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Janice A Nagy

Showing results (1-10 of 63) with videos related to

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Experimental Cell Research|November 29, 2005
VEGF-A, cytoskeletal dynamics, and the pathological vascular phenotypeJanice A Nagy, Donald R Senger
Clinical & Experimental Metastasis|June 14, 2012
Heterogeneity of the tumor vasculature: the need for new tumor blood vessel type-specific targetsJanice A Nagy, Harold F Dvorak
Cancer Research|April 18, 2012
Anti-VEGF/VEGFR therapy for cancer: reassessing the targetBasel Sitohy, Janice A Nagy, Harold F Dvorak
Trends in Cardiovascular Medicine|July 3, 2003
VEGF-A(164/165) and PlGF: roles in angiogenesis and arteriogenesisJanice A Nagy, Ann M Dvorak, Harold F Dvorak
Annual Review of Pathology|November 28, 2007
VEGF-A and the induction of pathological angiogenesisJanice A Nagy, Ann M Dvorak, Harold F Dvorak
Microvascular Research|September 21, 2010
Cdc42-mediated inhibition of GSK-3β improves angio-architecture and lumen formation during VEGF-driven pathological angiogenesisMien V Hoang, Janice A Nagy, Donald R Senger
Cold Spring Harbor Perspectives in Medicine|February 23, 2012
Vascular hyperpermeability, angiogenesis, and stroma generationJanice A Nagy, Ann M Dvorak, Harold F Dvorak
Blood|October 30, 2010
Active Rac1 improves pathologic VEGF neovessel architecture and reduces vascular leak: mechanistic similarities with angiopoietin-1Mien V Hoang, Janice A Nagy, Donald R Senger
Frontiers in Neurology|January 9, 2023
Assessing the therapeutic impact of resveratrol in ALS SOD1-G93A mice with electrical impedance myographyJanice A Nagy, Carson Semple, PuiChi Lo, et al.
Muscle & Nerve|September 2, 2023
Combining electromyographic and electrical impedance data sets through machine learning: A study in D2-mdx and wild-type miceSarbesh Pandeya, Benjamin Sanchez, Janice A Nagy, et al.
Pageof 7

Showing results (1-10 of 63) with videos related to

Sort By:
Pageof 7
Experimental Cell Research|November 29, 2005
VEGF-A, cytoskeletal dynamics, and the pathological vascular phenotypeJanice A Nagy, Donald R Senger
Clinical & Experimental Metastasis|June 14, 2012
Heterogeneity of the tumor vasculature: the need for new tumor blood vessel type-specific targetsJanice A Nagy, Harold F Dvorak
Cancer Research|April 18, 2012
Anti-VEGF/VEGFR therapy for cancer: reassessing the targetBasel Sitohy, Janice A Nagy, Harold F Dvorak
Trends in Cardiovascular Medicine|July 3, 2003
VEGF-A(164/165) and PlGF: roles in angiogenesis and arteriogenesisJanice A Nagy, Ann M Dvorak, Harold F Dvorak
Annual Review of Pathology|November 28, 2007
VEGF-A and the induction of pathological angiogenesisJanice A Nagy, Ann M Dvorak, Harold F Dvorak
Microvascular Research|September 21, 2010
Cdc42-mediated inhibition of GSK-3β improves angio-architecture and lumen formation during VEGF-driven pathological angiogenesisMien V Hoang, Janice A Nagy, Donald R Senger
Cold Spring Harbor Perspectives in Medicine|February 23, 2012
Vascular hyperpermeability, angiogenesis, and stroma generationJanice A Nagy, Ann M Dvorak, Harold F Dvorak
Blood|October 30, 2010
Active Rac1 improves pathologic VEGF neovessel architecture and reduces vascular leak: mechanistic similarities with angiopoietin-1Mien V Hoang, Janice A Nagy, Donald R Senger
Frontiers in Neurology|January 9, 2023
Assessing the therapeutic impact of resveratrol in ALS SOD1-G93A mice with electrical impedance myographyJanice A Nagy, Carson Semple, PuiChi Lo, et al.
Muscle & Nerve|September 2, 2023
Combining electromyographic and electrical impedance data sets through machine learning: A study in D2-mdx and wild-type miceSarbesh Pandeya, Benjamin Sanchez, Janice A Nagy, et al.
Pageof 7