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David G Jacobs

Publications and source records attributed to David G Jacobs.

17 recordsLinked to original sources

Extended interval for retrieval of vena cava filters is safe and may maximize protection against pulmonary embolism.

BACKGROUND: Retrieval of optional vena cava filters (VCF) has been demonstrated to be safe and feasible in injured patients in 4 recent studies. However, 2 pulmonary emboli PE were reported in these studies with mean implant durations less than 19 days. In light of these occurrences, we changed our practice for VCF retrieval when patients had recovered from their injuries and at least 30 days after their discharge, or had been stable on therapeutic anticoagulation for deep venous thrombosis (DVT) or PE for at least 2 weeks. The aim of the current study was to assess the safety of this approach. METHODS: A review of prospectively collected data on optional VCF over a 16-month period. The filters were inserted prophylactically per an institutional practice guideline or for the presence of DVT or PE with a contraindication and/or complication to anticoagulation. All patients underwent duplex imaging of the lower extremities and had pre- and post- retrieval cavagrams. Demographics, duration of implantation, and complications were recorded. RESULTS: Eighty-three patients had optional VCF inserted since the change in our clinical practice. Indications included prophylaxis for high-risk trauma patients (n = 58), DVT or PE with acute contraindication to therapeutic anticoagulation (n = 22), or complications of anticoagulation (n = 3). Two patients developed lower extremity DVT after filter insertion and 1 patient developed a vena cava thrombosis. Retrieval was successful in 47 of 54 cases (87%) attempted. Median implantation duration was 142 days (range 17-475). A filter strut fracture occurred during retrieval without further consequences. No post-insertion or post-retrieval PE occurred in this study. CONCLUSION: Extended intervals for retrieval of VCF are safe and may maximize protection against pulmonary embolism.

Adolescent↗

Nine-year experience with insertion of vena cava filters in the intensive care unit.

BACKGROUND: Vena cava filter insertion (VCF) is traditionally performed in a radiology suite or in the operating room. We reviewed our experience of bedside VCF insertion in the intensive care unit (ICU) performed by general surgeons. METHODS: A prospective, observational study of bedside VCF insertion in the ICU was performed by general surgeons between February 1996 and June 2005. Demographic data and procedural complications were recorded. RESULTS: Four hundred three patients underwent bedside VCF insertion. Complications included 1 groin hematoma, 2 misplacements, and a right ventricular perforation from a dilator requiring surgical repair. DVT occurred in 38 patients (8.5%); 14 occurred at the insertion site. There were 2 pulmonary embolisms (<1%) after VCF. Contrast-related renal failure occurred in 2 of the first 35 patients; carbon dioxide gas is now used for contrast in high-risk patients. CONCLUSIONS: Bedside insertion of VCF in the ICU by surgeons is safe and effective.

Adult↗

Audience response system technology improves accuracy and reliability of trauma outcome judgments.

BACKGROUND: Peer-review judgments are necessary for effective trauma performance improvement (PI), but may be influenced by peer pressure and the tendency to vote with the majority. Incorporation of Audience Response System (ARS) technology into trauma PI should result in improved outcome assessments. METHODS: We compared 30 months of nonanonymous trauma care judgments with 30 months of anonymous judgments obtained with the use of a keypad-based ARS. Statistical methods included the chi2 test and the Wilcoxon rank sum test. RESULTS: Use of the ARS resulted in a 28% reduction in deaths judged nonpreventable and a 24% reduction in trauma care judged to be appropriate (p < 0.0001). Unanimous outcome judgments were also significantly reduced (p < 0.0001). CONCLUSIONS: Outcome judgments obtained anonymously were significantly more divergent and less positive than those obtained nonanonymously. Anonymously derived outcome judgments may provide a better opportunity to identify adverse outcomes and thereby potentially improve trauma PI and trauma care.

Data Collection↗

Abdominal wall reconstruction after temporary abdominal closure: A ten-year review.

Abdominal wall reconstruction (AWR) is often required for hernias created after temporary abdominal closure (TAC). Demographic and clinical data from patients undergoing TAC and AWR between January 1, 1992, and December 31, 2002, were collected and univariate analysis performed. Temporary abdominal closure and AWR were performed in 21 patients. Complications developed in 12 patients (57.1%) after TAC; associated risk factors were mesh placement (P = .04) and skin grafting (P = .04). Successful AWR included mesh (n = 6), component separation (n = 6), primary repair (n = 4), and 3 combination techniques. Six patients (28.6%) developed intraoperative complications, and 14 (66.7%) developed postoperative complications. Intraoperative complications were increased in patients with tissue expanders (P = .01). Postoperative complications (P = .04) were less likely with component separation. The complication rate with TAC and AWR is high. Tissue expanders are associated with an increased risk of intraoperative complications with AWR, whereas component separation is associated with a reduction in postoperative complications.

