NIH – National Center for Advancing Translational Sciences
UL1TR002541
Preston, E. V., Quinn, M. R., Williams, P. L., McElrath, T. F., Cantonwine, D. E., Seely, E. W., Wylie, B. J., Hacker, M. R., O’Brien, K., Brown, F. M., Powe, C. E., Bellavia, A., Wang, Z., Tomsho, K. S., Hauser, R., & James-Todd, T. (2024). Cohort profile: the Environmental Reproductive and Glucose Outcomes (ERGO) Study (Boston, Massachusetts, USA) — a prospective pregnancy cohort study of the impacts of environmental exposures on parental cardiometabolic health. BMJ Open, 14(5), e079782. https://doi.org/10.1136/bmjopen-2023-079782
Subjects:
Environmental Exposure
(MeSH)
Grants:
R01HD094150
(NIH – Eunice Kennedy Shriver National Institute of Child Health & Human Development)
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
UL1TR001102
(NIH – National Center for Advancing Translational Sciences)
UL1TR000170
(NIH – National Center for Advancing Translational Sciences)
K23DK113218
(NIH – National Institute of Diabetes and Digestive and Kidney Diseases)
P30ES000002
(NIH – National Institute of Environmental Health Sciences)
R01ES026166
(NIH – National Institute of Environmental Health Sciences)
R01ES033185
(NIH – National Institute of Environmental Health Sciences)
Publication Type:
Article
Unique ID:
10.1136/bmjopen-2023-079782
PMID:
Journal:
Publication Date:
Data Source:
PubMed
Lewis, A. C. F., Chisholm, R. L., Connolly, J. J., Esplin, E. D., Glessner, J., Gordon, A., Green, R. C., Hakonarson, H., Harr, M., Holm, I. A., Jarvik, G. P., Karlson, E., Kenny, E. E., Kottyan, L., Lennon, N., Linder, J. E., Luo, Y., Martin, L. J., Perez, E., … Fullerton, S. M. (2024). Managing differential performance of polygenic risk scores across groups: Real-world experience of the eMERGE Network. The American Journal of Human Genetics, 111(6), 999–1005. https://doi.org/10.1016/j.ajhg.2024.04.005
Subjects:
Multifactorial Inheritance
(MeSH)
Grants:
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
U01HG006379
(NIH – National Human Genome Research Institute)
U01HG008685
(NIH – National Human Genome Research Institute)
U01HG011172
(NIH – National Human Genome Research Institute)
U01HG008680
(NIH – National Human Genome Research Institute)
U01HG008657
(NIH – National Human Genome Research Institute)
U01HG011167
(NIH – National Human Genome Research Institute)
U01HG011175
(NIH – National Human Genome Research Institute)
U01HG011169
(NIH – National Human Genome Research Institute)
U01HG011166
(NIH – National Human Genome Research Institute)
U01HG011176
(NIH – National Human Genome Research Institute)
U01HG011181
(NIH – National Human Genome Research Institute)
Publication Type:
Article
Unique ID:
10.1016/j.ajhg.2024.04.005
PMID:
Journal:
Publication Date:
Data Source:
PubMed
Source Link:
Record Created:
Dutton, C., Mody, S. K., Nippita, S., Dodge, L. E., Pang, T., Pennell, P. B., & Davis, A. (2024). Depot medroxyprogesterone acetate concentrations in patients with and without the use of antiseizure medications. Contraception, 134, 110418. https://doi.org/10.1016/j.contraception.2024.110418
Columbia Affiliation:
Subjects:
Grants:
UL1TR001873
(NIH – National Center for Advancing Translational Sciences)
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
Publication Type:
Article
Unique ID:
10.1016/j.contraception.2024.110418
PMID:
Journal:
Publication Date:
Data Source:
PubMed
Source Link:
Record Created:
Association of genetic and sulcal traits with executive function in congenital heart disease
Maleyeff, L., Newburger, J. W., Wypij, D., Thomas, N. H., Anagnoustou, E., Brueckner, M., Chung, W. K., Cleveland, J., Cunningham, S., Gelb, B. D., Goldmuntz, E., Hagler, D. J., Huang, H., King, E., McQuillen, P., Miller, T. A., Norris‐Brilliant, A., Porter, G. A., Roberts, A. E., … Morton, S. U. (2023). Association of genetic and sulcal traits with executive function in congenital heart disease. Annals of Clinical and Translational Neurology, 11(2), 278–290. Portico. https://doi.org/10.1002/acn3.51950
