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At least 19 recordsLinked to original sources

The use of power tools in the insertion of cortical bone screws.

Cortical bone screws are commonly used in fracture surgery, most patterns are non-self-tapping and require a thread to be pre-cut. This is traditionally performed using hand tools rather than their powered counterparts. Reasons given usually imply that power tools are more dangerous and cut a less precise thread, but there is no evidence to support this supposition. A series of experiments has been performed which show that the thread pattern cut with either method is identical and that over-penetration with the powered tap is easy to control. The conclusion reached is that both methods produce consistently reliable results but use of power tools is much faster.

Bone Screws

Design and testing of external fixator bone screws.

In external fixation, bone screw loosening still presents a major clinical problem. For this study, the design factors influencing the mechanics of the bone-screw interface were analysed and various experimental screws designed with the intention of maximizing the strength and stiffness of the inserted screw. Push-in, pull-out and bending tests were then carried out on the three experimental screws, and on two commercially available screws in both a synthetic material and in cadaveric bone; photoelastic tests on different screw threadforms were also performed. The results of the push-in and pull-out tests indicate that both the screw threadform and cutting head have a significant effect on the holding strength of the screw. The photoelastic tests show that most of the applied load is distributed over the first few threads closest to the load, and that the area between the thread crests is subjected to high shear stresses.

Biomechanical Phenomena

Optimizing bone screw pullout force.

Stability of internal fixation by plate and screw depends on the interface of bone and screw threads. Bone-screw thread design was tested in a synthetic bone model to determine maximum bone-screw pullout force. The model was confirmed to provide reproducible results in a clinically relevant range. Consistent material properties were reflected in the relatively small standard deviations in pullout force, which were less than 10% of mean values. As expected, major diameter was an important determinant of pullout force in a roughly linear manner. Pitch was important with a finer thread giving greater purchase. Minor diameter and the ratio of major to minor diameter had a small but significant effect on pullout force. This study was significant for establishing a good bone-screw testing model and suggesting important thread parameters in selecting or manufacturing a bone screw to optimize its holding power.

Biomechanical Phenomena

The Herbert bone screw: a ten year perspective.

It is now over ten years since the Herbert bone screw was first released in Australia. In 1984, Herbert and Fisher first published their experience with the use of this new bone screw in the management of scaphoid fractures. Since that time, there has been a growing interest in the technique and over 60 articles have appeared in the English literature. The purpose of this paper is to review and comment on the relevant publications as they relate to the biomechanical properties of the screw, to its use in the management of scaphoid fractures and to other applications in surgery of the hand.

Biomechanical Phenomena

[Osteosynthesis with bone screws in closed oblique and screw-like fractures of the long tubular bones].

295 patients subjected to screw osteosynthesis for closed oblique and screw-shape fractures of crural, brachial and antebrachial bones were under observation. The use of screws of a cylindrical form with a somewhat conus-like head and deep slit seems to be most rational for osteosynthesis. To apply screws properly two drills should be available. One should be equal to the diameter of a screw, the other-0.5 mm less. Following screw ostenosynthesis an adequate plaster dressing is applied for 2-3 months. The results of the treatment were good in 280 patients (95%) and poor-in 15 patients (5%). The causes of failure were as follows: improper indications to screw osteosynthesis, an early cessation of immobilization of an extremity in a plaster dressing, and too early loading on the extremity.

Adolescent

Biomechanical comparison of cannulated small bone screws: a brief follow-up study.

The compressive forces generated by the ASIF and Herbert small bone cannulated screws were measured in the laboratory with the use of simulated bones and a custom-designed load washer as a means of quantifying their fixation capabilities. Comparative data were also generated for the Herbert scaphoid bone screw and the ASIF 4 mm cancellous screw. The cannulated Herbert bone screw and the ASIF 4 mm cancellous screw were found to have nearly identical compression capabilities. Both generated compression forces approximately five times those of the Herbert scaphoid bone screw. The ASIF small cannulated screw demonstrated a compressive capacity 2 1/2 times that of the Herbert screw.

Biomechanical Phenomena

Arthrodesis of the ankle with cancellous-bone screws and fibular strut graft. Biomechanical analysis.

