Background: Cigarette smoking adversely affects fracture repair, causing delayed healing or nonunion rates twice those seen in nonsmokers. Purpose: We sought to investigate if cigarette smoke differentially affects intramembranous and endochondral healing of fractures. We hypothesize that healing via endochondral ossification will be preferentially impaired compared to intramembranous ossification. Methods: We utilized a bilateral femur fracture model in Sprague Dawley rats to examine effects of cigarette smoke exposure on healing of femur fractures, treated with either locked intramedullary nail or compression plating to induce endochondral and membranous ossification, respectively. Animals were exposed to tobacco smoke 30 days before and after surgery; evaluations included radiographs, histomorphometry, and micro-CT at 10 days, 1, 3, and 6 months postoperation, and biomechanical testing at 3 and 6 months. Results: Sixty-eight animals were randomized to control or exposure (two died perioperatively); 89% of femora achieved union when harvested at 3 or 6 months. Smoke exposure delayed cartilaginous callus formation and bone maturation in nailed fractures compared to plated fractures and controls in the same animals. Plated fractures in exposed animals exhibited little cartilage callus and healed like control animals. At 3 months, plated fractures were stiffer and stronger than nailed fractures in both groups. These differences vanished by 6 months. Conclusions: Plated fractures healed more rapidly and completely than nailed fractures under both control and smoke-exposed conditions. Clinical Relevance: Using compression plating instead of IM nailing for closed long bone fractures may lead to better outcomes in patients who smoke compared to current results with nailing.
BACKGROUND:Although use of nonsteroidal antiinflammatory drugs and low-dose irradiation has demonstrated efficacy in preventing heterotopic ossification (HO) after THA and surgical treatment of acetabular fractures, these modalities have not been assessed after traumatic blast amputations where HO is a common complication that can arise in the residual limb.QUESTIONS/PURPOSES:The purpose of this study was to investigate the effectiveness of indomethacin and irradiation in preventing HO induced by high-energy blast trauma in a rat model.METHODS:Thirty-six Sprague-Dawley rats underwent hind limb blast amputation with a submerged explosive under water followed by irrigation and primary wound closure. One group (n = 12) received oral indomethacin for 10 days starting on postoperative Day 1. Another group (n = 12) received a single dose of 8 Gy irradiation to the residual limb on postoperative Day 3. A control group (n = 12) did not receive either. Wound healing and clinical course were monitored in all animals until euthanasia at 24 weeks. Serial radiographs were taken immediately postoperatively, at 10 days, and every 4 weeks thereafter to monitor the time course of ectopic bone formation until euthanasia. Five independent graders evaluated the 24-week radiographs to quantitatively assess severity and qualitatively assess the pattern of HO using a modified Potter scale from 0 to 3. Assessment of grading reproducibility yielded a Fleiss statistic of 0.41 and 0.37 for severity and type, respectively. By extrapolation from human clinical trials, a minimum clinically important difference in HO severity was empirically determined to be two full grades or progression of absolute grade to the most severe.RESULTS:We found no differences in mean HO severity scores among the three study groups (indomethacin 0.90 ± 0.46 [95% confidence interval {CI}, 0.60-1.19]; radiation 1.34 ± 0.59 [95% CI, 0.95-1.74]; control 0.95 ± 0.55 [95% CI, 0.60-1.30]; p = 0.100). For qualitative HO type scores, the radiation group had a higher HO type than both indomethacin and controls, but indomethacin was no different than controls (indomethacin 1.08 ± 0.66 [95% CI, 0.67-1.50]; radiation 1.89 ± 0.76 [95% CI, 1.38-2.40]; control 1.10 ± 0.62 [95% CI, 0.70-1.50]; p = 0.013). The lower bound of the 95% CI on mean severity in the indomethacin group and the upper bound of the radiation group barely spanned a full grade and involved only numeric grades < 2, suggesting that even if a small difference in severity could be detected, it would be less than our a priori-defined minimum clinically important difference and any differences that might be present are unlikely to be clinically meaningful.CONCLUSIONS:This work unexpectedly demonstrated that, compared with controls, indomethacin and irradiation provide no effective prophylaxis against HO in the residual limb after high-energy blast amputation in a rat model. Such an observation is contrary to the civilian experience and may be potentially explained by either a different pathogenesis for blast-induced HO or a stimulus that overwhelms conventional regimens used to prevent HO in the civilian population.CLINICAL RELEVANCE:HO in the residual limb after high-energy traumatic blast amputation will likely require novel approaches for prevention and management.
