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Biomedical subjects

F T Lake

Publications and source records attributed to F T Lake.

8 recordsLinked to original sources

Transmission electron microscopic and high voltage electron microscopic observations of the bone and osteocyte activity adjacent to unloaded dental implants placed in dogs.

The purpose of this report is to describe ultrastructural observations of the bone and associated tissues supporting 24 unloaded endosteal dental implants placed in mongrel dogs (canis familiaris). The following 3 specific areas of the supporting tissues were targeted: 1) the osteocyte populations; 2) the mineralized collagen fiber matrix of the bone; and 3) an electron dense interfacial deposit. To investigate these areas, transmission electron microscopy and high voltage electron microscopic (HVEM) protocols were emphasized. HVEM permitted stereologic observations. Further, all observations were obtained from undecalcified tissues obtained from animals with commercially available implants placed into the mandible. From the study we observed a mineralization pattern of the implant supporting bone that was similar to those events occurring naturally within the mandibular bone. Osteocyte morphology was similar whether the osteocytes were found well below the implant interface or close to the interface. Osteocytes within lacunae were routinely found close to the implant interface, often extending cellular processes through canaliculi to the bone-implant interface. At the interface, an electron dense deposit approximately 50 nm in thickness was often observed. In interfacial regions, densely mineralized collagen fibers were observed running primarily parallel to the implant surface. This dense mineralized tissue was separated from the interface by a mineralized, but finely fibrillar matrix of approximately 200 nm in thickness.

Animals

Correlative transmission electron microscopic and scanning electron microscopic observations of the tissues supporting endosteal blade implants.

Correlated scanning electron microscopic (SEM), routine transmission electron microscopic (TEM), and high-voltage transmission electron microscopic (HVEM) observations demonstrated that one-stage and two-stage endosteal blade-type implants were well-supported by mandibular tissues after five months of unloaded healing in dogs. Areas of the implants were apposed directly by mineralized tissues without any apparent interposed unmineralized connective tissue. Other areas of the implants were apposed by narrow areas of unmineralized tissue, often containing osteoblasts. These unmineralized areas were interposed between the implant and a supporting mineralized matrix. A healthy mix of tissues, which represented a dynamic osseous complex, supported these serviceable blade-type dental implants. This study, for the first time in the dental implant literature, utilizes HVEM stereology for evaluation of the bone-implant interface.

Alveolar Process

Simulated implant surgery in rabbit long bones: a descriptive study.

The objectives of this study were: (a) to observe and describe the variability of bone healing in implant receptor sites which were prepared in rabbit femurs by use of different surgical methods; and (b) to determine if the animal model which was used was suitable for the detection of differences in healing reactions in implant receptor sites which were prepared by different surgical methods. Three 3-mm-wide implant receptor sites were prepared in the right and left femurs of four large New Zealand white rabbits. The surgical parameters used in preparation of the different sites included: low speed with no irrigation (LSO); low speed with internal irrigation only (LSI); low speed with external irrigation only (LSE); high speed with no irrigation (HSO); or high speed with external irrigation only (HSE). The sites were randomized so that each animal had one of each type of site in either the right or left femur. A non-treated control site was located in each animal for comparison with experimental sites. The animals were killed at 7, 14, 21, and 28 days post-operatively. The resultant samples were fixed, embedded, sectioned, and stained with basic fuchsin and toluidine blue. The results indicated that this was probably not a suitable animal model, since no discernible differences were detected in the various healed sites.

Animals

Electron microscopy of bone response to titanium cylindrical screw-type endosseous dental implants.

This study investigated the undecalcified bone and enveloping tissues supporting commercially pure titanium one-stage and two-stage endosseous dental implants placed into the mandibles of adult mongrel dogs. Correlative light microscopy, transmission electron microscopy, and high-voltage transmission electron microscopy demonstrated a dynamic bone interface to the implants. Mineralized tissue was routinely observed within 20 to 50 nm from the implant interface, separated from the implant interface only by an electron-dense deposit. The densely mineralized collagen fiber matrix was oriented parallel to the implant interface, as were osteocytes that were found close to the interface. Osteocytic projections progressed through canaliculi, often directly to the implant interface. Unmineralized areas that appeared to have the potential for mineralization were also identified.

Alveolar Process

The effects of continuous direct current on the growth of the antler.

The long-term application of low levels of cathodal direct current to the growing deer antler produced abnormal branching patterns and antlers which grew in atypical directions. The experimental antlers were significantly reduced in length when compared to control antlers.

Animals

Bioelectric potentials associated with the growing deer antler.

Bioelectric potentials associated with the developing deer antler throughout its growth cycle can be correlated with the rate of longitudinal bone growth. Electrodes were connected to a high input impediance microvoltmeter, and potentials on the surface of antlers of mature deer were measured during the antler growth cycle. The reference electrode was placed at the base of the antler, while the recording electrode was placed at the antler tip or along the antler shaft. Antler length measurements were made during the growth cycle and longitudinal growth rates were determined. Growth rates and bioelectric potentials were compared for three specified periods during the antler growth cycle. The most negative potential was recorded from the antler tip. Furthermore, electronegativity increased as the rate of growth in length increased and decreased as the rate of growth in length decreased. The potentials reached isopolarity at the end of antler growth.

Action Potentials