Yacine Boulaftali

University Name
Country flag
France

Research Interests

Explore related searches

Contact this professor

LinkedIn
ORCID
Google Scholar

Articles (10)

Imaging Cerebral Arteries Tortuosity and Velocities by Transcranial Doppler Ultrasound Is a Reliable Assessment of Brain Aneurysm in Mouse Models

Background During the past few decades, several pathophysiological processes contributing to intracranial aneurysm (IA) rupture have been identified, including irregular IA shape, altered hemodynamic stress within the IA, and vessel wall inflammation. The use of preclinical models of IA and imaging tools is paramount to better understand the underlying disease mechanisms. Methods We used 2 established mouse models of IA, and we analyzed the progression of the IA by magnetic resonance imaging, transcranial Doppler, and histology. Results In both models of IA, we observed, by transcranial Doppler, a significant decrease of the blood velocities and wall shear stress of the internal carotid arteries. We also observed the formation of tortuous arteries in both models that were correlated with the presence of an aneurysm as confirmed by magnetic resonance imaging and histology. A high grade of tortuosity is associated with a significant decrease of the mean blood flow velocities and a greater artery dilation. Conclusions Transcranial Doppler is a robust and convenient imaging method to evaluate the progression of IA. Detection of decreased blood flow velocities and increased tortuosity can be used as reliable indicators of IA.

Year:

2023

Collaborators (5)

Soman N. Abraham

Duke University Medical Center

UNITED STATES

Benjamin SALMON

Professor

Université de Paris Faculté de Santé

FRANCE

Marie-Christine BOUTON

INSERM U1148

FRANCE

Véronique Arocas

INSERM U1148

FRANCE

Hae Woong Choi

Assistant Professor

Korea University

SOUTH KOREA
Social connections

How do I reach out?

Sign in for free to see their profile details and contact information.

Meet Kite AI