This survey focuses on the fusion of two major lines of recent progress in MRI methodology: parallel imaging with receiver coil arrays and the transition to high and ultra-high field strength for human applications. As discussed in this paper, combining the two developments has vast potential due to multiple specific synergies. First, parallel acquisition and high field are highly complementary in terms of their individual advantages and downsides. As a consequence, the joint approach generally offers enhanced flexibility in the design of scanning strategies. Second, increasing resonance frequency changes the electrodynamics of the MR signal in such a way that parallel imaging becomes more effective in large objects. The underlying conceptual and theoretical considerations are reviewed in detail. In further sections, technical challenges and practical aspects are discussed. The feasibility of parallel MRI at ultra-high field is illustrated by current results of parallel human MRI at 7 T.

Download full-text PDF

Source
http://dx.doi.org/10.1002/nbm.1050DOI Listing

Publication Analysis

Top Keywords

feasibility parallel
8
parallel mri
8
high field
8
parallel imaging
8
ultra-high field
8
parallel
6
potential feasibility
4
mri
4
mri high
4
field
4

Similar Publications

Humans perceive discrete events such as "restaurant visits" and "train rides" in their continuous experience. One important prerequisite for studying human event perception is the ability of researchers to quantify when one event ends and another begins. Typically, this information is derived by aggregating behavioral annotations from several observers.

View Article and Find Full Text PDF

Background: The use of videoconference platforms for neuropsychological assessment was not as common among mental health practitioners before the COVID-19 pandemic. However, due to lockdowns and quarantines worldwide, mental health professionals had to find a feasible alternative and shift to virtual evaluations. This increased the use of teleneuropsychology in both at a clinical and research level.

View Article and Find Full Text PDF

Background: Age-related cognitive decline (ARCD) refers to the cognitive changes that occur in individuals because of aging. Research suggests that the underlying mechanism behind ARCD is a loss of synaptic plasticity and altered dendritic spine morphology. Similarly, the cognitive changes in Alzheimer's Disease (AD) are also thought to arise from impaired synaptic plasticity and dendritic spine loss.

View Article and Find Full Text PDF

Background: Current guidelines recommend preserving at least one of the bilateral pelvic flows in patients with aortoiliac aneurysms. The sandwich parallel graft, using commercially available devices, provides a viable option for patients who fall outside the instructions for use of iliac branch devices. However, gutter endoleak remains a significant challenge.

View Article and Find Full Text PDF

Optical neural networks are considered next-generation physical implementations of artificial neural networks, but their capabilities are limited by on-chip integration scale and requirement for coherent light sources. This study proposes a spectral convolutional neural network (SCNN) with matter meta-imaging. The optical convolutional layer is implemented by integrating very large-scale and pixel-aligned spectral filters on CMOS image sensor.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!