Os acromiale is a failure of fusion between 1 or more ossification centers of the scapula and the acromion process. Pain can be caused by motion and impingement of the unfused segment. Several methods for the management of os acromiale have been described. Internal fixation is the most common surgical technique, followed by excision and acromioplasty. We present a novel technique for treatment of symptomatic os acromiale using arthroscopically-guided headless compression screws. This is a viable technique in the management of symptomatic os acromiale due to preservation of the periosteal blood supply and less concern for symptomatic hardware.
Background External beam irradiation is an accepted treatment for skeletal malignancies. Radiation acts on both cancerous and normal cells and, depending on the balance of these effects, may promote or impair bone healing after pathologic fracture. Previous studies suggest an adverse effect of radiation on endochondral ossification, but the existence of differential effects of radiation on the two distinct bone healing pathways is unknown. Questions/purposes The purpose of this study was to investigate the differential effects of external beam irradiation on endochondral compared with intramembranous ossification with intramedullary nail and plate fixation of fractures inducing the two respective osseous healing pathways through assessment of (1) bone biology by histomorphometric analysis of cartilage area and micro-CT volumetric assessment of the calcified callus; and (2) mechanical properties of the healing fracture by four-point bending failure analysis of bending stiffness and strength. Methods Thirty-six male Sprague-Dawley rats underwent bilateral iatrogenic femur fracture: one side was repaired with an intramedullary nail and the other with compression plating. Three days postoperatively, half (n = 18) received 8-Gray external beam irradiation to each fracture. Rodents were euthanized at 1, 2, and 4 weeks postoperatively (n = 3/group) for quantitative histomorphometry of cartilage area and micro-CT assessment of callus volume. The remaining rodents were euthanized at 3 months (n = 9/group) and subjected to four-point bending tests to assess stiffness and maximum strength. Results Nailed femurs that were irradiated exhibited a reduction in cartilage area at both 2 weeks (1.08 ± 1.13 mm2 versus 37.32 ± 19.88 mm2; 95% confidence interval [CI] of the difference, 4.32-68.16 mm2; p = 0.034) and 4 weeks (4.60 ± 3.97 mm2 versus 39.10 ± 16.28 mm2; 95% CI of the difference, 7.64-61.36 mm2; p = 0.023) compared with nonirradiated fractures. There was also a decrease in the volume ratio of calcified callus at 4 weeks (0.35 ± 0.08 versus 0.51 ± 0.05; 95% CI of the difference, 0.01-0.31; p = 0.042) compared with nonirradiated fractures. By contrast, there was no difference in cartilage area or calcified callus between irradiated and nonirradiated plated femurs. The stiffness (128.84 ± 76.60 N/mm versus 26.99 ± 26.07 N/mm; 95% CI of the difference, 44.67-159.03 N/mm; p = 0.012) and maximum strength (41.44 ± 22.06 N versus 23.75 ± 11.00 N; 95% CI of the difference, 0.27-35.11 N; p = 0.047) of irradiated plated femurs was greater than the irradiated nailed femurs. However, for nonirradiated femurs, the maximum strength of nailed fractures (36.05 ± 17.34 N versus 15.63 ± 5.19 N; 95% CI of the difference, 3.96-36.88 N; p = 0.022) was greater than plated fractures, and there was no difference in stiffness between the nailed and plated fractures. Conclusions In this model, external beam irradiation was found to preferentially inhibit endochondral over intramembranous ossification with the greatest impairment in healing of radiated fractures repaired with intramedullary nails compared with those fixed with plates. Future work with larger sample sizes might focus on further elucidating the observed differences in mechanical properties. Clinical Relevance This work suggests that there may be a rationale for compression plating rather than intramedullary nailing of long bone fractures in select circumstances where bony union is desirable, adjunctive radiation treatment is required, and bone stock is sufficient for plate and screw fixation.
