ScholarIQanswers from OpenAlex & ORCID
Matthew D. Breyer
ResearcherPublications, citations & collaboration network
Matthew D. Breyer is a researcher indexed in ScholarIQ from OpenAlex & ORCID.
How many works does Matthew D. Breyer have?
ScholarIQindexed works
Matthew D. Breyer has 316 works in the ScholarIQ index. The count is the OpenAlex total, not the number of papers listed on this page.
How many citations does Matthew D. Breyer have?
ScholarIQcitation count
Matthew D. Breyer has 19,891 citations in the OpenAlex counts ScholarIQ stores.
What is the h-index of Matthew D. Breyer?
ScholarIQh-index
Matthew D. Breyer has an h-index of 77 in OpenAlex.
What is the i10-index of Matthew D. Breyer?
ScholarIQi10-index
Matthew D. Breyer has an i10-index of 190 in OpenAlex.
What is the ORCID of Matthew D. Breyer?
ScholarIQorcid
The ORCID for Matthew D. Breyer is on the source record.
What is the OpenAlex record for Matthew D. Breyer?
ScholarIQopenalex
The OpenAlex for Matthew D. Breyer is on the source record.
What are the most-cited papers on Matthew D. Breyer?
ScholarIQmost cited works
Mouse Models of Diabetic Nephropathy
Frank C. Brosius, Charles E. Alpers, Erwin P. Böttinger, Matthew D. Breyer, Thomas M. Coffman, Susan B. Gurley, Raymond C. Harris, Masao Kakoki, Matthias Kretzler, Edward H. Leiter, Moshe Levi, Richard McIndoe, Kumar Sharma, Oliver Smithies, Katalin Suszták, Nobuyuki Takahashi, Takamune Takahashi
Cyclooxygenase-2 is associated with the macula densa of rat kidney and increases with salt restriction.
Raymond C. Harris, J A McKanna, Youichi Akai, H R Jacobson, R. N. DuBois, Matthew D. Breyer
Thiazolidinediones expand body fluid volume through PPARγ stimulation of ENaC-mediated renal salt absorption
You Fei Guan, Chuan‐Ming Hao, Dae Ryong, Reena Rao, Wendell J. Lu, Donald E. Kohan, Mark A. Magnuson, Reyadh Redha, Yahua Zhang, Matthew D. Breyer
Mouse Models of Diabetic Nephropathy
Matthew D. Breyer, Erwin Böttinger, Frank C. Brosius, Thomas M. Coffman, Raymond C. Harris, Charles W. Heilig, Kumar Sharma
Mesangial cell, glomerular and renal vascular responses to endothelin in the rat kidney. Elucidation of signal transduction pathways.
K F Badr, John Murray, Matthew D. Breyer, Kiyohiko Takahashi, Tadashi Inagami, Raymond C. Harris