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1 and were not directly related to the use of enamel matrix derivative.
2 ins, known to be present in some mixtures of enamel matrix derivatives.
3 h a bone replacement graft [combination], or enamel matrix derivative), according to predefined crite
6 xenograft used alone and in combination with enamel matrix derivative are effective for the treatment
7 h >/= 4 mm) was treated regeneratively using enamel matrix derivative at two centers (Frankfurt am Ma
8 utilizing collagen membrane, with or without enamel matrix derivative, can be successfully used in ob
9 d bone allograft (DFDBA) in combination with enamel matrix derivative (EMD + DFDBA) compared to ename
10 matrix derivative (EMD + DFDBA) compared to enamel matrix derivative (EMD) alone in the treatment of
14 periodontal surgery using the combination of enamel matrix derivative (EMD) and natural bone mineral
17 In this study, we compare the effects of enamel matrix derivative (EMD) associated with a hydroxy
18 this study, we compare the effectiveness of enamel matrix derivative (EMD) associated with a simplif
19 sidering xenogeneic collagen matrix (CM) and enamel matrix derivative (EMD) characteristics, it is su
20 s study was to evaluate the effectiveness of enamel matrix derivative (EMD) combined with a bovine-de
21 ctice reports on the clinical efficacy of an enamel matrix derivative (EMD) combined with either demi
39 ized freeze-dried bone allograft (DFDBA) and enamel matrix derivative (EMD) have been used with varyi
40 ith a xenogenous collagen matrix (CM) and/or enamel matrix derivative (EMD) in combination with a cor
46 this study was to determine the effect of an enamel matrix derivative (EMD) on cementoblast behavior
47 of this study is to determine the impact of enamel matrix derivative (EMD) on superoxide (O(2)(-)) g
48 ellular dermal matrix (ADM) with and without enamel matrix derivative (EMD) on the percentage of root
49 have been demonstrated with the addition of enamel matrix derivative (EMD) to demineralized freeze-d
53 neutral ethylene diamine tetracetic acid and enamel matrix derivative (EMD) were first used to treat
55 milarly, in guided tissue regeneration (GTR)/enamel matrix derivative (EMD) with and without laser tr
56 inical studies suggest that a combination of enamel matrix derivative (EMD) with demineralized freeze
57 have also demonstrated the efficacy of using enamel matrix derivative (EMD) with demineralized freeze
58 of periodontal regeneration treatments with enamel matrix derivative (EMD), a commercial formulation
59 ontaining different concentrations of either enamel matrix derivative (EMD), amelogenin, platelet-der
60 m of this study is to evaluate the effect of enamel matrix derivative (EMD), tyrosine-rich amelogenin
67 enic (bone morphogenetic protein [BMP]-2 and enamel matrix derivative [EMD]) were compared to a contr
70 logenin fraction of porcine enamel matrix in enamel matrix derivative (i.e., AMEL) is not antibacteri
71 from the same surgical site was treated with enamel matrix derivative in a dampen dish and then added
72 n enhancement of hard tissue parameters when enamel matrix derivative is added to demineralized freez
73 ort the concept that clinical application of enamel matrix derivative may enhance periodontal wound r
74 ed flap plus acellular dermal matrix grafts, enamel matrix derivative, or collagen matrix led to the
75 tudy was to compare the clinical efficacy of enamel matrix derivative placed under a coronally advanc
77 ve tissue grafts (SCTGs), matrix grafts, and enamel matrix derivative protein (EMD) procedures were s
78 A recent study suggests that the addition of enamel matrix derivative to demineralized freeze-dried b
79 he results of this study, the application of enamel matrix derivative to denuded root surfaces receiv
80 of a commercially prepared embryonic porcine enamel matrix derivative to induce new bone formation in
83 se histologic sections strongly suggest that enamel matrix derivative works in a biomimetic fashion b
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