The association between blast exposure and transdiagnostic health symptoms on systemic inflammation
暂无分享,去创建一个
W. Milberg | M. Miller | M. Pierce | J. Hayes | R. McGlinchey | J. Fonda | C. Fortier | B. Huber | M. Pierce | K. Valerio | B. Huber | M. Miller
[1] Jeffrey T. Howard,et al. Dietary Intake and Elevated C-Reactive Protein Levels in US Military Veterans , 2021, International journal of environmental research and public health.
[2] A. Jeromin,et al. Cross-platform comparison of highly sensitive immunoassay technologies for cytokine markers: Platform performance in post-traumatic stress disorder and Parkinson’s disease , 2020, Cytokine: X.
[3] Francesca C. Fortenbaugh,et al. The Impact of Common Psychiatric and Behavioral Comorbidities on Functional Disability Across Time and Individuals in Post-9/11 Veterans. , 2020, Journal of traumatic stress.
[4] J. Sheridan,et al. Sleep disruption exacerbates and prolongs the inflammatory response to traumatic brain injury. , 2020, Journal of neurotrauma.
[5] S. Ahlers,et al. Neuroendocrine function and associated mental health outcomes following mild traumatic brain injury in OEF‐deployed service members , 2020, Journal of neuroscience research.
[6] N. Schmidt,et al. A computerized anxiety sensitivity intervention for opioid use disorders: A pilot investigation among veterans. , 2020, Addictive behaviors.
[7] C. Kirschbaum,et al. Persistent depressive symptoms, HPA-axis hyperactivity, and inflammation: the role of cognitive-affective and somatic symptoms , 2019, Molecular Psychiatry.
[8] F. Keleştimur,et al. A clinical and pathophysiological approach to traumatic brain injury-induced pituitary dysfunction , 2019, Pituitary.
[9] E. Gordon,et al. Differences in Post-Traumatic Stress Disorder Symptoms among Post-9/11 Veterans with Blast- and Non-Blast Mild Traumatic Brain Injury. , 2019, Journal of neurotrauma.
[10] B. Lamb,et al. Inflammation as a central mechanism in Alzheimer's disease , 2018, Alzheimer's & dementia.
[11] W. Milberg,et al. Comprehensive analysis of the predictors of neurobehavioral symptom reporting in veterans , 2018, Neurology.
[12] Dominic Upton,et al. Systemic low-grade inflammation in post-traumatic stress disorder: a systematic review , 2018, Journal of inflammation research.
[13] E. Peskind,et al. Chronic Hypopituitarism Associated with Increased Postconcussive Symptoms Is Prevalent after Blast-Induced Mild Traumatic Brain Injury , 2018, Front. Neurol..
[14] A. Belfiore,et al. Growth hormone deficiency and hypopituitarism in adults after complicated mild traumatic brain injury , 2017, Endocrine.
[15] W. Milberg,et al. A methodology for assessing deployment trauma and its consequences in OEF/OIF/OND veterans: The TRACTS longitudinal prospective cohort study , 2017, International journal of methods in psychiatric research.
[16] W. Milberg,et al. The Deployment Trauma Phenotype and Employment Status in Veterans of the Wars in Iraq and Afghanistan , 2017, The Journal of head trauma rehabilitation.
[17] T. Wilt,et al. Outcomes Associated With Blast Versus Nonblast-Related Traumatic Brain Injury in US Military Service Members and Veterans: A Systematic Review , 2017, The Journal of head trauma rehabilitation.
[18] L. Cristino,et al. Role of Orexin-A in Hypertension and Obesity , 2017, Current Hypertension Reports.
[19] O. Amaral,et al. On the transdiagnostic nature of peripheral biomarkers in major psychiatric disorders: A systematic review , 2016, Neuroscience & Biobehavioral Reviews.
[20] J. Gill,et al. Inflammation Relates to Chronic Behavioral and Neurological Symptoms in Military Personnel with Traumatic Brain Injuries , 2016, Cell transplantation.
[21] M. Ashley,et al. Detection of Growth Hormone Deficiency in Adults with Chronic Traumatic Brain Injury , 2016, Journal of neurotrauma.
