Background. Aggressive screening for blunt cerebrovascular injury (BCVI) and prompt anticoagulation for documented injuries has resulted in a significant reduction in ischemic neurologic events. An association between vertebral artery injuries (VAIs) and specific cervical spine fracture patterns has been suggested; however, current screening guidelines would subject all patients with cervical spine fractures to imaging because no distinction has been made for carotid artery injuries (CAIs). We hypothesized that specific cervical spine fracture patterns that warrant screening evaluation exist, hence limiting unwarranted diagnostic imaging.Methods. Patients undergoing screening for BCVI on the basis of injury patterns and mechanism have been prospectively followed at our regional trauma center since January 1996.Results. During the study period from January 1996 to January 2005, there were 17,007 blunt trauma admissions. Twenty-three patients presented with symptoms of BCVI. Screening angiography was performed in 766 patients (4.5%), and diagnosed 258 (34%) patients with BCVI One hundred twenty-five patients with BCVI had cervical spine fractures; 18 patients had isolated CAL; 84 had isolated VAI, and 23 had combined CAI and VAI. Eight patients with VAI had minor cervical fractures but underwent screening for other injury patterns. Fractures in the remaining patients with BCVI were 1 of 3 patterns. Subluxations in 56 (48%) patients, C1 to C3 cervical spine fractures in 42 (36%), or extension of the fracture through the foramen transversarium in 19 (16%). Cervical spine fractures were the sole indication for screening in 90% of the study population. Screening yield of all patients admitted with I of these 3 fracture Patterns was 37%.Conclusions. Blunt cerebrovascular injury is associated, with complex cervical spine fractures that include subluxation, extension into the foramen transversarium, or upper C1 to C3 fractures. Patients sustaining such cervical fractures should undergo prompt screening.
BACKGROUND: Obesity is an independent risk factor for a variety of diseases, including postinjury morbidity and mortality Obesity is associated with a proinflammatory state that could affect the postinjury inflammatory response and increase risk of organ dysfunction. The purpose of this study was to determine the relationship between obesity and postinjury multiple organ failure (MOF).STUDY DESIGN: A prospective observational study of patients at risk for postinjury MOF. Inclusion criteria were age older than 15 years, Injury Severity Score > 15, ICU admission within 24 hours of injury, and survival longer than 48 hours after injury. Isolated head injuries were excluded. Organ dysfunction was assessed using the Denver multiple organ failure score.RESULTS: Data were collected on 716 severely injured patients, 70% were men and 83% were victims of blunt trauma. There was no relationship between body mass index and injury severity or the amount of blood transfused within 12 hours of injury. Postinjury MOF was observed in 123 of 564 (22%) nonobese patients and 56 of 152 (37%) obese patients. Obesity was independently associated with MOF (odds ratio, 1.8; 95% Cl, 1.2-2.7) after adjusting for patient age, injury severity, and amount of blood transfused during resuscitation. In this study population, obesity was also associated with increased length of ICU and hospital stay but not death.CONCLUSIONS: Obese patients are at increased risk of postinjury MOF. Study of the obesity-related inflammatory profile could provide additional insight into the pathogenesis of organ dysfunction and identify therapeutic targets for both obese and nonobese patients. Increased morbidity and length of stay in obese trauma patients implies greater resource allocation for this population.
