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Percutaneous fixation of scaphoid fractures. An anatomical study.

Percutaneous scaphoid fracture fixation has many advantages over the open method of fixation. We describe the anatomical basis for a safe percutaneous approach. Cannulated screws were inserted into 32 cadaveric scaphoids through 1 cm palmar incisions under fluoroscopic control. We then measured the distance between the entry point in the scaphoid and important local neurovascular structures. We also measured the angle of entry of the guide wire in two planes. The mean distance of the entry point from the main radial artery was 14 mm (range, 7-24 mm); from the radial nerve 19 mm (range, 7-35 mm); from the recurrent branch of the median nerve 29 mm (range, 14-45 mm); and from the superficial branch of the radial artery 5 mm (range, 0-8 mm) The mean radial angle of insertion was 34 degrees and the mean palmar angle of insertion was 58 degrees. Percutaneous fixation of scaphoid fractures puts the superficial palmar branch of the radial artery at risk. We recommend a 1 cm incision centred over the scaphotrapezial joint and dissection under direct vision to the entry point in the scaphoid rather than a completely percutaneous approach.

Bone Screws↗

Fixation failure in femoral neck fractures.

Fixation of femoral neck fractures is associated with a higher incidence of complications than any other fracture. The rates of nonunion and avascular necrosis with open reduction and internal fixation continue to be unacceptably high. These complications are the main reason for resorting to primary endoprosthetic replacement of the femoral head in the presence of displaced fractures in elderly patients. However, with the increasing life span of the patients with these prostheses, late complications of endoprosthetic replacement of the femoral head are becoming significant. With these complications, it may be argued that the most cost-effective solution to the femoral neck fracture in the majority of patients is open reduction and internal fixation, with elective conversion, when necessary, to total hip arthroplasty in patients who have a complication. Because the literature does not contain a systematic review of reasons for failure of internal fixation, the authors will attempt to review the common means of failure of internal fixation in young and older patients in an attempt to better understand and prevent these complications.

Adult↗

Physical and biological aspects of fracture healing with special reference to internal fixation.

Fracture healing is a repair process of a mechanical discontinuity loss of force transmission, and pathological mobility of bone. Through a sequence of changes of tissue development and geometry, the original structural integrity is restored. The recovery of rigidity and strength is related to tissue differentiation. In unified theory of non-operative and operative stabilized fractures, the mechanics of primary bone healing involves a complex interplay of physical and biological factors. The different patterns of bone repair respond to physical influences including strain tolerance.

Animals↗

Fixation of metacarpal fractures using absorbable hemi-cerclage sutures.

We retrospectively reviewed the use of biodegradable hemi-cerclage sutures in the treatment of 79 metacarpal fractures in 66 patients. The polyglycolic acid hemi-cerclages achieved sufficient fracture fixation to permit early motion exercises, but fractures were also immobilized for a mean of 3.7 (range, 1.5-6) weeks postoperatively, during which time physiotherapy was given. Adequate bony stability was achieved after a mean of 4.5 (range, 3.5-7) weeks and fracture redisplacement occurred in only one case.

Absorption↗

Screw fixation of scaphoid fractures: a biomechanical assessment of screw length and screw augmentation.

PURPOSE: To assess the biomechanical stability relative to screw length and K-wire augmentation in scaphoid fracture fixation using a flexibility testing protocol and cadaver scaphoids whose soft tissue attachments remained undisturbed. Our hypothesis was 2-fold: increasing screw length and augmenting fixation with a K-wire would improve fracture fragment stability, individually and in combination. METHODS: Flexion and extension loading applied through wrist tendons was performed on 10 cadaveric wrists after volar wedge scaphoid osteotomy and internal fixation. Each wrist participated in 3 experimental groups: short screw, long screw, and long screw augmented with a K-wire transfixing the distal pole to the capitate. Interfragmentary displacements were measured. RESULTS: Analysis of variance showed significantly less fracture fragment motion with longer screws than with short screws in 4 of the 6 displacement axes. The flexion/extension axis rotations for the short, long, and augmented long-screw groups were 8.2 degrees +/- 4.8 degrees, 3.9 degrees +/- 1.6 degrees, and 1.8 degrees +/- 1.3 degrees, respectively. Although K-wire augmentation reduced displacement of the fracture fragments it did not decrease interfragmentary motion significantly when compared with the long-screw group. CONCLUSIONS: Under physiologically applied loading of cadaveric wrists with unstable scaphoid waist fractures the long screw provided significantly greater stability than the short screw. Although K-wire augmentation in the long-screw group did improve stability the improvements were not significant. Based in part on the biomechanical data from this study it is our recommendation that the optimally placed screw for scaphoid fracture fixation stability is a long screw positioned down the central axis of the scaphoid deep into subchondral bone.

Aged↗

Screw fixation of fractures of the neck of the talus using a posterior approach.

Seven fractures of the neck of the talus were internally fixed using a lag screw inserted through the posterior tubercle. This followed closed reduction under fluoroscopic control in five cases with moderate displacement, whereas open reduction was performed in two cases with dislocation of the talar body. The fractures healed in 2 to 3 1/2 months. Clinical results, evaluated between 2 and 7 years after fracture, were excellent in three cases and good in four. Osteonecrosis of the talar body occurred in two cases: in one it was followed by revascularization without bone collapse; in the other it was followed by partial collapse of the body. Although the method described does not give full protection against osteonecrosis, it appears to have definite advantages over conventional methods of treatment.

Adolescent↗

Subcapital fracture complicating fixation of an intertrochanteric fracture from osteomyelitis.

Subcapital fractures after open reduction and internal fixation of intertrochanteric hip fractures have not previously been attributed to osteomyelitis. We report a unique case of a 63-year-old man with isolated subclinical osteomyelitis of the femoral neck causing ischemic necrosis and subcapital fracture after sliding screw plate fixation of an ipsilateral intertrochanteric fracture.

Anti-Bacterial Agents↗

A biomechanical comparison of locking and nonlocking plates for the fixation of calcaneal fractures.

BACKGROUND: Locking plate systems have been developed in an attempt to increase the strength of fracture fixation and, in so doing, allow earlier mobilization and rehabilitation. The purpose of our study was to compare the mechanical integrity of the locking plate and traditional nonlocking plate fixation for calcaneal fractures in a cadaver model. Our hypothesis was that the locking plate construct provides stronger fixation than the nonlocking plate construct. METHODS: We created a Sanders type-IIB fracture in 10 pairs of fresh-frozen cadaver feet (bone mineral density, 0.50 +/- 0.14 g/cm2 age, 69 +/- 16 years). One foot of each pair was fixed with a nonlocking calcaneal plate (Synthes, Paoli, PA), and the contralateral foot was fixed with the Locking Calcaneal Plate (Synthes, Paoli, PA). The specimens then were cyclically loaded through the tibia from 0 to 700 N at 1 Hz on a materials testing machine to simulate weightbearing. Fragment displacement was measured with a three-dimensional kinematic analysis system. Significance was set at p < 0.05. RESULTS: There was no significant difference between the two plating systems with respect to the mean (+/- SD) number of cycles to failure (locking plate, 3261 +/- 2355; nonlocking plate, 2271 +/- 2465). CONCLUSION: In a cadaver model of type-IIB calcaneal fractures, locking plate fixation did not provide a biomechanical advantage over traditional nonlocking plate fixation.

Aged↗