abundance o
31 olic pathways in the star coral, Montastraea cavernosa, while there was higher coverage of chloroalka