Short metaphyseal segments remaining after distal femoral tumor resection pose a unique challenge. Limb sparing options include a short stemmed modular prosthesis, total endoprosthetic replacement, cross-pin fixation to a custom implant, and allograft prosthetic composite reconstruction (APC). A series of patients with APC reconstruction were evaluated to determine functional and radiologic outcome and complication rates. Twelve patients were retrospectively identified who had a distal femoral APC reconstruction between 1994 and 2007 to salvage an extremity with a segment of remaining bone that was less than 20 centimeters in length. Seventeen APC reconstructions were performed in twelve patients. Eight were primary procedures and nine were revision procedures. Average f/u was 89 months. Twelve APC reconstructions (71%) united and five (29%) were persistent nonunions. At most recent followup 10 patients (83%) had a healed APC which allowed WBAT. One pt (8%) had an amputation and one pt (8%) died prior to union. Average time to union was 19 months. Four pts (33%) or five APC reconstructions (29%) required further surgery to obtain a united reconstruction. Although Distal Femoral APC reconstruction has a high complication rate, a stable reconstruction was obtained in 83% of patients.
Soft-tissue sarcomas are rare malignancies of mesodermal origin. Common sites of involvement include the extremities, trunk, retroperitoneum, and the head and neck. Soft-tissue sarcomas of the extremities and pelvis are the most relevant to the orthopaedic surgeon. The patient with extremity soft-tissue sarcoma typically presents with a painless, enlarging mass. Advanced imaging techniques and biopsy, which are best done at tertiary referral centers, usually confirm the diagnosis. Factors such as sarcoma size, location, grade, histologic subtype, and stage, as well as patient age and comorbidities, determine the specific approach to management and patient outcome. Limb-sparing surgical resection is the mainstay of treatment. Radiation is used for unresectable tumors and as a neoadjuvant or an adjuvant to resection. The use of chemotherapy is controversial, and no standardized protocol has been established.
BACKGROUND:Allograft-prosthetic composite reconstruction of the proximal part of the tibia is one option following resection of a skeletal tumor. Previous studies with use of this technique have found a high prevalence of complications, including fracture, infection, extensor mechanism insufficiency, and loosening. To address some of these problems, we adopted certain measures, including muscle flap coverage, meticulous tendon reconstruction, rigid implant fixation, and careful rehabilitation. The goal of the present study was to evaluate the functional outcome and complications in patients undergoing allograft-prosthetic composite reconstruction of the proximal part of the tibia. METHODS:Twelve patients who underwent allograft-prosthetic composite reconstruction of the proximal part of the tibia after tumor resection were retrospectively evaluated at a median follow-up of forty-nine months. Clinical records and radiographs were reviewed to evaluate patient outcome, healing at the allograft-host junction, function, construct survival, and complications. RESULTS:Nine patients had no extensor lag, and three patients had 5 degrees to 15 degrees of extensor lag. The mean amount of knee flexion was 103 degrees (range, 60 degrees to 120 degrees ). The mean Musculoskeletal Tumor Society score was 24.3 (81%) of a maximum of 30. Complete bone union occurred in nine patients, and partial union occurred in three patients. At the time of writing, no secondary bone-grafting procedures had been required to achieve union, and no revision or removal of the reconstruction had been performed. Rotational or free flaps provided satisfactory wound coverage in all patients. A deep infection occurred in one patient whose allograft and prosthesis were successfully retained after treatment with surgical débridement and intravenous antibiotics. CONCLUSIONS:After osteoarticular resection of destructive tumors of the proximal part of the tibia, an allograft-prosthetic composite reconstruction can provide consistently good functional results with an acceptably low complication rate. Technical aspects of the procedure that may favorably affect outcome include soft-tissue coverage with muscle flaps and rigid fixation with a long-stemmed implant.
