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Enhanced recovery after surgery in pediatric urology: Current evidence and future practice
Adrian Chi-Heng Fung1, Felicia Yin-To Chu1, Ivy Hau-Yee Chan1
1Department of Surgery, University of Hong Kong, Hong Kong.
Insights
Enhanced recovery after surgery (ERAS) protocols show promise in pediatric urology, reducing hospital stays and complications. Further research is needed to standardize these protocols for optimal surgical outcomes.
Area of Science:
- Pediatric Urology
- Surgical Protocols
- Evidence-Based Medicine
Background:
- Enhanced Recovery After Surgery (ERAS) protocols are increasingly adopted across surgical disciplines.
- Their application in pediatric urology is emerging but requires further investigation.
- Optimizing perioperative care is crucial for improving outcomes in young patients.
Purpose of the Study:
- To provide an updated review of ERAS protocols in pediatric urology.
- To guide urologists in implementing these protocols.
- To assess the current evidence on ERAS effectiveness in pediatric urological procedures.
Main Methods:
- A comprehensive literature search and scoping review was conducted.
- Databases searched included Pubmed, Cochrane library, and MEDLINE up to December 2021.
- Inclusion criteria focused on perioperative interventions for pediatric urological procedures.
Main Results:
- Eight studies involving 1153 pediatric patients were analyzed.
- ERAS protocols were applied to various procedures like bladder augmentation and pyeloplasty.
- ERAS implementation led to shorter hospital stays, earlier feeding, and faster bowel function return without increased complications.
Conclusions:
- ERAS protocols are novel in pediatric urology with promising initial results.
- Evidence suggests ERAS is effective in improving outcomes for pediatric urological surgery.
- Further prospective studies are recommended to standardize ERAS protocols and optimize their clinical integration.
Purpose:
To offer an up-to-date appraisal of the current status of enhanced recovery after surgery (ERAS) protocols in pediatric urology and to provide a guide for the clinical urologist.
Materials And Methods:
We performed a comprehensive literature search and scoping review on ERAS protocols in pediatric urology using Pubmed (from 1946), Cochrane library, and MEDLINE to December 2021 with the terms ''enhanced recovery'', ''protocolised care'', ''post-operative protocol", ''fast-track surgery'' and ''pediatric urology". Studies were excluded if they did not include perioperative intervention related to urological procedures, no full-text available and in non-English language.
Results:
To date, eight clinical studies (involving 1153 patients) have been published on ERAS protocols in pediatric urology. The patients involved ranged from neonates to adolescents, and the urological procedures included bladder augmentation, the Mitrofanoff procedure, laparoscopic pyeloplasty, laparoscopic nephrectomy, hypospadias repair, etc. Multidisciplinary components such as surgical and anesthetic considerations have been employed in ERAS protocols. The length of hospital stay was significantly lower in the ERAS groups with earlier enteral feeding resumption and return of bowel function in pediatric urology patients. The implementation of ERAS protocols does not result in higher complication and readmission rates; instead, some studies have even demonstrated a significant reduction in complication occurrence.
Conclusion:
ERAS is novel to pediatric urology with a limited scale of published data in the literature. Initial clinical studies revealed that ERAS appears to be efficacious in the field of pediatric urology. Further prospective studies formulating a standardized multimodal protocol are encouraged to better understand key components of ERAS and incorporate ERAS into clinical practice to optimize surgical outcomes for pediatric urology procedures.
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