King's College London

Research portal

The role of dry-lab and cadaveric simulation for cystoscopy and intravesical Botulinum toxin injections

Research output: Contribution to journalArticle

Standard

The role of dry-lab and cadaveric simulation for cystoscopy and intravesical Botulinum toxin injections. / Al-Jabir, Ahmed; Aydın, Abdullatif; Ahmed, Kamran; McCabe, John E; Khan, M Shamim; Dasgupta, Prokar; Sahai, Arun.

In: Translational Andrology and Urology, Vol. 8, No. 6, 12.2019, p. 673-677.

Research output: Contribution to journalArticle

Harvard

Al-Jabir, A, Aydın, A, Ahmed, K, McCabe, JE, Khan, MS, Dasgupta, P & Sahai, A 2019, 'The role of dry-lab and cadaveric simulation for cystoscopy and intravesical Botulinum toxin injections', Translational Andrology and Urology, vol. 8, no. 6, pp. 673-677. https://doi.org/10.21037/tau.2019.11.11

APA

Al-Jabir, A., Aydın, A., Ahmed, K., McCabe, J. E., Khan, M. S., Dasgupta, P., & Sahai, A. (2019). The role of dry-lab and cadaveric simulation for cystoscopy and intravesical Botulinum toxin injections. Translational Andrology and Urology, 8(6), 673-677. https://doi.org/10.21037/tau.2019.11.11

Vancouver

Al-Jabir A, Aydın A, Ahmed K, McCabe JE, Khan MS, Dasgupta P et al. The role of dry-lab and cadaveric simulation for cystoscopy and intravesical Botulinum toxin injections. Translational Andrology and Urology. 2019 Dec;8(6):673-677. https://doi.org/10.21037/tau.2019.11.11

Author

Al-Jabir, Ahmed ; Aydın, Abdullatif ; Ahmed, Kamran ; McCabe, John E ; Khan, M Shamim ; Dasgupta, Prokar ; Sahai, Arun. / The role of dry-lab and cadaveric simulation for cystoscopy and intravesical Botulinum toxin injections. In: Translational Andrology and Urology. 2019 ; Vol. 8, No. 6. pp. 673-677.

Bibtex Download

@article{586e6bff76204fc187232cb8d285fc5c,
title = "The role of dry-lab and cadaveric simulation for cystoscopy and intravesical Botulinum toxin injections",
abstract = "Background: The aim of this study is to assess validity of the ETXY Multifunctional trainer (ProDelphus, Olinda, Pernambuco, Brazil), a bench-top dry-lab model for simulation of cystoscopy and intravesical injections of Botulinum Toxin A (BTX-A) injections, in terms of educational value, feasibility and acceptability as well as evaluating the use of fresh frozen cadavers for intravesical BTX-A injections.Methods: Prospective study with novice trainees and urologists (n=58) trained by experts (n=14) in a 30-min hands-on training session in intravesical administration of BTX-A over 6 training sessions throughout one year. Outcome measures were demonstrated through distribution and analysis of evaluation surveys on a 5-point Likert scale.Results: There were 56 participants (96.6{\%}) believed that the model has a role in training for the procedure. Participants also reported the training being an important confidence-booster for performing BTX-A injections (mean: 4.05/5) and useful for teaching procedural steps (mean: 3.89). Experts highly rated the realism of the simulator especially in simulation of needle penetration (mean: 3.98) and delivery (mean 4.03). Fresh frozen cadavers had a mean realism rating of 4.54 and participants affirmed that they should be routinely used for training and assessment (mean: 3.92).Conclusions: This study demonstrated face and content validity in addition to establishing the feasibility and acceptability of the ETXY Multifunctional model in the training of intravesical BTX-A administration. Additionally, the simulator demonstrated educational value and fresh frozen cadavers were shown to be the preferred simulation modality for this procedure. Further evaluation in randomised controlled studies is needed to demonstrate higher evidence quality.",
author = "Ahmed Al-Jabir and Abdullatif Aydın and Kamran Ahmed and McCabe, {John E} and Khan, {M Shamim} and Prokar Dasgupta and Arun Sahai",
note = "2019 Translational Andrology and Urology. All rights reserved.",
year = "2019",
month = "12",
doi = "10.21037/tau.2019.11.11",
language = "English",
volume = "8",
pages = "673--677",
journal = "Translational Andrology and Urology",
issn = "2223-4683",
publisher = "AME Publishing Company",
number = "6",

