David L Cochran
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Explore the profile of David L Cochran including associated specialties, affiliations and a list of published articles.
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139
Citations
2180
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Recent Articles
11.
Chang P, Luo H, Lin Z, Tai W, Chang C, Chang Y, et al.
J Formos Med Assoc
. 2020 Nov;
120(4):1100-1107.
PMID: 33191094
Background/purpose: Supracrestal ridge augmentation (SRA) is a major challenge for clinicians. This study investigated the efficacy of a 3D-printed (3DP) hydroxyapatite/poly(lactic-co-glycolic acid) (HA/PLGA) scaffold as a potential biologic for SRA....
12.
Chiang H, Cathy Tsai Y, Huang R, Weng P, Mau L, Nguyen T, et al.
Int J Oral Maxillofac Implants
. 2020 Sep;
35(5):900-909.
PMID: 32991639
Purpose: Citation-based metrics, such as the H-classics method, have been used as an indicator to assess academic performance in the scientific community. However, information addressing issues regarding self-citation, citation half-life,...
13.
Mungia R, Funkhouser E, Makhija S, Reyes S, Cohen R, Cochran D, et al.
J Am Board Fam Med
. 2020 Sep;
33(5):687-697.
PMID: 32989063
Purpose: To 1) quantify practitioner activities of the National Dental Practice-Based Research Network (Network) for which Continuing Education (CE) credits were received (study training, videos, webinars, meetings, and symposia); 2)...
14.
Huang R, Hsiao P, Mau L, Cathy Tsai Y, Cochran D, Weng P, et al.
J Oral Implantol
. 2020 Aug;
46(6):562-570.
PMID: 32838427
In terms of a novel scaffold with well good osteoinductive and osteoconductive capacity, melatonin (Mel) possesses positive effects on chemical linkage in scaffold structures, which may allow osteogenic differentiation. The...
15.
Chang P, Luo H, Lin Z, Tai W, Chang C, Chang Y, et al.
J Periodontol
. 2020 Aug;
92(3):428-435.
PMID: 32761906
Background: Three-dimensional (3D) printing has become an available technology to fabricate customized tissue engineering scaffolds with delicate architecture. This exploratory study aimed to evaluate the potential of a 3D-printed hydroxyapatite-based...
16.
Boller L, Jones A, Cochran D, Guelcher S
Int J Oral Maxillofac Implants
. 2020 May;
35(3):616-624.
PMID: 32406661
Purpose: This study was designed to test the hypothesis that compression-resistant (CR) scaffolds augmented with recombinant human bone morphogenetic protein-2 (rhBMP-2) at clinically relevant doses in a nonhuman primate lateral...
17.
Refai A, Cochran D
Int J Oral Maxillofac Implants
. 2020 May;
35(3):e27-e39.
PMID: 32406647
A number of significant advances (omics and bioengineering) now enable seamless stratification of patients according to their individual genotypes. This allows for more precise diagnoses coupled with patient phenotypes and...
18.
Oeschger C, Bosshardt D, Roehling S, Gahlert M, Cochran D, Janner S
Clin Oral Investig
. 2020 Feb;
24(10):3609-3617.
PMID: 32034546
Objectives: To evaluate the crestal bone response to a two-piece zirconia implant compared with a control titanium implant using periapical radiographs (PAs) and histometry. Materials And Methods: Thirty zirconia and...
19.
Cochran D, Jones A, Sugita R, Brown M, Guda T, Prasad H, et al.
Int J Oral Maxillofac Implants
. 2020 Jan;
35(1):39-51.
PMID: 31923288
Purpose: This study evaluated a novel injectable, self-setting, osteoconductive, resorbable adhesive that provides immediate implant stabilization. Materials And Methods: Twenty-six large canines had the mandibular second through fourth premolars and...
20.
Garrett P, Johnston G, Bosshardt D, Jones A, Sasada Y, Ong J, et al.
J Periodontol
. 2019 Sep;
91(4):516-523.
PMID: 31490010
Background: Little is known regarding the interaction of dental implant surface nanotubes and oral soft and hard tissues. The purpose of this study was to evaluate both histologically and radiographically...