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1.
MedEdPORTAL ; 18: 11278, 2022.
Article in English | MEDLINE | ID: mdl-36300144

ABSTRACT

Introduction: Throughout training, emergency medicine (EM) residents must learn to work within, and eventually lead, multidisciplinary teams in high-acuity dynamic situations. Most residents do not undergo formal resuscitation team leadership training but learn these skills through mentorship by and observation of senior physicians. We designed and implemented a formal simulation-based leadership training program for EM residents. Methods: We developed a resuscitation team leadership curriculum in which 24 junior EM residents participated in an initial simulation of a critically ill patient before undergoing a didactic presentation regarding crisis resource management (CRM) principles. Residents applied those principles in three subsequent simulations. Faculty observers evaluated each case using EM Milestones, the Ottawa Global Rating Scale (GRS), and critical actions checklists. Residents then completed surveys evaluating their own leadership and communication skills before and after the course. Results: Scores from the Ottawa GRS, critical actions checklists, and several of the EM Milestones were significantly better in the latter three cases (after completing the CRM didactics) than in the first case. After completing this curriculum, residents felt that their ability to both lead resuscitations and communicate effectively with their team improved. Discussion: Implementation of the resuscitation team leadership curriculum improved EM residents' leadership performance in critically ill patient scenarios. The curriculum also improved residents' comfort in leading and communicating with a team. Similar formal leadership development curricula, especially when combined with simulation, may enhance EM physician training. Future studies will include other multidisciplinary team members to create a more realistic and inclusive learning environment.


Subject(s)
Emergency Medicine , Internship and Residency , Humans , Leadership , Critical Illness , Clinical Competence , Emergency Medicine/education , Curriculum
2.
Stroke ; 49(4): 1021-1023, 2018 04.
Article in English | MEDLINE | ID: mdl-29491140

ABSTRACT

BACKGROUND AND PURPOSE: We evaluated the impact of a primary stroke center (PSC) destination policy in a major metropolitan city and used geographic modeling to evaluate expected changes for a comprehensive stroke center policy. METHODS: We identified suspected stroke emergency medical services encounters from 1/1/2004 to 12/31/2013 in Philadelphia, PA. Transport times were compared before and after initiation of a PSC destination policy on 10/3/2011. Geographic modeling estimated the impact of bypassing the closest hospital for the closest PSC and for the closest comprehensive stroke center. RESULTS: There were 2 326 943 emergency medical services runs during the study period, of which 15 099 had a provider diagnosis of stroke. Bypassing the closest hospital for a PSC was common before the official policy and increased steadily over time. Geographic modeling suggested that bypassing the closest hospital in favor of the closest PSC adds a median of 3.1 minutes to transport time. Bypassing to the closest comprehensive stroke center would add a median of 8.3 minutes. CONCLUSIONS: Within a large metropolitan area, the time cost of routing patients preferentially to PSCs and comprehensive stroke centers is low.


Subject(s)
Emergency Medical Services , Stroke/therapy , Transportation of Patients/methods , Cross-Sectional Studies , Geographic Mapping , Health Policy , Hospital Planning , Hospitals, Urban , Humans , Philadelphia , Time Factors , Time-to-Treatment
3.
4.
Front Neurol ; 8: 466, 2017.
Article in English | MEDLINE | ID: mdl-28959230

ABSTRACT

BACKGROUND: Accurate recognition of stroke symptoms by Emergency Medical Services (EMS) is necessary for timely care of acute stroke patients. We assessed the accuracy of stroke diagnosis by EMS in clinical practice in a major US city. METHODS AND RESULTS: Philadelphia Fire Department data were merged with data from a single comprehensive stroke center to identify patients diagnosed with stroke or TIA from 9/2009 to 10/2012. Sensitivity and positive predictive value (PPV) were calculated. Multivariable logistic regression identified variables associated with correct EMS diagnosis. There were 709 total cases, with 400 having a discharge diagnosis of stroke or TIA. EMS crew sensitivity was 57.5% and PPV was 69.1%. EMS crew identified 80.2% of strokes with National Institutes of Health Stroke Scale (NIHSS) ≥5 and symptom duration <6 h. In a multivariable model, correct EMS crew diagnosis was positively associated with NIHSS (NIHSS 5-9, OR 2.62, 95% CI 1.41-4.89; NIHSS ≥10, OR 4.56, 95% CI 2.29-9.09) and weakness (OR 2.28, 95% CI 1.35-3.85), and negatively associated with symptom duration >270 min (OR 0.41, 95% CI 0.25-0.68). EMS dispatchers identified 90 stroke cases that the EMS crew missed. EMS dispatcher or crew identified stroke with sensitivity of 80% and PPV of 50.9%, and EMS dispatcher or crew identified 90.5% of patients with NIHSS ≥5 and symptom duration <6 h. CONCLUSION: Prehospital diagnosis of stroke has limited sensitivity, resulting in a high proportion of missed stroke cases. Dispatchers identified many strokes that EMS crews did not. Incorporating EMS dispatcher impression into regional protocols may maximize the effectiveness of hospital destination selection and pre-notification.

