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Definition and Characteristics of Behavioral Medicine, and Main Tasks and Goals of the International Society of Behavioral Medicine-an International Delphi Study.

Joost Dekker | Marie Amitami | Anne H Berman | Helen Brown | Bryan Cleal | Maria João Figueiras | Lila J Finney Rutten | Egil A Fors | Konstadina Griva | Jing Gu | Chris Keyworth | Maria Kleinstäuber | Claas Lahmann | Joseph T F Lau | Bernd Leplow | Li Li | Hanna Malmberg Gavelin | Ricarda Mewes | Phoenix K H Mo | Barbara Mullan | Frank J Penedo | Judith Prins | Teresa Rodríguez Rodríguez | Sharon A Simpson | Adrienne Stauder | Martti T Tuomisto | Deborah Jones Weiss | Urs M Nater
International journal of behavioral medicine | 2021

In the past decades, behavioral medicine has attained global recognition. Due to its global reach, a critical need has emerged to consider whether the original definition of behavioral medicine is still valid, comprehensive, and inclusive, and to reconsider the main tasks and goals of the International Society of Behavioral Medicine (ISBM), as the umbrella organization in the field. The purpose of the present study was to (i) update the definition and scope of behavioral medicine and its defining characteristics; and (ii) develop a proposal on ISBM's main tasks and goals.

Pubmed ID: 32909153

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DelPhi (tool)

RRID:SCR_008669

DelPhi provides numerical solutions to the Poisson-Boltzmann equation (both linear and nonlinear form) for molecules of arbitrary shape and charge distribution. The current version is fast, accurate, and can handle extremely high lattice dimensions. It also includes flexible features for assigning different dielectric constants to different regions of space and treating systems containing mixed salt solutions. DelPhi takes as input a coordinate file format of a molecule or equivalent data for geometrical objects and/or charge distributions and calculates the electrostatic potential in and around the system, using a finite difference solution to the Poisson-Boltzmann equation. DelPhi is a versatile electrostatics simulation program that can be used to investigate electrostatic fields in a variety of molecular systems. Features of DelPhi include solutions to mixtures of salts of different valence; solutions to different dielectric constants to different regions of space; and estimation of the best relaxation parameter at run time.

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