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RECRUITING
NCT06722248
NA

High Fidelity Simulation-based Learning Approach in Maternal and Infant Care

Sponsor: The University of Hong Kong

View on ClinicalTrials.gov

Summary

Study type: clinical trial - randomized control trial Primary purpose: to explore the effectiveness of high-fidelity simulation (HFS) interventions, specifically scenario-based training with pre-briefing and de-briefing on (1) knowledge and self-efficacy (2) problem solving abilities, (3) the learning experience among nursing students in baby care and breastfeeding, as compared to traditional training. Primary outcome: breastfeeding self-efficacy scores and knowledge in the intervention compared to the control group Secondary outcome: Simulation Design Scale and Education Practices Questionnaire

Official title: Exploring Nursing Students' Experience and Attitudes Towards High Fidelity Simulation-based Learning Approach in Maternal and Infant Care: A Mixed Method Study

Key Details

Gender

All

Age Range

18 Years - 30 Years

Study Type

INTERVENTIONAL

Enrollment

158

Start Date

2025-03-01

Completion Date

2027-02-28

Last Updated

2025-06-11

Healthy Volunteers

Yes

Interventions

BEHAVIORAL

high fidelity simulation-based training

The intervention is a two-hour high-fidelity simulation training session focusing on newborn assessment, care practices, skin-to-skin contact, and breastfeeding. It uses SimBaby mannequins and breastfeeding models to mimic the hospital environment. Scenarios are tailored to nursing students' learning levels and reviewed by experienced midwives. The training includes: Prebriefing: Introduction of learning objectives, scenario background, simulation familiarization, confidentiality discussions, and ground rules. Intervention: Scenario-based training on baby care and breastfeeding. Debriefing: Plus-delta debriefing model reviewed by simulation educators. The training will be conducted in the nursing simulation laboratory.

BEHAVIORAL

conventional training

Conventional training includes lecture, tutorial and basic lab with low-fidelity mannequins.

Locations (1)

Hong Kong Metropolitan University

Hong Kong, Hksar, Hong Kong