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Vicente H Gracias

Publications and source records attributed to Vicente H Gracias.

18 recordsLinked to original sources

Improved nurse job satisfaction and job retention with the transition from a "mandatory consultation" model to a "semiclosed" surgical intensive care unit: a 1-year prospective evaluation.

OBJECTIVE: The change from a "mandatory consultation" to a "semiclosed" surgical intensive care unit (SICU) model will impact nurses considerably. We hypothesize that nurse job satisfaction, job turnover rates, and hospital costs for temporary agency nurses will improve and these improvements will be more dramatic in SICU sections with greater involvement of a dedicated surgical critical care service (SCCS). DESIGN: Prospective longitudinal survey. SETTING: Tertiary-care university hospital. SUBJECTS: SICU staff nurses. INTERVENTIONS: Change from mandatory consultation to semiclosed SICU. MEASUREMENTS AND MAIN RESULTS: We surveyed SICU nurses during the year-long transition to a semiclosed SICU service (five time points, 3-month intervals). The first four surveys included ten questions on nurse job satisfaction. The final survey included two additional questions. All questions were on a 5-point Likert scale (1 = strongly disagree to 5 = strongly agree). Nurse job turnover rates and money spent on agency nurses were compared over time; 503 of a possible 914 surveys were completed (55% overall return rate). Nurse job satisfaction scores significantly improved over time for all questions (p < .05). Hospital spending on agency nurses decreased significantly (p = .0098). The yearly nurse job turnover rate dropped from 25% to 16% (p = .15). The scores for both year-end statements ("I am more satisfied with my job now than 1 year ago" and "The SCCS management of all orders has improved my job satisfaction") were significantly higher in sections with greater SCCS involvement (p = .0070 and p < .0001). CONCLUSIONS: Nurse job satisfaction improved significantly with the transition to a semiclosed SICU. This higher satisfaction was associated with a significant decrease in spending on temporary agency nurses and a trend toward increased staff nurse job retention. SICU sections with greater SCCS involvement had more dramatic improvements. This semiclosed SICU model may help retain SICU nurses in a competitive job market in which experienced nurses are in short supply.

Attitude of Health Personnel↗

Anemia management program reduces transfusion volumes, incidence of ventilator-associated pneumonia, and cost in trauma patients.

BACKGROUND: Strategies to restrict transfusions are gaining acceptance in critical care. We implemented an anemia management program (AMP) for trauma patients in the Surgical Intensive Care Unit. AMP was based on a transfusion trigger of 7 g/dL hemoglobin once hemodynamic sufficiency was achieved. We hypothesized that AMP would decrease the transfusion of packed red blood cells (PRBCs) and cost without detriment in clinical outcomes. METHODS: Transfusion data were retrospectively collected for all trauma patients treated in our Surgical Intensive Care Unit between July 2002 and December 2003. AMP was implemented in a step-wise fashion during a 6-month period (January to June 2003). Data were compared for the 6-month period before (Group I, July to December 2002) and after (Group II, July to December 2003) complete AMP implementation. Blood transfusion volumes were compared using negative binomial regression. Clinical outcomes (length of stay [LOS], death, myocardial infarction [MI], and ventilator-associated pneumonia [VAP]) were compared using risk ratios. Age, sex, and injury severity score (ISS) were examined as potential confounders. RESULTS: In all, 514 trauma patients were treated during the study period (n = 270 in Group I and n = 244 in Group II). Group I and Group II were similar in age (mean: 43.6 versus 42.9) and ISS (mean: 18.3 versus 17.0). Mean PRBCs per patient transfused decreased from 23.1 units to 17.1 units (p = 0.057), reflecting a 22.5% reduction adjusted for confounders (p = 0.097). Outcome data revealed no differences in LOS (mean: 6.4 versus 5.9, p = 0.920), risk of death (4.1% versus 6.1%, p = 0.158), or MI (0.7% versus 0.8%, p = 0.974), but a significant reduction in the incidence of VAP (8.1% versus 0.8%, p = 0.002). Total PRBC cost decreased during the study period from 503,000 dollars to 397,000 dollars. CONCLUSIONS: An anemia management program appears to be safe when applied in the acute ICU phase of trauma care. Implementation of AMP in the ICU reduced the volume of PRBCs transfused with significant cost savings. No significant differences in length of stay, mortality rate, or MI rate were seen. The significant decrease in the rate of VAP requires further elucidation. Further long-term and larger studies are indicated.

