Search PubMed⌕ Search

Biomedical subjects

Peter Rhee

Publications and source records attributed to Peter Rhee.

At least 55 records · Page 3Linked to original sources

[Technology of the future applied to the present: Life Support for Trauma and Transport (LSTAT)].

One of the most recent innovations coalescing computer technology and medical care is the development of integrated medical component technology coupled with a computer system. One such example is the patient transport system known as the Life Support for Trauma and Transport (LSTAT). LSTAT is a self-contained stretcher-based intensive care unit designed by the United States Army to provide care for critically injured patients during transport and in remote settings where resources are limited. It contains conventional medical equipment that has been reduced in size and integrated into a single platform. This article presents the latest technology applied to the field of medicine, which should not be limited to patients injured during warfare but should also be used to assist the injured civilian population who need transport from remote settings to urban trauma centers.

Beds↗

Physician knowledge of the Glasgow Coma Scale.

Appropriate triage is critical to optimizing outcome from battle related injuries. The Glasgow Coma Scale (GCS) is the primary means by which combat casualties, who have suffered head injury, are triaged. For the GCS to be reliable in this critical role, it must be applied accurately. To determine the level of knowledge of the GCS among military physicians with exposure and/or training in the scale we administered a prospective, voluntary, and anonymous survey to physicians of all levels of training at military medical centers with significant patient referral base. The main outcome measures were correct identification of title and categories of the GCS along with appropriate scoring of each category. Overall performance on the survey was marginal. Many were able to identify what "GCS" stands for, but far fewer were able to identify the titles of the specific categories, let alone identify the specific scoring of each category. When evaluated based on medical specialties, those in surgical specialties outperformed those in the medical specialties. When comparing the different levels of training, residents and fellows performed better than attending staff or interns. Finally, those with Advanced Trauma Life Support (ATLS) certification performed significantly better than those without the training. Physician knowledge of the GCS, as demonstrated in this study, is poor, even in a population of individuals with specific training in the use of the scale. It is concluded that, to optimize outcome from combat related head injury, methods for improving accurate quantitation of neurologic state need to be explored.

Certification↗

The effect of trauma center designation and trauma volume on outcome in specific severe injuries.

OBJECTIVE: The objective of this study was to investigate the effect of American College of Surgeons (ACS) trauma center designation and trauma volume on outcome in patients with specific severe injuries. BACKGROUND: Trauma centers are designated by the ACS into different levels on the basis of resources, trauma volume, and educational and research commitment. The criteria for trauma center designation are arbitrary and have never been validated. METHODS: The National Trauma Data Bank study, which included patients >14 years of age and had injury severity score (ISS) >15, were alive on admission and had at least one of the following severe injuries: aortic, vena cava, iliac vessels, cardiac, grade IV/V liver injuries, quadriplegia, or complex pelvic fractures. Outcomes (mortality, intensive care unit stay, and severe disability at discharge) were compared among level I and II trauma centers and between centers within the same level designation but different volumes of severe trauma (<240 vs > or =240 trauma admissions with ISS >15 per year). The outcomes were adjusted for age (<65 > or =65), gender, mechanism of injury, hypotension on admission, and ISS (< or =25 and >25). RESULTS: A total of 12,254 patients met the inclusion criteria. Overall, level I centers had significantly lower mortality (25.3% vs 29.3%; adjusted odds ratio [OR], 0.81; 95% confidence interval [CI], 0.71-0.94; P = 0.004) and significantly lower severe disability at discharge (20.3% vs 33.8%, adjusted OR, 0.55; 95% CI, 0.44-0.69; P < 0.001) than level II centers. Subgroup analysis showed that cardiovascular injuries (N = 2004) and grades IV-V liver injuries (N = 1415) had a significantly better survival in level I than level II trauma centers (adjusted P = 0.017 and 0.023, respectively). Overall, there was a significantly better functional outcome in level I centers (adjusted P < 0.001). Subgroup analysis showed level I centers had significantly better functional outcomes in complex pelvic fractures (P < 0.001) and a trend toward better outcomes in the rest of the subgroups. The volume of trauma admissions with ISS >15 (<240 vs > or =240 cases per year) had no effect on outcome in either level I or II centers. CONCLUSIONS: Level I trauma centers have better outcomes than lower-level centers in patients with specific injuries associated with high mortality and poor functional outcomes. The volume of major trauma admissions does not influence outcome in either level I or II centers. These findings may have significant implications in the planning of trauma systems and the billing of services according to level of accreditation.

