Low-fidelity simulation models in urology resident's microsurgery training.
[PURPOSE] To evaluate the gain of microsurgical skills and competencies by urology residents, using low-fidelity experimental models.
- p-value p=0.0019
- p-value p<0.0001
APA
Pinto LOAD, Silva RC, et al. (2023). Low-fidelity simulation models in urology resident's microsurgery training.. Acta cirurgica brasileira, 38, e386523. https://doi.org/10.1590/acb386523
MLA
Pinto LOAD, et al.. "Low-fidelity simulation models in urology resident's microsurgery training.." Acta cirurgica brasileira, vol. 38, 2023, pp. e386523.
PMID
38055400
Abstract
[PURPOSE] To evaluate the gain of microsurgical skills and competencies by urology residents, using low-fidelity experimental models.
[METHODS] The study involved the use of training boards, together with a low-fidelity microsurgery simulator, developed using a 3D printer. The model consists in two silicone tubes, coated with a resin, measuring 10 cm in length and with internal and external diameters of 0.5 and 1.5 mm. The support for the ducts is composed by a small box, developed with polylactic acid. The evaluation of the gain of skills and competencies in microsurgery occurred throughout a training course consisting of five training sessions. The first sessions (S1-S4) took place at weekly intervals and the last session (S5) was performed three months after S4. During sessions, were analyzed: the speed of performing microsurgical sutures in the pre and post-training and the performance of each resident through the Objective Structure Assessment of Technical Skill (OSATS) and Student Satisfaction Self-Confidence tools in Learning (SSSCL).
[RESULTS] There was a decrease in the time needed to perform the anastomosis (p=0.0019), as well as a progressive increase in the score in the OSATS over during sessions S1 to S4. At S5, there was a slightly decrease in performance (p<0.0001), however, remaining within the expected plateau for the gain of skills and competences. The SSSCL satisfaction scale showed an overall approval rating of 96.9%, with a Cronback alpha coefficient of 83%.
[CONCLUSIONS] The low-fidelity simulation was able to guarantee urology residents a solid gain in skills and competencies in microsurgery.
[METHODS] The study involved the use of training boards, together with a low-fidelity microsurgery simulator, developed using a 3D printer. The model consists in two silicone tubes, coated with a resin, measuring 10 cm in length and with internal and external diameters of 0.5 and 1.5 mm. The support for the ducts is composed by a small box, developed with polylactic acid. The evaluation of the gain of skills and competencies in microsurgery occurred throughout a training course consisting of five training sessions. The first sessions (S1-S4) took place at weekly intervals and the last session (S5) was performed three months after S4. During sessions, were analyzed: the speed of performing microsurgical sutures in the pre and post-training and the performance of each resident through the Objective Structure Assessment of Technical Skill (OSATS) and Student Satisfaction Self-Confidence tools in Learning (SSSCL).
[RESULTS] There was a decrease in the time needed to perform the anastomosis (p=0.0019), as well as a progressive increase in the score in the OSATS over during sessions S1 to S4. At S5, there was a slightly decrease in performance (p<0.0001), however, remaining within the expected plateau for the gain of skills and competences. The SSSCL satisfaction scale showed an overall approval rating of 96.9%, with a Cronback alpha coefficient of 83%.
[CONCLUSIONS] The low-fidelity simulation was able to guarantee urology residents a solid gain in skills and competencies in microsurgery.
추출된 의학 개체 (NER)
| 유형 | 영어 표현 | 한국어 / 풀이 | UMLS CUI | 출처 | 등장 |
|---|---|---|---|---|---|
| 시술 | microsurgery
|
미세수술 | dict | 4 | |
| 해부 | ducts
|
scispacy | 1 | ||
| 약물 | silicone
|
C0037114
silicones
|
scispacy | 1 | |
| 약물 | polylactic acid
|
C0071443
Polylactic acid (substance)
|
scispacy | 1 | |
| 질환 | SSSCL
→ Satisfaction Self-Confidence tools in Learning
|
scispacy | 1 | ||
| 질환 | solid
|
scispacy | 1 |
MeSH Terms
Humans; Internship and Residency; Microsurgery; Urology; Clinical Competence; Anastomosis, Surgical; Simulation Training
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