Aged↗

Conventional neurocritical care and cerebral oxygenation after traumatic brain injury.

OBJECT: Control of intracranial pressure (ICP) and cerebral perfusion pressure (CPP) is the foundation of traumatic brain injury (TBI) management. In this study, the authors examined whether conventional ICP- and CPP-guided neurocritical care ensures adequate brain tissue O2 in the first 6 hours after resuscitation. METHODS: Resuscitated patients with severe TBI (Glasgow Coma Scale score < or = 8 and Injury Severity Scale score > or = 16) who were admitted to a Level I trauma center and who underwent brain tissue O2 monitoring within 6 hours of injury were evaluated as part of a prospective observational database. Therapy was directed to maintain an ICP of 25 mm Hg or less and a CPP of 60 mm Hg or higher. Data from a group of 25 patients that included 19 men and six women (mean age 39 +/- 20 years) were examined. After resuscitation, ICP was 25 mm Hg or less in 84% and CPP was 60 mm Hg or greater in 88% of the patients. Brain O2 probes were allowed to stabilize; the initial brain tissue O2 level was 25 mm Hg or less in 68% of the patients, 20 mm Hg or less in 56%, and 10 mm Hg or less in 36%. Nearly one third (29%) of patients with ICP readings of 25 mm Hg or less and 27% with CPP levels of 60 mm Hg or greater had severe cerebral hypoxia (brain tissue O2 < or = 10 mm Hg). Nineteen patients had both optimal ICP (< 25 mm Hg) and CPP (> 60 mm Hg); brain tissue O2 was 20 mm Hg or less in 47% and 10 mm Hg or less in 21% of these patients. The mortality rate was higher in patients with reduced brain tissue O2. CONCLUSIONS: Brain resuscitation based on current neurocritical care standards (that is, control of ICP and CPP) does not prevent cerebral hypoxia in some patients. This finding may help explain why secondary neuronal injury occurs in some patients with adequate CPP and suggests that the definition of adequate brain resuscitation after TBI may need to be reconsidered.

Adolescent↗

Use of goniometry to predict inadequate flexion-extension roentgenograms: a preliminary study.

BACKGROUND: Flexion-extension roentgenograms (FER) of the cervical spine are often inadequate because of limited range of motion (ROM). The purpose of this study was to determine the utility of goniometry to predict a patient's ability to achieve sufficient ROM to obtain adequate FER. METHODS: We evaluated 65 consecutive blunt trauma patients undergoing evaluation by FER in the emergency department. Patients were evaluated by goniometry before performing FER. Adequate ROM was defined as flexion and extension of >30 degrees from neutral. RESULTS: Seventy-five percent of patients had adequate FER. All of these patients were predicted to have sufficient ROM by goniometry. Goniometry predicted limited ROM in 69% of patients who had inadequate FER. The positive predicative value of goniometry in predicting inadequate FER was 100%. The incidence of cervical spine injuries was 44% in patients with inadequate ROM by goniometry and 23.0% in patients with inadequate FER (versus 7.69% in patients with adequate FER). CONCLUSION: Goniometry accurately predicted those patients who were unable to achieve sufficient ROM for adequate FER. Patients with inadequate FER were at a higher risk for cervical spine injury compared with patients with adequate FER (23.0 versus 7.69%). Early identification of these patients will help limit the number of inadequate studies obtained and expedite evaluation of high-risk patients.

Adult↗

The inefficiency of plain radiography to evaluate the cervical spine after blunt trauma.

