Splenic laceration caused by chronic posttraumatic diaphragmatic hernia.
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Biomedical subjects
Publications and source records attributed to A D Perron.
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The electrocardiogram (ECG) may be entirely normal in the patient with pulmonary embolism (P/E); alternatively, any number of rhythm and/or morphologic abnormalities may be observed in such a patient. The abnormal ECG may deviate from the norm with alterations in rhythm, in conduction, in axis of the QRS complex, and in the morphology of the P wave, QRS complex, and ST segment/T wave. The electrocardiographic findings associated with PE are numerous, including arrhythmias (sinus tachycardia, atrial flutter, atrial fibrillation, atrial tachycardia, and atrial premature contractions), nonspecific ST segment/T wave changes, T wave inversions in the right precordial leads, rightward QRS complex axis shift and other axis changes, S1Q3 or S1Q3T3 pattern, right bundle branch block, and acute cor pulomnale. This review focuses on the ECG and the various abnormalities seen in the patient with PE.
Tibial femoral knee dislocation is a severe injury, with a real potential for limb-threatening vascular compromise, primarily caused by injury to the popliteal artery. When unrecognized or inadequately evaluated and treated, these injuries often lead to a high incidence of morbidity and potential limb loss. Emergency medicine practitioners should be vigilant for vascular injury associated with knee dislocation. This review article examines the clinical presentation, diagnostic techniques, and management options applicable to the emergency practitioner.
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UNLABELLED: Acute myocardial infarction (AMI) is one of many causes of ST-segment elevation (STE) in emergency department (ED) chest pain (CP) patients. The morphology of STE may assist in the correct determination of its cause, with concave patterns in non-AMI syndromes and non-concave waveforms in AMI. OBJECTIVES: To determine the impact of STE morphologic analysis on AMI diagnosis and the ability of this technique to separate AMI from non-infarction causes of STE. METHODS: The electrocardiograms (ECGs) of consecutive ED adult CP patients (with three serial troponin I determinations) were interpreted in two-step fashion by six attending emergency physicians (EPs): 1) the determination of STE by three EPs followed by 2) STE morphologic analysis (either concave or non-concave) in those patients with STE. The impact of STE morphology analysis was investigated in the identification of AMI and non-AMI causes of STE. Acute myocardial infarction was diagnosed by abnormal serum troponin I values (>0.1 mg/dL) followed by a rise and fall of the serum marker; STE diagnoses of non-AMI causes were determined by medical record review. Interobserver reliability concerning STE morphology was determined. Study inclusion criteria included at least three troponin values performed in serial fashion no more frequently than every three hours, initial ED ECG, ED diagnosis, and final hospital diagnosis. RESULTS: Five hundred ninety-nine CP patients were entered in the study, with 171 (29%) individuals having STE on their ECGs. Of the 171 patients who had STE, 56 had AMI, 50 had unstable angina pectoris (USAP), and 65 had non-coronary final diagnoses. Forty-nine patients had non-concave STE, 46 with AMI and three with USAP; no patient with a non-coronary diagnosis had a non-concave STE morphology. The sensitivity and specificity of the non-concave STE morphology for AMI diagnoses were 77% and 97%, respectively; the positive and negative predictive values for non-concave morphology in AMI diagnoses were 94% and 88%, respectively. Interobserver reliability in the STE morphology determination revealed a kappa coefficient of 0.87. CONCLUSIONS: A non-concave STE morphology is frequently encountered in AMI patients. While the sensitivity of this pattern for AMI diagnosis is not particularly helpful, the presence of this finding in adult ED chest pain patients with STE strongly suggests AMI. This technique produces consistent results among these EPs.
Immediate concussive convulsions are an unusual but dramatic sequela to head injuries. Previously believed to be an epileptic phenomenon, they are now thought to be a brief traumatic functional decerebration that results from loss of cortical inhibition. With concussive convulsions generally occurring within seconds of head impact and lasting up to several minutes, patients are initially in a tonic phase, followed by a clonic convulsion. A postictal phase is generally brief if it occurs at all with these episodes. Patients with isolated concussive convulsions have no evidence of structural brain injury as assessed with neuroimaging studies or physical examination. Neuropsychological testing often demonstrates transient cortical dysfunction consistent with the concussive episode. The long-term outcome for patients with isolated concussive convulsion is universally good, with no long-term neurologic sequelae and no increased incidence of early or late posttraumatic epilepsy. Emergency department management should focus on evaluation of the associated concussive injury. The concussive convulsion requires no specific therapy, and antiepileptic medication is not indicated.
