Lexie Vaughn
Assistant Professor
Also affiliated: Monroe Carell Jr. Children's Hospital (2022); University of Arkansas Medical Center (2025); Vanderbilt University Medical Center (2021–2024)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Lexie Vaughn's research investigates non-invasive methods for assessing physiological conditions, particularly in the context of heart failure and acute blood loss. Her work includes studies on non-invasive venous waveform analysis (NIVA) to correlate with pulmonary capillary wedge pressure and predict hospital admissions in patients with heart failure. Vaughn has also explored the use of NIVA for detecting acute low-volume blood loss in humans and assessing respiratory distress in patients with COVID-19.
Her publications also touch upon surgical techniques, including a study on Nissen fundoplication-preserving laparoscopic sleeve gastrectomy. Additionally, Vaughn has examined the comparison of clinical symptoms and bioimpedance to pulmonary capillary wedge pressure in heart failure patients. Her research interests extend to sepsis and strategies for maintaining surgical volume during the COVID-19 pandemic.
Metrics
- h-index: 3
- Publications: 11
- Citations: 28
Positions
-
Assistant Professor publications 2025University of Arkansas for Medical Sciences Institutional directory
Selected Publications
-
Non-invasive venous waveform analysis and the IntraVAscular volume Number (IVAN) track acute hemorrhage and volume overload in a piglet model (2026)
-
A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans (2025)
Collaboration Network
Top Collaborators
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- Non-invasive venous waveform analysis and the IntraVAscular volume Number (IVAN) track acute hemorrhage and volume overload in a piglet model
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- Non-invasive venous waveform analysis and the IntraVAscular volume Number (IVAN) track acute hemorrhage and volume overload in a piglet model
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- Non-invasive venous waveform analysis and the IntraVAscular volume Number (IVAN) track acute hemorrhage and volume overload in a piglet model
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- Non-invasive venous waveform analysis and the IntraVAscular volume Number (IVAN) track acute hemorrhage and volume overload in a piglet model
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- Non-invasive venous waveform analysis and the IntraVAscular volume Number (IVAN) track acute hemorrhage and volume overload in a piglet model
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- A prospective, observational study of non-invasive venous waveform analysis (NIVA) for the detection of acute low volume blood loss in humans
- Non-invasive venous waveform analysis and the IntraVAscular volume Number (IVAN) track acute hemorrhage and volume overload in a piglet model
- Non-invasive venous waveform analysis and the IntraVAscular volume Number (IVAN) track acute hemorrhage and volume overload in a piglet model
- Non-invasive venous waveform analysis and the IntraVAscular volume Number (IVAN) track acute hemorrhage and volume overload in a piglet model
Similar Researchers
Based on overlapping research topics