Adolescent↗

High-level falls: type and severity of injuries and survival outcome according to age.

BACKGROUND: High-level falls are associated with multiple injuries and are often difficult to evaluate. Age may be an important factor determining the anatomic distribution and severity of injuries and outcome. There is little work published on this subject. Our objective was to evaluate the effect of age on the incidence and severity of specific organ injuries and survival outcome after high-level falls. METHODS: This was a trauma registry study that included all victims of high-level falls (>15 feet) admitted to a Level I academic trauma center. The incidence of severe trauma (Injury Severity Score > 15), severe body area trauma (head, chest, abdomen, and extremities) with Abbreviated Injury Scale score > 3, specific organ injuries (spine, thoracic aorta, solid and hollow viscus intra-abdominal injuries, and pelvic and lower extremity fractures), and mortality were compared in four age groups: < or =14 years, 15 to 55 years, 56 to 65 years, and >65 years. RESULTS: The study included 1,613 patients. There were 128 patients (7.9%) in the age group < or =14 years, 1,389 (86.1%) in the age group 15 to 55 years, 59 (3.7%) in the age group 56 to 65 years, and 37 (2.3%) in the age group >65 years. The mortality ranged from 5.5% in the pediatric group to 24.3% in the elderly group (p = 0.02). Significantly more patients in the elderly group had an Injury Severity Score > 15 than in the pediatric group (45.2% vs. 15.6%, p = 0.001). The overall incidence of spinal fractures was 24.1% (392 cases) and increased significantly after the age of 15 years. Elderly patients were significantly more likely than pediatric patients to suffer pelvic fractures (21.6% vs. 1.6%, p = 0.0001) and more likely to have fractures of the femur (18.9% vs. 3.9%, p = 0.006). The nature of intracranial injuries and the incidence of solid and hollow viscus injuries were similar in all age groups. CONCLUSION: Age is an important variable in determining the nature and severity of injuries after high-level falls. Spinal injuries are very common in all age groups older than 14 years.

Accidental Falls↗

Tetanus and trauma: a review and recommendations.

BACKGROUND: This review covers the pathogenesis and treatment of the disease along with the reexamination of the current recommendations for prophylaxis against tetanus in the United States. Although tetanus is still a major problem worldwide, the incidence in North America has become almost negligible because of the highly effective primary immunization program. Recently, there have been no deaths reported attributable to tetanus in the United States in trauma patients who had received the primary childhood immunization. However, tetanus immunization and prophylaxis in the acute injury setting is frequently misused and misunderstood. METHODS: A review of the literature regarding tetanus. RESULTS: After review, the authors recommend tetanus toxoid in adults only if it has been more than 10 years since their last immunization. There is no urgency for the administration of tetanus toxoid in the acute setting, as it provides protection against the next injury and not the current injury. Tetanus-diphtheria toxoid is not required unless there are plans for the injured patient to travel to diphtheria-prone countries in the future, as the incidence of diphtheria is negligible in the United States. CONCLUSION: The review of reported cases of tetanus demonstrates that it is not possible to clinically determine which wounds are tetanus prone, as tetanus can occur after minor, seemingly innocuous injuries, yet is rare after severely contaminated wounds. Tetanus immunoglobulin should be reserved for patients with wounds who had never received primary immunization against tetanus.

Adult↗

The decreasing incidence and mortality of acute respiratory distress syndrome after injury: a 5-year observational study.

