Application of k-space energy spectrum analysis for inherent and dynamic B0 mapping and deblurring in spiral imaging.
نویسندگان
چکیده
Spiral imaging is vulnerable to spatial and temporal variations of the amplitude of the static magnetic field (B(0)) caused by susceptibility effects, eddy currents, chemical shifts, subject motion, physiological noise, and system instabilities, resulting in image blurring. Here, a novel off-resonance correction method is proposed to address these issues. A k-space energy spectrum analysis algorithm is first applied to inherently and dynamically generate a B(0) map from the k-space data at each time point, without requiring any additional data acquisition, pulse sequence modification, or phase unwrapping. A simulated phase evolution rewinding algorithm and an automatic residual deblurring algorithm are then used to correct for the blurring caused by both spatial and temporal B(0) variations, resulting in a high spatial and temporal fidelity. This method is validated against conventional B(0) mapping and deblurring methods, and its advantages for dynamic MRI applications are demonstrated in functional MRI studies.
منابع مشابه
Application of K-Space Energy Spectrum Analysis for Inherent and Dynamic B0 Mapping and Distortion Correction in DTI
Introduction Diffusion tensor imaging (DTI) is a powerful technique for the noninvasive characterization of the microstructure of normal and pathological tissue. However, it is typically performed with echo-planar imaging (EPI) and is thus vulnerable to spatial and temporal variations of the static magnetic field (B0) caused by susceptibility effects near air/tissue interfaces, eddy currents in...
متن کاملComparison of Two Quantitative Susceptibility Mapping Measurement Methods Used For Anatomical Localization of the Iron-Incorporated Deep Brain Nuclei
Introduction Quantitative susceptibility mapping (QSM) is a new contrast mechanism in magnetic resonance imaging (MRI). The images produced by the QSM enable researchers and clinicians to easily localize specific structures of the brain, such as deep brain nuclei. These nuclei are targets in many clinical applications and therefore their easy localization is a must. In this study, we aimed to i...
متن کاملApplication of Neural Space Mapping for Modeling Ballistic Carbon Nanotube Transistors
In this paper, using the neural space mapping (NSM) concept, we present a SPICE-compatible modeling technique to modify the conventional MOSFET equations, to be suitable for ballistic carbon nanotube transistors (CNTTs). We used the NSM concept in order to correct conventional MOSFET equations so that they could be used for carbon nanotube transistors. To demonstrate the accuracy of our mod...
متن کاملImplementation of Identical Spiral Square Inductive Coils for Wireless EV Battery Charging Application
In recent years, the popularity of wireless inductive power transfer (WIPT) system for electric vehicle battery charging (EVBC) is always ever-increasing. In the WIPT inductively coupled coil structure is the heart of the system and the mutual inductance (MI) between the coupled coils is the key factor for effective power transfer. This paper presents the analysis of mutual inductance between t...
متن کاملAccurate B0 mapping with sparse TE stepping and k-space energy spectrum analysis
Introduction Magnetic field mapping (B0 mapping), which contains information pertaining to magnetic field inhomogeneities, has become an important tool for providing robust correction of distorted images in EPI-based studies [1]. Although B0 mapping could be easily achieved by fitting the phase evolution with different echo offsets, the accuracy in areas with prominent field inhomogeneities (an...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Magnetic resonance in medicine
دوره 64 4 شماره
صفحات -
تاریخ انتشار 2010