BACKGROUND:Adequate irrigation of open musculoskeletal injuries is considered the standard of care to decrease bacterial load and other contaminants. While the benefit of debris removal compared with the risk of further seeding by high-pressure lavage has been studied, the effects of irrigation on muscle have been infrequently reported. Our aim in the present study was to assess relative damage to muscle by pulsatile lavage compared with bulb-syringe irrigation. METHODS:In an animal model of heterotopic ossification, 24 Sprague-Dawley rats underwent hindlimb blast amputation via detonation of a submerged explosive, with subsequent through-the-knee surgical amputation proximal to the zone of injury. All wounds were irrigated and underwent primary closure. In 12 of the animals, pulsatile lavage (20 psi [138 kPa]) was used as the irrigation method, and in the other 12 animals, bulb-syringe irrigation was performed. A third group of 6 rats did not undergo the blast procedure but instead underwent surgical incision into the left thigh muscle followed by pulsatile lavage. Serial radiographs of the animals were made to monitor the formation of soft-tissue radiopaque lesions until euthanasia at 6 months. Image-guided muscle biopsies were performed at 8 weeks and 6 months (at euthanasia) on representative animals from each group. Histological analysis was performed with hematoxylin and eosin, alizarin red, and von Kossa staining on interval biopsy and postmortem specimens. RESULTS:All animals managed with pulsatile lavage, with or without blast injury, developed soft-tissue radiopaque lesions, whereas no animal that had bulb-syringe irrigation developed these lesions (p = 0.001). Five of the 12 animals that underwent blast amputation with pulsatile lavage experienced wound complications, whereas no animal in the other 2 groups experienced wound complications (p = 0.014). Radiopaque lesions appeared approximately 10 days postoperatively, increased in density until approximately 16 weeks, then demonstrated signs of variable regression. Histological analysis of interval biopsy and postmortem specimens demonstrated tissue damage with inflammatory cells, cell death, and dystrophic calcification. CONCLUSIONS:Pulsatile lavage of musculoskeletal wounds can cause irreversible insult to tissue, resulting in myonecrosis and dystrophic calcification. CLINICAL RELEVANCE:The benefits and offsetting harm of pulsatile lavage (20 psi) should be considered before its routine use in the management of musculoskeletal wounds.
Better understanding of the biology of heterotopic ossification (HO) formation will lead to treatment and prevention modalities that can be directed specifically at the cellular level. Early identification of HO precursor cells and target genes may provide prognostic value that guides individualized prophylactic treatment. Better understanding of molecular signaling and proteomics variability will allow surgeons to individualize preemptive treatment to suppress inflammation and formation of HO. Careful surgical technique to avoid muscle damage is important. Damaged muscle should be debrided as a prophylactic measure. Hemostasis and avoidance of a postoperative hematoma may decrease the chance of formation of HO.
Background:Our purpose was to determine whether recent literature provides evidence to favor either acute or staged surgical treatment of multiligamentous knee injury (MLKI). Because MLKI is uncommon and has a heterogeneous injury profile, conducting large trials has been challenging. Surgical intervention whether through repair or reconstruction is associated with high complication rates and significant morbidity. Currently, treatment recommendations are based on outcome studies composed mostly of level IV evidence.Methods:We searched the literature from 2009-2014. Eleven published studies met inclusion criteria. There were two level III studies and nine level IV studies. No level I studies met inclusion criteria.Results:Two-hundred seventy-four patients were identified; 201 males and 73 females. Thirty-nine percent (107) of the patients had a staged repair; 61% (167) of the patients had an acute repair. IKDC was the most consistently reported outcome measure, yet none of the studies reached statistical significance.Conclusions:Numerous studies have attempted to determine whether to repair or reconstruct the MLKI in an acute or a staged fashion. There is insufficient evidence to suggest superiority of outcomes for acute or staged treatment MLKI. Multicentered, prospective, randomized controlled trials are warranted to determine if there is any difference in outcomes between these two treatment strategies.
