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1.
J Surg Res ; 280: 326-332, 2022 12.
Article in English | MEDLINE | ID: mdl-36030609

ABSTRACT

INTRODUCTION: Disparities following traumatic injury by race/ethnicity and insurance status are well-documented. However, the relationship between limited English proficiency (LEP) and outcomes after trauma is poorly understood. This study describes the association between LEP and morbidity and mortality after traumatic injury. METHODS: A retrospective cohort study was conducted of adult trauma patients admitted to a level 1 trauma center from 2012 to 2018. Morbidity (length of stay [LOS], intensive care unit admission, intensive care unit LOS, discharge destination) and in-hospital mortality for LEP and English proficient (EP) patients were compared using univariate and multivariable logistic and generalized linear models controlling for patient demographics (age, sex, race/ethnicity, insurance) and clinical characteristics (mechanism, activation level, Glasgow Coma Scale, Injury Severity Score, traumatic brain injury). RESULTS: Of the 13,104 patients, 16% were LEP patients. LEP languages included Chinese (44%) and Spanish (38%), and 18% categorized as "Other," including 33 languages. In multivariable models, LEP was statistically significantly associated with increased hospital LOS (P = 0.003) and increased discharge to home with home health services (P = 0.042) or to skilled nursing facility/rehabilitation (P = 0.006). Mortality rate was 7% for LEP versus 4% for EP patients (P < 0.0001). In multivariable analysis, speaking an LEP language other than Chinese or Spanish was statistically significantly associated with increased mortality compared to EP (P = 0.006). CONCLUSIONS: Following traumatic injury, LEP patients experience increased hospital LOS and are more frequently discharged to home with home health services or to skilled nursing facilities/rehabilitation. LEP patients speaking languages other than Chinese or Spanish experience increased mortality compared to EP patients.


Subject(s)
Communication Barriers , Limited English Proficiency , Adult , Humans , Hispanic or Latino , Morbidity , Retrospective Studies , Wounds and Injuries
2.
J Neurosurg ; 136(4): 1119-1127, 2022 04 01.
Article in English | MEDLINE | ID: mdl-34624867

ABSTRACT

OBJECTIVE: Tumors compressing the trigeminal nerve can cause facial pain, numbness, or paresthesias. Limited data exist describing how these symptoms change after resection and what factors predict symptom improvement. The objective of this study was to report trigeminal pain and sensory outcomes after tumor resection and identify factors predicting postoperative symptom improvement. METHODS: This retrospective study included patients with tumors causing facial pain, numbness, or paresthesias who underwent resection. Trigeminal schwannomas were excluded. Logistic regression, recursive partitioning, and time-to-event analyses were used to report outcomes and identify variables associated with facial sensory outcomes. RESULTS: Eighty-six patients met inclusion criteria, and the median follow-up was 3.1 years; 63 patients (73%) had meningiomas and 23 (27%) had vestibular schwannomas (VSs). Meningioma patients presented with pain, numbness, and paresthesias in 56%, 76%, and 25% of cases, respectively, compared with 9%, 91%, and 39%, respectively, for patients with VS. Most meningioma patients had symptoms for less than 1 year (60%), whereas the majority of VS patients had symptoms for 1-5 years (59%). The median meningioma and VS diameters were 3.0 and 3.4 cm, respectively. For patients with meningiomas, gross-total resection (GTR) was achieved in 27% of patients, near-total resection (NTR) in 29%, and subtotal resection (STR) in 44%. For patients with VS, GTR was achieved in 9%, NTR in 30%, and STR in 61%. Pain improved immediately after tumor resection in 81% of patients and in 92% of patients by 6 weeks. Paresthesias improved immediately in 80% of patients, increasing to 84% by 6 weeks. Numbness improved more slowly, with 52% of patients improving immediately, increasing to 79% by 2 years. Pain recurred in 22% of patients with meningiomas and 0% of patients with VSs. After resection, the Barrow Neurological Institute (BNI) facial pain intensity score improved in 73% of patients. The tumor diameter significantly predicted improvement in BNI score (OR 0.47/cm larger, 95% CI 0.22-0.99; p = 0.047). Complete decompression of the trigeminal nerve was associated with qualitative improvement in pain (p = 0.037) and decreased pain recurrence (OR 0.08, 95% CI 0.01-0.67; p = 0.024). CONCLUSIONS: Most patients with facial sensory symptoms caused by meningiomas or VSs experienced improvement after resection. Surgery led to immediate and sustained improvement in pain and paresthesias, whereas numbness was slower to improve. Patients with smaller tumors and complete decompression of the trigeminal nerve were more likely to experience improvement in facial pain.


Subject(s)
Meningeal Neoplasms , Neuroma, Acoustic , Facial Nerve/surgery , Facial Pain/etiology , Facial Pain/surgery , Follow-Up Studies , Humans , Meningeal Neoplasms/complications , Meningeal Neoplasms/surgery , Neuroma, Acoustic/surgery , Retrospective Studies , Treatment Outcome , Trigeminal Nerve/surgery
3.
Acad Med ; 96(12): 1671-1679, 2021 12 01.
Article in English | MEDLINE | ID: mdl-33951675

