Adria Abella Villafranca
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Formerly Arkansas Affiliated with UAMS through 2025; now Researcher, Vanderbilt University Medical Center.
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Adria Abella Villafranca's research focuses on the application of computational methods and data analysis to healthcare challenges. Recent work includes the development of a long short-term memory model for forecasting hospital surgical case volumes and the modeling of peripheral arterial and venous pressure signals using integral pulse frequency modulation. Villafranca has also investigated critical information from arterial and venous pressure waveforms during anesthesia and hemorrhage, and the importance of heart rate variability in pressure analysis. Collaborations include work with Joseph A. Sanford and Kevin W. Sexton at the University of Arkansas for Medical Sciences, and Morten Ø. Jensen and Sam E. Stephens at the University of Arkansas at Fayetteville. Villafranca's research has resulted in 7 publications with an h-index of 2 and 9 citations.
Metrics
- h-index: 2
- Publications: 7
- Citations: 9
Selected Publications
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Generation of Interactive Knowledge Graphs to Enable Research of the Effects of Trauma Center Organization on Patient Outcomes (2025)
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The Importance of a Continuously Changing Heart Rate in Venous and Arterial Pressure Analysis (2025)
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Resident level is associated with operative time in laparoscopic cholecystectomy (2024)
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Modeling peripheral arterial and venous pressure signals with integral pulse frequency modulation (2023)
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A long short-term memory model for forecasting the surgical case volumes at a hospital (2023)
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Critical Information from High Fidelity Arterial and Venous Pressure Waveforms During Anesthesia and Hemorrhage (2022)
Collaboration Network
Top Collaborators
- Resident level is associated with operative time in laparoscopic cholecystectomy
- Critical Information from High Fidelity Arterial and Venous Pressure Waveforms During Anesthesia and Hemorrhage
- A long short-term memory model for forecasting the surgical case volumes at a hospital
- Modeling peripheral arterial and venous pressure signals with integral pulse frequency modulation
- The Importance of a Continuously Changing Heart Rate in Venous and Arterial Pressure Analysis
Showing 5 of 6 shared publications
- Resident level is associated with operative time in laparoscopic cholecystectomy
- Critical Information from High Fidelity Arterial and Venous Pressure Waveforms During Anesthesia and Hemorrhage
- Modeling peripheral arterial and venous pressure signals with integral pulse frequency modulation
- The Importance of a Continuously Changing Heart Rate in Venous and Arterial Pressure Analysis
- Critical Information from High Fidelity Arterial and Venous Pressure Waveforms During Anesthesia and Hemorrhage
- A long short-term memory model for forecasting the surgical case volumes at a hospital
- Modeling peripheral arterial and venous pressure signals with integral pulse frequency modulation
- The Importance of a Continuously Changing Heart Rate in Venous and Arterial Pressure Analysis
- Critical Information from High Fidelity Arterial and Venous Pressure Waveforms During Anesthesia and Hemorrhage
- Modeling peripheral arterial and venous pressure signals with integral pulse frequency modulation
- The Importance of a Continuously Changing Heart Rate in Venous and Arterial Pressure Analysis
- Critical Information from High Fidelity Arterial and Venous Pressure Waveforms During Anesthesia and Hemorrhage
- Modeling peripheral arterial and venous pressure signals with integral pulse frequency modulation
- The Importance of a Continuously Changing Heart Rate in Venous and Arterial Pressure Analysis
- Critical Information from High Fidelity Arterial and Venous Pressure Waveforms During Anesthesia and Hemorrhage
- Modeling peripheral arterial and venous pressure signals with integral pulse frequency modulation
- The Importance of a Continuously Changing Heart Rate in Venous and Arterial Pressure Analysis
- Critical Information from High Fidelity Arterial and Venous Pressure Waveforms During Anesthesia and Hemorrhage
- Modeling peripheral arterial and venous pressure signals with integral pulse frequency modulation
- Critical Information from High Fidelity Arterial and Venous Pressure Waveforms During Anesthesia and Hemorrhage
- Critical Information from High Fidelity Arterial and Venous Pressure Waveforms During Anesthesia and Hemorrhage
- A long short-term memory model for forecasting the surgical case volumes at a hospital
- A long short-term memory model for forecasting the surgical case volumes at a hospital
- Resident level is associated with operative time in laparoscopic cholecystectomy
- Resident level is associated with operative time in laparoscopic cholecystectomy
- Resident level is associated with operative time in laparoscopic cholecystectomy
- The Importance of a Continuously Changing Heart Rate in Venous and Arterial Pressure Analysis
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