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1.
Neurohospitalist ; 13(4): 337-344, 2023 Oct.
Article in English | MEDLINE | ID: mdl-37701246

ABSTRACT

Background and Purpose: The Neurology Mortality Review Committee at our institution identified variability in location of death for patients on our inpatient neurology services. Hospice may increase the number of patients dying in their preferred locations. This study aimed to characterize patients who die on inpatient neurology services and explore barriers to discharge to hospice. Methods: This retrospective study was completed at a single, quaternary care medical center that is a Level I Trauma Center and Comprehensive Stroke Center. Patients discharged by an inpatient neurology service between 6/2019-1/2021 were identified and electronic medical record review was performed on patients who died in the hospital and who were discharged to hospice. Results: 69 inpatient deaths and 74 discharges to hospice occurred during the study period. Of the 69 deaths, 54 occurred following withdrawal of life sustaining treatment (WLST), of which 14 had a referral to hospice placed. There were 88 "hospice-referred" patients and 40 "hospice-eligible" patients. Hospice-referred patients were less likely to require the intensive care unit than hospice-eligible patients. Hospice-referred patients had their code status changed to Do Not Intubate earlier and were more likely to have advanced directives available. Conclusion: Our data highlight opportunities for further research to improve discharge to hospice including interhospital transfers, advanced directives, earlier goals of care discussions, palliative care consultations, and increased hospice bed availability. Importantly, it highlights the limitations of using in-hospital mortality as a quality indicator in this patient population.

2.
Neurohospitalist ; 11(2): 101-106, 2021 Apr.
Article in English | MEDLINE | ID: mdl-33791051

ABSTRACT

OBJECTIVE: To validate the use of administrative data to identify patients with bacterial meningitis and quantify the rate of dexamethasone administration as defined in the American Academy of Neurology Inpatient and Emergency Care Quality Measurement Set. METHODS: The Vizient Clinical Data Base and Resource Manager was used to identify patients with International Classification of Diseases, Tenth Revision (ICD-10) codes for bacterial meningitis from October 2015 to June 2019. Chart review was performed on patients identified at a single quaternary-care hospital. The positive predictive value (PPV) of Vizient was determined. Demographic, clinical, and laboratory data were assessed using descriptive statistics. RESULTS: Of all hospitals that submitted complete data to Vizient during the study period, a median of 19 patients per hospital had ICD-10 codes for bacterial meningitis in the 45-month period. We identified 79 patients using Vizient at our institution of whom 69 had a diagnosis of bacterial meningitis confirmed by chart review (PPV = 87%). 15 patients were eligible to receive dexamethasone per the quality measurement set. Six of these patients (40%) received dexamethasone. CONCLUSION: It is feasible to use the Vizient Clinical Data Base and Resource Manager to identify patients with bacterial meningitis. Due to low prevalence across multiple institutions and high rate of exclusion criteria at our institution, this study suggests that the rate of dexamethasone administration in bacterial meningitis may be an unreliable indicator of quality of care provided by inpatient neurologists. The creation of a registry for hospitalized neurology patients could enhance development of future quality measures.

3.
J Clin Microbiol ; 58(9)2020 08 24.
Article in English | MEDLINE | ID: mdl-32493787

ABSTRACT

The impact of diagnostic stewardship and testing algorithms on the utilization and performance of the FilmArray meningitis/encephalitis (ME) panel has received limited investigation. We performed a retrospective single-center cohort study assessing all individuals with suspected ME between February 2017 and April 2019 for whom the ME panel was ordered. Testing was restricted to patients with cerebrospinal fluid (CSF) pleocytosis. Positive ME panel results were confirmed before reporting through correlation with direct staining (Gram and calcofluor white) and CSF cryptococcal antigen or by repeat ME panel testing. Outcomes included the ME panel test utilization rate, negative predictive value of nonpleocytic CSF samples, test yield and false-positivity rate, and time to appropriate deescalation of acyclovir. Restricting testing to pleocytic CSF samples reduced ME panel utilization by 42.7% (263 versus 459 tests performed) and increased the test yield by 61.8% (18.6% versus 11.5% positivity rate; P < 0.01) with the application of criteria. The negative predictive values of a normal CSF white blood cell (WBC) count for ME panel targets were 100% (195/195) for nonviral targets and 98.0% (192/196) overall. All pathogens detected in nonpleocytic CSF samples were herpesviruses. The application of a selective testing algorithm based on repeat testing of nonviral targets avoided 75% (3/4) of false-positive results without generating false-negative results. The introduction of the ME panel reduced the duration of acyclovir treatment from an average of 66 h (standard deviation [SD], 43 h) to 46 h (SD, 36 h) (P = 0.03). The implementation of the ME panel with restriction criteria and a selective testing algorithm for nonviral targets optimizes its utilization, yield, and accuracy.


Subject(s)
Encephalitis , Meningitis , Algorithms , Cohort Studies , Humans , Meningitis/diagnosis , Retrospective Studies
4.
Headache ; 60(3): 643-646, 2020 03.
Article in English | MEDLINE | ID: mdl-31944291

ABSTRACT

The American College of Emergency Physicians (ACEP) published guidelines in July 2019 on the diagnosis and management of acute nontraumatic headaches in the emergency department, focusing predominantly on the diagnosis of subarachnoid hemorrhage and the role of imaging and lumbar puncture in diagnosis. The ACEP Clinical Policies document is intended to aide Emergency Physicians in their approach to patients presenting with acute headache and to improve the accuracy of diagnosis, while promoting safe patient care practices. The Clinical Policies document also highlights the need for future research into best practices to distinguish primary from secondary headaches and the efficacy and safety of current treatment options for acute headaches. The following commentary on these guidelines is intended to support and expand on these guidelines from the Headache specialists' perspective, written on behalf of the Refractory, Inpatient, Emergency Care section of the American Headache Society (AHS). The commentary have been reviewed and approved by Board of Directors of the AHS.


Subject(s)
Emergency Medicine , Emergency Service, Hospital , Headache Disorders/diagnosis , Headache Disorders/drug therapy , Practice Guidelines as Topic , Societies, Medical , Acute Disease , Analgesics, Opioid/therapeutic use , Headache Disorders/etiology , Humans , Neuroimaging
5.
Neurohospitalist ; 9(3): 172-173, 2019 Jul.
Article in English | MEDLINE | ID: mdl-31244976
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