OBJECTIVE: To determine the emergency physician's (EP's) ability to identify the cause of ST-segment elevation (STE) in a hypothetical chest pain patient. METHODS: Eleven electrocardiograms (ECGs) with STE were given to EPs; the patient in each instance was a 45-year-old male with a medical history of hypertension and diabetes mellitus with the chief complaint of chest pain. The EP was asked to determine the cause of the STE and, if due to acute myocardial infarction (AMI), to decide whether thrombolytic therapy (TT) would be administered (the patient had no contraindication to such treatment). Rates of TT administration were determined; appropriate TT administration was defined as that occurring in an AMI patient, while inappropriate TT administration was defined as that in the non-AMI patient. RESULTS: Four hundred fifty-eight EPs completed the questionnaire; levels of medical experience included the following: postgraduate year 2-3, 193 (42%); and attending, 265 (58%). The overall rate of correct interpretation of the study ECGs was 94.9% (4,782 correct interpretations out of 5,038 instances). Acute myocardial infarction with typical STE, ventricular paced rhythm, and right bundle branch block were never misinterpreted. The remaining conditions were misinterpreted with rates ranging between 9% (left bundle branch block, LBBB) and 72% (left ventricular aneurysm, LVA). The overall rate of appropriate thrombolytic agent administration was 83% (1,525 correct administrations out of 1,832 indicated administrations). The leading diagnosis for which thrombolytic agent was given inappropriately was LVA (28%), followed by benign early repolarization (23%), pericarditis (21%), and LBBB without electrocardiographic AMI (5%). Thrombolytic agent was appropriately given in all cases of AMI except when associated with atypical STE, where it was inappropriately withheld 67% of the time. CONCLUSIONS: In this survey, EPs were asked whether they would give TT based on limited information (ECG). Certain syndromes with STE were frequently misdiagnosed. Emergency physician electrocardiographic education must focus on the proper identification of these syndromes so that TT may be appropriately utilized.
As the patient population becomes more involved with athletics, informally or in an organized fashion, risk of stress fracture increases. Rapid and safe recovery is best ensured with early diagnosis and expedient conservative therapy. A history of progressive pain, initially with exertion and ultimately at rest, suggests the diagnosis. Plain radiographs often do not reveal fractures, and specialized studies, such as bone scanning, SPECT, or MRI, may be necessary to confirm the diagnosis. Simple rest with progressive reintroduction of activity is the treatment of choice for most stress fractures.
Posterior shoulder dislocation is a relatively uncommon event, with an incidence of 1% to 4% of all shoulder dislocations. Because of the infrequency of this condition, the diagnosis is often missed, with significant consequences to the patient Injury in the athlete is usually from a direct blow or fall onto an outstretched arm. After such an injury, symptoms may be confused with a shoulder contusion or rotator cuff injury. Significant complications such as chronic posterior dislocation and degenerative disease of the shoulder can occur if the diagnosis is missed. A careful history and physical examination, complete radiographic evaluation, and a high level of suspicion are required to identify posterior shoulder dislocation. Treatment consists of prompt closed reduction, or operative repair if this is unsuccessful.
Octylcyanoacrylate (Dermabond) is approved by the Food and Drug Administration for laceration closure. International studies have shown its utility in wound closure and have shown it to be as good or better than suture closure for speed, patient preference, and cosmesis, with no difference in the rate of dehiscence or infection. We sought to determine whether it retains its tensile strength, durability, and skin apposition when an athlete is allowed to reenter competition, where it is subject to recurrent stress, moisture, and trauma. The study was performed at two professional hockey sites. Wounds were anesthetized, irrigated, and debrided. The skin was closed with Dermabond. The athlete was returned immediately to competition. Wounds were examined at the end of competition and again at 7 days. A total of 32 lacerations on 28 players were studied. The mean size of laceration was 2.3 cm (range 0.8 cm to 4.5 cm). The majority (95%) of wounds were on the face. Of the 32 lacerations, 31 (97.6%) had good results at the conclusion of the game. Of these 31, all had good results at 7 days following repair. Dermabond retained its strength, durability, and skin apposition when the athlete was allowed to reenter competition following wound repair.
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Certain intracranial events produce electrocardiographic abnormalities, most often involving the T wave with diffuse, deep inversions. The amplitude of the T wave inversion is impressive, approaching 15 mm in some cases. Morphologically, the T wave is asymmetric with a characteristic outward bulge in the ascending portion. In the setting of a CNS event, relatively minor degrees of ST segment elevation are also seen in leads with obviously abnormal T waves; the ST segment elevation frequently is less noticeable than the T wave changes and is usually less than 3 mm. The T wave inversions with associated ST segment elevation are most pronounced in the mid-precordial and lateral precordial leads; such findings are also noted to a less extent in the limb leads. Other electrocardiographic features associated with acute CNS injury include prominent U waves of either polarity and QT interval prolongation, often exceeding 60% of its normal value, as well as malignant forms of bradycardia and tachycardia.
