Re: Velmahos, G.C., et al: Transpelvic gunshot wounds: routine laparotomy or selective management?
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to M F Rotondo.
Explore the source record for details and available documents.
The spectrum of blunt cardiac injury varies from the asymptomatic cardiac concussion to the immediately fatal cardiac rupture. Although the majority of victims sustaining blunt cardiac rupture die before receiving medical attention, some survive to evaluation. The diagnosis of cardiac rupture, if established, typically results from the signs and symptoms of pericardial tamponade. However, some patients may have remarkably few signs and symptoms suggestive of cardiac injury and represent a significant diagnostic challenge. We provide two cases of cardiac rupture in which the diagnosis was delayed by the presence of an associated pericardial tear with decompression into the mediastinum and pleural space. In neither of the cases did existing institutional algorithms for blunt cardiac injury assist in establishing the diagnosis before the acute demise of the patient. The presence of a coexisting pericardial injury in these patients with blunt cardiac rupture obscured the diagnosis, leading to the deaths of these patients. A discussion of these two cases and review of the literature is provided with recommendations for diagnostic algorithms in patients sustaining blunt thoracic trauma with possible cardiac and pericardial injury.
Airway control is the initial priority in the management of the injured patient. The purpose of this investigation was to evaluate the experience of an aeromedical transport team in the utilization of rapid sequence induction (RSI) for endotracheal intubation in the prehospital setting. Records of a consecutive series of injured patients undergoing RSI between June 1988 and July 1992 by a university-based aeromedical transport team were reviewed for demographics, intubation mishaps, and pulmonary complications. The relationship between intubation mishaps and pulmonary complications was analyzed. Eighty-four patients were studied with a mean age of 30.8 +/- 15.3 years. The mean Revised Trauma Score was 11.3 +/- 2.4, and the mean Injury Severity Score (ISS) was 19.6 +/- 11.5. Intubation mishaps occurred in 15 patients (18%), and pulmonary complications developed in 22 (29%) of the 75 patients surviving longer than 24 hours. There was no relationship between intubation mishaps and pulmonary complications. Abbreviated Injury Scale (AIS) face score was significantly higher in patients with intubation mishaps, compared with patients without mishaps (1.1 +/- 1.2 and 0.5 +/- 0.9, respectively, P < .05, Wilcoxon rank-sum). ISS and AIS chest were higher in patients with pulmonary complications, compared with those without (25.7 +/- 12.6 and 17.4 +/- 10.3 and 2.2 +/- 1.8 and 1.0 +/- 1.5, ISS and AIS respectively; P < .05, Wilcoxon rank-sum). Eighty-one patients (96%) underwent successful RSI, 73 (87%) on the first attempt. Failure to intubate occurred in three patients (4%). Performed under strict protocol by appropriately trained aeromedical transport personnel, RSI is an effective means to facilitate endotracheal intubation in the injured patient requiring definitive airway control. Pulmonary complications were related to injury severity and not to intubation mishaps.
OBJECTIVE: To examine the effect of a clinical and administrative partnership with an academic urban Level I trauma center on the patient transfer practices at a suburban/rural Level II center. METHODS: Data for 2 years before affiliation (PRE) abstracted from inpatient charts and the trauma registry were compared with that for 2 years after (POST). The following data were collected: number of, reason for, and destination and demographics of transfers. Chi(2) test and t test analyses were used; p < 0.05 defined significance; data are mean +/- SEM. RESULTS: Transfer rate increased from 4% PRE to 6.9% (p = 0.001) POST with no significant difference in age, Glasgow Coma Scale score, Injury Severity Score, or Revised Trauma Score. Repatriation occurred in 12.8% POST (none PRE). The current Level I facility accepted 1.8% of all transfers PRE and 36.4% POST (p = 0.0001). PRE/POST rates by reason are as follows: pediatric, 14.6%/9.0% (p = 0.04); intensive care unit, 0.4%/1.7% (p = 0.13); complex orthopedic, 100%/0% (p = 0.005); vascular, 50%/0% (p = 0.008); spinal cord injury, 100%/100%; and ophthalmologic, 0%/100% (p = 0.005). CONCLUSIONS: In this experience of Level I/II partnership (1) transfer patterns were altered, (2) select patient cohort transfers decreased (pediatric, complex orthopedic, vascular), whereas others increased (aortic work-up), and (3) repatriation rates were low.
Explore the source record for details and available documents.
