Background: In 2016, the CDC in the USA proposed codes from the International Classification of Diseases, Tenth Revision, Clinical Modification (ICD-10-CM) for identifying traumatic brain injury (TBI). This study estimated positive predictive value (PPV) of TBI for some of these codes.
Methods: Four study sites used emergency department or trauma records from 2015 to 2018 to identify two random samples within each site selected by ICD-10-CM TBI codes for (1) intracranial injury (S06) or (2) skull fracture only (S02.0, S02.1-, S02.8-, S02.91) with no other TBI codes. Using common protocols, reviewers abstracted TBI signs and symptoms and head imaging results that were then used to assign certainty of TBI (none, low, medium, high) to each sampled record. PPVs were estimated as a percentage of records with medium-certainty or high-certainty for TBI and reported with 95% confidence interval (CI).
Results: PPVs for intracranial injury codes ranged from 82% to 92% across the four samples. PPVs for skull fracture codes were 57% and 61% in the two university/trauma hospitals in each of two states with clinical reviewers, and 82% and 85% in the two states with professional coders reviewing statewide or nearly statewide samples. Margins of error for the 95% CI for all PPVs were under 5%.
Discussion: ICD-10-CM codes for traumatic intracranial injury demonstrated high PPVs for capturing true TBI in different healthcare settings. The algorithm for TBI certainty may need refinement, because it yielded moderate-to-high PPVs for records with skull fracture codes that lacked intracranial injury codes.
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http://dx.doi.org/10.1136/injuryprev-2019-043510 | DOI Listing |
Emerg Med Pract
February 2025
Medical Officer of the Care Coordination System, University of Vermont Health Network; Associate Professor, Department of Emergency Medicine, Robert Larner MD College of Medicine at the University of Vermont, Burlington, VT.
Although there is a large body of existing research on traumatic intracranial hemorrhage, there are few clear and consistent recommendations that have emerged. Appropriate management is guided by an understanding of the pathophysiology of traumatic brain injury as well as by clinical observation and radiographic assessment. This review provides a comprehensive analysis of the literature and recommendations based on the best available evidence, including expeditious management of critically elevated intracranial pressure and acquisition of follow-up studies.
View Article and Find Full Text PDFInt J Legal Med
January 2025
Department of Forensic Medicine, University of Helsinki, P.O. Box 21, Helsinki, FI-00014, Finland.
In forensic neuropathology, the β-amyloid precursor protein (β-APP) immunostain is used to diagnose axonal injury (AI). The two most common aetiologies are traumatic (TAI) and ischaemic (vascular; VAI). We aimed to identify background characteristics and neuropathology findings that are suggestive of TAI, VAI, or no AI in neuropathologically examined medico-legal autopsy cases.
View Article and Find Full Text PDFEur J Trauma Emerg Surg
January 2025
Division of Neurosurgery, Department of Surgery, College of Medicine, King Khalid University, Abha, Saudi Arabia.
Background: Traumatic brain injury (TBI) is considered a major cause of death globally, resulting from trauma. Decompressive craniectomy (DC) may improve functional outcomes in patients with TBI and its associated complications. This study was designed to determine safety and efficacy of DC in improving clinical outcomes in TBI patients compared to standard therapy.
View Article and Find Full Text PDFSci Rep
January 2025
Dept. of Emergency, Dept. of Infectious Diseases, Huashan Hospital, Fudan University, Shanghai, China.
Here we describe the derivation and validation of a prognostic nomogram for patients with Traumatic Intracranial Hemorrhage (tICH) after surgical evacuation. This is a retrospective study based on 245 patients admitted to the Department of Neurosurgery of Huashan Hospital affiliated to Fudan University, between August 2005, and August 2023. We divided the dataset into primary and validation data by the ratio of 7:3.
View Article and Find Full Text PDFJ Neurosurg Case Lessons
January 2025
Department of Neurological Surgery, Cooper University Health Care, Camden, New Jersey.
Background: External ventricular drains (EVDs) provide an invaluable diagnostic method for accessing cerebrospinal fluid and therapeutically treating elevated intracranial pressure. Although complications including hemorrhage and infection have been well documented, the formation of iatrogenic pseudoaneurysms following EVD placement has rarely been reported. The authors present a case of this exceedingly rare complication of iatrogenic pseudoaneurysm formation following EVD placement.
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