Sort by
Refine Your Search
-
Listed
-
Field
-
human health. Aligned with Rutgers University–New Brunswick and collaborating university wide, RBHS includes eight schools, a behavioral health network, and five centers and institutes that focus
-
to investigate how microbial communities shape insect chemosensory systems and behavior. The Sun Lab’s work sits at the intersection of microbiology, sensory biology, and molecular mechanisms, asking not just
-
conduct advanced research in pharmaceutical sciences and translational cancer biology, focusing on tumor microenvironment signaling, perineural invasion, and therapeutic resistance mechanisms in prostate
-
a strong computational background and extensive experience developing high-throughput systems for quantitative analysis of behavior and aging, allowing us to connect neural and molecular mechanisms
-
decline. The laboratory also has a strong computational background and extensive experience developing high-throughput systems for quantitative analysis of behavior and aging, allowing us to connect neural
-
. Aligned with Rutgers University–New Brunswick and collaborating university wide, RBHS includes eight schools, a behavioral health network, and five centers and institutes that focus on cancer treatment and
-
of improving human health. Aligned with Rutgers University–New Brunswick and collaborating university wide, RBHS includes eight schools, a behavioral health network, and six centers and institutes that focus
-
evolutionary biology. The postdoctoral associate will develop and benchmark methods for evolutionary analysis by the comparison of protein structures, conduct rigorous evaluations of the concordance
-
will support and conduct simulation modeling research related to tobacco and lung cancer prevention and control. Duties include: Conducts data analysis using secondary data sources, such as national
-
of the Postdoctoral Associate is to conduct research aimed at identifying metabolic vulnerabilities in KRAS-driven lung tumorigenesis, with the goal of informing potential therapeutic strategies for KRAS-mutant lung