BACKGROUND: Acute respiratory distress syndrome (ARDS) after major trauma has been associated with increased morbidity and mortality rates. Recently, there have been marked advances in defining etiologic factors and optimal management strategies for ARDS. We sought to examine whether there has been a corresponding change in the incidence and outcomes of ARDS after injury in recent years. METHODS: A prospective observational study of all adult trauma intensive care unit (ICU) admissions over 5 years. Patients were evaluated daily for predefined ARDS criteria. Patient data, illness and injury severity, and ARDS incidence were compared by year of admission. Logistic regression analysis was used to identify independent predictors of ARDS and mortality. RESULTS: There were 1,913 patients identified; the majority were male (79%) and suffered blunt trauma (62%). Two hundred seventy-four patients (14%) met criteria for ARDS. The incidence of ARDS showed a significant decrease from 23% in 2000 to rates of 8.4% and 9% for 2003 and 2004 (p < 0.01), respectively. There was no significant difference by year for trauma mechanism, age, sex, Injury Severity Score, Acute Physiology and Chronic Health Evaluation, ICU length of stay, or mortality. The strongest independent predictor of ARDS was year of ICU admission, with an odds ratio of 2.9 (95% confidence interval, 1.7-5.0) for admission in 2000 versus subsequent years (p < 0.001). After adjusting for age and injury severity, patients with ARDS had more days on mechanical ventilation and longer hospital and ICU stays (all p < 0.01), but there was no significant difference in mortality with or without ARDS (p = 0.57). CONCLUSION: There has been a more than 50% reduction in the incidence of ARDS after injury during the past 5 years in our institution despite similar patient demographics and injury severities. Development of ARDS increased hospital and ICU stays but not hospital mortality.

Adult↗

White blood cell and platelet counts can be used to differentiate between infection and the normal response after splenectomy for trauma: prospective validation.

BACKGROUND: Transient elevations of the serum white blood cell count (WBC) and platelet count (PC) are normal physiologic responses after splenectomy. The clinician is often challenged to identify an infection in a postsplenectomy patient with an elevated WBC. A previous retrospective study found that a WBC greater than 15 x 10/microL and a PC/WBC ratio < 20 on postoperative day 5, in addition to an Injury Severity Score > 16, were highly associated with infection and should not be considered as part of the physiologic response to splenectomy. The current study intends to prospectively validate the WBC and PC/WBC ratio on postoperative day 5 as markers of infection after splenectomy for trauma. METHODS: Consecutive trauma patients admitted to an urban, Level I trauma center who underwent splenectomy from June 2002 to December 2004 were collected prospectively. In addition to admission demographics, variables collected included daily WBC, PC, and PC/WBC ratio during the first 10 postoperative days. Outcome was the presence of infection. Patients with infection (infected group) were compared with those without infection (noninfected group). Injury Severity Score > 16, postoperative day 5 WBC > 15 x 10/microL, and PC/WBC ratio < 20 were investigated as risk factors for postsplenectomy infection. RESULTS: There were 96 trauma patients who underwent splenectomy during the study period, and 44 (46%) developed a postoperative infection. Infectious complications included pneumonia (n = 30 [31%]), followed by septicemia (n = 20 [21%]), urinary tract infection (n = 12 [13), abdominal abscess (n = 9 [9%]), and wound infection (n = 4 [4%]). Postoperative day 5 was the first day that infected patients had a higher WBC (16 +/- 6 x 10/microL vs. 14 +/- 4 x 10/microL, p = 0.03) and a lower PC/WBC ratio (15 +/- 9 vs. 24 +/- 12, p = 0.002) than noninfected patients. The presence of two or more risk factors for infection was associated with a 79% rate of infection, and no patient developed an infection if all three risk factors were absent. CONCLUSION: On postoperative day 5 after splenectomy for trauma, a WBC greater than 15 x 10/microL and a PC/WBC ratio less than 20 are reliable markers of infection.

Adult↗

The impact of obesity on the outcomes of 1,153 critically injured blunt trauma patients.

