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E Hopp

Publications and source records attributed to E Hopp.

3 recordsLinked to original sources

Ligament injuries associated with tibial plateau fractures.

Thirty-nine patients with tibial plateau fractures and concomitant ligament injury were evaluated at least one year after injury. Ligamentous injury was determined by stress roentgenograms, plain roentgenograms, operative findings, and Pelle-grini-Stieda's ossification. There were 22 isolated medial collateral, eight lateral collateral, one isolated anterior cruciate, and eight combined ligament injuries. All types of tibial plateau fractures were associated with ligamentous injury, although split compression and local compression were most common. Twenty patients (Group 1) did not have operative repair of the injured ligaments, and 19 patients (Group 2) had primary repair of the injured ligaments. Open reduction and internal fixation of the plateau fracture(s) were performed in 13 patients in Group 1 and 19 patients in Group 2. Follow-up evaluation (100-point scale), including subjective, functional, and anatomic factors, revealed 12 excellent and good, four fair, and three poor results in the 19 patients with ligamentous repair. There were ten excellent and good, two fair, and eight poor results in those without ligament repair. Ten of the 12 patients with 10 degrees or more of instability had poor results. These poor results included five unrepaired medial collateral ligaments, two unrepaired lateral collateral ligaments, and three patients with cruciate ligament injury. This study confirms the view that instability is a major cause of unacceptable results in tibial plateau fractures. Operative repair of medial and lateral collateral ligaments, with appropriate treatment of the bony plateau fracture, may reduce late instability and may improve overall morbidity in these concomitant injuries. Cruciate ligament injury associated with a tibial plateau fracture carries a poor prognosis.

Adolescent

Postdecompression lumbar instability.

In the last two decades, the concept of spinal stenosis and its treatment by surgical decompression has been widely accepted. Complications such as olisthy, disc rupture, facet fracture, and intractable back pain began to appear postoperatively, suggesting instability as their cause. A retrospective study of 344 patients treated surgically for lumbar stenosis revealed a 17% reoperation rate for complications resulting from obvious or suspected instability. Sixteen cases of postdecompression olisthy, 14 cases of fresh disc herniation, and 27 cases of intractable back pain required further surgery. Preoperative indicators of potential instability are degenerated discs as evidenced by traction spurs or diminished disc height, olisthy, and scoliosis or asymmetrically narrowed discs. Total facetectomy and pars excision at surgery destabilize the spine and must be added to the preoperative risk factors for instability. Calcified annulus, capsule and ligamentum flavum, or complete disc resorption may offer some protection from postoperative instability. The level of instability may be preselected by the proximity to the intercrestal line. It is recommended that during surgical decompression for spinal stenosis, the posterior elements be spared as much as possible to avoid instability after surgery. Factors suggesting instability noted preoperatively or decompression which produces instability suggest that fusion should be combined with decompression. Spinal fusion is the treatment for postoperative instability.

Adult