ABSTRACT

In response to the COVID-19 pandemic, many medical schools suspended clinical clerkships and implemented newly adapted curricula to facilitate continued educational progress. While the implementation of these new curricula has been described, an understanding of the impact on student learning outcomes is lacking. In 2020, the authors followed Kern's 6-step approach to curricular development to create and evaluate a novel COVID-19 curriculum for medical students at the University of California San Francisco School of Medicine and evaluate its learning outcomes. The primary goal of the curriculum was to provide third- and fourth-year medical students an opportunity for workplace learning in the absence of clinical clerkships, specifically for students to develop clerkship-level milestones in the competency domains of practice-based learning and improvement, professionalism, and systems-based practice. The curriculum was designed to match students with faculty-mentored projects occurring primarily in virtual formats. A total of 126 students enrolled in the curriculum and completed a survey about their learning outcomes (100% response rate). Of 35 possible clerkship-level milestones, there were 12 milestones for which over half of students reported development in competency domains including practice-based learning and improvement, professionalism, and interpersonal and communication skills. Thematic analysis of students' qualitative survey responses demonstrated 2 central motivations for participating in the curriculum: identity as physicians-in-training and patient engagement. Six central learning areas were developed during the curriculum: interprofessional teamwork, community resources, technology in medicine, skill-building, quality improvement, and specialty-specific learning. This analysis demonstrates that students can develop competencies and achieve rich workplace learning through project-based experiential learning, even in virtual clinical workplaces. Furthermore, knowledge of community resources, technology in medicine, and quality improvement was developed through the curriculum more readily than in traditional clerkships. These could be considered as integral learning objectives in future curricular design.


Subject(s)
COVID-19 , Clinical Clerkship/methods , Curriculum , Education, Medical/methods , Problem-Based Learning/methods , Clinical Competence , Humans , SARS-CoV-2
4.
Acta Neuropathol Commun ; 8(1): 82, 2020 06 09.
Article in English | MEDLINE | ID: mdl-32517746

ABSTRACT

Meningiomas are the most common primary intracranial tumors, but meningioma metastases are rare. Accordingly, the clinical workup, diagnostic testing, and molecular classification of metastatic meningioma is incompletely understood. Here, we present a case report of multiply recurrent meningioma complicated by liver metastasis. We discuss the patient presentation, imaging findings, and conventional histopathologic characterization of both the intracranial lesion and the metastatic focus. Further, we perform multiplatform molecular profiling, comprised of DNA methylation arrays and RNA-sequencing, of six stereotactically-guided samples from the intracranial meningioma and a single ultrasound-guided liver metastasis biopsy. Our results show that DNA methylation clusters distinguish the liver metastasis from the intracranial meningioma samples, and identify a small focus of hepatocyte contamination with the liver biopsy. Nonetheless, DNA methylation-based classification accurately identifies the liver metastasis as a meningioma with high confidence. We also find that clustering of RNA-sequencing results distinguishes the liver metastasis from the intracranial meningiomas samples, but that differential gene expression classification is confounded by hepatocyte-specific gene expression programs in the liver metastasis. In sum, this case report sheds light on the comparative biology of intracranial and metastatic meningioma. Furthermore, our results support methylation-based classification as a robust method of diagnosing metastatic lesions, underscore the broad utility of DNA methylation array profiling in diagnostic pathology, and caution against the routine use of bulk RNA-sequencing for identifying tumor signatures in heterogeneous metastatic lesions.


Subject(s)
Base Sequence , DNA Methylation , Liver Neoplasms/diagnosis , Liver Neoplasms/genetics , Meningeal Neoplasms/diagnosis , Meningeal Neoplasms/genetics , Meningioma/diagnosis , Meningioma/genetics , Female , Gene Expression , Gene Expression Profiling/methods , Humans , Liver Neoplasms/secondary , Meningeal Neoplasms/pathology , Meningioma/pathology , Middle Aged , Transcriptome
5.
Neuroimage Clin ; 22: 101756, 2019.
Article in English | MEDLINE | ID: mdl-30901711

ABSTRACT

OBJECTIVE: We combined diffusion MRI (dMRI) with quantitative T1 (qT1) relaxometry in a sample of school-aged children born preterm and full term to determine whether reduced fractional anisotropy (FA) within the corpus callosum of the preterm group could be explained by a reduction in myelin content, as indexed by R1 (1/T1) from qT1 scans. METHODS: 8-year-old children born preterm (n = 29; GA 22-32 weeks) and full term (n = 24) underwent dMRI and qT1 scans. Four subdivisions of the corpus callosum were segmented in individual native space according to cortical projection zones (occipital, temporal, motor and anterior-frontal). Fractional anisotropy (FA) and R1 were quantified along the tract trajectory of each subdivision and compared across two birth groups. RESULTS: Compared to controls, preterm children demonstrated significantly decreased FA in 3 of 4 analyzed corpus callosum subdivisions (temporal, motor, and anterior frontal segments) and decreased R1 in only 2 of 4 corpus callosum subdivisions (temporal and motor segments). FA and RD were significantly associated with R1 within temporal but not anterior frontal subdivisions of the corpus callosum in the term group; RD correlated with R1 in the anterior subdivision in the preterm group only. CONCLUSIONS: Myelin content, as indexed by R1, drives some but not all of the differences in white matter between preterm and term born children. Other factors, such as axonal diameter and directional coherence, likely contributed to FA differences in the anterior frontal segment of the corpus callosum that were not well explained by R1.


Subject(s)
Corpus Callosum/anatomy & histology , Corpus Callosum/diagnostic imaging , Infant, Premature , Magnetic Resonance Imaging/methods , Myelin Sheath , Child , Corpus Callosum/pathology , Diffusion Magnetic Resonance Imaging/methods , Female , Humans , Male
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