BACKGROUND: Several small series have had mixed conclusions regarding the impact of obesity on outcomes of trauma patients. The purpose of the present study was to evaluate a large cohort of critically injured patients to better understand the influence of obesity on the outcomes of patients after severe blunt trauma. METHODS: Retrospective review using the trauma registry and intensive care unit (ICU) database of all blunt trauma patients admitted to the ICU at our urban, Level I trauma center over a 5-year period (1998-2003). Obese patients (body mass index [BMI] > or = 30 kg/m) were compared with non-obese patients (BMI < 30 kg/m). RESULTS: There were 1,153 blunt trauma patients admitted to the ICU during the study period, including 283 (25%) obese (mean BMI = 35 +/- 6 kg/m) and 870 (75%) non-obese (mean BMI = 25 +/- 3 kg/m) patients. There was no difference between groups regarding age, sex, Injury Severity Score, or admission vitals. Obese patients had fewer head injuries (42 versus 55%; p = 0.0001) but more chest (45 versus 38%; p = 0.05) and lower extremity (53 versus 38%; p < 0.0001) injuries. There was no difference in the need for laparotomy, thoracotomy, or craniotomy. Obese patients suffered more complications (42 versus 32%; p = 0.002). Although there was only a trend toward higher mortality in obese patients (22 versus 17%; p = 0.10), stepwise logistic regression revealed obesity as an independent risk factor for mortality (odds ratio, 1.6; 95% confidence interval, 1.0-2.3; p = 0.03). Among survivors, obese patients required longer stays in the hospital (24 +/- 21 versus 19 +/- 17 days; p = 0.01), the ICU (13 +/- 14 versus 10 +/- 10 days; p = 0.005), and 2 more days of mechanical ventilation (8 +/- 13 versus 6 +/- 9 days; p = 0.07). CONCLUSION: Obese patients incur different injuries after severe blunt trauma than their non-obese counterparts. Despite sustaining fewer head injuries, obese patients suffer more complications, require longer stays in the hospital, more days of mechanical ventilation, and obesity is independently associated with mortality.

Body Mass Index↗

Troponin increases in the critically injured patient: mechanical trauma or physiologic stress?

BACKGROUND: Serum troponin (Tn) is a sensitive and specific marker of myocardial injury. Tn increase after injury is usually attributed to mechanical chest trauma, but this relationship remains unproven. We sought to examine the etiologic factors and prognostic significance of increased Tn levels in a widely screened trauma population. METHODS: We reviewed all trauma intensive care unit (ICU) admissions over a 5-year period with serial Tn I (TnI) measurements as part of a screening protocol. TnI was categorized as normal (0-1.2 microg/L), intermediate (1.3-5 microg/L), or high (>5 microg/L), and mortality rates were compared between groups. Multivariate regression analysis was used to identify independent predictors of TnI increase and mortality. RESULTS: There were 1,081 patients identified. An increased TnI was found in 29% of patients. Mortality significantly increased from 16% in the normal group to 33 and 44% in the intermediate and high TnI groups, respectively. Independent predictors of an increased TnI were admission base excess (p = 0.04), Injury Severity Score (ISS) (p < 0.001), and Acute Physiology and Chronic Health Evaluation score (p < 0.001). Chest Abbreviated Injury Scale score and the presence or absence of severe chest injury did not independently predict TnI increase (p = 0.5 and 0.83). Any increase of TnI (>1.2 microg/L) was a strong independent predictor of mortality (odds ratio, 2.1; 95% confidence interval, 1.4-3.1) after controlling for age, sex, mechanism, base excess, Glasgow Coma Scale score, and ISS. Beta-blocker use was associated with a 50% reduction in mortality among patients with an increased Tn (38 versus 16%; p < 0.01). CONCLUSIONS: Increased serum TnI after trauma is related to the degree of overall injury and physiologic stress and not mechanical chest trauma. Intermediate and high TnI increases are associated with increased mortality, which may be improved by selective use of beta-blockade.

APACHE↗

Hemorrhage control in the battlefield: role of new hemostatic agents.

