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1.
J Head Trauma Rehabil ; 34(3): E28-E36, 2019.
Article in English | MEDLINE | ID: mdl-30499931

ABSTRACT

OBJECTIVE: A panel of biomarkers is needed to definitively diagnose mild traumatic brain injury (mTBI). There is a clear role for the inclusion of an inflammatory biomarker. This study looked to find a relationship between high sensitivity C-reactive protein (hsCRP), an inflammatory biomarker, and mTBI. SETTING: Neurology department of high-volume tertiary orthopedic hospital. PARTICIPANTS: Individuals diagnosed with mTBI (n = 311, age 21 ± 12 years, 53% female). DESIGN: Retrospective cohort study. MAIN MEASURES: hsCRP levels; postconcussive symptoms; demographics. RESULTS: Continuous hsCRP levels were transformed into quartiles, as defined by less than 0.200 mg/L for quartile 1 (Q1); 0.200 to 0.415 mg/L for quartile 2 (Q2); 0.415 to 1.100 mg/L for quartile 3 (Q3); and greater than 1.100 mg/L for quartile 4 (Q4). Mean hsCRP was elevated in the cohort of individuals who presented within 1 week of injury and was found to significantly decrease between the first visit and 4 weeks postinjury (P = .016). Initial hsCRP level was positively correlated with age (r = 0.163, P = .004), and age significantly increased between quartiles (P = .013). Patients with increased age (odds ratio: 3.48) and those who endorsed headache (odds ratio: 3.48) or fatigue (odds ratio: 2.16) were significantly associated with increased risk of having an hsCRP level in Q4. CONCLUSION: hsCRP may be a viable addition to acute and longitudinal biomarker panels for diagnosis and prognosis of mTBI.


Subject(s)
Brain Concussion/blood , Brain Concussion/diagnosis , C-Reactive Protein/metabolism , Adolescent , Adult , Aged , Biomarkers/blood , Child , Female , Humans , Male , Middle Aged , Prognosis , Retrospective Studies , Time Factors , Young Adult
2.
Front Neurol ; 9: 836, 2018.
Article in English | MEDLINE | ID: mdl-30405511

ABSTRACT

Background: Uncertainty continues to surround mild traumatic brain injury (mTBI) diagnosis, symptoms, prognosis, and outcome due in part to a lack of objective biomarkers of injury and recovery. As mTBI gains recognition as a serious public health epidemic, there is need to identify risk factors, diagnostic tools, and imaging biomarkers to help guide diagnosis and management. Methods: One hundred and eleven patients (15-50 years old) were enrolled acutely after mTBI and followed with up to four standardized serial assessments over 3 months. Each encounter included a clinical exam, neuropsychological assessment, and magnetic resonance imaging (MRI). Chi-square and linear mixed models were used to assess changes over time and determine potential biomarkers of mTBI severity and outcome. Results: The symptoms most frequently endorsed after mTBI were headache (91%), not feeling right (89%), fatigue (86%), and feeling slowed down (84%). Of the 104 mTBI patients with a processed MRI scan, 28 (27%) subjects had white matter changes which were deemed unrelated to age, and 26 of these findings were deemed unrelated to acute trauma. Of the neuropsychological assessments tested, 5- and 6-Digit Backward Recall, the modified Balance Error Scoring System (BESS), and Immediate 5-Word Recall significantly improved longitudinally in mTBI subjects and differentiated between mTBI subjects and controls. Female sex was found to increase symptom severity scores (SSS) at every time point. Age ≥ 25 years was correlated with increased SSS. Subjects aged ≥ 25 also did not improve longitudinally on 5-Digit Backward Recall, Immediate 5-Word Recall, or Single-Leg Stance of the BESS, whereas subjects < 25 years improved significantly. Patients who reported personal history of depression, anxiety, or other psychiatric disorder had higher SSS at each time point. Conclusions: The results of this study show that 5- and 6-Digit Backward Recall, the modified BESS, and Immediate 5-Word Recall should be considered useful in demonstrating cognitive and vestibular improvement during the mTBI recovery process. Clinicians should take female sex, older age, and history of psychiatric disorder into account when managing mTBI patients. Further study is necessary to determine the true prevalence of white matter changes in people with mTBI.

3.
Muscle Nerve ; 57(6): 946-950, 2018 06.
Article in English | MEDLINE | ID: mdl-29266269

ABSTRACT

INTRODUCTION: In this we study identified potential risk factors for post-total knee arthroplasty (TKA) nerve injury, a catastrophic complication with a reported incidence of 0.3%-1.3%. METHODS: Patients who developed post-TKA nerve injury from 1998 to 2013 were identified, and each was matched with 2 controls. A multivariable logistic regression model was built to calculate odds ratios (ORs). RESULTS: Sixty-five nerve injury cases were identified in 39,990 TKAs (0.16%). Females (OR 3.28, P = 0.003) and patients with history of lumbar pathology (OR 6.12, P = 0.026) were associated with increased risk of nerve injury. Tourniquet pressure < 300 mm Hg and longer duration of anesthesia may also be risk factors. DISCUSSION: Surgical planning for females and patients with lumbar pathology should be modified to mitigate their higher risk of neurologic complications after TKA. Our finding that lower tourniquet pressure was associated with higher risk of nerve injury was unexpected and requires further investigation. Muscle Nerve 57: 946-950, 2018.


Subject(s)
Arthroplasty, Replacement, Knee/adverse effects , Peripheral Nerve Injuries/etiology , Adult , Aged , Aged, 80 and over , Female , Humans , Incidence , Male , Middle Aged , Peripheral Nerve Injuries/epidemiology , Peroneal Nerve/injuries , Postoperative Complications/epidemiology , Postoperative Complications/etiology , Risk Factors
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