[22] N. Crum‐Cianflone,et al. Obesity and associated adverse health outcomes among US military members and veterans: Findings from the millennium cohort study , 2016, Obesity.
[23] Z. Weil,et al. Traumatic brain injury and obesity induce persistent central insulin resistance , 2016, The European journal of neuroscience.
[24] J. Elhai,et al. A systematic literature review of PTSD's latent structure in the Diagnostic and Statistical Manual of Mental Disorders: DSM-IV to DSM-5. , 2016, Clinical psychology review.
[25] D. Marion,et al. Military Deployment May Increase the Risk for Traumatic Brain Injury Following Deployment , 2016, The Journal of head trauma rehabilitation.
[26] D. Eiferman,et al. Priming the Inflammatory Pump of the CNS after Traumatic Brain Injury , 2015, Trends in Neurosciences.
[27] Klaus P. Ebmeier,et al. Cumulative meta-analysis of interleukins 6 and 1β, tumour necrosis factor α and C-reactive protein in patients with major depressive disorder , 2015, Brain, Behavior, and Immunity.
[28] B. Hampstead,et al. Growth hormone deficiency after mild combat-related traumatic brain injury , 2015, Pituitary.
[29] William P. Milberg,et al. Deployment-related psychiatric and behavioral conditions and their association with functional disability in OEF/OIF/OND veterans. , 2015, Journal of traumatic stress.
[30] R. Mychasiuk,et al. Diet, age, and prior injury status differentially alter behavioral outcomes following concussion in rats , 2015, Neurobiology of Disease.
[31] K. Guskiewicz,et al. Prevalence of pituitary hormone dysfunction, metabolic syndrome, and impaired quality of life in retired professional football players: a prospective study. , 2014, Journal of neurotrauma.
[32] H. Belanger,et al. Normative Data for the Neurobehavioral Symptom Inventory (NSI) and Post-Concussion Symptom Profiles Among TBI, PTSD, and Nonclinical Samples , 2014, The Clinical neuropsychologist.
[33] Taura L. Barr,et al. Lower health related quality of life in U.S. military personnel is associated with service-related disorders and inflammation , 2014, Psychiatry Research.
[34] S. Bazargan-Hejazi,et al. The impact of body mass index on treatment outcomes among traumatic brain injury patients in intensive care units , 2014, European Journal of Trauma and Emergency Surgery.
[35] W. Milberg,et al. The Boston Assessment of Traumatic Brain Injury–Lifetime (BAT-L) Semistructured Interview: Evidence of Research Utility and Validity , 2014, The Journal of head trauma rehabilitation.
[36] H. Belanger,et al. Screening for Postdeployment Conditions: Development and Cross-Validation of an Embedded Validity Scale in the Neurobehavioral Symptom Inventory , 2014, The Journal of head trauma rehabilitation.
[37] Timothy E. Ham,et al. Pituitary Dysfunction after Blast Traumatic Brain Injury: The UK BIOSAP Study , 2013, Annals of neurology.
[38] R. Morishita,et al. Increased blood–brain barrier vulnerability to systemic inflammation in an Alzheimer disease mouse model , 2013, Neurobiology of Aging.
[39] C. Vierck,et al. Overpressure blast-wave induced brain injury elevates oxidative stress in the hypothalamus and catecholamine biosynthesis in the rat adrenal medulla , 2013, Neuroscience Letters.
[40] Andre Pascal Kengne,et al. Diabetes Mellitus and Inflammation , 2013, Current Diabetes Reports.
[41] L. Makowski,et al. The inflammation highway: metabolism accelerates inflammatory traffic in obesity , 2012, Immunological reviews.
[42] Yves Rosseel,et al. lavaan: An R Package for Structural Equation Modeling , 2012 .
[43] Verena D. Schmittmann,et al. Qgraph: Network visualizations of relationships in psychometric data , 2012 .
[44] R. Hayes,et al. Neuro-Glial and Systemic Mechanisms of Pathological Responses in Rat Models of Primary Blast Overpressure Compared to “Composite” Blast , 2012, Front. Neur..
