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Biomedical subjects

W G Paprosky

Publications and source records attributed to W G Paprosky.

At least 19 recordsLinked to original sources

Periprosthetic femoral fractures treated with a long-stem cementless component.

Periprosthetic femoral fractures can be a difficult management problem. Proximal femoral fractures with a loose component are managed best with revision arthroplasty. We reviewed the midterm follow-up of 14 proximal femoral fractures managed with a long-stem extensively porous-coated femoral component. The average follow-up in this series was 8.2 years (minimum, 5.3 years). Fractures were treated with open reduction and internal fixation, supplemental cortical strut grafting when required, and a canal-filling implant. All fractures achieved union with an average time to union of 4 months. There have been no component failures requiring revision. Twelve prostheses achieved stable bone ingrowth, 1 component showed stable fibrous ingrowth, and 1 component was not stable but was not symptomatic enough to warrant revision.

Arthroplasty, Replacement, Hip↗

Component removal in revision total hip arthroplasty.

One of the primary steps in revision hip arthroplasty is the extraction of retained components before surgical reconstruction. In revision arthroplasty, the removal of well-fixed components and cement can be extremely demanding, time consuming, and damaging to the remaining host bone. The aims of the current study were to examine the numerous operative techniques used during extraction of acetabular and femoral components and review the results of revision hip arthroplasty after cementless component removal. A review of 157 acetabular components and 113 femoral components removed from 219 patients during hip revision arthroplasty between 1985 and 2000 was done. The average age of the patients was 64.3 years. The average followup was 5 years (range, 0.7-12.5 years). An extended proximal femoral osteotomy was done in 37 (33%) of the femoral revisions. There were 14 (5%) acetabular failures for which the patients required reoperation. There were no femoral rerevisions. Complications included dislocation (6% after acetabular revision and 9% after femoral revision), infection (6%), femoral fracture (6%), hematoma (3.5%), acetabular fixation failure (2.5%), and femoral osteolysis (1%). The removal of cemented and well-fixed porous-coated implants can be done with adequate preoperative planning and a thorough knowledge of numerous implant removal techniques.

Acetabulum↗

Minimum 10-year-results of extensively porous-coated stems in revision hip arthroplasty.

Obtaining predictable, stable fixation of revision femoral implants is important for the long-term success of revision hip arthroplasty. The authors report on minimum 10 years clinical and radiographic followup of 170 patients with extensively coated cementless revision femoral components. With a range of followup of 10 to 16 years and a mean of 13.2 years, a survivorship of greater than 95% was reported. Clinically, the average Postel-D'Aubigne pain and walking score improved from a preoperative score of 5.4 points to 10.8 points postoperatively. Eighty-two percent of the hips had radiographic evidence of a bone-ingrown prosthesis and 13.9% had evidence of stable fibrous fixation. Four percent of stems were unstable as seen on radiographs. Six stems were revised to larger extensively coated stems and one stem is causing pain and is unstable but has yet to be revised. The overall mechanical failure rate was 4.1%. Stress shielding was greatest in patients with stems larger than 16.5 mm and in osteoporotic bone (Dorr Type C). Nine percent of patients had significant thigh pain including all of the patients with unstable stems. In the presence of bone loss in the proximal metaphyseal region of the femur, fixation of the femoral component is predictable when optimizing prosthetic-bone fit in the diaphyseal region of the femur using an extensively coated femoral component.

Acetabulum↗

High rate of failure of allograft reconstruction of the extensor mechanism after total knee arthroplasty.