Columbia Affiliation:
Subjects:
Epidemiology and Management of Congenital Heart Disease
(OpenAlex Topic)
Molecular Mechanisms of Cardiac Development and Regeneration
(OpenAlex Topic)
Congenital Coronary Artery Anomalies and Their Management
(OpenAlex Topic)
Executive Function
(MeSH)
Heart Defects, Congenital
(MeSH)
Grants:
P50HD105351
(NIH – Eunice Kennedy Shriver National Institute of Child Health & Human Development)
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
UL1TR001863
(NIH – National Center for Advancing Translational Sciences)
UL1TR000003
(NIH – National Center for Advancing Translational Sciences)
U01HL098162
(NIH – National Heart, Lung, and Blood Institute)
U01HL098163
(NIH – National Heart, Lung, and Blood Institute)
U01HL098147
(NIH – National Heart, Lung, and Blood Institute)
U01HL131003
(NIH – National Heart, Lung, and Blood Institute)
U01HL098188
(NIH – National Heart, Lung, and Blood Institute)
U01HL098153
(NIH – National Heart, Lung, and Blood Institute)
R01HL128818
(NIH – National Heart, Lung, and Blood Institute)
U01HL098123
(NIH – National Heart, Lung, and Blood Institute)
K08HL157653
(NIH – National Heart, Lung, and Blood Institute)
U54HG006504
(NIH – National Human Genome Research Institute)
R01NS114087
(NIH – National Institute of Neurological Disorders and Stroke)
Publication Type:
Article
Unique ID:
10.1002/acn3.51950
PMID:
DOI:
Publication Date:
Data Source:
PubMed
Source Link:
Record Created:
Predictive models of long COVID
Antony, B., Blau, H., Casiraghi, E., Loomba, J. J., Callahan, T. J., Laraway, B. J., Wilkins, K. J., Antonescu, C. C., Valentini, G., Williams, A. E., Robinson, P. N., Reese, J. T., Murali, T. M., & Chute, C. (2023). Predictive models of long COVID. EBioMedicine, 96, 104777. https://doi.org/10.1016/j.ebiom.2023.104777
Columbia Affiliation:
Subjects:
Post-Acute COVID-19 Syndrome
(MeSH)
COVID-19
(MeSH)
Grants:
UL1TR001445
(NIH – National Center for Advancing Translational Sciences)
UL1TR002240
(NIH – National Center for Advancing Translational Sciences)
U24TR002306
(NIH – National Center for Advancing Translational Sciences)
UL1TR001436
(NIH – National Center for Advancing Translational Sciences)
UL1TR002538
(NIH – National Center for Advancing Translational Sciences)
UL1TR002369
(NIH – National Center for Advancing Translational Sciences)
UL1TR002377
(NIH – National Center for Advancing Translational Sciences)
UL1TR003015
(NIH – National Center for Advancing Translational Sciences)
UL1TR002489
(NIH – National Center for Advancing Translational Sciences)
UL1TR001873
(NIH – National Center for Advancing Translational Sciences)
UL1TR002550
(NIH – National Center for Advancing Translational Sciences)
UL1TR001450
(NIH – National Center for Advancing Translational Sciences)
UL1TR002345
(NIH – National Center for Advancing Translational Sciences)
UL1TR003096
(NIH – National Center for Advancing Translational Sciences)
UL1TR001409
(NIH – National Center for Advancing Translational Sciences)
UL1TR002373
(NIH – National Center for Advancing Translational Sciences)
UL1TR002544
(NIH – National Center for Advancing Translational Sciences)
UL1TR002389
(NIH – National Center for Advancing Translational Sciences)
UL1TR001412
(NIH – National Center for Advancing Translational Sciences)
UL1TR002529
(NIH – National Center for Advancing Translational Sciences)
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
UL1TR002319
(NIH – National Center for Advancing Translational Sciences)
UL1TR002645
(NIH – National Center for Advancing Translational Sciences)
UL1TR001453
(NIH – National Center for Advancing Translational Sciences)
UL1TR001414