Uncontrolled hemorrhage is the leading cause of preventable combat-related deaths. The vast majority of these deaths occur in the field before the injured can be transported to a treatment facility. Early control of hemorrhage remains the most effective strategy for treating combat casualties. A number of hemostatic agents have recently been deployed to the warfront that can be used to arrest bleeding before surgical control of the source. The purpose of this article is to summarize the background information regarding these hemostatic agents, indications and rationale for their use, and characteristics of these products that may impact effectiveness.

Acetylglucosamine↗

Association of scapular fractures and blunt thoracic aortic injury: fact or fiction?

It is classically taught that scapular fractures (SF) are commonly associated with blunt thoracic aortic injury (BTAI). The purpose of this study was to determine the association between SF and BTAI. A 10-year retrospective review of blunt trauma admissions from two level I trauma centers located in different geographic regions, Washington Hospital Center (WHC) and Los Angeles County Medical Center and the University of Southern California (LAC/USC), was performed. Patients with SF and BTAI were identified, and records were reviewed to determine associated injuries. We identified 35,541 blunt trauma admissions (WHC: 12,971, LAC/USC: 22,570). SF and BTAI occurred in 1.1 per cent and 0.6 per cent of patients, respectively. Most of the patients with SF had associated injuries (99%). Only four patients with SF had BTAI (4/392; 1.0%). The most common injuries associated with SF were rib (43%), lower extremity (36%), and upper extremity (33%) fractures. SF is uncommon after blunt trauma. Patients with SF almost always have significant associated injuries. Although SF indicates a high amount of energy transmitted to the upper thorax, these patients rarely have BTAI. SF should not be used as an indicator of possible BTAI.

Adult↗

Administration of recombinant interleukin-11 improves the hemodynamic functions and decreases third space fluid loss in a porcine model of hemorrhagic shock and resuscitation.

We have previously demonstrated that the administration of recombinant human interleukin-11 (rhIL-11) during resuscitation improves the blood pressure in a rodent model of hemorrhagic shock. The purpose of this study was to determine whether the effects of rhIL-11 could be reproduced in a large animal model and to elucidate the impact of rhIL-11 administration on the intravascular volume status and the degree of third space fluid loss after resuscitation. A 40% blood volume hemorrhage was induced in swine (n = 45, weight of 25-35 kg) followed by a 1-h shock period and resuscitation with 0.9% sodium chloride (three times the shed blood volume). The animals were randomized to receive sham hemorrhage (group I, sham); sham hemorrhage and 50 microg/kg rhIL-11 (group II, sham + IL-11); no drug (group III, saline); or 50 microg/kg rhIL-11 (group IV, IL-11). Blood and urine samples were obtained and analyzed at baseline, at the end of hemorrhaging, and thereafter once every hour. The pleural and peritoneal effusions were precisely quantified by using clinically accepted criteria. The mean arterial pressure (MAP) was higher postresuscitation (PR) in groups I, II, and IV (71.4 +/- 7.5 mmHg, 71.0 +/- 8.9 mmHg, and 72.9 +/- 12.3 mmHg, respectively) than in group III (59.9 +/- 10.9 mmHg), and the cardiac output of PR was higher in group IV (3.46 +/- 0.56 L/min) than in group III (2.99 +/- 0.62 L/min; P < 0.01). The difference in MAP between groups I and II became statistically significant at 40 min after rhIL-11 injection and such a difference persisted for 90 min. After resuscitation, the urine output was higher, and the urine specific gravity and third space fluid loss were lower in group IV (1434 +/- 325 mL and 1.0035, 82 +/- 21 mL) than in group III (958 +/- 390 mL and 1.0053, 125 +/- 32 mL; P < 0.05). In a porcine model of hemorrhagic shock, the administration of rhIL-11 at the start of resuscitation significantly improved the cardiac output and blood pressure. This strategy also significantly reduced the extent of third space fluid losses while also having a favorable impact on the intravascular volume status as evidenced by the improved urine output.

Animals↗

Does pelvic hematoma on admission computed tomography predict active bleeding at angiography for pelvic fracture?