BACKGROUND: Controversy persists regarding the most efficient and effective method of cervical spine evaluation after blunt trauma. Historic guidelines for patients undergoing computed tomography (CT) of the head advocate imaging the occiput-C2 as part of that study. For the remaining cervical spine, plain cervical spine radiographs (CSR) with supplemental CT are recommended. Many patients who require head CT also undergo supplemental cervical spine CT after plain CSR, which leads to separate, discontinuous cervical spine CT scans. We sought to determine the incidence of this in our population. We hypothesized that plain CSR alone often proves inadequate to evaluate the cervical spine in patients who require head CT. METHODS: The Eastern Association for the Surgery of Trauma (EAST) guidelines for cervical spine evaluation after blunt trauma were previously adopted and followed during the study period from December 1, 2002 to July 1, 2003. Our protocol included cross-table lateral and anteroposterior CSR with the occiput-C2 imaged with the head CT. We used segmental cervical spine CT to supplement those regions inadequately visualized by plain films. The electronic charts of 848 consecutive blunt trauma victims were retrospectively reviewed. The data abstracted included demographics, injury severity score, and the use and results of head CT and radiographic evaluation of the cervical spine. RESULTS: Of 848 consecutive blunt trauma patients, 716 (84.4%) underwent head CT. Average age was 44 years old, and average Injury Severity Score was 9. Seventy-six patients (11.6%) had clinical cervical spine examination alone, whereas 640 (89.4%) underwent plain CSR. In 178 patients (27.8%), plain two-view CSR visualized the entire cervical spine. Plain CSR were inadequate to visualize the complete cervical spine in 462 patients (72.2%). Of these patients, segmental CT was performed in 400 (87.6%). The remaining 62 (13.4%) patients did not have radiologic completion of their cervical spine evaluation before clinical examination. Nineteen patients (3.0%) had cervical spine fractures diagnosed on CT, of which only 6 (31.6%) were seen on plain CSR. The sensitivity and specificity of CSR to detect fractures was 31.6 and 99.2%, respectively. CONCLUSION: Plain CSR are inadequate to fully evaluate the cervical spine after blunt trauma, and supplemental CT is commonly required. Complete cervical spine CT is available, efficient, and accurate. Our findings support a growing body of literature that suggests that this modality should be used for blunt trauma patients who require radiographic evaluation of the cervical spine. Plain cervical spine radiographs need not be obtained. The EAST guidelines for cervical spine evaluation after blunt trauma should be updated to reflect this evolving practice pattern.

Cervical Vertebrae↗

Formalized radiology rounds: the final component of the tertiary survey.

BACKGROUND: An important objective of organized trauma care is to minimize delayed diagnoses and missed injuries. Discrepant interpretations of radiographs initially read by trauma surgeons represent a unique source of delayed diagnoses. The purpose of this study was to evaluate the efficacy of formalized radiology rounds as a component of the tertiary survey. METHODS: Over an 18-month period, 432 consecutive patients admitted to the trauma service at a Level II trauma center were studied prospectively. Radiographs obtained as part of the initial evaluation were initially interpreted by an attending trauma surgeon. All radiographs from the previous 24-hour admissions were reviewed by the trauma team with an attending radiologist at radiology rounds. New diagnoses (NDx) were defined as radiographic findings identified at radiology rounds that were not recorded by the trauma surgeon at the time of initial evaluation. The clinical significance of any NDx was described as follows: level 1, NDx resulted in significant morbidity/mortality; level 2, NDx resulted in alteration in care/no morbidity; level 3, NDx resulted in no alteration in care; level 4, NDx was an incidental finding by the radiologist; level 5, NDx by radiologist not definite. RESULTS: Forty-seven NDx were identified in 42 patients (9.7%). Of the 47 NDx, 19 (40.4%) were level 3 and 28 (59.6%) were level 2. No level 1 NDx were identified. Forty-four changes in clinical management were documented in the level 2 group. Eight new consults were ordered in seven patients (16.7%): orthopedic surgery (n = 6), neurosurgery (n = 1), and physical therapy (n = 1). Seventeen additional diagnostic procedures were required in 16 patients (38.1%): plain radiographs (n = 11) and computed tomographic scans (n = 6). Nineteen therapeutic changes were required in 16 patients (38.1%): splint/immobilization device (n = 7), modified level of activity (n = 6), surgical procedures (n = 4), transfer (n = 1), and home equipment (n = 1). CONCLUSION: A small number of radiographic findings are not detected by trauma surgeons during the initial evaluation. Although these findings are not of major clinical significance, the majority required some alteration in care plan. Formalized radiology rounds promotes clinical efficiency through early identification of these injuries, which facilitates any necessary alteration in the care plan.

