WebWork related stress in forensic mental health professionals: A systematic review Purpose The purpose of this paper is to investigate the prevalence of stress and burnout among forensic mental health professionals (FMH). Design/methodology/approach A systematic review of the available literature accessed by relevant databases was conducted. Findings WebPersonal recovery and its challenges in forensic mental health: systematic review and thematic synthesis of the qualitative literature Published online by Cambridge University Press: 17 December 2024 Mette Senneseth , Charlotte Pollak , Ragnar Urheim , Caroline Logan and Tom Palmstierna Article Figures Supplementary materials eLetters Metrics
Black and minority ethnic groups and forensic mental health
Web1 mrt. 2006 · This review explores how mental health professionals working in forensic mental health settings experience the violence risk assessment and management … Web27 okt. 2024 · We reviewed literature pertaining speci cally to forensic patient leave and ULOA from mental health settings, and, given its potential as an inter- vention to reduce … flow rate vs discharge
National Center for Biotechnology Information
WebObjective To examine the extent, nature and quality of literature on the impact of the COVID-19 pandemic on the mental health of imprisoned people and prison staff. Design Scoping review. Data sources PubMed, Embase, CINAHL, Global Health, Cochrane, PsycINFO, PsychExtra, Web of Science and Scopus were searched for any paper from … Web19 sep. 2024 · Previous systematic reviews on FMH nursing have focused on the well-being of forensic staff, finding the empirical research to be heterogeneous, site-specific, and of limited generalizability (Brown, Igoumenou, Mortlock, Gupta, & Das, 2024; Dickinson & Wright, 2008; Freestone et al., 2015 ). WebThis study aims to examine personal recovery and its challenges in forensic mental health settings in relation to the established framework for personal recovery in mental illness: … flow rate vs dirty pressure drop curve