Jove
Visualize
Contact Us
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies

Filters

David D Hile

Showing results (1-10 of 12) with videos related to

Pageof 2
Sort By:
Drug Delivery|March 4, 2005
Solvent-free protein encapsulation within biodegradable polymer foamsDavid D Hile, Michael V Pishko
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|September 16, 2004
Prediction of resorption rates for composite polylactide/hydroxylapatite internal fixation devices based on initial degradation profilesDavid D Hile, Stephen A Doherty, Debra J Trantolo
Bio-Medical Materials and Engineering|May 25, 2005
An injectable porous poly(propylene glycol-co-fumaric acid) bone repair material as an adjunct for intramedullary fixationDavid D Hile, Michael P Kowaleski, Stephen A Doherty, et al.
European Spine Journal : Official Publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society|September 1, 2005
A poly(propylene glycol-co-fumaric acid) based bone graft extender for lumbar spinal fusion: in vivo assessment in a rabbit modelDavid D Hile, Frank Kandziora, Kai-Uwe Lewandrowski, et al.
Tissue Engineering|March 11, 2003
Quantitative measures of osteoinductivity of a porous poly(propylene fumarate) bone graft extenderKai-Uwe Lewandrowski, David D Hile, Benjamin M J Thompson, et al.
The International Journal of Oral & Maxillofacial Implants|April 23, 2003
Evaluation of a porous, biodegradable biopolymer scaffold for mandibular reconstructionDebra J Trantolo, Stephen T Sonis, Benjamin M J Thompson, et al.
The Journal of Oral Implantology|May 6, 2005
Dimensional stability of the alveolar ridge after implantation of a bioabsorbable bone graft substitute: a radiographic and histomorphometric study in ratsDavid D Hile, Stephen T Sonis, Stephen A Doherty, et al.
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|June 17, 2003
Mechanical evaluation of a porous bone graft substitute based on poly(propylene glycol-co-fumaric acid)David D Hile, Carl Kirker-Head, Stephen A Doherty, et al.
Tissue Engineering|January 25, 2003
Porous poly(propylene fumarate) foam coating of orthotopic cortical bone grafts for improved osteoconductionKai-Uwe Lewandrowski, Shrikar Bondre, David D Hile, et al.
Journal of Neural Engineering|May 7, 2005
Enhanced peripheral nerve regeneration through a poled bioresorbable poly(lactic-co-glycolic acid) guidance channelDavid J Bryan, Jin Bo Tang, Stephen A Doherty, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Drug Delivery|March 4, 2005
Solvent-free protein encapsulation within biodegradable polymer foamsDavid D Hile, Michael V Pishko
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|September 16, 2004
Prediction of resorption rates for composite polylactide/hydroxylapatite internal fixation devices based on initial degradation profilesDavid D Hile, Stephen A Doherty, Debra J Trantolo
Bio-Medical Materials and Engineering|May 25, 2005
An injectable porous poly(propylene glycol-co-fumaric acid) bone repair material as an adjunct for intramedullary fixationDavid D Hile, Michael P Kowaleski, Stephen A Doherty, et al.
European Spine Journal : Official Publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society|September 1, 2005
A poly(propylene glycol-co-fumaric acid) based bone graft extender for lumbar spinal fusion: in vivo assessment in a rabbit modelDavid D Hile, Frank Kandziora, Kai-Uwe Lewandrowski, et al.
Tissue Engineering|March 11, 2003
Quantitative measures of osteoinductivity of a porous poly(propylene fumarate) bone graft extenderKai-Uwe Lewandrowski, David D Hile, Benjamin M J Thompson, et al.
The International Journal of Oral & Maxillofacial Implants|April 23, 2003
Evaluation of a porous, biodegradable biopolymer scaffold for mandibular reconstructionDebra J Trantolo, Stephen T Sonis, Benjamin M J Thompson, et al.
The Journal of Oral Implantology|May 6, 2005
Dimensional stability of the alveolar ridge after implantation of a bioabsorbable bone graft substitute: a radiographic and histomorphometric study in ratsDavid D Hile, Stephen T Sonis, Stephen A Doherty, et al.
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|June 17, 2003
Mechanical evaluation of a porous bone graft substitute based on poly(propylene glycol-co-fumaric acid)David D Hile, Carl Kirker-Head, Stephen A Doherty, et al.
Tissue Engineering|January 25, 2003
Porous poly(propylene fumarate) foam coating of orthotopic cortical bone grafts for improved osteoconductionKai-Uwe Lewandrowski, Shrikar Bondre, David D Hile, et al.
Journal of Neural Engineering|May 7, 2005
Enhanced peripheral nerve regeneration through a poled bioresorbable poly(lactic-co-glycolic acid) guidance channelDavid J Bryan, Jin Bo Tang, Stephen A Doherty, et al.
Pageof 2