BACKGROUND: Disruption of the extensor mechanism is an uncommon but devastating complication of total knee arthroplasty. Several techniques for reconstruction of the extensor mechanism after total knee arthroplasty have been reported, but we do not know of any study in which the results of one group's method were corroborated by a second group using the same technique. In the present series, we evaluated the results of reconstruction of the extensor mechanism with use of allograft according to the method described by Emerson et al. METHODS: Seven reconstructions of the extensor mechanism with use of a bone-tendon-bone allograft were performed with the technique of Emerson et al. in six patients. The patients were evaluated before and after the operation. The knee score according to the system of The Hospital for Special Surgery, evidence of an extensor lag, use of walking aids, and the ambulatory status of each patient were recorded. The patients were also asked about, and the medical records were reviewed for, episodes of falling related to weakness of the quadriceps after the reconstruction. The mean duration of follow-up was thirty-nine months (range, six to 115 months). As these reconstructions often fail early, the minimum duration of follow-up was six months. RESULTS: All seven reconstructions were rated as clinical failures on the basis of a persistent or recurrent extensor lag of more than 30 degrees. All but one patient needed an assistive device full time for walking, and four patients (five knees) had at least one documented episode of falling that was due to giving-way of the affected knee. Four of the reconstructions were revised; one revision was performed with use of another extensor mechanism allograft and three were performed with use of a medial gastrocnemius rotation flap. The other three clinical failures had not been revised at the time of writing. At the time of the most recent follow-up (or at the time of revision of the extensor reconstruction), the mean extensor lag was 59 degrees and the mean knee score was 52 points (a poor result). CONCLUSIONS: Undertensioning of the allograft reconstruction at the time of the operation and attenuation of the allograft both may have played a role in the inability of the patients to regain active extension of the knee postoperatively. Alternative techniques for reconstruction of the extensor mechanism or modifications of this technique should be considered in the treatment of this difficult problem.

Accidental Falls↗

Metal release in patients who have had a primary total hip arthroplasty. A prospective, controlled, longitudinal study.

UNLABELLED: There is an increasing recognition that, in the long term, total joint replacement may be associated with adverse local and remote tissue responses that are mediated by the degradation products of prosthetic materials. Particular interest has centered on the metal-degradation products of total joint replacements because of the known toxicities of the metal elements that make up the alloys used in the implants. We measured the concentrations of titanium, aluminum, cobalt, and chromium in the serum and the concentration of chromium in the urine of seventy-five patients during a three-year prospective, longitudinal study. Twenty patients had had a so-called hybrid total hip replacement (insertion of a modular cobalt-alloy femoral stem and head with cement and a titanium acetabular cup without cement), fifteen had had insertion of an extensively porous-coated cobalt-alloy stem with a cobalt-alloy head and a titanium-alloy socket without cement, and twenty had had insertion of a proximally porous-coated titanium-alloy stem with a cobalt-alloy head and a titanium socket without cement. The remaining twenty patients did not have an implant and served as controls. The results of our study showed that, thirty-six months postoperatively, patients who have a well functioning prosthesis with components containing titanium have as much as a threefold increase in the concentration of titanium in the serum and those who have a well functioning prosthesis with cobalt-alloy components have as much as a fivefold and an eightfold increase in the concentrations of chromium in the serum and urine, respectively. The predominant source of the disseminated chromium-degradation products is probably the modular head-neck junction and may be a function of the geometry of the coupling. Passive dissolution of extensively porous-coated cobalt-alloy stems was not found to be a dominant mode of metal release. CLINICAL RELEVANCE: Increased concentrations of circulating metal-degradation products derived from orthopaedic implants may have deleterious biological effects over the long term that warrant investigation. This is a particularly timely concern because of recent clinical trends, including the reintroduction of metal-on-metal bearing surfaces and the increasing popularity of extensively porous-coated devices with large surface areas of exposed metal. Accurate monitoring of the concentrations of metal in the serum and urine after total hip replacement also can provide insights into the mechanisms of metal release. Our findings suggest that fretting corrosion at the head-neck coupling is an important source of metal release that can lead to increased concentrations of chromium in the serum. Determinations of the concentrations of metal in the serum and urine may be useful in the diagnosis of patients who are symptomatic after a total joint replacement as increased levels are indicative of at least one mode of mechanical dysfunction (for example, fretting corrosion) of the device.

