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1.
Resuscitation ; 199: 110217, 2024 Apr 20.
Article in English | MEDLINE | ID: mdl-38649086

ABSTRACT

OBJECTIVE: We aimed to investigate the association of recent team leader simulation training (<6 months) and years of clinical experience (≥4 years) with chest compression quality during in-hospital cardiac arrest (IHCA). METHODS: This cohort study of IHCA in four Danish hospitals included cases with data on chest compression quality and team leader characteristics. We assessed the impact of recent simulation training and experienced team leaders on longest chest compression pause duration (primary outcome), chest compression fraction (CCF), and chest compression rates within guideline recommendations using mixed effects models. RESULTS: Of 157 included resuscitation attempts, 45% had a team leader who recently participated in simulation training and 66% had an experienced team leader. The median team leader experience was 7 years [Q1; Q3: 4; 11]. The median duration of the longest chest compression pause was 16 s [10; 30]. Having a team leader with recent simulation training was associated with significantly shorter longest pause durations (difference: -7.11 s (95%-CI: -12.0; -2.2), p = 0.004), a higher CCF (difference: 3% (95%-CI: 2.0; 4.0%), p < 0.001) and with less guideline compliant chest compression rates (odds ratio: 0.4 (95%-CI: 0.19; 0.84), p = 0.02). Having an experienced team leader was not associated with longest pause duration (difference: -1.57 s (95%-CI: -5.34; 2.21), p = 0.42), CCF (difference: 0.7% (95%-CI: -0.3; 1.7), p = 0.17) or chest compression rates within guideline recommendations (odds ratio: 1.55 (95%-CI: 0.91; 2.66), p = 0.11). CONCLUSION: Recent simulation training of team leaders, but not years of team leader experience, was associated with shorter chest compression pauses during IHCA.

2.
Resuscitation ; 164: 70-78, 2021 07.
Article in English | MEDLINE | ID: mdl-34033863

ABSTRACT

INTRODUCTION: Guideline deviations with impact on patient outcomes frequently occur during in-hospital cardiopulmonary resuscitation (CPR). However, barriers and facilitators for preventing these guideline deviations are understudied. We aimed to characterize challenges occurring during IHCA and identify barriers and facilitators perceived by actual team members immediately following IHCA events. METHODS: This was a prospective multicenter clinical study. Following each resuscitation attempt in 6 hospitals over a 4-year period, we immediately sent web-based structured questionnaires to all responding team members, reporting their perceived resuscitation quality, teamwork, and communication and what they perceived as barriers or facilitators. Comments were analyzed using qualitative inductive thematic analysis methodology. RESULTS: We identified 924 resuscitation attempts and 3,698 survey responses were collected including 2,095 qualitative comments (response rate: 65%). Most frequent challenges were overcrowding (27%) and poor ergonomics/choreography of people in the room (17%). Narrative comments aligned into 24 unique barrier and facilitator themes in 4 domains: 6 related to treatment (most prevalent: CPR, rhythm check, equipment), 7 for teamwork (most prevalent: role allocation, crowd control, collaboration with ward staff), 6 for leadership (most prevalent: visible and distinct leader, multiple leaders, leader experience), and 5 for communication (most prevalent: closed loops, atmosphere in room, speaking loud/clear). CONCLUSION: Using novel, immediate after-event survey methodology of individual cardiac arrest team members, we characterized challenges and identified 24 themes within 4 domains that were barriers and facilitators for in-hospital resuscitation teams. We believe this level of detail is necessary to contextualize guidelines and training to facilitate high-quality resuscitation.


Subject(s)
Cardiopulmonary Resuscitation , Heart Arrest , Heart Arrest/therapy , Hospitals , Humans , Patient Care Team , Prospective Studies
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