(NIH – National Center for Advancing Translational Sciences)
UL1TR002243
(NIH – National Center for Advancing Translational Sciences)
UL1TR001430
(NIH – National Center for Advancing Translational Sciences)
UL1TR003098
(NIH – National Center for Advancing Translational Sciences)
UL1TR002537
(NIH – National Center for Advancing Translational Sciences)
UL1TR002001
(NIH – National Center for Advancing Translational Sciences)
UM1TR004404
(NIH – National Center for Advancing Translational Sciences)
UL1TR001433
(NIH – National Center for Advancing Translational Sciences)
UL1TR003142
(NIH – National Center for Advancing Translational Sciences)
UL1TR001878
(NIH – National Center for Advancing Translational Sciences)
UL1TR001449
(NIH – National Center for Advancing Translational Sciences)
UL1TR002736
(NIH – National Center for Advancing Translational Sciences)
UL1TR001439
(NIH – National Center for Advancing Translational Sciences)
UL1TR002378
(NIH – National Center for Advancing Translational Sciences)
UL1TR002494
(NIH – National Center for Advancing Translational Sciences)
UL1TR001876
(NIH – National Center for Advancing Translational Sciences)
UL1TR003017
(NIH – National Center for Advancing Translational Sciences)
UL1TR001427
(NIH – National Center for Advancing Translational Sciences)
UL1TR002003
(NIH – National Center for Advancing Translational Sciences)
UL1TR001442
(NIH – National Center for Advancing Translational Sciences)
UL1TR001425
(NIH – National Center for Advancing Translational Sciences)
UL1TR001860
(NIH – National Center for Advancing Translational Sciences)
UL1TR001881
(NIH – National Center for Advancing Translational Sciences)
UL1TR001872
(NIH – National Center for Advancing Translational Sciences)
UL1TR003167
(NIH – National Center for Advancing Translational Sciences)
UL1TR001855
(NIH – National Center for Advancing Translational Sciences)
UL1TR002366
(NIH – National Center for Advancing Translational Sciences)
UL1TR001863
(NIH – National Center for Advancing Translational Sciences)
UL1TR002014
(NIH – National Center for Advancing Translational Sciences)
UL1TR002556
(NIH – National Center for Advancing Translational Sciences)
UL1TR002553
(NIH – National Center for Advancing Translational Sciences)
UL1TR001422
(NIH – National Center for Advancing Translational Sciences)
UL1TR002384
(NIH – National Center for Advancing Translational Sciences)
UL1TR002535
(NIH – National Center for Advancing Translational Sciences)
UL1TR001420
(NIH – National Center for Advancing Translational Sciences)
UL1TR002649
(NIH – National Center for Advancing Translational Sciences)
UL1TR002733
(NIH – National Center for Advancing Translational Sciences)
UL1TR001998
(NIH – National Center for Advancing Translational Sciences)
UL1TR001866
(NIH – National Center for Advancing Translational Sciences)
UL1TR003107
(NIH – National Center for Advancing Translational Sciences)
U54GM115428
(NIH – National Institute of General Medical Sciences)
U54GM115677
(NIH – National Institute of General Medical Sciences)
U54GM104942
(NIH – National Institute of General Medical Sciences)
U54GM104940
(NIH – National Institute of General Medical Sciences)
U54GM104941
(NIH – National Institute of General Medical Sciences)
U54GM115371
(NIH – National Institute of General Medical Sciences)
U54GM115458
(NIH – National Institute of General Medical Sciences)
U54GM115516
(NIH – National Institute of General Medical Sciences)
U54GM104938
(NIH – National Institute of General Medical Sciences)
Publication Type:
Article
Unique ID:
10.1016/j.ebiom.2023.104777
PMID:
Journal:
Publication Date:
Data Source:
PubMed
Source Link:
Record Created:
Friesen, P., Gelinas, L., Kirby, A., Strauss, D. H., & Bierer, B. E. (2023). Acknowledging Complexity and Reimagining IRBs: A Reply to Discussions of the Protection–Inclusion Dilemma. The American Journal of Bioethics, 23(9). https://doi.org/10.1080/15265161.2023.2237762
