  {"id":16396,"date":"2025-10-06T14:23:16","date_gmt":"2025-10-06T19:23:16","guid":{"rendered":"https:\/\/uwm.edu\/math\/?post_type=tribe_events&#038;p=16396"},"modified":"2025-10-06T14:23:16","modified_gmt":"2025-10-06T19:23:16","slug":"colloquium-dr-dexuan-xie","status":"publish","type":"tribe_events","link":"https:\/\/uwm.edu\/math\/event\/colloquium-dr-dexuan-xie\/","title":{"rendered":"Colloquium: Dr. Dexuan Xie"},"content":{"rendered":"<h1>Recent Advances in Nonlocal Dielectric Continuum Models for Predicting Protein and Ion Channel Electrostatics<\/h1>\n<p>Dr. Dexuan Xie<br \/>\nProfessor<br \/>\nUniversity of Wisconsin-Milwaukee<\/p>\n<p>The calculation of electrostatics for proteins and ion channels is a fundamental challenge in structural biology, computational biochemistry, biophysics, and mathematical biology. Traditional dielectric continuum models, such as the Poisson\u2013Boltzmann equation and its variants, are widely used for this calculation. However, their prediction accuracy often deteriorates near highly charged biomolecular surfaces because they neglect the polarization correlations of water molecules. To address these limitations, a nonlocal dielectric continuum modeling approach was introduced roughly four decades ago. Over the past decade, this approach has seen substantial theoretical and computational advances, largely driven by our group\u2019s work under support from the National Science Foundation.<\/p>\n<p>In this seminar, I will present our nonlocal dielectric theory and report our recent progress in developing nonlocal dielectric continuum models and finite element solvers for proteins and ion channels. I will also compare the predictions of our novel nonlocal models with those of the traditional local models and present numerical results demonstrating the efficiency of our solvers and the high performance of our software package. This work is a collaboration with my students, Liam Jemison and Matthew Stahl. It has been partially supported by the National Science Foundation under award DMS-2153376 and by the Simons Foundation under research award 711776.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Recent Advances in Nonlocal Dielectric Continuum Models for Predicting Protein and Ion Channel Electrostatics Dr. Dexuan Xie Professor University of Wisconsin-Milwaukee The calculation of electrostatics for proteins and ion channels is a fundamental challenge in structural biology, computational biochemistry, biophysics, &hellip;<\/p>\n","protected":false},"author":1661,"featured_media":0,"template":"","meta":{"_acf_changed":false,"_tribe_events_status":"","_tribe_events_status_reason":"","_tribe_events_is_hybrid":"","_tribe_events_is_virtual":"","_tribe_events_virtual_video_source":"","_tribe_events_virtual_embed_video":"","_tribe_events_virtual_linked_button_text":"","_tribe_events_virtual_linked_button":"","_tribe_events_virtual_show_embed_at":"","_tribe_events_virtual_show_embed_to":[],"_tribe_events_virtual_show_on_event":"","_tribe_events_virtual_show_on_views":"","_tribe_events_virtual_url":"","footnotes":"","uwm_wg_additional_authors":[]},"tags":[],"tribe_events_cat":[41],"class_list":["post-16396","tribe_events","type-tribe_events","status-publish","hentry","tribe_events_cat-colloquia","cat_colloquia"],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v27.3 (Yoast SEO v27.3) - 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