Repository landing page

We are not able to resolve this OAI Identifier to the repository landing page. If you are the repository manager for this record, please head to the Dashboard and adjust the settings.

Abstract

The Adaptive Poissonâ Boltzmann Solver (APBS) software was developed to solve the equations of continuum electrostatics for large biomolecular assemblages that have provided impact in the study of a broad range of chemical, biological, and biomedical applications. APBS addresses the three key technology challenges for understanding solvation and electrostatics in biomedical applications: accurate and efficient models for biomolecular solvation and electrostatics, robust and scalable software for applying those theories to biomolecular systems, and mechanisms for sharing and analyzing biomolecular electrostatics data in the scientific community. To address new research applications and advancing computational capabilities, we have continually updated APBS and its suite of accompanying software since its release in 2001. In this article, we discuss the models and capabilities that have recently been implemented within the APBS software package including a Poissonâ Boltzmann analytical and a semiâ analytical solver, an optimized boundary element solver, a geometryâ based geometric flow solvation model, a graph theoryâ based algorithm for determining pKa values, and an improved webâ based visualization tool for viewing electrostatics.Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/141870/1/pro3280_am.pdfhttps://deepblue.lib.umich.edu/bitstream/2027.42/141870/2/pro3280.pdfhttps://deepblue.lib.umich.edu/bitstream/2027.42/141870/3/pro3280-sup-0001-suppinfo01.pd

Similar works

Full text

thumbnail-image

Deep Blue Documents at the University of Michigan

redirect
Last time updated on 18/04/2019

Having an issue?

Is data on this page outdated, violates copyrights or anything else? Report the problem now and we will take corresponding actions after reviewing your request.