Cothren, C Clay MD; Moore, Ernest E. MD; Zent, Rachel M. MD; Burch, Jon M. MD Author Information
Background: Damage-control surgery and the recognition of the abdominal compartment syndrome have improved patient outcomes but at the cost of an open abdomen. Multiple techniques have been introduced to obtain fascial closure for the open abdomen to minimize morbidity and cost of care. We performed a modification of the vacuum-assisted closure (VAC) technique that provided constant fascial tension, hypothesizing this would result in a higher rate of primary fascial closure.Methods:. After initial temporary closure of the abdomen after post-injury damage control or decompressive laparotomy for abdominal compartment syndrome, we began the sequential closure technique. The technique begins by covering the bowel with the multiple white sponges overlapped like patchwork, and the fascia is placed under moderate tension over the white sponges with #1-PDS sutures. Large black VAC sponges are placed on top of the white sponges and affixed with an occlusive dressing and standard suction tubing is placed. Patients are returned to the operating room for sequential fascial closure and replacement of the sponge sandwich every 2 days, with a resulting decrease in the fascial defect.Results: Fourteen patients underwent sequential abdominal closure during,the study period: 9 owing to damage control surgery and 5 owing to secondary abdominal compartment syndrome. Average time to closure was 7.5 +/- 1.0 days (range 4-16) and average number of laparotomies to closure was 4.6 +/- 0.5 (range 3-8). All patients attained primary fascial closure.Conclusion: We propose a modification of the previously described vacuum-assisted closure technique that achieves 100% fascial approximation in our limited experience. Further application and refinement of this technique may eliminate the need for delayed complex and costly reconstructive abdominal wall procedures for the open abdomen. (c) 2006 Excerpta Medica Inc. All rights reserved.
OBJECTIVE:To describe the relevant anatomy and sequential technical maneuvers to repair blunt injuries to the descending thoracic aorta with partial left heart bypass.SUMMARY BACKGROUND DATA:Blunt injury to the descending thoracic aorta remains among the most lethal and morbid of anatomic injuries. Of the techniques of repair which have evolved, "clamp and sew" is simple but has an unacceptable risk of paraplegia. In contrast, partial left heart bypass is more complex but virtually eliminates the risk of paraplegia.METHOD:We present a detailed management plan for treating blunt injury to the descending thoracic aorta using partial left heart bypass that has evolved over the past 25 years. Preoperative Azā-blockade to reduce the risk of rupture and use of the centrifugal pump to reduce the incidence of paraplegia without the risk of systemic anticoagulation are essential.RESULTS:We present a detailed description of our management of injuries to the descending thoracic aorta. In our experience, no episodes of postoperative paraplegia have occurred with the use of this technique.CONCLUSION:Blunt injury to the descending thoracic aorta can be safely repaired using partial left heart bypass.
Departments: Abstracts of Papers to Be Presented at the Sixty-Third Annual Meeting of the American Association for the Surgery of Trauma Grand Wailea Resort & Spa, Maui, Hawaii September, 29-October 2, 2004: PDF Only
BACKGROUND: Large loop excision of the transformation zone (LLETZ) of the cervix has almost entirely replaced cold knife conization for the treatment of dysplasia.CASE: A 17-year-old woman, gravida 0, underwent LLETZ of the cervix for treatment of cervical intraepithelial neoplasia 2. A bowel injury occurred during the procedure. The bowel was repaired in the operating room, and no long-term complications resulted.CONCLUSION. While LLETZ is a minor outpatient procedure, serious complications can occur.
BACKGROUND:Aggressive screening for blunt cerebrovascular injury (BCVI) has uncovered an astonishing incidence of vertebral artery injuries (VAIs) and associated stroke rate. Stroke incidence is reduced with early recognition and prompt anticoagulation. Because of the proximity of the cervical spine and vertebral arteries, we queried whether all patients with cervical spine fractures required arteriography to rule out VAI.METHODS:Four-vessel cerebrovascular angiography remains the standard screening test for patients at risk for BCVI. Patients undergoing angiographic screening for blunt cerebrovascular injuries have been prospectively followed at our regional trauma center since January 1990; however, in January 1996, we began aggressive screening based on injury patterns.RESULTS:Ninety-two patients with vertebral artery injuries were identified during the study period from January 1996 to June 2002. Two patients with vertebral injuries had minor cervical fractures, a C6 body fracture and a C7 spinous process/laminar fracture; both underwent diagnostic angiography for injury mechanism. Of the 21 patients without cervical spine fracture, angiographic screening for BCVI was performed for neurologic symptoms (11 patients), basilar skull fracture (6 patients), or severe facial fractures (4 patients). Cervical spine fracture was the sole indication for VAI in 69 patients. The fracture patterns were subluxations in 38 patients (55%) or extension of the fracture through the foramen transversarium in 18 patients (26%). The remaining injuries (18%) were located in the upper cervical spine: isolated C1 arch in eight patients and C2/3 body fractures in five patients.CONCLUSION:Blunt vertebral artery injury is associated with complex cervical spine fractures involving subluxation, extension into the foramen transversarium, or upper C1 to C3 fractures. Routine screening should incorporate these findings to maximize yield while limiting the use of invasive procedures.
