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Biomedical subjects

W M Locante

Publications and source records attributed to W M Locante.

3 recordsLinked to original sources

The nonfunctional immediate provisional in immediate extraction sites: a technique to maximize esthetics.

Patients demand the esthetic replacement of missing teeth in an economic and expedient manner. When teeth are extracted, or have been missing for some time, the resorption process often limits the opportunity to replace those missing teeth with dental implants. The technique presented allows the restoration of missing teeth while maintaining the hard and soft tissues. It also prevents the patient from having to wear a removable appliance during the healing phase, and this maximizes the patient's comfort and esthetics. The new method described here has been used in 55 patients with a success rate of over 98%.

Adolescent↗

LaminOss immediate-load implants: I. Introducing osteocompression in dentistry.

Osteocompression is a physiologic principle that has been clinically practiced in orthopedics since the early 1900s. In dentistry, controlled functional osteocompression is the compaction created by the tapping procedure and bone lamination achieved by a sinusoidal screw implant design providing physiologic stimulation due to streaming potentials. Functionally, there is always an applied force acting on bone modified by an implant design, and there is always a resisting force acting on the implant through the viscoelastic properties of trabecular structure. Through biomechanical events in bone, osseous tissue can be stimulated within physiologic limitations by implant design to develop along the lines of compressive forces dependent on the implant load-bearing area to sustain equilibrium. At the cellular level, these biomechanical events act on the cells through a phenomenon known as streaming potentials. This is an electrochemical potential created by the flow of extracellular fluid past a positively charged cell surface. Streaming potentials have a stimulating effect on osteoblasts and osteocytes. This stimulation under acceptable physiologic limits translates to an ordered deposition of osseous tissue that aids in the support of these compressive forces. As a sinusoidal thread design, the LaminOss osteocompressive immediate-load implant (Impladent Ltd, Holliswood, NY) has shown in animal histologic observation 2.5 times greater bone lamination achieved by the function of osteocompression due to the benefits of streaming potentials created by the LaminOss implant design. No evidence of bone necrosis was observed by any of the eight implants.

Alveolar Process↗

LaminOss immediate-load implants: II. Clinical considerations of osteocompression.

The sinusoidal thread design of the LaminOss (Impladent Ltd, Holliswood, NY) osteocompressive immediate-load implant is structured with minimal shear interface to function in horizontal planes and stimulate bone growth by the action of streaming potentials at the implant thread surface area. This implant design, when used with a unique surgical instrumentation technique, allows maximum bone to be molded and compacted circumferentially around the sinusoidal implant threads. The surgical technique of bone lamination around larger implant horizontal planes (or load-bearing areas) creates a stable foundation for placing this implant into immediate function. For the past 10 years this surgical procedure has provided patients with immediate function the day of implant placement. The clinical advantage of immediate implant loading enhances care acceptance and patient satisfaction.

Bite Force↗