History and Physical Examination A 16-year-old right-hand-dominant girl presented to her primary physician with a 6-month history of progressive pain and swelling in the region of the right sternoclavicular joint. The pain was not relieved by nonnarcotic analgesics. Exacerbation of the pain occurred with movement of the right shoulder. The doctor obtained plain radiographs and noted a lesion in the medial clavicle. The patient was then referred to us for evaluation. The patient reported, despite daily use of nonsteroidal antiinflammatory medications and narcotic analgesics, the pain in the region of her medial clavicle continued to progress. She described the pain as dull, aching, and constant. The pain was severe enough to awaken her regularly from sleep and was exacerbated with shoulder motion. The pain limited her activities of daily living and recreational activities. The patient denied fever, chills, night sweats, and weight loss. On physical examination, the patient appeared uncomfortable. No deformity was present about the shoulder and clavicle. There was no erythema, and the overlying skin was normal. The region of the medial clavicle was exquisitely tender and fullness and slight warmth were observed on palpation. There was no cervical, axillary, or supraclavicular lymphadenopathy. Range of movement of the shoulder was full but painful at the extremes of movement. Cross-arm adduction of the right upper extremity elicited considerable pain. Sensory and motor function of the radial, median, ulnar, axillary, and musculocutaneous nerves was intact and symmetric when compared to the contralateral side. Grade 5 muscle power was present in the deltoid, biceps, triceps, wrist flexors, wrist extensors, finger flexors, and intrinsic hand muscles. Sensation was normal in all dermatome distributions. Distal perfusion was normal, and Adson's test for thoracic outlet compression was negative. We obtained plain radiographs (Fig. 1), CT scan (Fig. 2), and MR images (Fig. 3) of the clavicle to characterize the lesion.Fig. 1: An anteroposterior radiograph of the right clavicle shows a lytic, expansile lesion in the medial portion of the clavicle.Fig. 2: Coronal CT reconstruction shows the lytic lesion that does not cross the physis. No cortical disruption or fracture is seen.Fig. 3A-C: (A) An axial T1-weighted MR image (TR = 416.7, TE = 8.9) shows a low signal intensity lesion with cortical thinning. The lesion is metaphyseal and does not cross the physis. (B) An axial T2-weighted MR image (TR = 4100, TE = 88.1) shows a high signal intensity lesion with a small rim of reactive edema posteriorly. (C) An axial T1-weighted MR image (TR = 466.6, TE = 8.9) with gadolinium contrast shows diffuse contrast enhancement. Slight posterior enhancement is seen in the surrounding tissues, but no soft tissue mass is seen.Based on the history, physical examination, and imaging, what is the differential diagnosis? Imaging Interpretation Plain radiographs showed a lytic, expansile lesion in the medial clavicle (Fig. 1). No mineralized matrix production or cortical breakthrough was noted on plain films, but some internal trabeculations are present. CT (Fig. 2) showed an expansile lesion with considerable cortical thinning but no breakthrough. No mineralized matrix production was noted. The tumor did not appear to cross the physis. MRI (Fig. 3) showed a lesion in the medial clavicle with signal slightly hyperintense to muscle on T1-weighted images (Fig. 3A) and higher signal intensity on T2-weighted images (Fig. 3B). The lesion did not cross the physis. Uniform enhancement with intravenous gadolinium was noted (Fig. 3C). No soft tissue mass or cortical breakthrough was evident, but mild soft tissue edema was seen posteriorly. Differential Diagnosis Aneurysmal bone cyst Giant cell tumor Nonossifying fibroma Eosinophilic granuloma Osteomyelitis A CT-guided biopsy and then an open biopsy were performed and the histology of the lesion was studied (Fig. 4).Fig. 4A-D: (A) The CT-guided biopsy specimen contains a spindle cell proliferation with collagen production and scattered giant cells. (B) The tumor is made up of cords of benign spindle cells with irregularly dispersed giant cells. (C) A collection of foamy histiocytes is present in a background of spindle cells with a storiform pattern. (D) A cystic space with hemorrhage and giant cells is also present in the specimen (A-D: Stain, hematoxylin and eosin; original magnification, ×100).Based on the history, physical findings, imaging studies, and histologic picture, what is the diagnosis and how should this lesion be treated? Histology Interpretation Histologic sections revealed benign spindle cells with a storiform pattern in areas. Irregularly dispersed giant cells were present within the tumor (Fig. 4A-B). Collections of foamy histiocytes were also present within the spindle cell background (Fig. 4C). Occasional cystic spaces with hemorrhage and giant cells were also found within the specimen (Fig. 4D). No atypical cells or mitoses were seen. Gram