PubMed Health⌕ Search

Biomedical subjects

Amal Khoury

Publications and source records attributed to Amal Khoury.

6 recordsLinked to original sources

Shrapnel management.

With the increased incidence of terrorism worldwide, it is important for surgeons to understand the role of shrapnel injury in mass casualty events. Several diagnostic modalities are available, including plain radiography, computed tomography, ultrasound, angiography, and computerized surgical navigation based on real-time acquisition of fluoroscopic data. Shrapnel management techniques are selected based on the following chronologic phases: acute, subacute, and late.

Humans↗

Pelvic fractures in a level I trauma center: a test case for the efficacy of the evolving trauma system in Israel.

BACKGROUND: Pelvic fracture is a severe and life-threatening injury that requires treatment by a dedicated team. One of the goals of a nationwide trauma system is to provide appropriate medical care for such injuries. OBJECTIVES: To use pelvic fractures as a test case for the efficiency of the Israeli trauma system, as reflected in the experience of our medical center. METHODS: Data were obtained from the medical charts of all cases of pelvic fractures admitted to our medical center between 1987 and 1999. We obtained demographic data, information on the cause of injury, fracture classification, co-injuries and Injury Severity Score, treatment strategies, and mortality rate. RESULTS: Altogether, 808 patients with pelvic injuries were treated in our medical center. The most common cause of injury was motor vehicle accidents (51%). Pelvic fractures without acetabular involvement were diagnosed in 58% of patients and isolated acetabular fractures in 32%, while 10% sustained combined injuries to the pelvic ring and the acetabulum. The overall rate of operative stabilization was 34%. The majority of patients had associated injuries, mostly additional musculoskeletal injuries. Altogether, 13% were referred from Level II/III trauma centers. We observed an increase in the total number of local admissions, in the percentage of referred patients and in the percentage of operated patients during the study period. The observed mortality rate was 5%. CONCLUSIONS: Our results show a more than twofold increase in the percentage of referred patients following the designation of a Level I trauma center. These referrals are due not only to the designation as a Level I trauma center, but also to the presence of a dedicated team of pelvic fracture specialists, available 24 hours a day. In addition, a larger percentage of patients undergo surgery for internal fixation of pelvic fractures, in accordance with current worldwide trends.

Acetabulum↗

First generation computerized fluoroscopic navigation in percutaneous pelvic surgery.

Percutaneous internal fixation of pelvic fractures has gained popularity allowing rapid mobilization with reduced surgical related morbidity; however, this method depends on conventional fluoroscopy, which exposes the patient and the surgeon to a significant amount of radiation. The use of computerized fluoroscopic navigation systems enables the simultaneous use of several radiographic projections. These preliminary fluoroscopic views are taken when the operating team stands at a distance from the radiation source. No further fluoroscopic radiation is used later during the surgical procedure. Computerized fluoroscopic navigation was used in the percutaneous insertion of 45 cannulated screws in 29 patients, including sacroiliac screws, pubic ramus screws, posterior column screws, and a supraacetabular transverse screw. Fluoroscopic verification of screw placement demonstrated a deviation <or=2 mm and <or=5 degrees. We believe the system saves fluoroscopic radiation time, yet improves the precision of the procedure. We believe that the use of this system is adequate for a selected patient population with pelvic fractures amenable to percutaneous screw fixation.

Acetabulum↗

The use of computerized navigation in the treatment of gunshot and shrapnel injury.

OBJECTIVE: Trauma surgeons encounter numerous penetrating injuries nowadays. In some cases, missiles causing infection, pain and discomfort, or those retained within joints, bursae and other strategic sites, must be removed. This paper describes an innovative high-tech modality for use in the immediate removal of shrapnel and bullets from strategic anatomical sites. METHODS: Surgical computerized navigation based on real-time acquisition of fluoroscopic data was employed. Several fluoroscopic images of the required anatomical site were obtained. The accurate spatial location of the foreign object could be seen on the images displayed on the computer screen. No further fluoroscopic radiation was necessary. During surgery, the infra-red camera tracked the position of a surgical probe on the patient's anatomy and continuously updated its three-dimensional position simultaneously on all displayed images until the missile's location was reached. RESULTS: The use of percutaneous fluoroscopic navigation to remove retained metal objects, including bullets and shrapnel, has proved itself in 12 cases as an accurate measure involving reduced exposure to radiation. In contrast to CT- or MRI-based navigation, computerized fluoroscopic navigation does not require long preliminary preparation. Thus, it is highly efficient in the treatment of acute trauma victims. CONCLUSIONS: The use of this accurate technique in complex and dangerous situations where the foreign body is located in proximity to blood vessels, nerves and narrow 'safe-zones', is promising. This innovative technique reduces surgical time and radiation exposure. In our experience, it has rendered percutaneous missile removal much safer, even in hazardous situations.

Adult↗

Using computerized fluoroscopic navigation to remove pelvic screws.

Orthopedic surgeons have recently recognized the benefits of using percutaneous fixation to treat pelvic-ring disruption. Surgical removal of pelvic internal fixation is performed in an anatomically "crowded" area, with no direct vision, and harbors its own risks. Computerized fluoroscopic navigation, which makes implant location easier and reduces radiation exposure, operative time, and soft-tissue damage, can make this procedure short and relatively safe.

Bone Screws↗

Percutaneous plating of distal tibial fractures.

This article presents our experience with 24 patients who had distal tibial fractures and were treated by percutaneous plate fixation. Distribution of the fractures according to the AO/OTA classification was as follows: five patients suffered from a 43 A type fracture, six from a 43 B type fracture, and 13 from a 43 C type fractures. Four of the fractures were open. Exclusion criteria included 43 C3 fractures and Gustilo III open fractures. All fractures showed radiographic signs of union enough to enable full weightbearing within an average time of 12.3 weeks. All patients showed a good range of motion (average dorsiflexion 12 degrees and average plantiflexion 18 degrees). Two fractures united with mal-union: one with an 8 degrees valgus deformity and another with a 7 degrees varus deformity. Both cases, which had a metaphyseal component, were treated by means of a "soft" (flexible and manually adjustable) AO 3.5 mm reconstruction plate. Except for one case of superficial infection, no infections were detected in any of the patients. The biological percutaneous plate fixation of distal tibial fractures with no extensive intra-articular involvement is a good soft tissue preserving technique. It provides a rigid and anatomical fixation in most cases. We conclude that type B fractures with one intact column can be fixed with either "soft" or "rigid" plates, and type A and C fractures with a metaphyseal component should be fixed with "rigid" plates (AO 4.5 mm Dynamic Compression Plate). In these fractures the reduction should be performed cautiously due to the tendency of sagittal plane mal-reduction.

Adult↗