Background: Our purpose was to determine whether recent literature provides evidence to favor either acute or staged surgical treatment of multiligamentous knee injury (MLKI). Because MLKI is uncommon and has a heterogeneous injury profile, conducting large trials has been challenging. Surgical intervention whether through repair or reconstruction is associated with high complication rates and significant morbidity. Currently, treatment recommendations are based on outcome studies composed mostly of level IV evidence. Methods: We searched the literature from 2009-2014. Eleven published studies met inclusion criteria. There were two level III studies and nine level IV studies. No level I studies met inclusion criteria. Results: Two-hundred seventy-four patients were identified; 201 males and 73 females. Thirty-nine percent (107) of the patients had a staged repair; 61% (167) of the patients had an acute repair. IKDC was the most consistently reported outcome measure, yet none of the studies reached statistical significance. Conclusions: Numerous studies have attempted to determine whether to repair or reconstruct the MLKI in an acute or a staged fashion. There is insufficient evidence to suggest superiority of outcomes for acute or staged treatment MLKI. Multicentered, prospective, randomized controlled trials are warranted to determine if there is any difference in outcomes between these two treatment strategies.
Shoulder pain and dysfunction is a complex problem frequently encountered by primary care physicians. Common nonarthritic conditions seen in the primary care setting include rotator cuff syndrome, impingement, posttraumatic stiffness, adhesive capsulitis, and instability. A thorough history and physical examination can aid in the diagnosis of many common shoulder complaints. Pain and instability are the most common shoulder complaints. Pain that is sharp or burning is commonly radicular in origin, whereas pain caused by tendinitis is often dull, diffuse, and aching. Instability is frequently found in patients with a history of dislocation, but also may occur with no prior history. Imaging modalities such as magnetic resonance imaging can be helpful for more advanced pathology. However, many common shoulder conditions can be diagnosed without imaging, and may be initially treated with a short course of rest, ice, topical analgesics, nonsteroidal anti-inflammatory drugs, directed and supervised physical therapy, and occasionally subacromial corticosteroid injections. As always, a detailed history and a thorough physical exam by a primary care physician are vital for diagnosis. When conservative measures fail, referral to an orthopaedic surgeon may be necessary for further patient management.
Carcinoma of the lung is the most common lethal form of cancer in both men and women worldwide. Orthopedic manifestations of lung cancer frequently include bony metastasis, most commonly the vertebrae (42%), ribs (20%), and pelvis (18%). Acral metastatic disease is defined as metastasis distal to the elbow or the knee. Metastases to the bones of the hand are extremely rare. Only 0.1% of metastatic disease resulting from any type of carcinoma or sarcoma manifests as metastasis in the hand. There are only a few reports in the literature of soft-tissue or muscular metastasis to the hand from a carcinoma. Of these cases, the majority are caused by metastatic lung carcinoma. However, there are no reports in the literature of metastatic disease of squamous cell origin affecting the soft tissues of the hand. We present a case of a man with known metastatic squamous cell carcinoma of the lung who presented with acral soft-tissue metastatic disease. This report highlights a rare clinical scenario that has not been reported in the literature. This report also highlights a rare but important consideration for clinicians who encounter acral soft-tissue lesions in patients with a history of a primary carcinoma.
Walton, Zeke J. MD; Holmes, Robert E. MD; Rac, Goran BS; Nelson, Eric W. DO; Leddy, Lee R. MD Author Information
Chondrosarcoma is a cartilage forming neoplasm, which is the second most common primary malignancy of bone. Clinicians who treat chondrosarcoma patients must determine the grade of the tumor, and must ascertain the likelihood of metastasis. Acral lesions are unlikely to metastasize, regardless of grade, whereas axial, or more proximal lesions are much more likely to metastasize than tumors found in the distal extremities with equivalent histology. Chondrosarcoma is resistant to both chemotherapy and radiation, making wide local excision the only treatment. Local recurrence is frequently seen after intralesional excision, thus wide local excision is sometimes employed despite significant morbidity, even in low-grade lesions. Chondrosarcoma is difficult to treat. The surgeon must balance the risk of significant morbidity with the ability to minimize the chance of local recurrence and maximize the likelihood of long-term survival.