To assess the impact of routine follow-up arteriography on the management and outcome of patients with acute blunt cerebrovascular injuries (BCVI).During the past 5 years there has been increasing recognition of BCVI, but the management of these lesions remains controversial. The authors previously proposed a grading system for BCVI, with grade-specific management guidelines. The authors have noted that a significant number of injuries evolve within 7 to 10 days, warranting alterations in therapy.A prospective database of a regional trauma center's experience with BCVI has been maintained since 1990. A policy of arteriographic screening for BCVI based on injury mechanism (e.g., cervical hyperextension) and injury patterns (e.g., cervical and facial fractures) was instituted in 1996. A grading system was devised to develop management protocols: I = intimal irregularity; II = dissection/flap/thrombus; III = pseudoaneurysm; IV = occlusion; V = transection.From June 1990 to October 2001, 171 patients (115 male, age 36 +/- 1 years) were diagnosed with BCVI. Mean injury severity score was 28 +/- 1; associated injuries included brain (57%), spine (44%), chest (43%), and face (34%). Mechanism was motor vehicle crash in 50%, fall in 11%, pedestrian struck in 11%, and other in 29%. One hundred fourteen patients had 157 carotid artery injuries (43 bilateral), and 79 patients had 97 vertebral artery injuries (18 bilateral). The breakdown of injury grades was 137 grade I, 52 grade II, 32 grade III, 25 grade IV, and 8 grade V. One hundred fourteen (73%) carotid and 65 (67%) vertebral arteries were restudied with arteriography 7 to 10 days after the injury. Eight-two percent of grade IV and 93% of grade III injuries were unchanged. However, grade I and II lesions changed frequently. Fifty-seven percent of grade I and 8% of grade II injuries healed, allowing cessation of therapy, whereas 8% of grade I and 43% of grade II lesions progressed to pseudoaneurysm formation, prompting interventional treatment. There was no significant difference in healing or in progression of injuries whether treated with heparin or antiplatelet therapy or untreated. However, heparin may improve the neurologic outcome in patients with ischemic deficits and may prevent stroke in asymptomatic patients.Routine follow-up arteriography is warranted in patients with grade I and II BCVIs because most of these patients (61% in this series) will require a change in management. A prospective randomized trial will be necessary to identify the optimal treatment of BCVI.