stain and culture were negative for bacteria, fungi, and acid-fast bacilli. Diagnosis Nonossifying fibroma with areas of secondary aneurysmal bone cyst formation. Discussion and Treatment Nonossifying fibromas are common benign bone lesions and are seen usually in the lower extremities of adolescents [5]. Upper extremity location of these tumors is uncommon. They are usually not painful in the absence of pathologic fracture; thus, they are usually discovered as incidental findings on imaging obtained for other complaints. Tenderness and abnormal physical examination findings are unusual without fracture. Radiographically, nonossifying fibromas appear as eccentric, well-marginated, radiolucent, multiloculated lesions [5]. Their synonym, metaphyseal cortical defect, belies their usual location. A sclerotic rim of bone is usually seen around these lesions. Cortical expansion is unusual, but enlargement of these tumors is common [4]. Pathologic fracture is well described in larger lesions [1, 5, 7, 11]. Usually, clinical evaluation of the patient and plain radiographs are sufficient to make the diagnosis of nonossifying fibroma. Rarely, as in this case, they have a more aggressive, atypical presentation requiring further imaging and biopsy to confirm the diagnosis. In this case, the clinical and radiographic features of the lesion raised several diagnostic possibilities. Aneurysmal bone cyst was certainly a possible diagnosis in this case, and the plain radiographic features could be consistent with this diagnosis. There were no fluid-fluid levels present on MRI and there was a solid component to the tumor that made this diagnosis less likely. Secondary aneurysmal bone cyst in the setting of a solid primary tumor was still possible, however. Giant cell tumor of bone was another possible differential consideration in this case. The patient was slightly young for a giant cell tumor but still well within the age range. In addition, the tumor was metaphyseal in location, making the diagnosis of giant cell tumor of bone less likely. Also, the location of a giant cell tumor in the clavicle is very uncommon. Nonossifying fibroma was a consideration in this case, but the imaging and clinical findings had several unusual features. The tumor appeared more aggressive on plain radiographs and MRI than a classic nonossifying fibroma, and the patient's clinical symptoms of significant pain, swelling, and tenderness are unusual in nonossifying fibroma. Eosinophilic granuloma was another possibility, and eosinophilic granuloma can mimic other types of bone tumors radiographically. Finally, osteomyelitis was not likely, given the radiographic findings of an expansile, lytic lesion, but the physical findings of tenderness, warmth, and swelling could have been the result of an infectious process. Histologically, nonossifying fibroma appears as benign fibroblastic cells arranged in a storiform pattern. Giant cells and lipid-laden histiocytes are present in an irregular distribution [4]. Secondary aneurysmal bone cyst formation has been reported in a variety of benign bone tumors; however, it is not a common finding in nonossifying fibroma [7-10]. Grossly, a hemorrhagic cavitary expansion is usually present. Microscopically, blood-filled cystic areas are seen with fibrous lining, macrophages, and giant cells. The presence of a secondary aneurysmal bone cyst component can lead to a more aggressive clinical and radiographic appearance [8, 9]. Often patients with an aneurysmal bone cyst present with pain and swelling, in contrast to the subtle clinical presentation of nonossifying fibroma [9, 10]. The extent of aneurysmal change grossly and histologically in this case was minimal; however, it may account for the more aggressive clinical and radiographic appearance of the tumor. The shoulder girdle is the third most common site of primary bone tumors; however, clavicular tumors are rare, accounting for only 5% to 6% of shoulder girdle tumors [6, 13]. Smith et al. [13] reported their series of 58 clavicle tumors, 28 of which were benign. Osteochondroma, hemangioma, giant cell tumor, aneurysmal bone cyst, eosinophilic granuloma, fibrous dysplasia, simple cyst, and brown tumor of hyperparathyroidism were the benign tumors reported in the clavicle. Only two lesions, an osteochondroma and a giant cell tumor, were located in the medial clavicle. Cleeman et al. [6] reported eight clavicle tumors, benign and malignant, in their series of 194 shoulder girdle tumors. Barlow and Newman [2] also had eight clavicle tumors in their series of 145 shoulder girdle tumors. Three of these were benign tumors; however, no fibrous tumors were present. None of these series reported a nonossifying fibroma in the clavicle. Other medial clavicle tumors reported in the literature as isolated case reports include enchondroma and osteochondroma [3, 12]. It appears the medial clavicle is an unusual site for bone tumors, and nonossifying fibroma is extremely rare in this location. The treatment of nonossifying fibroma is