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Issam A Awad

Showing results (161-170 of 199) with videos related to

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Biochemistry and Biophysics Reports|August 13, 2025
Common and distinct circulating microRNAs in four neurovascular disordersJanne Koskimäki, Aditya Jhaveri, Abhinav Srinath, et al.
Biorxiv : the Preprint Server for Biology|December 22, 2025
Integration of artificial intelligence and high-content screening enabled identification of drugs for long-term treatment of cerebral cavernous malformation diseaseEduardo Frias-Anaya, Helios Gallego-Gutierrez, Cassandra Bui, et al.
Geroscience|June 20, 2020
Common transcriptome, plasma molecules, and imaging signatures in the aging brain and a Mendelian neurovascular disease, cerebral cavernous malformationJanne Koskimäki, Sean P Polster, Yan Li, et al.
Stroke|February 8, 2014
Guidelines for the prevention of stroke in women: a statement for healthcare professionals from the American Heart Association/American Stroke AssociationCheryl Bushnell, Louise D McCullough, Issam A Awad, et al.
Neurosurgery|January 20, 2021
A Roadmap for Developing Plasma Diagnostic and Prognostic Biomarkers of Cerebral Cavernous Angioma With Symptomatic Hemorrhage (CASH)Romuald Girard, Yan Li, Agnieszka Stadnik, et al.
Journal of Neuroscience Methods|June 28, 2016
Micro-computed tomography in murine models of cerebral cavernous malformations as a paradigm for brain diseaseRomuald Girard, Hussein A Zeineddine, Courtney Orsbon, et al.
Translational Stroke Research|July 9, 2024
Except for Robust Outliers, Rapamycin Increases Lesion Burden in a Murine Model of Cerebral Cavernous MalformationsRoberto J Alcazar-Felix, Robert Shenkar, Christian R Benavides, et al.
The Journal of Clinical Investigation|May 27, 2021
Astrocytes propel neurovascular dysfunction during cerebral cavernous malformation lesion formationMiguel Alejandro Lopez-Ramirez, Catherine Chinhchu Lai, Shady Ibrahim Soliman, et al.
Cell Communication and Signaling : CCS|January 9, 2024
Transcriptomic signatures of individual cell types in cerebral cavernous malformationYing Li, Romuald Girard, Abhinav Srinath, et al.
Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism|January 20, 2025
Circulating molecules reflect imaging biomarkers of hemorrhage in cerebral cavernous malformationsStephanie F Hage, Dehua E Bi, Serena Kinkade, et al.
Pageof 20

Showing results (161-170 of 199) with videos related to

Sort By:
Pageof 20
Biochemistry and Biophysics Reports|August 13, 2025
Common and distinct circulating microRNAs in four neurovascular disordersJanne Koskimäki, Aditya Jhaveri, Abhinav Srinath, et al.
Biorxiv : the Preprint Server for Biology|December 22, 2025
Integration of artificial intelligence and high-content screening enabled identification of drugs for long-term treatment of cerebral cavernous malformation diseaseEduardo Frias-Anaya, Helios Gallego-Gutierrez, Cassandra Bui, et al.
Geroscience|June 20, 2020
Common transcriptome, plasma molecules, and imaging signatures in the aging brain and a Mendelian neurovascular disease, cerebral cavernous malformationJanne Koskimäki, Sean P Polster, Yan Li, et al.
Stroke|February 8, 2014
Guidelines for the prevention of stroke in women: a statement for healthcare professionals from the American Heart Association/American Stroke AssociationCheryl Bushnell, Louise D McCullough, Issam A Awad, et al.
Neurosurgery|January 20, 2021
A Roadmap for Developing Plasma Diagnostic and Prognostic Biomarkers of Cerebral Cavernous Angioma With Symptomatic Hemorrhage (CASH)Romuald Girard, Yan Li, Agnieszka Stadnik, et al.
Journal of Neuroscience Methods|June 28, 2016
Micro-computed tomography in murine models of cerebral cavernous malformations as a paradigm for brain diseaseRomuald Girard, Hussein A Zeineddine, Courtney Orsbon, et al.
Translational Stroke Research|July 9, 2024
Except for Robust Outliers, Rapamycin Increases Lesion Burden in a Murine Model of Cerebral Cavernous MalformationsRoberto J Alcazar-Felix, Robert Shenkar, Christian R Benavides, et al.
The Journal of Clinical Investigation|May 27, 2021
Astrocytes propel neurovascular dysfunction during cerebral cavernous malformation lesion formationMiguel Alejandro Lopez-Ramirez, Catherine Chinhchu Lai, Shady Ibrahim Soliman, et al.
Cell Communication and Signaling : CCS|January 9, 2024
Transcriptomic signatures of individual cell types in cerebral cavernous malformationYing Li, Romuald Girard, Abhinav Srinath, et al.
Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism|January 20, 2025
Circulating molecules reflect imaging biomarkers of hemorrhage in cerebral cavernous malformationsStephanie F Hage, Dehua E Bi, Serena Kinkade, et al.
Pageof 20