}

RIS (suitable for import to EndNote) Download

TY - JOUR

T1 - The role of dry-lab and cadaveric simulation for cystoscopy and intravesical Botulinum toxin injections

AU - Al-Jabir, Ahmed

AU - Aydın, Abdullatif

AU - Ahmed, Kamran

AU - McCabe, John E

AU - Khan, M Shamim

AU - Dasgupta, Prokar

AU - Sahai, Arun

N1 - 2019 Translational Andrology and Urology. All rights reserved.

PY - 2019/12

Y1 - 2019/12

N2 - Background: The aim of this study is to assess validity of the ETXY Multifunctional trainer (ProDelphus, Olinda, Pernambuco, Brazil), a bench-top dry-lab model for simulation of cystoscopy and intravesical injections of Botulinum Toxin A (BTX-A) injections, in terms of educational value, feasibility and acceptability as well as evaluating the use of fresh frozen cadavers for intravesical BTX-A injections.Methods: Prospective study with novice trainees and urologists (n=58) trained by experts (n=14) in a 30-min hands-on training session in intravesical administration of BTX-A over 6 training sessions throughout one year. Outcome measures were demonstrated through distribution and analysis of evaluation surveys on a 5-point Likert scale.Results: There were 56 participants (96.6%) believed that the model has a role in training for the procedure. Participants also reported the training being an important confidence-booster for performing BTX-A injections (mean: 4.05/5) and useful for teaching procedural steps (mean: 3.89). Experts highly rated the realism of the simulator especially in simulation of needle penetration (mean: 3.98) and delivery (mean 4.03). Fresh frozen cadavers had a mean realism rating of 4.54 and participants affirmed that they should be routinely used for training and assessment (mean: 3.92).Conclusions: This study demonstrated face and content validity in addition to establishing the feasibility and acceptability of the ETXY Multifunctional model in the training of intravesical BTX-A administration. Additionally, the simulator demonstrated educational value and fresh frozen cadavers were shown to be the preferred simulation modality for this procedure. Further evaluation in randomised controlled studies is needed to demonstrate higher evidence quality.

AB - Background: The aim of this study is to assess validity of the ETXY Multifunctional trainer (ProDelphus, Olinda, Pernambuco, Brazil), a bench-top dry-lab model for simulation of cystoscopy and intravesical injections of Botulinum Toxin A (BTX-A) injections, in terms of educational value, feasibility and acceptability as well as evaluating the use of fresh frozen cadavers for intravesical BTX-A injections.Methods: Prospective study with novice trainees and urologists (n=58) trained by experts (n=14) in a 30-min hands-on training session in intravesical administration of BTX-A over 6 training sessions throughout one year. Outcome measures were demonstrated through distribution and analysis of evaluation surveys on a 5-point Likert scale.Results: There were 56 participants (96.6%) believed that the model has a role in training for the procedure. Participants also reported the training being an important confidence-booster for performing BTX-A injections (mean: 4.05/5) and useful for teaching procedural steps (mean: 3.89). Experts highly rated the realism of the simulator especially in simulation of needle penetration (mean: 3.98) and delivery (mean 4.03). Fresh frozen cadavers had a mean realism rating of 4.54 and participants affirmed that they should be routinely used for training and assessment (mean: 3.92).Conclusions: This study demonstrated face and content validity in addition to establishing the feasibility and acceptability of the ETXY Multifunctional model in the training of intravesical BTX-A administration. Additionally, the simulator demonstrated educational value and fresh frozen cadavers were shown to be the preferred simulation modality for this procedure. Further evaluation in randomised controlled studies is needed to demonstrate higher evidence quality.

U2 - 10.21037/tau.2019.11.11

DO - 10.21037/tau.2019.11.11

M3 - Article

C2 - 32038963

VL - 8

SP - 673

EP - 677

JO - Translational Andrology and Urology

JF - Translational Andrology and Urology

SN - 2223-4683

IS - 6

ER -

View graph of relations

© 2018 King's College London | Strand | London WC2R 2LS | England | United Kingdom | Tel +44 (0)20 7836 5454