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- W4306177714 abstract "Introduction: Aspiration of gastric contents is implicated in the causation of ventilator associated pneumonia (VAP). Current strategies to prevent gastric aspiration are unreliable and lack estimation of the volume of the stomach to respond before aspiration episodes can take place. Resonantly coupled sensors mounted on an enteric tube were investigated for determining the size of the stomach. Methods: Polyamide insulated copper resonators were constructed at 13.56MHz operating frequency. We adjusted the resonant frequency (fr) to be equal to the operating frequency (fo) by tuning capacitances. An exponential decrement of M12 is observed as the distance between the coils increases. Stomach size is predicted using a 3rd-degree polynomial regression model. Results: Our polynomial regression model, when compared with three exponential regression models (y = axb, y = abx, y = abx), was found to have the best fit for prediction. A residual plot confirmed that the observed error was consistent with stochastic error. Distance was predicted with a mean absolute percentage error of 2% when compared with experimental results. Conclusion: We demonstrated a method for estimating the stomach volume and size using resonantly coupled sensors mounted on an enteric tube. This method of estimation is highly effective, and it will aid in the prevention of ventilator-related pneumonia to act as an early warning system." @default.
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- W4306177714 date "2022-10-17" @default.
- W4306177714 modified "2023-10-17" @default.
- W4306177714 title "Prevention of Ventilator Associated Pneumonia by Gastric Residual Estimation Using Highly Coupled Resonant Enteric Tube Sensor System" @default.
- W4306177714 doi "https://doi.org/10.1097/01.xcs.0000896412.90204.06" @default.
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