OBJECTIVE: Tracheostomy is one of the most commonly performed surgical procedures in the critical care setting. The early use of tracheostomy as a method of primary airway management has been proposed as a means to decrease pulmonary morbidity and to shorten the number of ventilator, intensive care unit, and hospital days. We set out to (1) determine whether hypercarbia occurs during tracheostomy of the critically ill patient and (2) determine the extent to which the partial pressure of carbon dioxide in arterial blood (PaCO2) rises during percutaneous endoscopic, percutaneous Doppler, and standard surgical tracheostomy. DESIGN: Prospective, open clinical trial. SETTING: Surgical intensive care unit and operating room in teaching hospitals. PATIENTS: During mechanical ventilation, patients underwent either percutaneous endoscopic (PET), percutaneous Doppler (PDT), or standard surgical tracheostomy (ST), based on surgeon preference. Arterial blood gas readings were obtained approximately every 4 min throughout each procedure. MEASUREMENTS AND RESULTS: All tracheostomies were successfully performed. No serious complications (including hypoxia) occurred during the study. Significant (p < 0.05 vs PDT and ST) hypercarbia (maximum delta PaCO2 24 +/- 3 mmHg) and acidosis (maximum delta pH -0.16 +/- 0.02) developed during PET. The changes in PaCO2 and pH during PDT (maximum delta PaCO2 8 +/- 2 mmHg; maximum delta pH -0.07 +/- 0.02) and ST (maximum delta PaCO2 3 +/- 1 mmHg; maximum delta pH -0.04 +/- 0.01) were markedly less pronounced. CONCLUSIONS: Continuous bronchoscopy during percutaneous tracheostomy contributes significantly to early hypoventilation, hypercarbia, and respiratory acidosis during the procedure. Percutaneous tracheostomy, when performed using the Doppler ultrasound method to position the endotracheal tube, significantly reduces CO2 retention when compared to PET. Because of a possible rise in intracranial pressure, the potential for hypercarbia should be considered when choosing the method of tracheostomy in the critically ill and/or head-injured patient, where hypercarbia may be detrimental. If PET is to be performed, steps to minimize occult hypercarbia, such as using the smallest bronchoscope available, minimizing suctioning during bronchoscopy, and minimizing the length of time the bronchoscope is in the endotracheal tube, should be undertaken.
With the growing understanding of the pathophysiology of exsanguination has come the evolution of extraordinary surgical techniques designed to improve survival. As the success of damage control has grown, so has its acceptance in the traditional surgical community. Our challenge now is to scientifically define patient selection, refine intraoperative techniques, and acquire a greater clinical and basic science understanding of the physiology of exsanguination and reperfusion injury in resuscitation. In these efforts, overall survival should continue to increase and morbidity should continue to decrease.
Blood-borne pathogens threaten all individuals involved in emergency health care. Despite recommendations by the Centers for Disease Control and the American College of Emergency Physicians, documented compliance with universal precautions in trauma resuscitation has been poor. The purpose of this study was to determine the factors that predispose to noncompliance with barrier precautions at a level I trauma center. Videotapes of trauma resuscitations performed during 1 month (n = 66) were reviewed. Full compliance with barrier precautions was documented in 89.1% of health care workers. Of the noncompliant health care workers, 50.7% were emergency department personnel and 47.8% were first responders to the trauma resuscitation area. Barrier precaution compliance improved from 62.5% to 91.8% with prenotification of patient arrival. Immediate access to barrier equipment is essential for all potential in-hospital first responders. Prehospital communication systems should be optimized to ensure prenotification.
BACKGROUND: As nonoperative management of blunt abdominal trauma has become more popular, reliable models for predicting the likelihood of concomitant hollow viscus injury in the hemodynamically stable patient with a solid viscus injury are increasingly important. METHODS: The Pennsylvania Trauma Systems Foundation registry was reviewed for the period from January 1992 to December 1995 for all adult (age > 12 years) patients with blunt trauma and an Abbreviated Injury Scale (AIS) score > or = 2 for a solid viscus (kidney, liver, pancreas, spleen). Patients with an initial systolic blood pressure < 90 mm Hg were excluded. Hollow viscus injuries included only lacerations or perforations of the gallbladder, gastrointestinal tract, or urinary tract. RESULTS: In the 4-year period, 3,089 patients sustained solid viscus injuries, 296 of whom had a hollow viscus injury (9.6%). The mean age was 35.6 years, mean Injury Severity Score was 22.2, and mean Revised Trauma Score was 7.3; 63.3% of the patients were male. A solitary solid viscus injury occurred in 2,437 patients (79%), 177 of whom (7.3%) had a hollow viscus injury. The frequency of hollow viscus injury increased with the number of solid organs injured: 15.4% of patients with two solid viscus injuries (n = 547) and 34.4% of patients with three solid viscus injuries (n = 96) suffered a concomitant hollow viscus injury (p < 0.001 vs. one organ). A hollow viscus injury was 2.3 times more likely for two solid viscus injuries and 6.7 times more likely for three solid viscus injuries compared with a solitary solid viscus injury. For solitary solid viscus injury, the frequency of hollow viscus injury varied little with increasing AIS score (AIS score 2, 6.6%; AIS score 3, 8.2%; AIS score 4, 9.2%; AIS score 5, 6.2%) (p = 0.27 between groups), suggesting that the incidence of hollow viscus injury is related more to the number of solid visceral injuries than the severity of individual organ injury. Also, when the sum of the AIS scores for solid viscus injuries was <6, the mean rate of hollow viscus injury was 7.8%. This increased to 22.8% when the sum of the AIS scores for solid viscus injury was > or =6 (p < 0.001). A pancreatic injury in combination with any other solid viscus injury had a rate of hollow viscus injury of >33%. CONCLUSION: A model of organ injury scaling predicted hollow viscus injury. Multiple solid viscus injuries, particularly pancreatic, or abdominal solid viscus injuries with an AIS score > or = 6, were predictive of hollow viscus injury. Identification of these injury patterns should prompt consideration for early operative intervention.