Early Diagnosis↗

Cerebral cortical oxygenation: a pilot study.

BACKGROUND: Cerebral hypoxia (cerebral cortical oxygenation [Pbro2] < 20 mm Hg) monitored by direct measurement has been shown in animal and small clinical studies to be associated with poor outcome. We present our preliminary results observing Pbro2 in patients with traumatic brain injury (TBI). METHODS: A prospective observational cohort study was performed. Institutional review board approval was obtained. All patients with TBI who required measurement of intracranial pressure (ICP), cerebral perfusion pressure (CPP), and Pbro2 because of a Glasgow Coma Scale score < 8 were enrolled. Data sets (ICP, CPP, Pbro2, positive end-expiratory pressure (PEEP), Pao2, and Paco2) were recorded during routine manipulation. Episodes of cerebral hypoxia were compared with episodes without. Results are displayed as mean +/- SEM; t test, chi2, and Fisher's exact test were used to answer questions of interest. RESULTS: One hundred eighty-one data sets were abstracted from 20 patients. Thirty-five episodes of regional cerebral hypoxia were identified in 14 patients. Compared with episodes of acceptable cerebral oxygenation, episodes of cerebral hypoxia were noted to be associated with a significantly lower mean Pao2 (144 +/- 14 vs. 165 +/- 8; p < 0.01) and higher mean PEEP (8.8 +/- 0.7 vs. 7.1 +/- 0.3; p < 0.01). Mean ICP and CPP measurements were similar between groups. In a univariate analysis, cerebral hypoxic episodes were associated with Pao2 < or = 100 mm Hg (p < 0.01) and PEEP > 5 cm H2O (p < 0.01), but not ICP > 20 mm Hg, CPP < or = 65 mm Hg, or Pac2 < or = 35 mm Hg. CONCLUSION: Cerebral oxymetry is confirmed safe in the patient with multiple injuries with TBI. Occult cerebral hypoxia is present in the traumatic brain injured patient despite normal traditional measurements of cerebral perfusion. Further research is necessary to determine whether management protocols aimed at the prevention of cerebral cortical hypoxia will affect outcome.

Adult↗

Cumulative radiation dose caused by radiologic studies in critically ill trauma patients.

BACKGROUND: Critically ill trauma patients undergo many radiologic studies, but the cumulative radiation dose is unknown. The purpose of this study was to estimate the cumulative effective dose (CED) of radiation resulting from radiologic studies in critically ill trauma patients. METHODS: The study group was composed of trauma patients at an urban Level I trauma center with surgical intensive care unit length of stay (LOS) greater than 30 days. The radiology records were reviewed. A typical effective dose per study for each type of plain film radiograph, computed tomographic scan, fluoroscopic study, and nuclear medicine study was used to calculate CED. RESULTS: Forty-six patients met criteria. The mean surgical intensive care unit and hospital LOS were 42.7 +/- 14.0 and 59.5 +/- 28.5 days, respectively. The mean Injury Severity Score was 32.2 +/- 15.0. The mean number of studies per patient was 70.1 +/- 29.0 plain film radiographs, 7.8 +/- 4.1 computed tomographic scans, 2.5 +/- 2.6 fluoroscopic studies, and 0.065 +/- 0.33 nuclear medicine study. The mean CED was 106 +/- 59 mSv per patient (range, 11-289 mSv; median, 104 mSv). Among age, mechanism, Injury Severity Score, and LOS, there was no statistically significant predictor of high CED. The mean CED in the study group was 30 times higher than the average yearly radiation dose from all sources for individuals in the United States. The theoretical additional morbidity attributable to radiologic studies was 0.78%. CONCLUSION: From a radiobiologic perspective, risk-to-benefit ratios of radiologic studies are favorable, given the importance of medical information obtained. Current practice patterns regarding use of radiologic studies appear to be acceptable.

Accidents, Traffic↗

Integrating emergency general surgery with a trauma service: impact on the care of injured patients.

