Karina Yaniv
#187,503
Most Influential Person Now
Israeli scientist and vascular researcher
Karina Yaniv's AcademicInfluence.com Rankings
Karina Yanivbiology Degrees
Biology
#15789
World Rank
#19846
Historical Rank
Cell Biology
#908
World Rank
#932
Historical Rank
Molecular Biology
#2847
World Rank
#2893
Historical Rank

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Biology
Karina Yaniv's Degrees
- Bachelors Biology Tel Aviv University
- Masters Biotechnology Weizmann Institute of Science
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Why Is Karina Yaniv Influential?
(Suggest an Edit or Addition)According to Wikipedia, Karina Yaniv is an Israeli scientist who is best known for her contributions to the field of vascular development. She is a Professor of Vascular Disease in the Department of Biological Regulation at the Weizman Institute of science, Rehovot, Israel. She has three kids, and lives in the Weizmann Institute.
Karina Yaniv's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Live imaging of lymphatic development in the zebrafish (2006) (462)
- RNA-binding protein conserved in both microtubule- and microfilament-based RNA localization. (1998) (226)
- The mid-developmental transition and the evolution of animal body plans (2016) (202)
- Lymphatic vessels arise from specialized angioblasts within a venous niche (2015) (179)
- The involvement of a conserved family of RNA binding proteins in embryonic development and carcinogenesis. (2002) (162)
- ApoB-containing lipoproteins regulate angiogenesis by modulating expression of VEGF receptor 1 (2012) (114)
- S1P1 inhibits sprouting angiogenesis during vascular development (2012) (106)
- The RNA-binding protein Vg1 RBP is required for cell migration during early neural development (2003) (94)
- Zebrafish as a model for apolipoprotein biology: comprehensive expression analysis and a role for ApoA-IV in regulating food intake (2015) (90)
- Endothelial cells promote migration and proliferation of enteric neural crest cells via beta1 integrin signaling. (2009) (79)
- Development of the lymphatic system: new questions and paradigms (2016) (73)
- Venous-derived angioblasts generate organ-specific vessels during zebrafish embryonic development (2015) (67)
- Zebrafish as a Model for Monocarboxyl Transporter 8-Deficiency* (2012) (65)
- Vg1 RBP intracellular distribution and evolutionarily conserved expression at multiple stages during development (1999) (65)
- On the pathway of mineral deposition in larval zebrafish caudal fin bone. (2015) (65)
- Simultaneous Raman Microspectroscopy and Fluorescence Imaging of Bone Mineralization in Living Zebrafish Larvae (2014) (56)
- Zebrafish as a new animal model to study lymphangiogenesis (2009) (55)
- Distinct origins and molecular mechanisms contribute to lymphatic formation during cardiac growth and regeneration (2019) (55)
- Mineral Formation in the Larval Zebrafish Tail Bone Occurs via an Acidic Disordered Calcium Phosphate Phase. (2016) (51)
- Motoneurons are essential for vascular pathfinding (2011) (46)
- Transient p53-Mediated Regenerative Senescence in the Injured Heart. (2019) (44)
- Somatic NRAS mutation in patient with generalized lymphatic anomaly (2018) (39)
- Development and origins of Zebrafish ocular vasculature (2015) (38)
- A new role of hindbrain boundaries as pools of neural stem/progenitor cells regulated by Sox2 (2016) (32)
- Defining cis-acting elements and trans-acting factors in RNA localization. (2001) (29)
- Intercellular pathways from the vasculature to the forming bone in the zebrafish larval caudal fin: Possible role in bone formation. (2019) (24)
- Cellular Origins of the Lymphatic Endothelium: Implications for Cancer Lymphangiogenesis (2020) (19)
- Beyond cells: The extracellular circulating 20S proteasomes. (2020) (19)
- Zebrafish skeleton development: High resolution micro-CT and FIB-SEM block surface serial imaging for phenotype identification (2017) (16)
- Lipid signaling in the endothelium. (2013) (15)
- Autotaxin–Lysophosphatidic Acid Axis Acts Downstream of Apoprotein B Lipoproteins in Endothelial Cells (2016) (15)
- BACH family members regulate angiogenesis and lymphangiogenesis by modulating VEGFC expression (2019) (12)
- VEGFC/FLT4-induced cell-cycle arrest mediates sprouting and differentiation of venous and lymphatic endothelial cells (2021) (12)
- Formation and Growth of Cardiac Lymphatics during Embryonic Development, Heart Regeneration, and Disease. (2019) (12)
- Generation of specialized blood vessels via lymphatic transdifferentiation (2022) (11)
- Imaging the developing lymphatic system using the zebrafish. (2007) (9)
- Discovering New Progenitor Cell Populations through Lineage Tracing and In Vivo Imaging. (2020) (8)
- Zebrafish mutants provide insights into Apolipoprotein B functions during embryonic development and pathological conditions (2021) (6)
- VEGFC induced cell cycle arrest mediates sprouting and differentiation of venous and lymphatic endothelial cells (2020) (4)
- Motoneurons are essential for vascular pathfinding (2011) (2)
- Venous-derived angioblasts generate organ-specific vessels during embryonic development (2015) (2)
- Development and origins of Zebrafish ocular vasculature (2015) (0)
- Generation of specialized blood vessels via lymphatic transdifferentiation (2022) (0)
- Editor's evaluation: Myelinating Schwann cells and Netrin-1 control intra-nervous vascularization of the developing mouse sciatic nerve (2021) (0)
- A new role of hindbrain boundaries as pools of neural stem/progenitor cells regulated by Sox2 (2016) (0)
- Author response: Distinct origins and molecular mechanisms contribute to lymphatic formation during cardiac growth and regeneration (2019) (0)
- Supplemental material: Intercellular Pathways from the Vasculature to the Forming Bone in the Zebrafish Larval Caudal Fin: Possible Role in Bone Formation. JSB 2019 (2019) (0)
- Summary The RNA-binding protein Vg 1 RBP is required for cell migration during early neural development (2003) (0)
- Generation of specialized blood vessels through transdifferentiation of lymphatic endothelial cells (2021) (0)
- Author Correction: The mid-developmental transition and the evolution of animal body plans (2019) (0)
- Novel zebrafish mutants reveal new roles for Apolipoprotein B during embryonic development and pathological conditions (2021) (0)
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