[45] S. Tangye,et al. Inflammatory Mechanisms in Obesity , 2013 .
[46] R. McCarron,et al. Increase in blood–brain barrier permeability, oxidative stress, and activated microglia in a rat model of blast‐induced traumatic brain injury , 2010, Journal of neuroscience research.
[47] S. Manuck,et al. Systemic inflammation and the metabolic syndrome among middle-aged community volunteers. , 2010, Metabolism: clinical and experimental.
[48] N. Simon,et al. Broad spectrum of cytokine abnormalities in panic disorder and posttraumatic stress disorder , 2009, Depression and anxiety.
[49] Joshua D. Clapp,et al. The structure of distress following trauma: posttraumatic stress disorder, major depressive disorder, and generalized anxiety disorder. , 2008, Journal of abnormal psychology.
[50] J. Corrigan,et al. Screening and Identification of TBI , 2007 .
[51] M. Klose,et al. Posttraumatic hypopituitarism is associated with an unfavorable body composition and lipid profile, and decreased quality of life 12 months after injury. , 2007, The Journal of clinical endocrinology and metabolism.
[52] G. Hotamisligil,et al. Inflammation and metabolic disorders , 2006, Nature.
[53] M. Hersberger,et al. Hypocretin-1 (orexin A) deficiency in acute traumatic brain injury , 2005, Neurology.
[54] K. Grafton,et al. Test-Retest Reliability of the Short-Form McGill Pain Questionnaire: Assessment of Intraclass Correlation Coefficients and Limits of Agreement in Patients With Osteoarthritis , 2005, The Clinical journal of pain.
[55] A. Newman,et al. The metabolic syndrome, inflammation, and risk of cognitive decline. , 2004, JAMA.
[56] B. Doebbeling,et al. Confirmatory factor analyses of posttraumatic stress symptoms in deployed and nondeployed veterans of the Gulf War. , 2002, Journal of abnormal psychology.
[57] Keith D. Cicerone,et al. Persistent postconcussion syndrome: The structure of subjective complaints after mild traumatic brain injury , 1995 .
[58] P. Lovibond,et al. The structure of negative emotional states: comparison of the Depression Anxiety Stress Scales (DASS) with the Beck Depression and Anxiety Inventories. , 1995, Behaviour research and therapy.
[59] M Davies,et al. The Structured Clinical Interview for DSM-III-R (SCID). II. Multisite test-retest reliability. , 1992 .
[60] Ronald Melzack,et al. The short-form McGill pain questionnaire , 1987, Pain.
[61] K. Khush,et al. DYSFUNCTION , 1952 .
[62] E. Gordon,et al. Differences in PTSD Symptoms among Post-9/11 Veterans with Blast- and Non-blast Mild TBI , 2018 .
[63] K. Ressler,et al. Inflammation in Fear- and Anxiety-Based Disorders: PTSD, GAD, and Beyond , 2017, Neuropsychopharmacology.
[64] D. Luxton,et al. Obesity and Associated Adverse Health Outcomes Among US Military Members and Veterans : Findings from the Millennium Cohort Study , 2017 .
[65] Amy L. Hermundstad,et al. Chronic Hormonal Imbalance and Adipose Redistribution Is Associated with Hypothalamic Neuropathology following Blast Exposure. , 2016, Journal of neurotrauma.
[66] S. Meier,et al. Psychometric study of the Neurobehavioral Symptom Inventory. , 2012, Journal of rehabilitation research and development.
[67] Arnoud Arntz,et al. Inter-rater reliability of the Structured Clinical Interview for DSM-IV Axis I Disorders (SCID I) and Axis II Disorders (SCID II). , 2011, Clinical psychology & psychotherapy.
[68] J. Davidson,et al. Clinician‐administered PTSD scale: A review of the first ten years of research , 2001, Depression and anxiety.
[69] P. Bentler,et al. Cutoff criteria for fit indexes in covariance structure analysis : Conventional criteria versus new alternatives , 1999 .
[70] D. Charney,et al. The development of a Clinician-Administered PTSD Scale , 1995, Journal of traumatic stress.