PubMed HealthSearch

Biomedical subjects

J W McCartney

Publications and source records attributed to J W McCartney.

14 recordsLinked to original sources

Cantilever rests: an alternative to the unsupported distal cantilever of osseointegrated implant-supported prostheses for the edentulous mandible.

Mandibular prostheses supported by implants placed between the mandibular foramina restrict the length of the distally cantilevered components to minimize torque-related stress to the supporting implants. Additional posterior implants used as abutments with rigid attachments better distribute occlusal forces and reduce cantilever torque to the anterior implants. Because of the phenomenon of mandibular flexure, these posterior implants could be subjected to stress-induced microdamage to the bone-implant interface. The use of posterior abutments for support of the cantilever without connection reduces the potential hazard of stress-induced microdamage.

Bite Force

Osseointegrated implant-supported and magnetically retained ear prosthesis: a clinical report.

Osseointegrated implants were placed in the temporal bone and were used to retain attachments for an ear prosthesis. A screw-retained magnetic alloy casting was used to retain an acrylic resin magnet keeper, to which a silicone ear prosthesis was attached. The keeper provided vertical support for the prosthesis and facilitated orientation for prosthesis insertion. Stability and retention were provided without the use of adhesives.

Ear

Osseointegrated implant location symbol.

Symbolic implant location identification will accurately describe in an abbreviated, concise manner the specific location of reference. Use of the symbol conveniently simplifies record documentation, data tabulation, and professional correspondence.

Communication

The orbital shell: an aid in positioning the ocular component and verifying margin contours for oculofacial prostheses.

The correct location of the orientation (conversational gaze) of the ocular component is vital to esthetically pleasing oculofacial prostheses. This location should be verified before time and energy are spent on sculpturing the oculofacial prosthesis. A technique is described that uses a clear acrylic resin shell as a matrix and Play-doh material as a support medium to position and support the ocular component to verify the orientation. In addition, the thin acrylic resin shell can be used to refine border inaccuracies that may exist clinically.

Acrylic Resins