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1 e the sensitivity and resolution in both the transaxial and axial directions as a function of distanc
2                                          The transaxial and axial fields of view are 70.0 and 15.7 cm
3            With a strong regularization, the transaxial and axial resolution improvements were reduce
4 RF), choroidal folds (CF), and creases using transaxial and en face views.
5 h crystal is 6.3 x 6.3 x 30 mm in the axial, transaxial, and radial dimensions, respectively.
6                              NU01 2D average transaxial (axial) FWHM resolution measured 6.1 (5.2) mm
7 e O horizontal line Fe horizontal line N(ax) transaxial bends.
8 elatively new imaging modality that provides transaxial cardiac images with excellent spatial and tem
9 and fields of view (FOVs) of 11.25 cm in the transaxial direction and 1.8 cm in the axial direction.
10 al septa, offering both magnification in the transaxial direction and complete sampling with just a c
11 portional to h(-1) and has resolution in the transaxial direction that is consistent with pinhole res
12 spatial resolution for a point source in the transaxial direction was 4.6 mm (full width at half maxi
13 oll-off is applied to the ramp filter in the transaxial direction, the transaxial resolution for IFBP
14 9% with 3D SSP and 79% and 88% with standard transaxial display.
15 cklist alone, (3) summary and checklist, (4) transaxial FDG-PET scans and (5) FDG-PET stereotactic su
16 ctor ring diameter is 88.6 cm with axial and transaxial fields of view (FOVs) of 15.7 and 70 cm, resp
17  remains <2.5 mm for the central 5 cm of the transaxial FOV.
18                          A multicompartment, transaxial Hoffman brain-slice phantom was filled with 9
19 one images showed significant improvement in transaxial image resolution using the insert device.
20 luding with reorientation of the tomographic transaxial images.
21  an improvement of the spatial resolution in transaxial images.
22  and severity (P = 0.0000), particularly for transaxial misregistration >6 mm occurring in anterior o
23  patellae from cadavers were examined in the transaxial plane with a 0.2-T extremity-only magnet and
24 CT and CT arthrography were performed in the transaxial plane.
25 mages were acquired and reconstructed in the transaxial plane.
26 ure (1-5 cmH2O) and imposed flow (1-5 cm H2O transaxial pressure gradients) on lymphatic function wer
27 this determination should be performed using transaxial reconstructed images and linear correction ba
28 s using the CZT camera (HMRreproj), and with transaxial reconstructed images using the CZT camera (HM
29 nd remained below 2.5 mm in the central 5-cm transaxial region both in the axial center and at one-qu
30                                          The transaxial resolution for 2D (3D) was 5.1 mm full width
31 ramp filter in the transaxial direction, the transaxial resolution for IFBP without regularization im
32 pared to 3DRP, both using a ramp filter, the transaxial resolution improved 52%, and the axial resolu
33                                  The 2D NU94 transaxial resolution is 6.1-mm full width at half maxim
34                                              Transaxial resolution is consistent with the pinhole-res
35 T scanner at a planar resolution of 4 mm and transaxial resolution of 4 mm (64 mm(3) voxel size).
36                                          The transaxial resolution of the system was such that the sm
37 thm, whole-body images were reconstructed as transaxial, sagittal, and coronal images.
38                                     Standard transaxial section display and 3D-SSP PET image sets obt
39 fined as more than 10% tracheal narrowing on transaxial sections or coronal and sagittal reconstructi
40                         On the reconstructed transaxial slice that best showed the left ventricular c
41                For the dual-isotope, 140-keV transaxial slice, first, the contrast improved from 0.78
42 y contour, respectively, at the midline in a transaxial slice.
43 patients by CT in an anatomically comparable transaxial slice.
44 tricle cavity and the myocardium was used in transaxial slices as a parameter to evaluate results of
45                       However, Ki values for transaxial slices from dorsal to ventral through the cau
46                                          The transaxial slices from the uniformity-resolution phantom
47 ion for IFBP and 3DRP was unaffected by this transaxial smoothing in the reconstruction filter.

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