The stability of an arthrodesis with two cancellous-bone screws across the ankle joint was evaluated in eighteen ankles from fresh-frozen cadavera. Tibiotalar motion was recorded in response to the following loading modes: medial-lateral moment, plantar flexion-dorsiflexion moment, and internal-external tibial torque. The series of loading tests was performed with two cancellous-bone screws through the tibia into the talus and a lateral fibular strut graft fixed with a proximal and a distal screw. The tests were repeated after the strut graft was removed, and again after it had been reapplied. The amount of motion at the site of the arthrodesis was greatest with tibial torque and was least with medial-lateral bending; this was true for specimens with or without a fibular strut graft. Removal of the strut graft allowed increased tibiotalar motion for all modes of loading; increases in motion were far greater for specimens of poor bone quality.

Aged

[Standardization of implants shown by "bone-screws" (author's transl)].

The increasing use of orthopaedic implants makes international efforts of standardization with their objectives unification and benefit of the patient necessary and sufficient. In 1975 an ISO-Draft for "bone-screws" has been finished. To get experimental data there was a test series of breaking bone-screws of five producers by torsional stress. Comparable screws showed considerable differences. The control of conformity to standards gave partially distinct differences to the standard profile and different hardness values, what affects to the screws' security of twisting off.

Bone Screws

[Compression osteosynthesis with percutaneous bone screws--clinical aspects and radiographic findings].

In a previous paper (Jacobs 1976) the development of an apparatus was described which achieved a compression osteosynthesis through the use of percutaneous bone screws without encroaching on the area of the fracture. As indication for this procedure we consider the condition which is described under the synonyms "post-traumatic osteomyelitis", "osteitis" and "fracture infection". Clinical experience is described with consideration of technical measurements - for the first time in vivo measurements of interfragmental compression in the patient and X-ray findings.

Animals

Stabilization of a proximal femoral physeal fracture in a filly by use of cancellous bone screws.

A Salter-Harris type-II fracture of the proximal portion of the right femur in a 2-month-old filly was reduced and stabilized with three 6.5-mm-diameter, 100-mm-long cancellous bone screws through a dorsal approach to the right coxofemoral joint. The screws were removed after 11 months because the filly became lame in the affected limb. The surgical wounds dehisced despite preventive measures, most likely because of tightness of skin in the coxal region. Seven years after the original injury, the horse could perform vigorous paddock exercise without any disability. Early internal fixation of proximal femoral physeal fractures in foals can provide a good long-term prognosis.

Animals

Stability of an ankle arthrodesis fixed by cancellous-bone screws compared with that fixed by an external fixator. A biomechanical study.

Twenty-three fresh-frozen human specimens were subjected to ankle arthrodesis and fixation with two cancellous-bone screws. The specimens were then subjected to four newton-meters of manually applied tibial torque, plantar flexion-dorsiflexion moment, and medial-lateral bending moment; relative rotation between the tibia and the talus was recorded for each mode of testing. A Calandruccio triangular compression device was then applied to threaded pins penetrating the tibia and talus, the screws were removed, and the test sequence was repeated. Tibiotalar motions recorded with both systems of fixation were markedly affected by the quality of the bone. When less than 2 degrees of total tibiotalar rotation was recorded in response to four newton-meters of manually applied internal-external tibial torque, all specimens demonstrated less torsional rotation with the screw fixation than with the external fixator. The mean rotations produced by medial-lateral bending moment were equivalent for both systems of fixation. When torsional rotations with the use of screw fixation were greater than 2 degrees, all specimens demonstrated more torsional rotation with the screws than with the external fixator, and all but one specimen had more medial-lateral rotation with the screws than with the fixator. For applied plantar flexion-dorsiflexion moment, twenty-two of the twenty-three specimens demonstrated more rotation with the Calandruccio fixator than with the screws; this was due in part to motion permitted at the hinge points of the frame itself.

Aged

Three cancellous bone screws versus a screw-angle plate in the treatment of Garden I and II fractures of the femoral neck.

A consecutive clinical series of 33 patients with either an undisplaced (Garden I) or minimally displaced (Garden II) femoral neck fracture was randomly divided into two operative protocols. Half of the fractures were treated with three cannulated cancellous bone screws, while the other half were treated with a standard screw-angle plate device. After a mean follow-up of 2 years, 4 patients had died, while 20 of the remaining 29 hips showed excellent or good, 3 fair and 6 poor functional results. The three-screw fixation seemed to yield more technical complications as compared to the screw-angle plate fixation. However, the differences in functional end-results were of no clear statistical significance. We conclude that the screw-angle plate device gives acceptable results in this group of fractures. The use of cannulated hip screws may be more advantageous in the treatment of dislocated femoral neck fractures, where the torsional strength of fracture fixation and femoral head viability are more critical.

Adult