Pelvic angiography plays an increasing role in the management of pelvic fractures (PFs). Little has been written regarding the size of pelvic hematoma on admission computed tomography (CT) and how it relates to angiography results after PF. This is a retrospective review of trauma patients with PF who underwent an admission abdominal/pelvic CT scan and pelvic angiography from 2001 to 2003. CT pelvic hematoma was measured and classified as minimal or significant based on hematoma dimensions. Presence of a contrast blush on CT scan was also documented. Thirty-seven patients underwent an admission CT scan and went on to pelvic angiography. Of the 22 patients with significant pelvic hematoma, 73 per cent (n = 16) had bleeding at angiography. Fifteen patients had minimal pelvic hematoma, with 67 per cent (n = 10) showing active bleeding at angiography. In addition, five of six patients (83%) with no pelvic hematoma had active bleeding at angiography. Six patients had a blush on CT scan, with five of these (83%) having a positive angiogram. But, 22 of 31 (71%) patients with no blush on CT scan had bleeding at angiography. The absence of a pelvic hematoma or contrast blush should not alter indications for pelvic angiography, as they do not reliably exclude active pelvic bleeding.

Adult↗

Outcome and prognostic factors in head injuries with an admission Glasgow Coma Scale score of 3.

HYPOTHESIS: To identify significant risk factors associated with mortality in patients with a Glasgow Coma Scale score of 3. DESIGN: Trauma registry study. SETTING: Level I urban trauma center. PATIENTS: A total of 760 patients with head injury with an admission Glasgow Coma Scale score of 3. Analysis was performed in all patients and in only patients who reached the hospital alive and had no major extracranial injuries (exclusion of patients with a chest or abdominal Abbreviated Injury Score [AIS] >3). MAIN OUTCOME MEASURES: Stepwise logistic regression analysis was used to identify independent risk factors associated with mortality. RESULTS: Blunt trauma accounted for 477 (63%) and penetrating trauma for 283 (37%) of the 760 head injuries. Penetrating trauma was significantly more likely to be associated with a lack of vital signs on admission (15% vs 9%; P = .03). Overall mortality was 76% (94% for penetrating injuries and 65% for blunt injuries; P<.001). Overall, 79% of patients had a head AIS of 4 or greater. Mortality in the subgroup was 64% (320/497) and was significantly higher in penetrating vs blunt trauma (89% vs 52%; P<.001). Penetrating trauma, high head AIS, hypotension on admission, and age older than 55 years were independent significant risk factors associated with mortality. Only 10% of the 177 survivors had good functional outcome at hospital discharge. Eighty-six patients (17% of those with vital signs on admission) became organ donors. CONCLUSIONS: Patients with head injury with an admission Glasgow Coma Scale score of 3 have a poor prognosis. Mechanism of injury, head AIS, hypotension on admission, and age play a critical role in outcome. These patients are an important source of organ donation and should be evaluated and resuscitated aggressively.

Adult↗

Trauma fatalities: time and location of hospital deaths.

BACKGROUND: Analysis of the epidemiology, temporal distribution, and place of traumatic hospital deaths can be a useful tool in identifying areas for research, education, and allocation of resources. STUDY DESIGN: Trauma registry-based study of all traumatic hospital deaths at a Level I urban trauma center during the period 1993 to 2002. The time and hospital location where deaths occurred were analyzed according to mechanism of injury, age, Glasgow Coma Score, and body areas with severe injury (Abbreviated Injury Scale [AIS] >/= 4). Logistic regression analysis was used to identify risk factors associated with death at various times after admission. RESULTS: During the study period there were 2,648 hospital trauma deaths. The most common body area with critical injuries (AIS >/= 4) was the head (43%), followed by the chest (28%) and the abdomen (19%). Overall, 37% of victims had no vital signs present on admission. Chest AIS >/= 4, penetrating trauma, and age greater than 60 years were significant risk factors associated with no vital signs on admission. Patients with severe chest trauma (AIS >/= 4) reaching the hospital alive were significantly more likely to die within the first 60 minutes than were patients with severe abdominal or head injuries (17% versus 11% versus 7%). In patients reaching the hospital alive, the time and place of death varied according to mechanism of injury and injured body area. Deaths caused by severe head trauma peaked at 6 to 24 hours, and deaths caused by severe chest or abdominal trauma peaked at 1 to 6 hours after admission. CONCLUSIONS: The temporal distribution and location of trauma deaths are influenced by the mechanism of injury, age, and the injured body area. These findings may help in focusing research, education, and resource allocation in a more targeted manner to reduce trauma deaths.