OBJECTIVE: Definitive trauma team leadership, although difficult to measure, has been shown to improve trauma resuscitation performance. The purpose of this study was to evaluate the effect of an identified command-physician on resuscitation performance. In addition, the leadership capability of four physician combinations functioning as command-physician was studied. DESIGN: Retrospective review. METHODS: Videotapes of trauma resuscitations performed at a Level I trauma center over a 25-month period were reviewed. The presence of an identified command-physician was determined by multidisciplinary consensus. Resuscitation performance was measured by compliance with three objective criteria: primary survey, secondary survey, and definitive plan; and two subjective criteria: orderliness, and adherence to Advanced Trauma Life Support protocol. Performance was then analyzed (1) as a function of the presence or absence of a command-physician, and (2) between four identified physician combinations: AF (attending surgeon + trauma fellow); F (trauma fellow); ASR (attending surgeon + senior surgical resident); SR (senior surgical resident). Chi square and the Mann-Whitney U tests were applied. RESULTS: A total of 425 trauma resuscitations were reviewed. A command-physician was identified (CP[Pos]) in 365 resuscitations (85.7%); no command-physician was identified (CP[NEG]) in 60 (14.3%). Compliance with completion of secondary survey (81.4%) and formulation of a definitive plan (89.6%) was significantly higher in the CP(POS) group. Subjective scores for orderliness and adherence to Advanced Trauma Life Support protocol were significantly higher in the CP(POS) group. In the CP(POS) resuscitations, formulation of a definitive plan was lower in SR when compared with the other three physician combinations. CONCLUSIONS: An identified command-physician enhances trauma resuscitation performance. Completion of the primary and secondary survey is not affected by the physician combination. Prompt formulation of a definitive plan is facilitated by the active involvement of an attending traumatologist or a properly mentored trauma fellow.
Agitation is a frequent clinical problem that adds significant morbidity to the hospital course. Agitation is usually part of an ambiguous constellation of cognitive and psychiatric symptoms, with a fluctuating clinical course. Observation of vastly different symptoms occurring at different times leads to misdiagnosis or underrecognition of serious underlying disorders. The most common causes of agitation include delirium, dementia, and acute psychosis. Risk factors attributable to hospitalization include pain, anxiety, and stressors endemic to intensive care. Agitated states may have multiple causes, and each potential contributor must be pursued and treated independently. Definitive diagnosis is dependent on a comprehensive history, patient observation, physical examination, and selective diagnostic studies.
Hypothermia in the hospitalized adult may be a primary process, as in exposure, or a result of a multitude of disease processes or iatrogenic factors. The condition affects virtually every metabolic process in the body. A thorough understanding of the pathophysiology of hypothermia enables the clinician to differentiate between the hypothermic syndrome and underlying illness and can assist in the detection and management of clinical sequelae. A reliable patient history is the most helpful diagnostic tool, but careful physical examination and laboratory studies are also important for detection of primary or secondary illness.
Explore the source record for details and available documents.