almost always nonoperative, as the overwhelming majority of these tumors are asymptomatic. Serial radiographic followup is indicated to assess stability of the lesion. Occasionally, large, symptomatic lesions at risk for pathologic fracture can be treated surgically. If a pathologic fracture occurs, the usual treatment is immobilization until the fracture heals, followed by curettage and bone grafting to prevent refracture. Upper extremity lesions are treated similarly to those found in the lower extremities. Our patient had an unusual clinical, radiographic, and pathologic presentation of nonossifying fibroma. The initial clinical and radiographic features of the tumor led us to believe it was a benign/aggressive tumor such as an aneurysmal bone cyst or giant cell tumor. A malignant process was not favored, but still considered, as telangiectatic osteosarcoma can be purely lytic in appearance radiographically. The initial CT-guided biopsy showed findings consistent with aneurysmal bone cyst, and indeed, the clinical and radiographic features were consistent with this; therefore, we offered the patient an open biopsy, curettage, and bone-grafting procedure. The patient was taken to the operating room, where a 5-cm incision was made along the inferior border of the clavicle. The soft tissues were dissected in the standard fashion, and the medial portion of the clavicle was exposed. The anterior cortex of the clavicle was opened. Grossly, the tumor appeared solid with small, focal cystic areas and hemorrhage—it did not resemble an aneurysmal bone cyst. Frozen section showed a benign, giant cell-containing tumor consistent with nonossifying fibroma. The curettage was completed and allograft chips and demineralized bone matrix were packed into the defect. Postoperatively, the patient was treated in a sling as needed for 2 weeks. The incision healed uneventfully, and by the 2-week followup, the patient's symptoms and use of the extremity had markedly improved. At the 3-month followup, the patient was pain-free and had full use and range of motion of the extremity. This case represents a constellation of rare findings in the clinical, radiographic, and pathologic arenas. Nonossifying fibromas tend to be asymptomatic lesions serendipitously discovered on plain radiographs as incidental findings. They tend to be eccentrically and cortically based lesions with well-defined sclerotic borders and minimal cortical expansion. Histologically, association of a nonossifying fibroma with secondary aneurysmal bone cyst is rare. Our case of nonossifying fibroma with secondary aneurysmal bone cyst component presenting as an expansile, lytic lesion in the medial clavicle associated with severe pain, swelling, and tenderness is an unusual and interesting variant.
Purpose of review: Minimal incision surgery (MIS) has received tremendous attention both in the press and in orthopedic communities. This review includes data from the most recent studies published in orthopedic journals or presented at national meetings. Recent findings: Significant controversies exist with regard to the efficacy and complications of MIS technique in total hip arthroplasty (THA). This review focuses primarily on the reported complications of MIS. Summary: Minimal incision surgery is in a state of evolution. There is evidence that rehabilitation and return of functional capacity are more accelerated following MIS in contrast to THA done using more conventional incisions. The complication rate, however, is greater. This is especially true with regard to calcar fractures.
Background. Hypothermia lowers the metabolic rate and increases ischemic tolerance but the effects of temperature on myocardial substrate selection are not well defined.Methods. Isolated rat hearts were perfused with physiologic concentrations of C-13 labeled lactate, pyruvate, acetoacetate, mixed long-chain fatty acids, and glucose. Hearts were cooled over 5 to 10 minutes to one of four target temperatures (37degrees, 32degrees, 27degrees, or 17degreesC), then perfused for an additional 30 minutes, freeze-clamped, and extracted. C-13 NMR spectra were obtained and substrate oxidation patterns were determined by isotopomer analysis.Results. Although hearts in all groups were supplied with identical substrates, the percentage of acetyl-CoA oxidized within the citric acid cycle that arose from fatty acids decreased significantly from 53.8% +/- 0.8% in the 37degreesC group to 33.1% +/- 3.3% in the 17degreesC group. Lactate or pyruvate utilization increased from 3.3% +/- 0.5% to 25.7% +/- 3.6%, respectively (p < 0.05 by one-way ANOVA).Conclusions. These data suggest that moderate hypothermia suppresses fatty acid oxidation and deep hypothermia significantly increases utilization of lactate and pyruvate. These effects may result from relative inhibition of catabolism of complex molecules such as fatty acids, or stimulation of pyruvate dehydrogenase. These effects on substrate metabolism may play a role in myocardial protection afforded by hypothermia.