BACKGROUND: There has been considerable discussion on the national level on the future of trauma surgery as a specialty. One of the leading directions for the field is the integration of emergency general surgery as a wider and more attractive scope of practice. However, there is currently no information on how the addition of an emergency general surgery practice will affect the care of injured patients. We hypothesized that the care of trauma patients would be negatively affected by adding emergency general surgery responsibilities to a trauma service. METHODS: Our institution underwent a system change in August 2001, where an emergency general surgery (ES) practice was added to an established trauma service. The ES practice included emergency department and in-house consultations for all urgent surgical problems except thoracic and vascular diseases. There were no trauma staff changes during the study period. Trauma registry data (demographics, injuries, injury severity, and procedures) and performance improvement data (peer-review judgments for all identified errors, denied days, audit filters, and deaths) were abstracted for two 15-month periods surrounding this system change. Chi-square, Fisher's exact, and t tests provided between-group comparisons. RESULTS: The trauma staff evaluated a total of 5,874 patients during the 30-month study. There were 1,400 (51%) trauma admissions in the pre-ES group and 1,504 (48%) in the post-ES group, of which 1,278 and 1,434, respectively, met severity criteria for report to our statewide database (Pennsylvania Trauma Outcome Study [PTOS]). There were 163 (12.7% of PTOS) deaths in the pre-ES group compared with 171 (11.9% PTOS) deaths in the post-ES group (p = not significant [NS]). There was one death determined to be preventable by the peer review process for the pre-ES group, and none in the post-ES group. Both groups had 10 potentially preventable deaths, with the remaining mortalities being categorized as nonpreventable (p = NS). Unexpected deaths by TRISS methodology were 36 (2.8%) and 41 (2.9%) for the two groups, respectively (p = NS). There was no difference in the number of provider-specific complications between the groups (23, [1.8%] vs. 19 [1.3%], p = NS). The addition of emergency surgery has resulted in an additional average daily workload of 1.3 cases and 1.2 admissions. CONCLUSION: Despite an increase in trauma volume over the study period, the addition of emergency surgery to a trauma service did not affect the care of injured patients. The concept of adding emergency surgery responsibilities to trauma surgeons appears to be a valid way to increase operative experience without compromising care of the injured patient.

Emergency Service, Hospital↗

Training in trauma surgery: quantitative and qualitative aspects of a new paradigm for fellowship.

OBJECTIVE: To describe outcomes from a clinical trauma surgical education program that places the board-eligible/board-certified fellow in the role of the attending surgeon (fellow-in-exception [FIE]) during the latter half of a 2-year trauma/surgical critical care fellowship. SUMMARY BACKGROUND DATA: National discussions have begun to explore the question of optimal methods for postresidency training in surgery. Few objective studies are available to evaluate current training models. METHODS: We analyzed provider-specific data from both our trauma registry and performance improvement (PI) databases. In addition, we performed TRISS analysis when all data were available. Registry and PI data were analyzed as 2 groups (faculty trauma surgeons and FIEs) to determine experience, safety, and trends in errors. We also surveyed graduate fellows using a questionnaire that evaluated perceptions of training and experience on a 6-point Likert scale. RESULTS: During a 4-year period 7,769 trauma patients were evaluated, of which 46.3% met criteria to be submitted to the PA Trauma Outcome Study (PTOS, ie, more severe injury). The faculty group saw 5,885 patients (2,720 PTOS); the FIE group saw 1,884 patients (879 PTOS). The groups were similar in respect to mechanism of injury (74% blunt; 26% penetrating both groups) and injury severity (mean ISS faculty 10.0; FIEs 9.5). When indexed to patient contacts, FIEs did more operations than the faculty group (28.4% versus 25.6%; P < 0.05). Death rates were similar between groups (faculty 10.5%; FIEs 10.0%). Analysis of deaths using PI and TRISS data failed to demonstrate differences between the groups. Analysis of provider-specific errors demonstrated a slightly higher rate for FIEs when compared with faculty when indexed to PTOS cases (4.1% versus 2.1%; P < 0.01). For both groups, errors in management were more common than errors in technique. Twenty-one (91%) of twenty-three surveys were returned. Fellows' feelings of preparedness to manage complex trauma patients improved during the fellowship (mean 3.2 prior to fellowship versus 4.5 after first year versus 5.8 after FIE year; P < 0.05 by ANOVA). Eighty percent rated the FIE educational experience "great -5" or "exceptional- 6." Eighty-five percent consider the current structure of the fellowship (with FIE year) as ideal. Ninety percent would repeat the fellowship. CONCLUSION: The educational experience and training improvement offered by the inclusion of a FIE period during a trauma fellowship is exceptional. Patient outcomes are unchanged. The potential for an increased error rate is present during this period of clinical autonomy and must be addressed when designing the methods of supervision of care to assure concurrent senior staff review.

