Body Weight in the Overweight and Obese Class - I Population, Body Weights and Measures, Emergency Drug Dosing, Weight Estimation
Conditions
Keywords
weight estimation, emergency drug dosing, 3D camera, computer vision
Brief summary
The goal of this prospective crossover simulation study is to evaluate the accuracy and usability of a 3D camera weight estimation system during simulated emergency care in adult simulated patients, when used by emergency physicians. The main questions the study aims to answer are: * to evaluate the accuracy of 3D camera weight estimation during simulated emergency care, when compared with standard methods * to evaluate the usability of 3D camera weight estimation during emergency care, when compared with standard methods * to evaluate the inter-user reliability of 3D camera weight estimates Volunteers for simulated patients will be required to have anthropometric measurements, a DXA scan, and 3D camera weight estimates. Physician volunteers will need to participate in simulated emergency scenarios during which weight-based therapy must be administered. There will be no interventions.
Detailed description
The performance of the 3D camera system needs to be evaluated in conditions in which it will be used in a clinical setting, but without the risk to patients. It also needs to be compared against other, standard, methods of weight estimation. In addition the downstream accuracy of drug doses, with the correct use of alternative dose scalars (such as ideal body weight or lean body weight) in patients with obesity needs to be evaluated. In this prospective crossover simulation study, resident and attending emergency physician volunteers will conduct simulated emergency care on simulated patient volunteers. The physicians will be randomised to start with either 3D camera systems, or standard care systems. After completing the scenario they will perform a new simulation scenario on a different patient using standard methods of weight estimation (crossover). At the end of the data collection session, each physician will have performed four scenarios (two standard methods, two 3D camera methods). Each simulated patient will similarly have participated in two standard method scenarios and two 3D camera scenarios. Each simulated patient and each physician will only have a single encounter. In this way the accuracy of weight estimation and drug dosing can be compared between the 3D camera system and standard methods. In addition, inter-rater reliability can be determined and compared between resident and attending physicians.
Interventions
Weight estimation using 3D camera system
Standard methods of weight estimation will be used
Sponsors
Study design
Eligibility
Inclusion criteria
for simulated patients: * Any volunteer aged ≥18 years.
Exclusion criteria
for simulated patients: * Participants with a body weight exceeding the DXA machine capacity \>204kg (450lbs); * Pregnant participants; participants with medical conditions that could confound the study; * Participants with any metallic surgical implants; * Participants who have had an x-ray with contrast in the past week; * Participants who have taken calcium supplements in the 24 hours prior to the study. Inclusion criteria for Emergency Physicians: \- Any willing emergency medicine resident or attending physician.
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Weight estimation accuracy | During the simulation (intervention) procedure | The accuracy of estimations of total body weight, ideal body weight and lean body weight will be compared against ground truth data, and against other weight estimation systems. |
| Weight estimation time | During the simulation (intervention) procedure | The time taken to obtain a weight estimate will be compared against other weight estimation systems. |
| Drug dose accuracy | During the simulation (intervention) procedure | The accuracy of drug doses calculated using estimated weight will be compared against a ground truth value, and compared with other weight estimation systems. |
Countries
United States