Abdominal Injuries↗

Life support for trauma and transport: a mobile ICU for safe in-hospital transport of critically injured patients.

BACKGROUND: In-hospital transport of newly injured patients is complicated by inadequate monitoring and adverse events. LSTAT (Life Support for Trauma and Transport, Integrated Medical Systems Inc) is a platform with multiple integrated systems (ventilator, defibrillator, suction, hemodynamic monitors, infusion and invasive monitoring channels, capnography, blood analysis, and electrocardiography) that allow seamless monitoring and effective life-saving interventions during transport. The platform functions as a mobile ICU and has preliminarily been tested with success in combat settings. This is the first evaluation of LSTAT in the civilian transport arena. STUDY DESIGN: Major trauma patients requiring trauma team activation, who were transported from the Emergency Department through different hospital departments (usually CT or angiography) to the ICU or operating room were included prospectively (December 2002 through April 2003). Patients were monitored and transported either by conventional means (conventional group) or by LSTAT (LSTAT group). Primary outcomes related to resource consumption and process of care; secondary outcomes related to clinical events. A questionnaire was completed by the surgeons participating in transports to document perceptions and preferences about means of in-hospital transport. RESULTS: Of 178 patients enrolled, 85 (48%) were in the LSTAT and 93 (52%) in the conventional groups. The two groups were similar except for age and mechanism of injury. Time of hand-bagging, preparation for transport, and return of blood results was significantly shorter in the LSTAT than in the conventional group (p < 0.001 for all). Significantly fewer LSTAT than conventional transports required more than one escorting physician (p < 0.001). Significantly more surveyed surgeons preferred LSTAT to conventional methods to transfer patients. There were no differences in adverse events, hospital stay, or mortality between the two groups. CONCLUSIONS: LSTAT emerges as a safe and convenient method of in-hospital transport. It allows uninterrupted monitoring, immediate response to physiologic changes, and reduction in human resource consumption. Process of care is improved. LSTAT's potential to improve clinical outcomes needs to be tested in different environments, including the prehospital setting.

Adolescent↗

Mortality prediction of head Abbreviated Injury Score and Glasgow Coma Scale: analysis of 7,764 head injuries.

BACKGROUND: We assessed the prognostic value and limitations of Glasgow Coma Scale (GCS) and head Abbreviated Injury Score (AIS) and correlated head AIS with GCS. STUDY DESIGN: We studied 7,764 patients with head injuries. Bivariate analysis was performed to examine the relationship of GCS, head AIS, age, gender, and mechanism of injury with mortality. Stepwise logistic regression analysis was used to identify the independent risk factors associated with mortality. RESULTS: The overall mortality in the group of head injury patients with no other major extracranial injuries and no hypotension on admission was 9.3%. Logistic regression analysis identified head AIS, GCS, age, and mechanism of injury as significant independent risk factors of death. The prognostic value of GCS and head AIS was significantly affected by the mechanism of injury and the age of the patient. Patients with similar GCS or head AIS but different mechanisms of injury or ages had significantly different outcomes. The adjusted odds ratio of death in penetrating trauma was 5.2 (3.9, 7.0), p < 0.0001, and in the age group > or = 55 years the adjusted odds ratio was 3.4 (2.6, 4.6), p < 0.0001. There was no correlation between head AIS and GCS (correlation coefficient -0.31). CONCLUSIONS: Mechanism of injury and age have a major effect in the predictive value of GCS and head AIS. There is no good correlation between GCS and head AIS.

Adult↗