Abdominal Wall↗

Utility of neurosurgical consultation for mild traumatic brain injury.

Trauma patients presenting with a Glasgow Coma Scale (GCS) score of 14-15 are considered to have mild traumatic brain injury (TBI) with overall good neurologic outcomes. Current practice consists of initial stabilization, followed by a head CT, and neurosurgical consultation. Aside from serial neurologic examinations, patients with a GCS of 15 rarely require neurosurgical intervention. In this study, we examined the added value of neurosurgical consultation in the care of patients after TBI with a GCS of 15. We retrospectively reviewed the medical records of patients presenting after blunt trauma with an abnormal head CT and GCS of 15 between January 2004 and January 2005. Patients with a normal head CT and <48 hours hospital stay were excluded. Data included demographics, mechanisms of injury, Injury Severity Score, the radiologists' dictated interpretations of the head CT, and neurosurgical interventions. Fifty-six patients met the inclusion criteria. The mean age was 41+/-2.3 years, and the mean Injury Severity Scores was 10.2 +/-0.6. Mechanisms of injury included 64 per cent motor vehicle crash, 16 per cent motorcycle crash, 13 per cent fall, and 7 per cent all-terrain vehicle crash. The initial CT scans showed 43 per cent parenchymal contusions, 38 per cent subarachnoid hemorrhage, 14 per cent subdural hematomas, and 5 per cent epidural hematomas. All patients received a routine follow-up head CT, and 16 per cent showed changes (five improved and four were worse compared with initial CT scans). None of these patients received a neurosurgical intervention, and two were transferred to a rehabilitation service. In this era of limited resources, trauma patients who present with a GCS score of 15 after mild TBI can be safely managed without neurosurgical consultation, even in the presence of an abnormal head CT scan.

Accidental Falls↗

Guide wire entrapment by inferior vena cava filters: an experimental study.

BACKGROUND: In situ vena cava filters are at risk for complications with the use of J-tipped guide wires. The purpose of this study was to evaluate the impact of two commonly used J-tipped guide wires on the stability of the four most recently released vena cava filters in an in vitro flow model. STUDY DESIGN: Four filters (OptEase [F1], Günther Tulip [F2], Vena Tech LP [F3], and Recovery [F4]) were inserted into an in vitro flow model. Two J-tipped guide wires (0.032-inch [GW-1], 0.035-inch [GW-2]) were passed through each filter (n = 50 passes per wire) for a distance of 10 cm. The inserter was blind as to the effects of the wire. The filters were monitored by an independent observer for adverse events occurring between the filters and the guide wires. These were defined as: migrations (>1 cm), change of position (tilt>10 degrees), and entrapment of the wire (unable to remove wire). Descriptive statistics, chi-square, and Fisher's exact test were used (p < 0.05 considered significant). RESULTS: GW-1 resulted in a lower incidence of entrapment, migration, and tilt for all filters compared with GW-2 (F1, p = 0.003; F2, p < 0.0001; F3, p < 0.0001; F4, p = 0.0004). GW-1 resulted in entrapment in 0%, migration in 7.5%, and tilt in 10.5% of insertions. GW-2 resulted in entrapment in 1%, migration in 26.5%, and tilt in 5.5% of insertions. The incidence of adverse events for GW-1 was significantly different compared with all filters (F1, 0%; F2, 46%; F3, 4%; and F4, 22%; p < 0.0001). Similarly, the incidence of adverse events for GW-2 was significantly different when evaluating all filters (F1, 12%; F2, 48%; F3, 22%; F4 60%; p < 0.0001). CONCLUSIONS: The smaller-diameter guide wire resulted in a decreased incidence of adverse events for all filters, but there is still risk for complications. Knowledge of potential complications associated with vena cava filters and the postinsertion use of guide wires are essential to avoid potential mishaps.

Catheterization↗

The role of transesophageal echocardiography in optimizing resuscitation in acutely injured patients.

