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Biophysical Journal|October 6, 2019
Human Neutrophils Will Crawl Upstream on ICAM-1 If Mac-1 Is BlockedAlexander Buffone, Nicholas R Anderson, Daniel A Hammer
Journal of Cell Science|November 29, 2017
Migration against the direction of flow is LFA-1-dependent in human hematopoietic stem and progenitor cellsAlexander Buffone, Nicholas R Anderson, Daniel A Hammer
Cell Adhesion & Migration|March 19, 2019
T lymphocytes migrate upstream after completing the leukocyte adhesion cascadeNicholas R Anderson, Alexander Buffone, Daniel A Hammer
Frontiers in Cell and Developmental Biology|November 29, 2023
Not all (cells) who wander are lost: Upstream migration as a pervasive mode of amoeboid cell motilityAlexander Buffone, Daniel A Hammer, Sarah Hyun Ji Kim, et al.
Cellular and Molecular Bioengineering|October 2, 2018
An Experimentally Determined State Diagram for Human CD4+ T Lymphocyte CXCR4-Stimulated Adhesion Under Shear FlowNicholas R Anderson, Dooyoung Lee, Daniel A Hammer
Plos Computational Biology|October 8, 2019
A simulation of the random and directed motion of dendritic cells in chemokine fieldsAvery Parr, Nicholas R Anderson, Daniel A Hammer
Integrative Biology : Quantitative Biosciences From Nano to Macro|July 23, 2019
Adhesive dynamics simulations quantitatively predict effects of kindlin-3 deficiency on T-cell homingNicholas R Anderson, Dooyoung Lee, Daniel A Hammer
Molecular Biology of the Cell|August 21, 2024
Inhibition of Mac-1 allows human macrophages to migrate against the direction of shear flow on ICAM-1Aman Mittal, Subham Guin, Ai Mochida, et al.
Integrative Biology : Quantitative Biosciences From Nano to Macro|February 13, 2015
The direction of migration of T-lymphocytes under flow depends upon which adhesion receptors are engagedGeorge A Dominguez, Nicholas R Anderson, Daniel A Hammer
Cellular and Molecular Bioengineering|November 14, 2019
Identifying Key Pathways and Components in Chemokine-Triggered T Lymphocyte Arrest Dynamics Using a Multi-Parametric Global Sensitivity AnalysisDooyoung Lee, Michael T Beste, Nicholas R Anderson, et al.
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