STUDY OBJECTIVE: Cranial computed tomography (CT) has assumed a critical role in the practice of emergency medicine for the evaluation of intracranial emergencies. Several recent studies have documented a deficiency in the emergency physician's ability to interpret these studies. The purpose of this study was to quantify the baseline ability of emergency medicine residents to interpret cranial CTs, and to test a novel method of cranial CT interpretation designed for the emergency physician in training. METHODS: A standardized pretest was administered to assess baseline ability to interpret CT scans. A standardized posttest was given 3 months after the course. Each test consisted of 12 CT scans with a short accompanying history. All scans were validated by 3 expert reviewers for difficulty and diagnosis. A 2-hour course based on the mnemonic "Blood Can Be Very Bad" was then administered. "Blood" reminds the examiner to search for blood, "Can" prompts the examiner to identify 4 key cisterns, "Be" denotes the need to examine the brain, "Very" prompts a review of the 4 ventricles, and finally "Bad" reminds the examiner to evaluate the bones of the cranium. RESULTS: Eighty-three residents at 5 institutions were initially examined. The mean percentage correct before the course was 60% (95% confidence interval [CI] 58%-64%) on the standardized pretest. At retesting 3 months after the course, the accuracy rate increased to 78% (n=61, 95% CI 75%-81%, P<.001 paired t test). CONCLUSION: Emergency medicine residents are deficient in their ability to interpret cranial CT scans. A novel educational course was demonstrated to significantly improve this ability.
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Thoracic aortic dissection is a rare but recognized complication of crack cocaine inhalation. It is thought to be triggered in some cases by transient severe elevations in blood pressure, causing a shear effect on the thoracic aorta. Unrecognized, it can result in high morbidity and mortality. A case of an unusual presentation of thoracic aortic dissection following crack cocaine ingestion is reported.
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INTRODUCTION: Mass casualty incidents (MCIs) are infrequent but potentially overwhelming events that can stress the capabilities of even the most organized emergency medical services (EMS) system. The Maryland EMS system has been identified as a pioneer and leader in the field of prehospital emergency care and, as with many states, Maryland's regional preparation for MCIs has been integrated into its overall EMS systems planning. OBJECTIVE: To determine how successful this integration has been by examining a three-year history of response to MCIs in Maryland. METHODS: A three-year case series of MCIs in Maryland was obtained from a Nexis national news publications search. These MCIs were cross-referenced with U.S. postal ZIP codes and the U.S. Census Bureau's ZIP code files. They were then mapped and summary statistics were prepared for analysis. Data obtained through the Maryland Health Services Cost Review Commission for all severely injured patients discharged from Maryland hospitals were obtained over the same three-year period for comparison. RESULTS: Eight MCIs occurred over a three-year period, resulting in a total of 203 injuries. An average of 25.4 +/- 10.7 injuries occurred per MCI. A total of 158 (77.8%) of injuries necessitated ambulance transportation. An average of 3.1 +/- 1.1 hospitals were involved per MCI. CONCLUSIONS: The Maryland EMS system was effective in responding to MCIs ranging in size from 10 to nearly 40 injuries. Analyzing MCIs that reoccur on a year-to-year basis should figure into the planning process for EMS systems.
OBJECTIVES: To determine survival in pediatric trauma patients receiving cardiopulmonary resuscitation (CPR) in the prehospital setting and to identify subgroups of patients who may have increased survival rates. METHODS: Records were obtained from the National Pediatric Trauma Registry on all pediatric trauma patients (age <19 years) over an 82-month period who received CPR at the scene of the injury. Data were recorded as to type of injury, need for additional CPR at the receiving hospital, and intubation in the field. Patient outcome was defined as: dead on arrival, dead at trauma center discharge, or alive at trauma center discharge. Univariate and logistic regression analyses were performed to identify statistical differences in survivors compared with nonsurvivors. RESULTS: Seven hundred twenty-nine patients were identified. The median age was 7.0 years, with a mean of 7.9 years; 62% were male, 37% were female, and 1% had no gender recorded. Age and gender distributions were not statistically different for the three outcomes. Eighty-seven patients (12%) were dead on arrival and an additional 458 (63%) were dead at trauma center discharge, while 184 (25%) were alive at trauma center discharge. Motor vehicle crashes accounted for 27% of admissions, and pedestrians struck by vehicle accounted for 23%. Intentional violence accounted for 18% of the accrued patients. Predictors of death in the patients who were alive at admission were penetrating injury (p = 0.001) and requirement of additional CPR at the trauma center (p = 0.001). Prehospital intubation was associated with decreased survival. Of the 641 patients who arrived at the hospital alive, 29% lived to trauma center discharge, but of the 534/641 who received prehospital intubation, only 19% lived. The mean Functional Independence Measure (FIM) scores were 38.9 (range 18 to 126). CONCLUSIONS: Survival of pediatric trauma patients after receiving CPR in the prehospital setting is significantly higher than expected in adult patients. Penetrating trauma, the need for additional CPR at the trauma center, and prehospital intubation are all predictors of a worse outcome.