Colonic Pouches↗

Abdominal compartment syndrome in the open abdomen.

BACKGROUND: Multiple methods exist to manage in the intensive care unit the patient with an open abdomen. An increasingly common method is the vacuum packed technique. This method accommodates considerable expansion of intra-abdominal contents and should obviate the potential development of the abdominal compartment syndrome (ACS). Despite this, some patients with these temporary abdominal dressings will go on to develop ACS. For the purpose of this study we have defined this clinical entity as the open abdomen ACS. HYPOTHESIS: Patients with an open abdomen who develop ACS have a poor prognosis. Fluid requirements and resuscitative indices may predict which of these patients will develop open abdomen ACS. METHODS: A retrospective review was performed of patients with trauma who had an open abdomen treated with vacuum packed dressings at our urban level I trauma center. Over 1 year (July 1, 1999-June 30, 2000), 5 patients managed with an open abdomen developed ACS. These patients were compared with 15 consecutive patients with an open abdomen who did not develop clinical ACS during that same period. Fluid resuscitation, base deficit, pH, lactate level, systolic blood pressure, prothrombin time, temperature, peak inspiratory pressure, and PCO(2) were abstracted. The Fisher exact test was used for statistical analysis. RESULTS: In patients managed with an open abdomen, ACS developed between 1.5 and 12 hours (mean [SD], 7.5 [3.9] hours) after placement of the vacuum packed dressing. The base deficit, pH, peak inspiratory pressure, PCO(2,) and lactate level were more abnormal and the crystalloid requirements were significantly higher in the ACS group. The systolic blood pressure, temperature, and prothrombin time did not differ between groups. Three patients with ACS developed a second episode of ACS. Mortality in the ACS group was 3 (60%) of 5 patients vs 1 (7%) of 15 patients in the control group. CONCLUSIONS: Management of the open abdomen with the temporary abdominal closure does not prevent the development of ACS. Mortality is high when ACS occurs in this scenario. Severe physiologic derangement and high crystalloid requirements may predict which patients will develop ACS.

Abdomen↗

Hepatic angiography in patients undergoing damage control laparotomy.

OBJECTIVE: Patients undergoing damage control (DC) laparotomy require intensive and aggressive resuscitation, and may require additional maneuvers to control parenchymal bleeding. Those patients suffering significant liver injury are at high risk for arterial bleeding deep within the liver, and many require hepatic angiography in addition to hepatic packing. We reviewed our experience with hepatic angiography, and sought to determine its safety in the DC population of penetrating and blunt trauma patients. METHODS: A 3-year (June 1997-May 2000) retrospective review generated 37 DC patients. Patients sustaining hepatic trauma constituted the study group. Patients undergoing angiography in addition to DC laparotomy were compared with the group of patients not undergoing angiography. Data regarding mechanism of injury, patient demographics, extent of hepatic injury, and presence of associated injuries were collected. Physiologic parameters including vital signs at admission, lowest pH and base excess in the operating room, and lactate levels in the intensive care unit, as well as volumes of fluid resuscitation throughout all phases of DC were examined. Complications including death, intra-abdominal processes, acute respiratory distress syndrome and/or multiple organ dysfunction syndrome, and acute renal failure were reviewed. RESULTS: Nineteen patients (51%) had hepatic trauma and underwent perihepatic packing as a part of DC laparotomy. Eleven had sustained penetrating injury and 8 had blunt injury. There was 1 American Association for the Surgery of Trauma grade I, 5 grade II, 3 grade III, and 10 grade IV injuries. Nine patients in the study population underwent angiography, and eight of these were hepatic artery angiograms. One hepatic angiogram was obtained before operation and seven were obtained in the immediate postoperative period. Six underwent embolization of bleeding hepatic vessels, for a therapeutic liver angiography rate of 75%. There was no statistical difference in physiologic parameters or fluid requirements between the patients who underwent angiography and those who did not. There were no mishaps or complications from angiography or while in the angiography suite. CONCLUSION: Hepatic angiography is a safe adjunct to the principles of damage control. It has a high therapeutic ratio, with no significant untoward effect in this small study population.

