https://ccgg.temple.edu/heylab/software
Programs were written in C, C++, and/or Python, and the source code is available. The programs should compile under different compilers. A Win32 executable version (.exe file) is also available for most versions. Some of the programs are a little bit interfunctional. SITES will generate input lines for the HKA and WH programs.
https://scholarshare.temple.edu/server/api/core/bitstreams/c07e6ddf-cfa5-4054-9707-1d907529edd5/content
scholarshare.temple.edu
https://www.temple.edu/directory/chang-hee-won-cwon
Choi, S.I., Kim, A., & Won, C. (2022). Tissue Viscoelasticity Quantification Using Smartphone Tactile Imaging Probe With an Indenter and Viscoelastic Pitting Recovery Model.
https://medicine.temple.edu/directory/satya-kunapuli-phd
We have demonstrated three nucleotide receptors on platelets and cloned the P2Y1 receptor, coupled to activation of phospholipase C from a platelet library. We have demonstrated that the P2Y1 receptor plays an essential role in the ADP-induced platelet shape change and aggregation.
https://its.temple.edu/tech-help
Technical Support The Technology Support Services Team provides assistance for technology related questions to the university community. Overview The Technology Support Center is staffed by professional consultants and technical student workers who are trained to assist Temple students, faculty, and staff with technical issues. Live Chat or Request Help: tuhelp.temple.edu. Faculty/staff can ...
https://pharmacy.temple.edu/kenkorzekwa
Korzekwa K, Nagar S. Process and System Clearances in Pharmacokinetic Models: Our Basic Clearance Concepts Are Correct. Drug Metab Dispos. 2023 Apr;51 (4):532-542. Korzekwa K, Radice C, Nagar S. A permeability- and perfusion-based PBPK model for improved prediction of concentration-time profiles. Clin Transl Sci. 2022 Aug;15 (8):2035-2052.
https://www.temple.edu/directory/huanmei-wu-tuo12759
Patel, J.S., Su, C., Tellez, M., Albandar, J.M., Rao, R., Iyer, V., Shi, E., & Wu, H. (2022). Developing and testing a prediction model for periodontal disease using machine learning and big electronic dental record data.
https://www.temple.edu/directory/sudhir-kumar-tuf73733
Li, C., Mowlaei, M.E., (HGSVC), H.G.S.V.C., Group, H.F.A.W., Carnevale, V., Kumar, S., & Shi, X. (2025). TRUHiC: A TRansformer-embedded U-2 Net to enhance Hi-C data for 3D chromatin structure characterization.
https://digital.library.temple.edu/digital/custom/explore
Russell Conwell and the Founding of Temple College The War on the Walls: Posters from the George F. Tyler WWI Collection Potable Power: Delaware Valley Bootlegging during Prohibition Works by Salvatore C. DiMarco and Gilbert J. Tucker of the Philadelphia Evening Bulletin Celebrating Black History & Women's History Months Curious Looks at ...
https://engineering.temple.edu/directory/peter-i-lelkes-tue51080
Bidez, P.R., Li, S., Macdiarmid, A.G., Venancio, E.C., Wei, Y., & Lelkes, P.I. (2006). Polyaniline, an electroactive polymer, supports adhesion and proliferation of cardiac myoblasts.