Chat Generative Pre-trained Transformer (ChatGPT), an artificial intelligence chatbot, produces detailed responses and human-like coherent answers, and has been used in the clinical and academic medicine. To evaluate its accuracy in regional anesthesia topics, we produced a ChatGPT review on the addition of dexamethasone to prolong peripheral nerve blocks. A group of experts in regional anesthesia and pain medicine were invited to help shape the topic to be studied, refine the questions entered in to the ChatGPT program, vet the manuscript for accuracy, and create a commentary on the article. Although ChatGPT produced an adequate summary of the topic for a general medical or lay audience, the review that were created appeared to be inadequate for a subspecialty audience as the expert authors. Major concerns raised by the authors included the poor search methodology, poor organization/lack of flow, inaccuracies/omissions of text or references, and lack of novelty. At this time, we do not believe ChatGPT is able to replace human experts and is extremely limited in providing original, creative solutions/ideas and interpreting data for a subspecialty medical review article.

Download full-text PDF

Source
http://dx.doi.org/10.1136/rapm-2023-104646DOI Listing

Publication Analysis

Top Keywords

addition dexamethasone
8
dexamethasone prolong
8
prolong peripheral
8
peripheral nerve
8
nerve blocks
8
regional anesthesia
8
chatgpt
5
blocks chatgpt-created
4
chatgpt-created narrative
4
review
4

Similar Publications

Introduction: is a medicinal plant that produces silymarin, which has been demonstrated to possess antiviral, anti-neurodegenerative, and anticancer activities. Silybin (A+B) are two major hepatoprotective flavonolignans produced predominantly in fruits. Several attempts have been made to increase the synthesis of silymarin, or its primary components, silybin (A+B).

View Article and Find Full Text PDF

Background: Scalp nerve blocks (SNB) may significantly reduce post-craniotomy pain (PCP) but only for a short period of time. Dexamethasone, as an adjuvant to local anesthetics, was reported to prolong the analgesia duration of never block; however, the addition of dexamethasone to SNB is rare. We therefore tested the hypothesis that dexamethasone as an adjuvant to bupivacaine in SNB is positive after craniotomy.

View Article and Find Full Text PDF

Purpose: This study aims to provide new insights into the potential of oyster mushroom () ethanolic extract in preventing obesity through the inhibition of expression and modulation of methylation level on promoter during 3T3-L1 adipocyte differentiation.

Methods: This in vitro quantitative experimental study was conducted by treating the 3T3-L1 cell line differentiated using 0.5 mM methyl-isobutyl-xanthine, 1 μM dexamethasone, and 10 μg/mL insulin-containing medium with oyster mushroom ethanolic extract.

View Article and Find Full Text PDF

Background and aim The study aimed to investigate the effect of adding perineural adjuvants, clonidine and dexamethasone, to local anesthetic in Superficial Parasternal Intercostal Plane (SPIP) blocks. It was designed as a prospective, randomized, triple-blinded, feasibility trial, conducted at a single-center university hospital. The participants included adult patients who were undergoing cardiac surgery via median sternotomy.

View Article and Find Full Text PDF

Background Lumbar radicular pain occurs due to irritation or compression of the nerve roots in the lower back. This study aimed to evaluate the efficacy of transforaminal epidural steroid injections (TFESIs) in reducing pain and improving functional outcomes in a diverse patient population with lumbar radicular pain. Methodology This quasi-experimental trial was performed at the Department of Orthopedic Surgery and Traumatology, Unit 1, Mayo Hospital, Lahore, from October 2021 to September 2022.

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!