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pro vyhledávání: '"Sean A. Newman"'
Autor:
Sean A. Newman, Shalini Gopalkrishnan
Publikováno v:
Frontiers in Communication, Vol 8 (2023)
IntroductionThere has been a great deal of excitement and discussion about the potential for artificial intelligence (AI) to improve business processes by providing more effective delivery options in cost-effective ways. One such way for many compani
Externí odkaz:
https://doaj.org/article/4682102fcb8c4973ba181a4f2ab94493
Publikováno v:
Organizational Dynamics. 52:100956
Publikováno v:
Organizational Dynamics. 48:61-72
Publikováno v:
International Journal of Business Communication. 57:452-473
Based on a study of leader communication effectiveness conducted in a large human resource outsourcing firm, this article reports how virtual team members’ perceptions of their leaders’ effective use of communication tools and techniques affect t
Autor:
Sean A. Newman, Robert C. Ford
Publikováno v:
Organizational Dynamics
The emergence of COVID-19 has presented employees and employers new challenges as many employees and managers were forced to work in a remote environment for the first time. For many reasons, managing virtual teams is different than managing employee
Autor:
Monica J. Carson, Rakez Kayed, Andriy V. Yeromin, Jack P. Antel, Mathew Blurton-Jones, Ali Mortazavi, Abdullah M. Madany, Ricardo Ramirez, Chad A. Caraway, Wayne W. Poon, Cecilia H.H. Nguyen, Edsel M. Abud, Cristhian Fimbres, Sean A. Newman, Karen H. Gylys, Eric S. Martinez, Anshu Agrawal, Vanessa M. Scarfone, Luke M. Healy, Michael D. Cahalan, Brian J. Cummings, Gianna M. Fote, Samuel E. Marsh
Publikováno v:
Abud, EM; Ramirez, RN; Martinez, ES; Healy, LM; Nguyen, CHH; Newman, SA; et al.(2017). iPSC-Derived Human Microglia-like Cells to Study Neurological Diseases. NEURON, 94(2), 278-+. doi: 10.1016/j.neuron.2017.03.042. UC Irvine: Retrieved from: http://www.escholarship.org/uc/item/4mp8t99k
Microglia play critical roles in brain development, homeostasis, and neurological disorders. Here, we report that human microglial-like cells (iMGLs) can be differentiated from iPSCs to study their function in neurological diseases, like Alzheimer's