BACKGROUND:In light of their potential for devastating consequences, a liberalized screening approach for blunt cerebrovascular injuries (BCVI) is becoming increasingly accepted. The "gold standard" for diagnosis of BCVI is arteriography; however, noninvasive diagnostic alternatives offer clear advantages. Recent series have demonstrated the ability of computed tomographic angiography (CTA) and magnetic resonance angiography (MRA) to identify BCVI, but have not compared their accuracy with arteriography. We hypothesized that CTA or MRA could reliably identify BCVI, obviating the need for arteriography. The purpose of this study was to determine the accuracy of CTA and MRA in identifying BCVI in asymptomatic patients.METHODS:Asymptomatic patients meeting criteria for BCVI screening underwent arteriography, according to our institutional standard. A subset of patients requiring computed tomographic scanning underwent CTA; a subset of patients requiring magnetic resonance imaging underwent MRA. All of the studies were interpreted by radiologists in a blinded manner. Data were analyzed for sensitivity and specificity.RESULTS:Forty-six patients underwent both CTA and arteriography. Of 23 with a normal CTA examination, 7 (30%) had BCVI on arteriography. Of 23 with an abnormal CTA examination, 8 (35%) had a normal arteriogram. The sensitivity, specificity, positive predictive value, and negative predictive value of CTA were 68%, 67%, 65%, and 70%, respectively. CTA missed 55% of grade I injuries, 14% of grade II injuries, and 13% of grade III injuries. Sixteen patients underwent both MRA and arteriography. One (11%) had a false-negative MRA result, and four (57%) had false-positive MRA results (75% sensitivity, 67% specificity, 43% positive predictive value, 89% negative predictive value).CONCLUSION:CTA and MRA can identify BCVI, but they miss grade I, II, and III injuries. Future technical modifications may improve their accuracy. A prospective multicenter trial is warranted to define the capabilities and limitations of these noninvasive modalities. In the interim, arteriography remains the gold standard for diagnosis, but if arteriography is not available, CTA or MRA should be used to screen for BCVI in patients at risk.
Blunt carotid and vertebral arterial injuries are uncommon but have the potential for devastating consequences. The classic presentation is a neurologic deficit unexplained by computed tomographic scan findings. Screening patients based on injury mechanisms and patterns allows the diagnosis and treatment of injuries while they are still asymptomatic, potentially improving neurologic outcomes. The development of a grading scale may help refine treatment guidelines. Accessible grade II, III, and V carotid injuries should be repaired surgically. Anticoagulation should be considered first-line therapy for grade I and IV, and inaccessible grade II and III carotid lesions, and grade I-IV vertebral injuries. Grade V and persistent grade III lesions may be best treated employing endovascular techniques.
To determine the suitability of a single-layer continuous technique for intestinal anastomosis in a surgical training program.Several recent reports have advocated the use of a continuous single-layer technique for intestinal anastomosis. Purported advantages include shorter time for construction, lower cost, and perhaps a lower rate of anastomotic leakage. The authors hypothesized that the single-layer continuous anastomosis could be safely introduced into a surgical training program and that it could be performed in less time and at a lower cost than the two-layer interrupted anastomosis.The study was conducted during a 3-year period ending September 1999. All adult patients requiring intestinal anastomosis were considered eligible. Patients who required anastomosis to the stomach, duodenum, and rectum were excluded. Patients were also excluded if the surgeon did not believe either technique could be used. Patients were randomly assigned to one- or two-layer techniques. Single-layer anastomoses were performed with a continuous 3-0 polypropylene suture. Two-layer anastomoses were constructed using interrupted 3-0 silk Lembert sutures for the outer layer and a continuous 3-0 polyglycolic acid suture for the inner layer. The time for anastomosis began with the placement of the first stitch and ended when the last stitch was cut. Anastomotic leak was defined as radiographic demonstration of a fistula or nonabsorbable material draining from a wound after oral administration, or visible disruption of the suture line during reexploration.Sixty-five single-layer and 67 two-layer anastomoses were performed. The groups were evenly matched according to age, sex, diagnosis, and location of the anastomosis. Two leaks (3.1%) occurred in the single-layer group and one (1.5%) in the two-layer group. Two abscesses (3.0%) occurred in each group. A mean of 20.8 minutes was required to construct a single-layer anastomosis versus 30.7 minutes for the two-layer technique. Mean length of stay was 7.9 days for single-layer patients and 9.9 days for two-layer patients; this difference did not quite reach statistical significance. Cost of materials was $4.61 for the single-layer technique and $35.38 for the two-layer method.A single-layer continuous anastomosis can be constructed in significantly less time and with a similar rate of complications compared with the two-layer technique. It also costs less than any other method and can be incorporated into a surgical training program without a significant increase in complications.
