Area of research
Neurology · Internal Medicine
Research interest
Research focused on Supine position and Internal jugular vein, with related work in Cardiac cycle, Hemodynamics, Outflow. Notable publications include 'An ultrasound model to calculate the brain blood outflow through collateral vessels: a pilot study', 'A new hemodynamic model for the study of cerebral venous outflow', and 'An Ultrasonographic Technique to Assess the Jugular Venous Pulse: A Proof of Concept'.
JEDI (jugular entrapment, dilated ventricles, intracranial hypertension) syndrome: a new clinical entity? A case report
Mechanical function of internal jugular vein valve: post analysis of M-mode imaging under cardiac monitoring
Mechanical Function of Internal Jugular Vein Valve: Post-analysis of M-Mode Imaging under Cardiac Monitoring
Venous compliance and clinical implications
High Resolution M-mode Evaluation of Jugular Vein Valves in Patients with Neurological and Neurosensory Disorders
Comparison Between Duplex Ultrasound and Multigate Quality Doppler Profile Software in the Assessment of Lower Limb Perforating Vein Direction
Cerebral Inflow and Outflow Discrepancies in Severe Sudden Sensorineural Hearing Loss
Altered velocity gradient in lower limb chronic venous disease
Ultrasound Monitoring of Jugular Venous Pulse during Space Missions: Proof of Concept
Investigation of cerebral venous outflow in microgravity
Lower limbs venous kinetics and consequent impact on drainage direction
Conventional echo color Doppler versus ULA-OP in the assessment of venous flow model
Fixing the jugular flow reduces ventricle volume and improves brain perfusion
Clinical Applicability of Assessment of Jugular Flow over the Individual Cardiac Cycle Compared with Current Ultrasound Methodology
Validation of a Hemodynamic Model for the Study of the Cerebral Venous Outflow System Using MR Imaging and Echo-Color Doppler Data
Novel Interest About Cardiac Variation of Internal Jugular Vein for the Evaluation of the Hemodynamics
Opening fraction time of internal jugular valves using ultrasound traces
Modeling of intracranial hemodynamics and cerebral venous outflow: Pressures and flows behavior under arterial pulse simulation
An Ultrasonographic Technique to Assess the Jugular Venous Pulse: A Proof of Concept
The Oscillating Component of the Internal Jugular Vein Flow: The Overlooked Element of Cerebral Circulation
A simulation model to study the role of the extracranial venous drainage pathways in intracranial hemodynamics
A new hemodynamic model for the study of cerebral venous outflow
Human Internal Jugular Valve M-mode Ultrasound Characterization
On the consistency of flow rate color Doppler assessment for the internal jugular vein
Lower Limbs Venous Kinetics and Consequent Impact on Drainage Direction
Letter Re: Internal jugular and vertebral vein volume flow in patients with clinically isolated syndrome or mild multiple sclerosis and healthy controls: results from a prospective sonographer-blinded study
Comment on “Reproducibility of Cerebrospinal Venous Blood Flow and Vessel Anatomy with the Use of Phase Contrast–Vastly Undersampled Isotropic Projection Reconstruction and Contrast-Enhanced MRA”
An ultrasound model to calculate the brain blood outflow through collateral vessels: a pilot study
Comparison of signal to noise ratios from spatial and frequency domain formulations of nonprewhitening model observers in digital mammography