Columbia Affiliation:
Subjects:
Ethics Committees, Research
(MeSH)
Grants:
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
Publication Type:
Article
Unique ID:
10.1080/15265161.2023.2237762
PMID:
Journal:
Publication Date:
Data Source:
PubMed
Source Link:
Record Created:
Karaa, A., Bertini, E., Carelli, V., Cohen, B. H., Enns, G. M., Falk, M. J., Goldstein, A., Gorman, G. S., Haas, R., Hirano, M., Klopstock, T., Koenig, M. K., Kornblum, C., Lamperti, C., Lehman, A., Longo, N., Molnar, M. J., Parikh, S., Phan, H., … Alessina, C. (2023). Efficacy and Safety of Elamipretide in Individuals With Primary Mitochondrial Myopathy. Neurology, 101(3). https://doi.org/10.1212/wnl.0000000000207402
Columbia Affiliation:
Subjects:
Quality of Life
(MeSH)
Mitochondrial Myopathies
(MeSH)
Grants:
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
UL1TR002538
(NIH – National Center for Advancing Translational Sciences)
Publication Type:
Article
Unique ID:
10.1212/wnl.0000000000207402
PMID:
Journal:
Publication Date:
Data Source:
PubMed
Source Link:
Record Created:
IRBs and the Protection-Inclusion Dilemma: Finding a Balance
Friesen, P., Gelinas, L., Kirby, A., Strauss, D. H., & Bierer, B. E. (2022). IRBs and the Protection-Inclusion Dilemma: Finding a Balance. The American Journal of Bioethics, 23(6), 75–88. https://doi.org/10.1080/15265161.2022.2063434
Columbia Affiliation:
Subjects:
Ethics Committees, Research
(MeSH)
Biomedical Research
(MeSH)
Grants:
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
Publication Type:
Article
Unique ID:
10.1080/15265161.2022.2063434
PMID:
Journal:
Publication Date:
Data Source:
PubMed
Source Link:
Record Created:
Protecting the Vulnerable and Including the Under-Represented: IRB Practices and Attitudes
Gelinas, L., Strauss, D. H., Chen, Y., Ahmed, H. R., Kirby, A., Friesen, P., & Bierer, B. E. (2022). Protecting the Vulnerable and Including the Under-Represented: IRB Practices and Attitudes. Journal of Empirical Research on Human Research Ethics, 18(1–2), 58–68. https://doi.org/10.1177/15562646221138450
Columbia Affiliation:
Subjects:
Ethics Committees, Research
(MeSH)
Attitude
(MeSH)
Grants:
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
Publication Type:
Article
Unique ID:
10.1177/15562646221138450
PMID:
Publication Date:
Data Source:
Scopus
Record Created:
Cervical microRNA expression and spontaneous preterm birth
Burris, H. H., Gerson, K. D., Woodward, A., Redhunt, A. M., Ledyard, R., Brennan, K., Baccarelli, A. A., Hecht, J. L., Collier, A.-R. Y., & Hacker, M. R. (2023). Cervical microRNA expression and spontaneous preterm birth. American Journal of Obstetrics & Gynecology MFM, 5(1), 100783. https://doi.org/10.1016/j.ajogmf.2022.100783
Columbia Affiliation:
Subjects:
Premature Birth
(MeSH)
MicroRNAs
(MeSH)
Grants:
K12HD000849
(NIH – Eunice Kennedy Shriver National Institute of Child Health & Human Development)
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
K23ES022242
(NIH – National Institute of Environmental Health Sciences)
P30ES013508
(NIH – National Institute of Environmental Health Sciences)
Publication Type:
Article
Unique ID:
10.1016/j.ajogmf.2022.100783
PMID:
Publication Date:
Data Source:
PubMed
Record Created:
Lee, M. M., Kinsey, E. W., & Kenney, E. L. (2022). U.S. Nutrition Assistance Program Participation and Childhood Obesity: The Early Childhood Longitudinal Study 2011. American Journal of Preventive Medicine, 63(2), 242–250. https://doi.org/10.1016/j.amepre.2022.02.016
Columbia Affiliation:
Subjects:
Food Assistance
(MeSH)
Pediatric Obesity
(MeSH)
Grants:
K99HD101657
(NIH – Eunice Kennedy Shriver National Institute of Child Health & Human Development)
R00HD101657