BACKGROUND: The goal of resuscitation is to correct the mismatch between oxygen delivery and that of cellular demands. The pulmonary artery catheter (PAC) is frequently used to gauge the adequacy of resuscitation and guide therapy based on ventricular filling pressures. Transesophageal echocardiography (TEE) has emerged as a potential tool in assessing adequacy of acute hemodynamic resuscitation. The purpose of this study was to evaluate the role of TEE in assessing preload during ongoing volume resuscitation in trauma patients. METHODS: A retrospective review was conducted of acutely injured patients undergoing TEE during resuscitation from hemorrhagic shock from January 2002 to 2004 at a Level I trauma center. The indication for TEE was persistent hemodynamic instability in the absence of ongoing surgical hemorrhage. Variables included hemodynamic and PAC parameters, pre-TEE resuscitation volume, and vasopressor requirements. The impact of TEE findings on therapeutic decisions was evaluated. RESULTS: Twenty-five patients underwent TEE, 18 (72%) had an indwelling PAC with a mean pulmonary artery occlusion pressure of 19.3 mm Hg (range, 12-29 mm Hg) and mean cardiac index of 2.9 L/min/m2 (range, 1.6-4.6 L/min/m2). Twelve patients (48%) were receiving inotropes and/or vasopressors for hypotension at the time of TEE. Resuscitation volume within 6 hours before TEE included a mean of 6.5 L of crystalloid and 12.2 units of blood products (packed red blood cells, fresh frozen plasma, and platelets). TEE revealed left ventricular hypovolemia in 13 patients (52%) and altered therapy in 16 patients (64%), including additional volume (n = 13), addition of an inotrope (n = 4), and addition of a vasodilator (n = 1) in one patient with ventricular overdistention. Comparison of the abnormal and normal TEE groups revealed that only cardiac index was significantly different (2.6 L/min/m2 in the abnormal group vs. 3.9 L/min/m2 in the normal group; p = 0.005). Significant mitral valve regurgitation leading to valve replacement was identified in one patient. No clinically relevant pericardial effusion was identified. CONCLUSION: TEE altered resuscitation management in almost two thirds of patients. Many patients with "acceptable" pulmonary artery occlusion pressure parameters may in fact have inadequate left ventricular filling. In addition, TEE offers the advantage of direct assessment of cardiac valve competency, myocardial wall contractility, and pericardial fluid.

Adolescent↗

Age, blood transfusion, and survival after trauma.

Blood transfusion affects outcomes after trauma, but whether elderly patients are disproportionately affected remains unknown. To determine the possible interaction between age, packed cell transfusion volume (PCTV), and mortality after injury, we designed a 6-year retrospective review (January 1995 through December 2000) of patients > or = 16 years of age who received blood transfusion within the first 24 hours after injury. One thousand three hundred twelve patients > or = 16 years of age admitted to our trauma center received packed red blood cells in the initial 24 hours after admission. Of the 1312 patients, 1028 (78%) were < or = 55 years and 284 (22%) were > 55 years of age, and overall mortality was 21.2 per cent. Age, Injury Severity Score (ISS) Glasbow Coma Scale (GCS), and PCTV emerged as independent predictors of mortality. PCTV for elderly survivors (4.6 units) was significantly less than that of younger survivors (6.7 units). Furthermore, mean PCTV for all survivors decreased progressively with advancing age. No patient >75 years with a PCTV > 12 units survived. Age and PCTV act independently, yet synergistically to increase mortality following injury.

Adolescent↗

Special considerations in geriatric injury.

PURPOSE OF REVIEW: As the elderly population expands and adopts increasingly more active lifestyles, trauma and critical care practitioners will be faced with providing care for greater numbers of severely injured patients. However, because of their associated preexisting medical conditions and poor relative physiologic reserve, geriatric patients have higher mortality rates and poorer long-term functional outcomes than their younger counterparts. A thorough understanding of the causes for these disparate outcomes is critical if successful strategies and treatments for this unique patient population are to be developed. RECENT FINDINGS: The currently available geriatric trauma literature is largely descriptive and retrospective, and does not provide ready explanations or solutions for the substantially worse outcomes experienced by this patient population. It does appear that outcomes are improved by providing early and aggressive care in designated trauma centers, yet undertriage remains a significant problem. Early admission to an ICU has been recommended, but its benefits remain unproved. Significant differences exist between older and younger patients in injury patterns, and in the frequency and type of complications These differences in turn demand prompt diagnostic approaches, aggressive treatment, and unique prevention strategies. SUMMARY: Ironically, the field of geriatric trauma is still in its infancy. Given the relation between advanced age, associated preexisting medical conditions, and poor physiologic reserve, a poor outcome may be inevitable by the time the geriatric patient presents for medical attention. Greater emphasis should therefore be placed on injury prevention efforts in this patient population. There is a dire need for well-designed prospective studies in geriatric trauma.