The triad of hypothermia, acidosis, and coagulopathy during initial operative and resuscitation efforts has been recognized as a significant cause of death in patients with traumatic injuries. A staged surgical approach with a brief initial laparotomy, subsequent intensive care unit resuscitation, and a planned reoperation is an emerging technique used in trauma surgery, with application to a variety of other surgical challenges. Successful damage control therapy requires a coordinated multidisciplinary team effort by a trauma team experienced in the process of damage control operations, intensive care unit priorities, and potential complications of this innovative surgical approach.
On the basis of our experience and the available literature, we submit that aggressive screening for BCI based on injury patterns is warranted. However, several important clinical issues remain unresolved. The precise injury patterns and relative cerebrovascular risks remain to be defined. Furthermore, the optimal diagnostic screening test remains to be identified, with consideration of the relative risk-benefit profile. Finally, we must determine the best methods for the treatment of BCI. Although the definitive study has yet to be completed, the use of heparin was associated with a trend toward improved outcomes in symptomatic patients. In addition, no asymptomatic patient experienced the development of new neurologic deficits during heparin therapy. Therefore we believe that the early institution of heparin therapy is indicated. The role of endovascular stenting, however, remains unclear.
The fundamental objective of staged laparotomy is to accomplish definitive operative management in a calculated, stepwise fashion based on the patient's physiologic tolerance. This important concept has emerged from collective experience with massive acute abdominal injuries but clearly extends to elective operative procedures and surgical challenges in other torso compartments. Whereas the inability to achieve hemostasis is due most frequently to a recalcitrant coagulopathy following trauma, other scenarios include inaccessible venous injuries, coexisting extraperitoneal life-threatening injuries, uncertain viability of abdominal contents, and the inability to reapproximate abdominal fascia due to reperfusion-induced visceral edema. There are five critical decision-making phases of staged laparotomy: I, patient selection; II, intraoperative reassessment; III, physiologic restoration in the surgical intensive care unit; IV, return to the operating room for definitive procedures; and V, abdominal wall reconstruction. The abdominal compartment syndrome (ACS) is a common, often insidious complication of staged laparotomy. In fact, during phases II and III there is often a delicate balance between effective pressure tamponade of capillary bleeding and the untoward effects of the ACS. During phases IV and V a frequent dilemma is how to enclose the abdominal contents to reduce protein loss and facilitate patient mobilization.
BACKGROUND:Recalcitrant coagulopathy "the bloody vicious cycle," produces the majority of deaths after torso trauma. A model predicting this life-threatening complication may facilitate clinical decision-making. METHODS:We prospectively analyzed patients > 15 years old who received a massive transfusion (> 10 units of packed red blood cells (PRBC)/24 h) over a 2-year period. Excluding massive head injuries and pre-existing disease, the 58 study patients had a mean age = 35.4 years, Injury Severity Score (ISS) = 30.6, and PRBC = 24.2 units/24 h. RESULTS:Defined as prothrombin time of two times that of normal laboratory controls and partial thromboplastin time as two times that of normal laboratory controls, 27 patients (47%) developed life-threatening coagulopathy. Using a multiple logistic regression model, the four significant risk factors (with odds ratio) were (1) pH < 7.10 (12.3), (2) temperature < 34 degrees C (8.7), (3) ISS > 25 (7.7), and (4) systolic blood pressure < 70 mm Hg (5.8). The conditional probability of developing coagulopathy was ISS > 25 + systolic blood pressure < 70 mm Hg = 39%, ISS > 25 + temperature < 34 degrees C = 49%, ISS > 25 + pH < 7.10 = 49%; with all four risk factors the incidence was 98%. CONCLUSION:Postinjury life-threatening coagulopathy in the seriously injured requiring massive transfusion is predicted by persistent hypothermia and progressive metabolic acidosis.
Trauma patients who succumb to their injuries do so by one of several mechanisms discussed in this article. The most common include head injury, exsanguination, sepsis, and multiple organ failure. The article also discusses adverse consequences of hypothermia, including a model for calculating total heat loss.