Purpose: Barriers to education in open and laparoscopic hernia repair technique include a steep learning curve and reduced theatre time for junior surgical trainees. This is particularly evident during the current COVID-19 pandemic. Simulation models may provide further opportunities for training in hernia repair outside of the traditional surgical apprenticeship model.

Methods: A systematic review was carried out following PRISMA guidelines to identify and evaluate simulation models in hernia repair. Of the 866 records screened, 27 were included in the analysis. These were assessed for face, content and construct validity, as well as their attempt to measure educational impact.

Results: Simulation models were identified comprising of animal tissues, synthetic materials and virtual reality (VR) technology. Models were designed for instruction in repair of inguinal, umbilical, incisional and diaphragmatic hernias. Twenty-one laparoscopic hernia repair models were described. Many models demonstrated validity across several domains, and three showed transferability of skills from simulation to the operating room. Of the six open hernia repair simulation models, none were found to have demonstrated an educational impact in addition to assessing validity.

Conclusion: Few models individually were able to demonstrate validity and educational impact. Several novel assessment tools have been developed for assessment of progress when performing simulated and real laparoscopic inguinal hernia repair. More study is required, particularly for open hernia repair, including randomized controlled trials with large sample sizes to assess the transferability of skills.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8251686PMC
http://dx.doi.org/10.1007/s10029-021-02442-4DOI Listing

Publication Analysis

Top Keywords

hernia repair
32
simulation models
20
open hernia
12
repair
9
models
9
hernia
8
repair simulation
8
systematic review
8
laparoscopic hernia
8
models demonstrated
8

Similar Publications

Utilizing Preoperative Rectus Sheath Blocks to Decrease Opioid Administration During Pediatric Umbilical Hernia Repair.

J Pediatr Surg

January 2025

Department of Surgery, University of Arkansas for Medical Sciences, Little Rock, AR, USA; Division of Pediatric Surgery, Arkansas Children's Hospital, Little Rock, AR, USA.

Introduction: Regional anesthetic blocks are an adjunct to decrease pediatric opioid utilization and improve perioperative pain control. We compared opioid use in patients who underwent umbilical hernia repair (UHR) with or without preoperative bilateral rectus sheath block (BRSB).

Methods: We conducted a single-center retrospective cohort study evaluating opioid use in patients <18 years who underwent an UHR.

View Article and Find Full Text PDF

Introduction: Iatrogenic injury to the ilioinguinal nerve and its branches during anterior inguinal hernia repair is a cause of chronic inguinal pain in up to 12 % of patients undergoing this operation. The risk of nerve injury is high, given the nerves' relatively small caliber and strictly-confined space through which they pass. In the current report, we describe using a novel fluorescence imaging system developed to detect nerve autofluorescence in a 66-year-old man who presented with a left-sided Type II inguinal hernia and underwent inguinal hernioplasty.

View Article and Find Full Text PDF

Background And Objective: There is a significant medical need for improved long-acting local anesthetics to decrease postsurgical pain and reduce postoperative opioid use. While ropivacaine is considered a safer local anesthetic than bupivacaine, no long-acting ropivacaine formulation is currently marketed. Available formulations of bupivacaine show inconsistent pharmacokinetics (PK) among different surgical models, and inconsistency in PK may lead to a reluctance to use the medication owing to fear of local anesthetic systemic toxicity (LAST) or unreliable efficacy.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!