Aged↗

The role of vena caval filters in the management of venous thromboembolism.

Deep venous thrombosis (DVT) and pulmonary embolism (PE) are important, and not infrequent, causes of morbidity and mortality in critically ill patients. Anticoagulation remains the treatment of choice for DVT and PE, but contraindications to, and complications from, anticoagulant therapy mandate the availability of alternate therapeutic and prophylactic strategies. The recent availability of safe and effective vena caval filters that can be inserted via a minimally invasive percutaneous approach has expanded the indications for, and acceptance of, these devices in selected patients at high risk for the development of PE. This article reviews both the established and the evolving indications for vena caval filters and discusses how improvements in filter design may impact future use.

Anticoagulants↗

A thoracostomy tube guideline improves management efficiency in trauma patients.

BACKGROUND: Thoracostomy tube (TT) placement constitutes primary treatment for traumatic hemopneumothorax. Practice patterns vary widely, and criteria for management and removal remain poorly defined. In this cohort study, we examined the impact of implementation of a practice guideline (PG) on improving management efficiency of thoracostomy tube. METHODS: We developed a PG aimed at standardizing the management of TTs in critically ill patients admitted to a Level I trauma center. During the 9-month period before (Pre-PG) and 3 months after (Post-PG) implementation, practice parameters including prophylactic antibiotics, duration of TT therapy, preremoval chest radiographs with associated charges, and complications were evaluated. Differences between groups were assessed by Mann-Whitney rank sum and chi(2) with Yates correction. RESULTS: There were 61 patients, 14 in the Pre-PG group and 47 in the Post-PG group. The groups were matched in age and Injury Severity Scores. The Post-PG cohort averaged 3 fewer days of TT therapy. After implementation of the PG, 21 patients did not have preremoval chest radiography, representing a $3000 reduction in radiology fees. Complication rates (retained pneumothorax, hemothorax, and empyema) were not different between the two groups. CONCLUSION: Implementation of a thoracostomy tube practice guideline was associated with improved management efficiency in trauma patients.

Adolescent↗

Positive end-expiratory pressure alters intracranial and cerebral perfusion pressure in severe traumatic brain injury.

BACKGROUND: Optimizing intracranial pressure (ICP) and cerebral perfusion pressure (CPP) is important in the management of severe traumatic brain injury (TBI). In trauma patients with TBI and respiratory dysfunction, positive end-expiratory pressure (PEEP) is often required to support oxygenation. Increases in PEEP may lead to reduced CPP. We hypothesized that increases in PEEP are associated with compromised hemodynamics and altered cerebral perfusion. METHODS: Twenty patients (mean Injury Severity Score of 28) with TBI (Glasgow Coma Scale score < 8) were examined. All required simultaneous ICP and hemodynamic monitoring. Data were categorized on the basis of PEEP levels. Variables included central venous pressure, pulmonary artery occlusion pressure, cardiac index, oxygen delivery, and oxygen consumption indices. Differences were assessed using Kruskal-Wallis analysis of variance. RESULTS: Data were expressed as mean +/- SE. As PEEP increased from 0 to 5, to 6 to 10 and 11 to 15 cm H O, ICP decreased from 14.7 +/- 0.2 to 13.6 +/- 0.2 and 13.1 +/- 0.3 mm Hg, respectively. Concurrently, CPP improved from 77.5 +/- 0.3 to 80.1 +/- 0.5 and 78.9 +/- 0.7 mm Hg. As central venous pressure (5.9 +/- 0.1, 8.3 +/- 0.2, and 12.0 +/- 0.3 mm Hg) and pulmonary artery occlusion pressure (8.3 +/- 0.2, 11.6 +/- 0.4, and 15.6 +/- 0.4 mm Hg) increased with rising levels of PEEP, cardiac index, oxygen delivery, and oxygen consumption indices remained unaffected. Overall mortality was 30%. CONCLUSION: In trauma patients with severe TBI, the strategy of increasing PEEP to optimize oxygenation is not associated with reduced cerebral perfusion or compromised oxygen transport.

Adult↗