Adolescent↗

Evaluation of the lower spine after blunt trauma using abdominal computed tomographic scanning supplemented with lateral scanograms.

BACKGROUND: Patients at risk for thoracolumbar junction (TLJ) and lumbar spine (LS) injury after blunt trauma are classically evaluated using conventional radiographs. Frequently, these patients also undergo abdominal and pelvic computed tomographic (CT) scanning to exclude the presence of associated intra-abdominal injuries. Standard abdominal and pelvic CT scan usually includes an anteroposterior (AP) scout film (scanogram) obtained before the cross-sectional imaging. The objective of this study was to determine whether a lateral CT scanogram and axial CT views would provide adequate imaging to allow for evaluation of the TLJ and LS and therefore eliminate the need for conventional screening computed lumbar spine radiographs (CLSRs). METHODS: Patients who sustained blunt injury and required both CLSRs as well as abdominal and pelvic CT scans were prospectively identified. The study protocol (CT + S) added lateral CT scanograms to all helical abdominal and pelvic CT scan studies. The AP and lateral CT scanograms were included with the axial images, and these views were reviewed together during final radiographic interpretation and diagnosis. The results of CT + S were compared with readings of the CLSRs (AP and lateral) in a blinded fashion by a trauma radiologist. RESULTS: Lateral scanograms were generated for 71 patients. All scanograms were technically adequate, with image quality equal or superior to computed plain radiographs. Ten patients were found to have 20 fractures, 19 acute and 1 chronic. All abnormalities identified by plain radiographs were seen using CT + S (sensitivity, 100%; specificity, 100%). Eight transverse process and two spinous process fractures not seen on CLSRs were identified using CT + S. CONCLUSION: Our CT + S protocol (axial CT images plus AP and lateral scanograms) outperformed screening CLSRs in the detection of fractures of the lower spine (TLJ + LS) after blunt trauma. In addition, scanogram imaging is less dependent on body habitus and adds no additional cost or time to abdominal and pelvic CT scanning. Further study is required to determine whether CT + S can routinely replace conventional radiographs of the lower spine after blunt trauma.

Accidental Falls↗

Utility of flexion and extension radiographs of the cervical spine in the acute evaluation of blunt trauma.

BACKGROUND: The purpose of this study is to investigate the usefulness of flexion and extension radiographs of the cervical spine for the acute evaluation of ligamentous injury in cases of awake blunt trauma. METHODS: A review of 106 consecutive cases of blunt trauma evaluated with flexion and extension radiographs of the cervical spine obtained in the acute setting at a Level I trauma center was performed. The data compiled included the age, sex, mechanism of injury, type of radiographic evaluations, interpretation of all radiographic studies, and clinical outcome on follow-up. RESULTS: Sixty-six of the patients (62%) were involved in motor vehicle crashes. Other injuries included 15 falls (14%), 9 blunt assaults (8.5%), and 16 other types of blunt trauma (15%). Thirteen cervical spine injuries were diagnosed in 9 of 106 patients (8.5%). Injuries included two fractures, eight acute disc herniations, two ligamentous injuries, and one cord contusion diagnosed on the basis of all radiologic evaluation and clinical follow-up. Seventy-four patients (70%) had a range of flexion and extension motion interpreted as adequate for diagnostic purposes. Five of the 74 patients (6.75%) with an adequate range of motion had cervical spine injuries. No ligamentous injuries were misdiagnosed in this group. Thirty-two of the flexion and extension examinations (30%) were interpreted as inadequate because of limited motion. Four of the 32 patients (12.5%) with inadequate flexion and extension examinations had injuries subsequently detected on cross-sectional imaging (computed tomographic scanning or magnetic resonance imaging) including severe ligamentous injury. CONCLUSION: When adequate motion was present on flexion and extension radiographs, the false-negative rate was zero in this study. However, in the acute setting, 30% of the examinations were limited by inadequate motion. A higher percentage of injury (12.5%) was detected by subsequent cross-sectional imaging in these patients. Limited flexion and extension motion on physical examination should preclude the use of flexion and extension radiographs, as they are of limited diagnostic utility. Cross-sectional imaging may be warranted in this high-risk group of patients.