Adult↗

Cementless femoral design concerns. Rationale for extensive porous coating.

In the early 1980s increased interest in proximally porous coated stems was sparked by first generation cemented stem failures in young patients and concerns with extensively porous coated cementless stems regarding thigh pain and stress shielding. As a result, various proximally porous coated stems were produced, each with differing clinical results. Using 5-year minimal followup as a cut off, the evolution of proximally porous coated stems during the years is presented and compared with the long term results obtained with extensively porous coated stems. Problems with some of the early proximally coated designs have been reported in the literature. Despite subsequent design modifications, the modern proximally coated stem has not eliminated thigh pain or stress shielding. Although some of the proximally porous coated stems have had good results, the question whether the push for proximally coated femoral stems resulted in significant clinical improvement versus the long term results of extensively porous coated stems remains.

Aged↗

5- to 13-year follow-up study on cementless femoral components in revision surgery.

The 5- to 13-year follow-up data on 297 cementless revision arthroplasties with extensively coated components (Anatomic Medullary Locking femoral component, DePuy, Warsaw, IN) are reported. A basic classification of the femoral defects was developed. All patients were evaluated clinically and radiographically at a minimum of 60 months. Clinically, the average Postel-d'Aubigné score improved from 4.8 before to a 10.2 after surgery. Definite radiographic instability was noted in seven hips. Five patients were symptomatic and were revised. The mechanical failure rate was 2.4%. The overall complication rate was 5.7%, with a 2.6% dislocation rate. In the presence of bone loss in the proximal metaphyseal region of the femur, fixation of the femoral component is best achieved in the diaphyseal region of the femur using an extensively coated femoral component.

Acetabulum↗

Extensively coated femoral components in young patients.

A review of 174 hips in 154 patients younger than 50 years of age who underwent primary total hip arthroplasty with a cementless acetabular component and an extensively coated femoral component done by one surgeon was performed to determine whether this method of fixation improves the results of previously reported comparable series using different methods of fixation. The average age was 37.6 years. The average followup was 8.3 years (range, 2-13 years). Eighty-eight hips had at least 10 years followup. Sixteen (9%) hips had severe stress shielding. There were 13 (7.5%) acetabular failures. Of 144 porous coated cups, three were revised for wear and one for dislocation. Another was revised 11 years postoperatively for late loosening secondary to catastrophic acetabular lysis. Excluding the bipolar and threaded components (30 hips), five (3.4%) porous coated cups were revised for failure. Of the 174 fully coated stems, 99.4% had stable fixation, 167 (96%) were ingrown, six (3.4%) had stable fibrous fixation, and one (0.6%) was unstable. Two (1.1%) femoral stems were revised. The total rate of osteolysis was 4%. Cementless extensively porous coated stems and porous coated acetabuli give excellent lasting results in young patients.

Acetabulum↗

Extended proximal femoral osteotomy. A new technique for femoral revision arthroplasty.

An osteotomy technique for removal of distally fixed cemented and cementless femoral components is described. The anterolateral proximal femur is cut for one third of its circumference, extended distally, and levered open on an anterolateral hinge of periosteum and muscle. This creates an intact muscle-osseous sleeve composed of the gluteus medius, greater trochanter, anterolateral femoral diaphysis, and vastus lateralis, and exposes the fixation surface as well as distal cement. This technique combines the advantages of an extremely wide exposure of component fixation surfaces and preservation of soft tissue attachments to cut bone. In addition, it allows alteration of the proximal femur to facilitate accurate and safe distal cement removal and canal machining under direct vision. The possibility of placing the component in varus is eliminated. The proximal femur is allowed to conform more accurately to the revision prosthesis, a weakened or damaged trochanter is protected from iatrogenic injury, and soft tissue tension can be adjusted. The osteotomy is then repaired with cerclage wires or cables. The first 20 patients treated with this technique are reviewed. Excellent cement and component removal and optimal revision component implantation were obtained with no change in postoperative regimen and reliable healing.

Adult↗