Conventional saturation pulses cannot be used for 7 Tesla ultra-high-resolution time-of-flight magnetic resonance angiography (TOF MRA) due to specific absorption rate (SAR) limitations. We overcome these limitations by utilizing low flip angle, variable rate selective excitation (VERSE) algorithm saturation pulses.Twenty-five neurosurgical patients (male n = 8, female n = 17; average age 49.64 years; range 26–70 years) with different intracranial vascular pathologies were enrolled in this trial. All patients were examined with a 7 Tesla (Magnetom 7 T, Siemens) whole body scanner system utilizing a dedicated 32-channel head coil. For venous saturation pulses a 35° flip angle was applied. Two neuroradiologists evaluated the delineation of ar...
INTRODUCTION: Magnetic resonance imaging (MRI) using field strengths up to 3 Tesla (T) has proven to...
Magnetic resonance imaging (MRI) using field strengths up to 3 Tesla (T) has proven to be a powerful...
Purpose: To evaluate the utility of a vessel-selective four-dimensional (4D) magnetic resonance angi...
Conventional saturation pulses cannot be used for 7 Tesla ultra-high-resolution time-of-flight magne...
Abstract This study aimed to apply minimum-time variable-rate selective excitation (MinVER) to a pre...
Magnetic Resonance Imaging (MRI) can study the cerebrovasculature non-invasively in humans. It can i...
AbstractStroke and related cerebrovascular diseases are a major cause of mortality and disability. E...
Stroke and related cerebrovascular diseases are a major cause of mortality and disability. Even at s...
BACKGROUND AND PURPOSE: Different studies already demonstrated the benefits of 7T for precontrast TO...
Objectives: Time-of-flight (TOF) magnetic-resonance-angiography (MRA) identifies vessel pathology in...
Background and Purpose Different studies already demonstrated the benefits of 7T for precontrast TOF...
To prospectively evaluate 7 Tesla time-of-flight (TOF) magnetic resonance angiography (MRA) in compa...
Introduction Time-of-flight (TOF) angiography is a technique allowing to visualize the blood flow in...
PURPOSE: To prospectively evaluate 7 Tesla time-of-flight (TOF) magnetic resonance angiography (MRA)...
Quantitative evaluation of hemodynamic characteristics of arteriovenous and venous malformations usi...
INTRODUCTION: Magnetic resonance imaging (MRI) using field strengths up to 3 Tesla (T) has proven to...
Magnetic resonance imaging (MRI) using field strengths up to 3 Tesla (T) has proven to be a powerful...
Purpose: To evaluate the utility of a vessel-selective four-dimensional (4D) magnetic resonance angi...
Conventional saturation pulses cannot be used for 7 Tesla ultra-high-resolution time-of-flight magne...
Abstract This study aimed to apply minimum-time variable-rate selective excitation (MinVER) to a pre...
Magnetic Resonance Imaging (MRI) can study the cerebrovasculature non-invasively in humans. It can i...
AbstractStroke and related cerebrovascular diseases are a major cause of mortality and disability. E...
Stroke and related cerebrovascular diseases are a major cause of mortality and disability. Even at s...
BACKGROUND AND PURPOSE: Different studies already demonstrated the benefits of 7T for precontrast TO...
Objectives: Time-of-flight (TOF) magnetic-resonance-angiography (MRA) identifies vessel pathology in...
Background and Purpose Different studies already demonstrated the benefits of 7T for precontrast TOF...
To prospectively evaluate 7 Tesla time-of-flight (TOF) magnetic resonance angiography (MRA) in compa...
Introduction Time-of-flight (TOF) angiography is a technique allowing to visualize the blood flow in...
PURPOSE: To prospectively evaluate 7 Tesla time-of-flight (TOF) magnetic resonance angiography (MRA)...
Quantitative evaluation of hemodynamic characteristics of arteriovenous and venous malformations usi...
INTRODUCTION: Magnetic resonance imaging (MRI) using field strengths up to 3 Tesla (T) has proven to...
Magnetic resonance imaging (MRI) using field strengths up to 3 Tesla (T) has proven to be a powerful...
Purpose: To evaluate the utility of a vessel-selective four-dimensional (4D) magnetic resonance angi...