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1 ust be optimized for each specimen, and gold fiducials are typically added to facilitate image alignm
2 Real-time US scans were registered through a fiducial-based method, allowing US scans to be fused wit
3                                MR-compatible fiducial coils were inserted into tongues with MR imagin
4                                              Fiducials distributed on the EOM global surface enabled
5  spots, an alignment program made use of two fiducial grids of fluorescent reference particles at eit
6 s result was achieved without any additional fiducial image features.
7 otional degrees of freedom, preparation of a fiducial initial state with ion motion close to the grou
8                            Internal anatomic fiducial landmarks and stains were applied to proximal a
9 ausing a 50% probability for damage, and the fiducial limits were calculated at the 95% confidence le
10 , 7.9 to 20.2) in serum and 17.9 GCE/ml (95% fiducial limits, 13.1 to 27.5) in urine.
11 e 11.5 genome copy equivalents (GCE)/ml (95% fiducial limits, 7.9 to 20.2) in serum and 17.9 GCE/ml (
12  cells expressing beta-actin-GFP we bleached fiducial lines across hair bundles, but they did not mov
13 e surface of the mouse jejunum, serving as a fiducial marker for precise radiation targeting.
14 l 26Al/27Al ratio of 4.5 x 10(-5) has been a fiducial marker for the beginning of the solar system.
15 , we coadsorb a DNA molecule and use it as a fiducial marker to account for tip-induced artifacts tha
16                        Aiming to establish a fiducial marker to aid in the process of chain-tracing,
17               By adding a single radioactive fiducial marker, emission-guided biopsy of simulated bre
18 te, we describe how gold sputtered/implanted fiducial markers (FM) are created and can be used to ens
19 rate and then detect the motion of transient fiducial markers (ie, tags) in the heart every 32 msec.
20 x-ray and MR images with the use of external fiducial markers accurately targets endomyocardial injec
21       Crucially, the use of blood vessels as fiducial markers also allowed precise re-registration of
22                            We describe these fiducial markers and demonstrate an application that all
23 roaches for drift compensation include using fiducial markers and direct drift estimation by image co
24 ion beam, as well as those arising from gold fiducial markers and from common, lower contrast contami
25 nd evaluated a technique utilizing developed fiducial markers and real-time three-dimensional visuali
26                              Introduction of fiducial markers and subsequent computation of three-dim
27        Using a graphene oxide film means the fiducial markers are not interfering with the ice bound
28                                              Fiducial markers are used to reconstruct these projectio
29 ulae, to be resolved and potentially used as fiducial markers for tracking local wall deformations.
30 eted ablations were performed at each of the fiducial markers guided only by the reconstructed 3D ima
31 le preparation including (i) introduction of fiducial markers into the sample and (ii) sample vitrifi
32 wly developed coregistration technique using fiducial markers such as cresyl violet, Ponceau S, and b
33 We tested the accuracy of XFM using external fiducial markers to guide endomyocardial cell injections
34                           Beads were used as fiducial markers to quantify the substrate deformation o
35                                              Fiducial markers visible in both types of data act as co
36          After midline sternotomy, 2.3-mm CT fiducial markers were attached to the epicardial surface
37 ine hearts were stained with di-4-ANEPPS and fiducial markers were glued to the epicardium for motion
38 strate the successful reconstruction of gold fiducial markers with a spatial resolution of about 350
39 istributed 3.2 nm gold particles are used as fiducial markers, demonstrated with a reconstruction of
40  of radiopaque implanted objects as internal fiducial markers, the authors developed and evaluated a
41            Using fluorescent nanodiamonds as fiducial markers, we define and achieve localization pre
42 ystem was superimposed on 3D MR images using fiducial markers.
43 s were coregistered by using pelvic bones as fiducial markers; this was followed by manual adjustment
44 ate fluorescence was tracked in specimens by fiducial marks and epifluorescence.
45  crystallization chaperones and as molecular fiducial marks for single particle cryo-electron microsc
46 as measured by analyzing the displacement of fiducial marks immediately adjacent to the ON/LC by usin
47  Individual punctate spots were localized by fiducial marks in photographs, before and after removal
48 ulsed, near-infrared laser to create defined fiducial marks in three dimensions in fixed tissue.
49 ed from the capacity to generate fluorescent fiducial marks on cytoskeleton components.
50              Distances between corresponding fiducials placed on each of the automated and manual rec
51 EUS has an increasing role in treatment with fiducial placement for stereotactic body radiation thera
52 ved by aligning nuclear counterstain-derived fiducial points.
53 g them into a canonical framework based on a fiducial reference of neuropil morphology.
54        Thirteen consecutive patients with 37 fiducial seeds implanted for radiation therapy of abdomi
55                                              Fiducial seeds were placed in pancreas (n = 5), liver (n
56 ved tumor visibility in the vicinity of gold fiducial seeds.

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