Purpose This study examined the risk factors contributing to subsequent hip fractures in patients with osteoporotic hip fractures. Materials and Methods Between March 2008 and February 2016, 68 patients sustained a subsequent contralateral hip fracture after surgery for a primary osteoporotic hip fracture (Study group). The patients were compared with 475 patients who had been followed up for a minimum of one year with a unilateral osteoporotic hip fracture (Control group). The demographic data, bone mineral density (BMD), osteoporosis medication, osteoporotic fracture history, comorbid disease, type of surgery, preoperative, postoperative ambulatory capacity, and postoperative delirium in the two groups were compared. Results The demographic data, BMD, osteoporosis medication history, comorbid disease, type of surgery, and postoperative delirium were similar in the two groups. At three months after the primary surgery, the poor ambulatory capacity was significantly higher in the study group than the control group (p<0.001). Conclusion The ambulatory capacity after primary surgery is an important risk factor in the occurrence of subsequent hip fractures after osteoporotic hip fracture. Cause analysis regarding the poor ambulatory capacity after surgery will be necessary, and the development of a functional recovery program and careful management of the walking ability recovery will be needed.
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Osteoporotic Hip Fracture: How We Make Better Results? Byung-Chan Choi, Kyung-Jae Lee Journal of the Korean Fracture Society.2024; 37(1): 52. CrossRef
Purpose This study was performed to compare the clinical results and radiological follow-up differences between intertrochanteric fractures treated with the U-blade Gamma3 nail or the Zimmer natural nail (ZNN). Materials and Methods The medical records of 129 cases diagnosed with an intertrochanteric frac-ture (90 cases of U-blade Gamma3 nail, 39 cases of ZNN) from July 2015 to December 2018 were reviewed. Patients were assigned to a U-blade Gamma3 nail (n=39) or a ZNN (n=39) group. To reduce selective bias, groups were subjected to Propensity score matching by age, body mass index, bone mineral density, and fracture type. Patients that met the following criteria were excluded; age <65 years, non-ambulatory, high energy or pathologic fracture, and a follow-up of <6 months. Operation times, estimated blood losses, preoperative and postoperative Koval grades, Harris hip score and radiological lag screw positions in the femoral head, reduction quality, cut-out, tip-apex distance (TAD), lag screw sliding distances, and times to union were compared. Results Clinical results were similar in the two groups, but lag screw TAD was significantly greater in Ublade Gamma3 nail group (23.4 mm vs. 21.0 mm) (p=0.042). One case of cut-out occurred in the Ublade Gamma3 nail group, but no other nail-related postoperative complication was noted. Conclusion No significant difference was observed between the outcomes of U-blade Gamma3 nail or ZNN treatments of intertrochanteric fractures. We conclude that the U-blade confers no specific advan-tage.
Purpose This study examined the effect of lag screw insertion on proximal fragments by separating the right and left sides of intertrochanteric fractures in elderly patients that underwent intramedullary nailing. Materials and Methods Patients aged ≥65 years that underwent intramedullary nailing after a diag-nosis of intertrochanteric fractures during the period February 2012 to May 2016 were included in the study. The subjects were divided into right and left side groups. The effect of the clockwise rotational force generated when a lag screw was inserted on the proximal fragment was evaluated in both groups. Results In the right and left groups, most proximal fragments were located in the intramedullary canal after surgery (45 cases [75.0%] and 67 cases [73.6%], respectively). Clockwise rotation due to lag screw placement in the right group occurred in two cases (3.3%), which both showed internal rotation, and in four cases (4.4%) in the left group, all of which showed external rotation. Conclusion After intramedullary nailing of intertrochanteric fractures in elderly patients, proximal fragments were mostly located in the intramedullary cavity. The results obtained confirmed that the clockwise rotational force generated by lag screw insertion did not affect left or right sides.
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Which side should be taken care of when positioning a lag screw in intertrochanteric femoral fracture: right or left? Min Uk Do, Kyeong Baek Kim, Sang-Min Lee, Hyun Tae Koo, Won Chul Shin European Journal of Trauma and Emergency Surgery.2025;[Epub] CrossRef
Midterm Outcomes of Intramedullary Fixation of Intertrochanteric Femoral Fractures Using Compression Hip Nails: Radiologic and Clinical Results You-Sung Suh, Jae-Hwi Nho, Min Gon Song, Dong Woo Lee, Byung-Woong Jang Clinics in Orthopedic Surgery.2023; 15(3): 373. CrossRef
Although vascular injuries associated with femoral intertrochanteric fractures have been reported infrequently, bleeding due to vascular injury can lead to severe complications that can be potentially life and limb-threatening. The authors report a case of an injury of the ascending branch of the lateral femoral convolutional artery in a patient who underwent surgical treatment for a femoral intertrochanteric fracture. Vascular injury occurred due to the sharp margin of displaced lesser trochanter five weeks after surgery. Percutaneous transcatheter embolization was done and improved without additional complications. Therefore, the surgeons need to be aware of possible associated vascular injuries caused by displaced lesser trochanter fragments in femoral intertrochanteric fractures.
The lesser trochanteric fracture is commonly found amongst intertrochanteric fractures, where pseudoaneurysm of the femoral artery is a rare complication. A pseudoaneurysm could develop due to the penetration injury of the artery by the bone fragment during occurrence of the fracture, or by the insertion of screws during the surgical procedure. Minimal complication is seen when the lesser trochanter is not fixed during the intertrochanteric fracture surgery. However, in the current case, the authors experienced appearance of a delayed pseudoaneurysm of the deep femoral artery caused by migration of the lesser trochanter, which was successfully treated by excision.
Fractures around the wrist are the third most common fracture among all pediatric fractures. Furthermore, distal radius fractures, a type of wrist fracture, are the most common fractures in children. Understanding pediatric fractures around the wrist is very important considering their prevalence. There is a specific belief that pediatric fractures can heal easily because of remodeling, but not all fractures can heal without proper treatment. Complications such as growth problems, nonunion can occur if the fracture is not treated properly. This paper reviewed recent articles about distal radius fractures, Galeazzi-equivalent fractures, and carpal bone fractures, including scaphoid fractures in children and adolescents. Successful treatment can be achieved without complications when an accurate diagnosis and proper non-surgical or surgical treatment are performed based on this article.
Pediatric ankle fractures are defined as damage to the metaphysis, epiphyseal plate, and epiphysis of the distal tibia and fibula. Although the injury mechanism could be similar, the fracture patterns and treatment of pediatric ankle fractures are different from those of adults. In children, growth plate injuries are more common with a force that would cause sprains in adults because the ligaments are stronger than the growth plate cartilage in children. In the adolescent period, unique fractures, called “transitional fractures”, occur while the physis is closed. For a diagnosis, plain images of the anteroposterior, lateral, and mortise views are essential. Stress radiographs, ultrasound, and magnetic resonance imaging can be used for suspected ligament injuries. The treatment goal is to restore the articular congruity, normal bony alignment, and preserve the epiphyseal plate to ensure normal growth. Pediatric ankle fractures frequently lead to premature physeal arrest, angular deformities, malunion, and posttraumatic arthritis even after anatomic reduction. Treating surgeons should follow-up children for a sufficient time and explain to the caregiver the possible complications before treatment.