49 parallel-processing-bioinformatics Postdoctoral positions at Stanford University in United States
Sort by
Refine Your Search
-
in human genetics and population data to experimentally testable mechanisms using powerful genetic models. Projects will combine bioinformatics, genomics, genetics, and systems biology, with
-
outcomes for children with IBD. The successful candidate must hold a PhD, PharmD or MD/DO with a focus on pharmacometrics or computational biology/bioinformatics focused on -omics with an interest in
-
currently because novel therapies replacing orexin are being developed by the pharmacological industry; prospects for a career in academic or industry are high. In parallel with this effort, we are also
-
for strategies to understand and treat bacterial infections, with intensely translational efforts focused on discovering and developing new antibacterial agents. We are advancing antibacterial compounds already
-
. Knowledge in bioinformatics for the analysis of sequencing data is preferred. The intent of these studies is to determine the immunogenicity of tumor associated antigens identified in our humanized mouse
-
.2023.01.012(link is external) Drug Discovery: New Therapeutic Mechanisms In parallel, we use structural biology as a foundation for discovering new therapeutic mechanisms. Our work focuses on using chemically
-
Posted on Tue, 04/07/2026 - 12:39 Important Info Faculty Sponsor First name: Alma-Martina Faculty Sponsor Last Name: Cepika Stanford Departments and Centers: Surgery, General Surgery Postdoc
-
. Required Qualifications: PhD or MD/PhD, with expertise in immunology, molecular biology, cell biology, or bioinformatics. Demonstrated record of productive research and publications. Excellent written and
-
ability to quickly learn and master various computer programs. Strong record of peer-reviewed publications. A PhD, MD or equivalent with prior relevant training in Immunology, Biology, Bioinformatics
-
associated with biological membranes, including large peripheral membrane complexes and integral membrane transporters. In parallel with mechanistic structural work, we develop targeted chemical probes