MR microimaging of the lung using volume projection encoding.
نویسندگان
چکیده
Radial acquisition (RA) techniques have been extended to produce isotropic, three-dimensional images of lung in live laboratory animals at spatial resolution down to 0.013 mm3 with a signal-to-noise ratio of 30:1. The pulse sequence and reconstruction algorithm have been adapted to allow acquisition of image matrices of up to 256(3) in less than 15 min. Scan-synchronous ventilation has been incorporated to limit breathing motion artifacts. The imaging sequence permits randomizing and/or discarding selected views to minimize the consequences of breathing motion. The signal in lung parenchyma was measured as a function of flip angle (alpha) for different repetition times and found to follow the predictions for which there is an optimum excitation (Ernst) angle. A single T1 relaxation value of 780 +/- 54 ms fits all data from six guinea pigs at 2.0 T. This T1 value parameterizes the signal and allows for a priori optimization, such as calculation of the Ernst angle appropriate for lung imaging.
منابع مشابه
Helium-3 MR q-space imaging with radial acquisition and iterative highly constrained back-projection.
An undersampled diffusion-weighted stack-of-stars acquisition is combined with iterative highly constrained back-projection to perform hyperpolarized helium-3 MR q-space imaging with combined regional correction of radiofrequency- and T1-related signal loss in a single breath-held scan. The technique is tested in computer simulations and phantom experiments and demonstrated in a healthy human v...
متن کاملVolume difference inequalities for the projection and intersection bodies
In this paper, we introduce a new concept of volumes difference function of the projection and intersection bodies. Following this, we establish the Minkowski and Brunn-Minkowski inequalities for volumes difference function of the projection and intersection bodies.
متن کاملCalculation of total dose and dose equivalent distribution in the treatment of lung cancer using MR-guided carbon therapy
Nowadays, in order to improve the accuracy of treatment in radiation therapy, there are many attempts to use magnetic resonance imaging (MRI) due to the advantages of excellent soft tissue contrast and ultra-fast pulse sequences. On the other hand, carbon-ion radiation therapy is developing rapidly due to the benefits of greater relative biological effectiveness (RBE) and the application in the...
متن کاملRegion-specific microstructure of cortical areas revealed with high angular resolution diffusion MR microimaging
Fig. 3: TDI maps from dMRI compared with myelin-stained sections. A) Transverse view of the motor cortex (area 4). B) Coronal view through the visual cortex (area 17) show the regional microstructure resolved with dMRI, which closely reflects cortical myeloarchitecture shown by silver-staining. B Region-specific microstructure of cortical areas revealed with high angular resolution diffusion MR...
متن کاملUltra-short echo time (UTE) MR imaging of the lung: assessment of tissue density in the lung parenchyma
Introduction: Computed tomography (CT) is the standard method for imaging of the lung parenchyma but carries potential radiation risk. One of the fundamental difficulties in MR imaging of the lung is the existence of severe magnetic field susceptibility effects arising from the massive interface between the interstitial tissue and alveolar airspace (1). Consequently, the lung parenchyma has ver...
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 38 6 شماره
صفحات -
تاریخ انتشار 1997