Acute Disease↗

Incidence and natural history of below-knee deep venous thrombosis in high-risk trauma patients.

BACKGROUND: Venous thromboembolic disease remains a difficult problem in the trauma patient population. The purpose of this study was to delineate the incidence and natural history of below-knee deep venous thrombosis (BKDVT) in high-risk trauma patients. METHODS: Patients were stratified into risk categories (low, high, or very high) for deep venous thrombosis on the basis of an institutional practice management guideline and known risk factors. All at-risk patients received either sequential compression devices (SCDs) or subcutaneous heparin (SQH) compounds, and high-risk patients also underwent weekly surveillance by duplex scanning. Very-high-risk patients had prophylactic inferior vena cava (IVC) filter placement. This prospective, observational study examines the duplex results on all high-risk patients. Data regarding method of prophylaxis, the incidence of proximal propagation on serial duplex examinations, and changes in management (anticoagulation or IVC filter placement) were collected on the high-risk patients who developed a BKDVT. RESULTS: Between March 1997 and June 2001, 601 patients were stratified into the high-risk category and underwent a total of 1,109 duplex examinations. Eighty-five patients (14.1%) had 113 BKDVTs. These patients underwent a total of 212 duplex examinations; all patients developed their BKDVTs within 34 days. Weekly incidence was 40 (47.1%), 25 (29.4%), 15 (17.6%), 1 (1.2%), and 4 (4.7%) for weeks 1 through 5, respectively. SCDs, SQH compounds, and SCDs with SQH compounds were used on 73, 3, and 9 patients, respectively. In 4 of 85 (4.7%) patients, the BKDVT propagated proximally to an above-knee location in 4 to 8 days. Two of these patients were anticoagulated, and two underwent placement of an IVC filter. One patient (1.2%) with a BKDVT that had not propagated on duplex study developed a pulmonary embolus. CONCLUSION: Patients identified as high-risk by our practice management guideline had a 14.1% incidence of a BKDVT; 94.1% were diagnosed within the first 3 weeks of hospitalization. Proximal propagation occurred in 4.7% and led to changes in management. Serial duplex examination of the BKDVT alone, rather than systemic anticoagulation or IVC filter placement, appears to be a reasonable treatment alternative.

Adolescent↗

The role of positive examinations in training for the focused assessment sonogram in trauma (FAST) examination.

The purpose of this study is to determine whether the inclusion of known positive patients to the practical portion of a Focused Assessment Sonogram in Trauma (FAST) training course improves overall training and increases FAST accuracy. This is a prospective double-blind design. Original course participants (PRE) underwent a 2-hour didactic session and practicum with ten normal volunteers. Modified course participants (POST) additionally imaged five peritoneal dialysis (PD) patients to simulate positive examinations. The practitioners (six PRE and five POST) were compared as to their ability to detect and quantify intraperitoneal fluid (0-2000 cc) in nine PD patients during a double-blind prospective examination. Test results were reported as positive or negative. Positive results were further quantified by volume. Each practitioner performed ten examinations. Data for inexperienced clinicians are presented. Sensitivity for detecting < or = 750 cm3 was 45 per cent PRE and 87 per cent POST (P = 0.02). Accuracy in quantifying volume within 250 cm3 was 38 per cent PRE and 44 per cent POST (not significant). FAST accuracy for inexperienced sonographers--particularly in diagnosing smaller volumes--can be improved significantly by including positive studies in training. Exposure to positive FAST examinations during training improves the learning curve. With the growing dependency on FAST to accurately triage blunt abdominal trauma safe and effective FAST training should consist of didactic education and a practical portion that includes positive studies. When screened properly PD patients can be used effectively to demonstrate positive FAST studies.

Abdominal Injuries↗