(NIH – Eunice Kennedy Shriver National Institute of Child Health & Human Development)
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
K01DK125278
(NIH – National Institute of Diabetes and Digestive and Kidney Diseases)
Publication Type:
Article
Unique ID:
10.1016/j.amepre.2022.02.016
PMID:
Publication Date:
Data Source:
Scopus
Record Created:
Banzon, T. M., Kelly, M. S., Bartnikas, L. M., Sheehan, W. J., Cunningham, A., Harb, H., Crestani, E., Valeri, L., Greco, K. F., Chatila, T. A., Phipatanakul, W., & Lai, P. S. (2022). Atopic Dermatitis Mediates the Association Between an IL4RA Variant and Food Allergy in School-Aged Children. The Journal of Allergy and Clinical Immunology: In Practice, 10(8), 2117-2124.e4. https://doi.org/10.1016/j.jaip.2022.04.042
Columbia Affiliation:
Subjects:
Grants:
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
R38HL150212
(NIH – National Heart, Lung, and Blood Institute)
R01AI065617
(NIH – National Institute of Allergy and Infectious Diseases)
R01AI126915
(NIH – National Institute of Allergy and Infectious Diseases)
K24AI106822
(NIH – National Institute of Allergy and Infectious Diseases)
T32AI007512
(NIH – National Institute of Allergy and Infectious Diseases)
U01AI160087
(NIH – National Institute of Allergy and Infectious Diseases)
R01AI144119
(NIH – National Institute of Allergy and Infectious Diseases)
K23AI143962
(NIH – National Institute of Allergy and Infectious Diseases)
U01AI152033
(NIH – National Institute of Allergy and Infectious Diseases)
K23ES023700
(NIH – National Institute of Environmental Health Sciences)
Publication Type:
Article
Unique ID:
10.1016/j.jaip.2022.04.042
PMID:
Publication Date:
Data Source:
Scopus
Record Created:
Rastogi, V., Marcaccio, C. L., Patel, P. B., Varkevisser, R. R. B., Patel, V. I., Soden, P. A., de Bruin, J. L., Verhagen, H. J. M., & Schermerhorn, M. L. (2022). A retroperitoneal operative approach is associated with improved perioperative outcomes compared with a transperitoneal approach in open repair of complex abdominal aortic aneurysms. Journal of Vascular Surgery, 76(2), 354-363.e1. https://doi.org/10.1016/j.jvs.2022.02.041
Subjects:
Aortic Aneurysm, Abdominal
(MeSH)
Management and Pathophysiology of Abdominal Aortic Aneurysms
(OpenAlex Topic)
Perioperative Cardiac Risk Assessment and Management
(OpenAlex Topic)
Diagnosis and Management of Aortic Diseases
(OpenAlex Topic)
Grants:
F32HS027285
(NIH – Agency for Healthcare Research and Quality)
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
T32HL007734
(NIH – National Heart, Lung, and Blood Institute)
Publication Type:
Article
Unique ID:
10.1016/j.jvs.2022.02.041
PMID:
Journal:
Publication Date:
Data Source:
OpenAlex
Source Link:
Record Created:
Sex-specific criteria for repair should be utilized in patients undergoing aortic aneurysm repair
Patel, P. B., De Guerre, L. E. V. M., Marcaccio, C. L., Dansey, K. D., Li, C., Lo, R., Patel, V. I., & Schermerhorn, M. L. (2022). Sex-specific criteria for repair should be utilized in patients undergoing aortic aneurysm repair. Journal of Vascular Surgery, 75(2), 515–525. https://doi.org/10.1016/j.jvs.2021.08.060
Subjects:
Management and Pathophysiology of Abdominal Aortic Aneurysms
(OpenAlex Topic)
Perioperative Cardiac Risk Assessment and Management
(OpenAlex Topic)
Diagnosis and Management of Aortic Diseases
(OpenAlex Topic)
Aortic Aneurysm, Abdominal
(MeSH)
Endovascular Procedures
(MeSH)
Postoperative Complications
(MeSH)
Risk Assessment
(MeSH)
Grants:
F32HS027285
(NIH – Agency for Healthcare Research and Quality)
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
T32HL007734
(NIH – National Heart, Lung, and Blood Institute)
Publication Type:
Article
Unique ID:
10.1016/j.jvs.2021.08.060
PMID:
Journal:
Publication Date:
Data Source:
Scopus
Source Link:
Record Created:
Dereix, A. E., Ledyard, R., Redhunt, A. M., Bloomquist, T. R., Brennan, K. J., Baccarelli, A. A., Hacker, M. R., & Burris, H. H. (2020). Maternal Anxiety and Depression in Pregnancy and DNA Methylation of the NR3C1 Glucocorticoid Receptor Gene. Epigenomics, 13(21), 1701–1709. https://doi.org/10.2217/epi-2020-0022
Columbia Affiliation:
Grants:
UL1TR001102
(NIH – National Center for Advancing Translational Sciences)
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
K23ES022242
(NIH – National Institute of Environmental Health Sciences)
Publication Type:
Article
Unique ID:
10.2217/epi-2020-0022
PMID:
Journal:
Publication Date:
Data Source:
Scopus
Source Link:
Record Created:
Israel, E., Denlinger, L. C., Bacharier, L. B., LaVange, L. M., Moore, W. C., Peters, M. C., Georas, S. N., Wright, R. J., Mauger, D. T., Noel, P., Akuthota, P., Bach, J., Bleecker, E. R., Cardet, J. C., Carr, T. F., Castro, M., Cinelli, A., Comhair, S. A. A., Covar, R. A., … Ivanova, A. (2021). PrecISE: Precision Medicine in Severe Asthma: An adaptive platform trial with biomarker ascertainment. Journal of Allergy and Clinical Immunology, 147(5), 1594–1601. https://doi.org/10.1016/j.jaci.2021.01.037
Subjects:
Grants:
UL1TR002366
(NIH – National Center for Advancing Translational Sciences)
UL1TR002389
(NIH – National Center for Advancing Translational Sciences)
UL1TR001857
(NIH – National Center for Advancing Translational Sciences)
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
UL1TR001442
(NIH – National Center for Advancing Translational Sciences)
UL1TR000427
(NIH – National Center for Advancing Translational Sciences)
U24TR001608
(NIH – National Center for Advancing Translational Sciences)
UL1TR002489
(NIH – National Center for Advancing Translational Sciences)
UL1TR001872
(NIH – National Center for Advancing Translational Sciences)
UG1HL139126
(NIH – National Heart, Lung, and Blood Institute)
UG1HL139125
(NIH – National Heart, Lung, and Blood Institute)
U24HL138998
(NIH – National Heart, Lung, and Blood Institute)
UG1HL139118
(NIH – National Heart, Lung, and Blood Institute)
K23HL138303
(NIH – National Heart, Lung, and Blood Institute)
UG1HL139123
(NIH – National Heart, Lung, and Blood Institute)
UG1HL139098
(NIH – National Heart, Lung, and Blood Institute)
UG1HL139119
(NIH – National Heart, Lung, and Blood Institute)
UG1HL139054
(NIH – National Heart, Lung, and Blood Institute)
UG1HL139106
(NIH – National Heart, Lung, and Blood Institute)
U01HL102225
(NIH – National Heart, Lung, and Blood Institute)
UG1HL139117
(NIH – National Heart, Lung, and Blood Institute)
UG1HL139124
(NIH – National Heart, Lung, and Blood Institute)
P30DK054759
(NIH – National Institute of Diabetes and Digestive and Kidney Diseases)
P30ES006694
(NIH – National Institute of Environmental Health Sciences)
UH3OD023365
(NIH – Office of the Director, National Institutes of Health)
Publication Type:
Article
Unique ID:
10.1016/j.jaci.2021.01.037
PMID:
Publication Date:
Data Source:
Web of Science
Record Created:
Epidermal Neurite Density in Skin Biopsies From Patients With Juvenile Fibromyalgia
Boneparth, A., Chen, S., Horton, D. B., Moorthy, L. N., Farquhar, I., Downs, H. M., Lee, H., & Oaklander, A. L. (2020). Epidermal Neurite Density in Skin Biopsies From Patients With Juvenile Fibromyalgia. The Journal of Rheumatology, 48(4), 575–578. https://doi.org/10.3899/jrheum.200378
Columbia Affiliation:
Grants:
UL1TR002541
(NIH – National Center for Advancing Translational Sciences)
K23AR070286
(NIH – National Institute of Arthritis and Musculoskeletal and Skin Diseases)
R01NS093653
(NIH – National Institute of Neurological Disorders and Stroke)
K24NS059892
(NIH – National Institute of Neurological Disorders and Stroke)
Publication Type:
Article
Unique ID:
10.3899/jrheum.200378
PMID:
Journal:
Publication Date:
Data Source:
Web of Science
Source Link: