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Biomedical subjects

T Karaharju-Suvanto

Publications and source records attributed to T Karaharju-Suvanto.

5 recordsLinked to original sources

The effect of gradual distraction of the mandible on the sheep temporomandibular joint.

The effect of gradual distraction of the mandibular ramus on the condylar process of the temporomandibular joint (TMJ) was studied in 17 growing sheep. Gradual lengthening affected both operated and contralateral sides. An enhancement of the endochondral ossification was noticed with marked osteoblastic activity between the cartilaginous layer and the bone formed. The cartilage was thinner and the bone structure more dense than in nonoperated controls, and woven bone predominated. These changes seemed to be partly reversible in the long term.

Animals↗

Cephalometric changes after gradual lengthening of the mandible: an experimental study in sheep.

Gradual distraction after osteotomy has been used both clinically and experimentally to lengthen the mandible. In this experimental study in sheep, the changes in dimensions after osteotomy and gradual distraction were analysed by means of cephalometry. There was a strong correlation between the amount and duration of distraction and the increase in length of the mandible. The difference in length between the operated and control sides persisted for up to 1 year. It was concluded that new bone was deposited and that the increase in length of the mandible was real and permanent.

Animals↗

Distraction bone healing.

Bone formation by distraction was studied using three different experimental models: (1) Physeal distraction of the sheep radius was performed in 20 animals. (2) Distraction after osteotomy of the radius was carried out in 39 sheep. (3) Mandibular distraction after osteotomy was performed in 17 sheep. Formation of the organic matrix and osteogenesis were studied by radiographic, histologic, and biochemical methods as well as by electron microscopy. The mode of osteogenesis was essentially similar in all of these distraction models. Bone formation was preceded by organization of the collagenous matrix in the distraction area. In the beginning of the distraction, the gap was composed of a heterogeneous cell population, with large polymorphic fibroblast-like cells. The cells in the central part differentiated into fibroblasts, which remained functionally active as long as distraction proceeded. During physeal distraction, bone formed from the epiphyseal and metaphyseal sides as well as from the surrounding perichondrium. Also, in osteotomy distraction of both tubular bone and mandible, bone formed centripetally from the osteotomized bone ends toward the center of the gap. The organic matrix was composed almost solely of Type I collagen in the earliest stages, suggesting that the mode of osteogenesis differs from bone repair by fracture callus. The structure of the distracted segment was mainly lamellar trabecular. Corticalization of the lengthened bone segment occurred gradually after several months.

Animals↗

Distraction osteogenesis of the mandible. An experimental study on sheep.

Distraction bone healing has been studied in long bones but there are only few experiments reported in relation to the mandible. The histological pattern of the healing process after mandibular distraction is described. After osteotomy the mandibles of 17 growing sheep were lengthened by gradual distraction using an external fixation device. The follow-up varied from 0 to 52 weeks. The results indicate that bone healing in mandibles is principally the same as in long bones. Four phases can be observed during the repair process: 1) formation of collagen aligned in the direction of distraction, 2) bone formation over the collagen template, 3) bone union across the distraction gap, and 4) remodelling of the lengthened segment. Some increased osteoblast activity was also seen in the control side.

Animals↗

Mandibular distraction. An experimental study on sheep.

In a series of 17 growing sheep (aged 13.5-19 weeks) the recently developed external fixation frame permitting gradual distraction, was tested. The frame gives good stability during distraction. Mandibular osteotomy was performed transversely in the middle of the ramus, under general anaesthesia, with an oscillating saw. Using distraction by approximately 1 mm per day, lengthening of the mandibular ramus was achieved. X-ray analysis showed all the distracted osteotomies to have healed in 25 days, showing new bone formation in the distraction gap. The pattern of radiological healing was graded according to the phase of consolidation. With this method it appears to be possible to lengthen the mandible without transplantation of additional bone.

Animals↗