STUDY OBJECTIVE: To determine the presence of cocaethylene, an active metabolite of the combination of cocaine and ethanol, among trauma patients who test positive for cocaine. METHODS: We assembled a case series of 416 consecutive urban trauma center patients with major trauma. Urine was tested for the presence of the cocaine metabolite benzoylecgonine. Plasma was quantitatively assayed for cocaine, ethanol, and cocaethylene. RESULTS: Of the study subjects, 158 (38%) were positive for benzoylecgonine. Of the 114 of these subjects who had adequate plasma specimens, 68 (60%) tested positive for cocaethylene (mean, 41 +/- 27 ng/mL; range, 3 to 213 ng/mL), all tested positive for cocaine (mean, 92.9 +/- 52 ng/mL), and 56% were positive for ethanol (mean, 175 +/- 85 mg/mL). We found poor correlation between admission levels of cocaethylene and cocaine (R=.02), even when subjects were stratified by ethanol level. The correlation between cocaethylene and ethanol levels was weak (R=.24). Of the 68 patients who tested positive for cocaethylene, 29% tested negative for ethanol. Plasma was also assayed from 94 subjects who tested negative for benzoylecgonine; 9% had detectable levels of cocaine, and 2% had detectable levels of cocaethylene. CONCLUSION: Cocaethylene was present in more than half of the subjects who tested positive for cocaine.
OBJECTIVE: To determine the effectiveness and morbidity of out-of-hospital rapid-sequence induction (RSI) for endotracheal intubation (ETI) in the pediatric population. METHODS: The medical records were retrospectively reviewed for a consecutive series of pediatric patients undergoing out-of-hospital RSI by flight paramedics from July 1990 through July 1994. Patient demographics, pharmacologic agents, ED arterial blood gas data, pulmonary complications, and RSI-related complications were abstracted. RESULTS: Forty patients (31 injured, 9 medical) with a mean age of 8.1 years (range 0.5-17 years) underwent out-of-hospital RSI. Indications for intubation included hyperventilation (n = 20), combativeness (n = 16), apnea (n = 5), and unknown (n = 5). Intubation mishaps occurred in 13 patients (33%); these included multiple attempts (n = 9), aspiration (n = 8), and esophageal intubation (n = 1). The success rate of ETI was 97.5% (one failed attempt). Hemodynamic side effects occurred in three patients (8%); all three had bradycardia, with one developing hypotension. Bradycardia was associated with failure to pretreat with atropine (p < 0.05). Sixteen pulmonary complications, seven pneumonia (18%) and nine atelectasis (22.5%), occurred in 13 patients within the first ten hospital days. Intubation mishaps were not associated with pulmonary complications. There were six deaths, none associated with RSI. CONCLUSIONS: 1) Rapid-sequence induction is an effective method for obtaining airway control in the critically ill pediatric patient. 2) Intubation mishaps did not influence the rate of pulmonary complications. 3) Omission of atropine was associated with bradycardia during RSI in pediatric patients.
BACKGROUND: We wanted to assess the efficiency of instituting a modified technique of percutaneous tracheostomy (PET) with bronchoscopic guidance. METHODS: During a 10-month period 48 consecutive trauma patients requiring tracheostomy were divided between a standard tracheostomy control group (ST) and a PET group. All patients were followed prospectively. The hospital charges were reviewed retrospectively. RESULTS: Age, gender, body habitus, and principal diagnosis were similar in the 21 ST patients and the 27 PET patients. All STs and 15 of the PETs were performed in the operating room (OR), and the 12 remaining PETs were done in the intensive care unit (ICU). Four patients in the ST group and six in the PET group died. One of these deaths occurred in a patient in the PET group with severe adult respiratory distress syndrome. Procedure time was shorter for PET (16 versus 45 minutes, p < 0.0001). Junior residents performed more PETs than STs (33% versus 10%), and PET was considered "easier" to perform than ST (81% versus 47%). Hospital charges for PET in the ICU were $3400 less per patient compared with ST or PET in the OR. CONCLUSIONS: PET was performed easily and safely in the OR and at the ICU bedside. PET required one-third the time of ST. Bronchoscopic supervision of PET may have contributed to the small number of complications and the educational experience of junior residents. PET in the ICU can reduce hospital charges significantly and avoids transport of patients to the OR. PET is as safe as ST and should be considered the procedure of choice for an ICU patient requiring an elective tracheostomy.
"Damage control" is an accepted technique for the treatment of the patient with exsanguinating injuries to the abdomen and intraoperative coagulopathy. We describe the use of an intraluminal shunt to maintain temporary vascular continuity of the superior mesenteric artery during rewarming and correction of coagulopathy in the intensive care unit following a gun shot wound to the abdomen. Successful complex reconstruction was achieved at definitive laparotomy using an autogenous vein interposition graft.
Two cases are presented in which transcutaneous balloon catheter tamponade of exsanguinating infraclavicular injuries was performed in the trauma admitting area. Angiography and venography demonstrated isolated injuries of the subclavian vein tamponaded by the balloon catheter. Balloon catheter tamponade provided emergency control of bleeding in the admitting area and ultimately definitive treatment of the venous injury.