6.
Prehosp Emerg Care ; 20(6): 729-736, 2016.
Article in English | MEDLINE | ID: mdl-27246289

ABSTRACT

OBJECTIVE: Hospital arrival via Emergency Medical Services (EMS) and EMS prenotification are associated with faster evaluation and treatment of stroke. We sought to determine the impact of diagnostic accuracy by prehospital providers on emergency department quality measures. METHODS: A retrospective study was performed of patients presenting via EMS between September 2009 and December 2012 with a discharge diagnosis of transient ischemic attack (TIA), ischemic stroke (IS), or intracerebral hemorrhage (ICH). Hospital and EMS databases were used to determine EMS impression, prehospital and in-hospital time intervals, EMS prenotification, NIH stroke scale (NIHSS), symptom duration, and thrombolysis rate. RESULTS: 399 cases were identified: 14.5% TIA, 67.2% IS, and 18.3% ICH. EMS providers correctly recognized 57.6% of cases. Compared to cases missed by EMS, correctly recognized cases had longer median on-scene time (17 vs. 15 min, p = 0.01) but shorter transport times (12 vs. 15 min, p = 0.001). Cases correctly recognized by EMS were associated with shorter door-to-physician time (4 vs. 11 min, p < 0.001) and shorter door-to-CT time (23 vs. 48 min, p < 0.001). These findings were independent of age, NIHSS, symptom duration, and EMS prenotification. Patients with ischemic stroke correctly recognized by EMS were more likely to receive thrombolytic therapy, independent of age, NIHSS, symptom duration both with and without prenotification. CONCLUSION: Recognition of stroke by EMS providers was independently associated with faster door-to-physician time, faster door-to-CT time, and greater odds of receiving thrombolysis. Quality initiatives to improve EMS recognition of stroke have the potential to improve hospital-based quality of stroke care.


Subject(s)
Emergency Medical Services/statistics & numerical data , Emergency Service, Hospital/standards , Stroke/diagnosis , Aged , Cohort Studies , Databases, Factual , Emergency Medical Services/standards , Female , Humans , Male , Middle Aged , Retrospective Studies , Stroke/drug therapy , Thrombolytic Therapy/statistics & numerical data
7.
World J Emerg Med ; 7(1): 74-6, 2016.
Article in English | MEDLINE | ID: mdl-27006745
10.
Am J Emerg Med ; 34(4): 761.e1-2, 2016 Apr.
Article in English | MEDLINE | ID: mdl-26371831

ABSTRACT

Nicardipine is a dihydropyridine calcium-channel blocker that is frequently used in the acute treatment of hypertension in the emergency department (ED). Reflex sympathetic tachycardia is a well-described side effect of this medication. Two experimental studies and 1 anesthesia case report, however, have previously described nicardipine-induced bradycardia as a very rare side effect. We report the case of an elderly patient with an acute ischemic stroke who developed nicardipine-induced bradycardia in the ED.


Subject(s)
Antihypertensive Agents/adverse effects , Bradycardia/chemically induced , Brain Ischemia/complications , Calcium Channel Blockers/adverse effects , Nicardipine/adverse effects , Stroke/complications , Aged , Antihypertensive Agents/administration & dosage , Calcium Channel Blockers/administration & dosage , Humans , Hypertension/drug therapy , Hypertension/etiology , Infusions, Intravenous , Male , Nicardipine/administration & dosage
11.
J Burn Care Res ; 34(2): e80-6, 2013.
Article in English | MEDLINE | ID: mdl-23237817

ABSTRACT

The technique for split-thickness skin graft harvest varies among surgeons. Even though there is scientific evidence that the subcutaneous injection of modified tumescent solution reduces blood loss during burn surgery, the technique has not been unanimously adapted because of, in part, fear of healing retardation. This study prospectively examines the effect of tumescent injection on donor site perfusion, healing, and pain. Ten burn patients in need of grafting with a need for two distinctly different donor sites were included. During the grafting procedure, the two donor areas were randomly assigned to receive either modified tumescent solution or warm sterile saline solution subcutaneously before skin graft harvest with a dermatome. Perfusion, pain, pruritus, and donor site healing were measured, and a follow-up evaluation on scar quality was performed. Baseline perfusion on day 1 was significantly less in the donor site injected with modified tumescent solution (62.26 vs 95.71 perfusion units; P = .031), whereas the response to heat was similar in both sites. The physiologic response to injury (hyperemia) on days 2 and 3 was not suppressed in the modified tumescent group. Pain reported on day 1 was 2.38/10 in the tumescent site and 3.38/10 in the saline site (P = .21). On all other days, measurements showed no difference between the two sites. Donor sites healed in an average of 16.1 days with modified tumescent solution and in 16.4 days with saline. Late follow-up showed no difference in scar quality. The subcutaneous injection of modified tumescent solution before split-thickness donor site harvest has no adverse effect on donor site perfusion past day 1 or donor site healing. The addition of a local anesthetic may decrease pain for 24 hours postoperatively, but the difference in this study group was not significant. This technique should be universally recommended.


Subject(s)
Anesthetics, Local/administration & dosage , Burns/surgery , Epinephrine/administration & dosage , Skin Transplantation/methods , Sodium Chloride/administration & dosage , Adult , Aged , Blood Loss, Surgical , Female , Humans , Injections , Injections, Subcutaneous , Male , Middle Aged , Pain Measurement , Prospective Studies , Treatment Outcome , Wound Healing/drug effects
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