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1 f the sample in addition to the conventional X-ray image.
2 Bragg peak positions in the two-dimensional X-ray images.
3 e million times better than the current best X-ray images.
4 rucial for automating the analysis of spinal X-ray images.
5 dels used for identifying anomalies in chest X-ray images.
6 by generating free-text findings from chest X-ray images.
7 pertise to diagnose oral infections based on X-ray images.
8 classify COVID-19 lung infection from chest X-ray images.
9 gnosis purposes, including interpretation of X-ray images.
10 hereby improving their separability in chest X-ray images.
11 on a dataset consisting of more than 30,000 X-ray images.
12 uracy and precision of TB detection in chest X-ray images.
13 bodies in lateral cervical and lumbar spinal X-ray images.
14 dict the Overall Sharp Score (OSS) from hand X-ray images.
15 nges, we first collect large-scale dog heart X-ray images.
16 thickness was quantified by analysis of the X-ray images.
17 ower stalk was analyzed by energy dispersive x-ray imaging.
18 ite-based photovoltaics, optoelectronics and X-ray imaging.
19 al body segmentation and labeling for spinal X-ray imaging.
20 vivo depot visualization and migration using X-ray imaging.
21 ce from the actuation module under real-time x-ray imaging.
22 n or animal organs, laboratory operation and X-ray imaging.
23 an only be captured using costly synchrotron X-ray imaging.
24 l characterization, electron microscopy, and X-ray imaging.
25 ed by the 3D techniques of synchrotron-based X-ray imaging.
26 or of the dark-field signal in speckle-based X-ray imaging.
27 preparation for ultrastructural analysis in X-ray imaging.
28 t tissue ultrastructure remains intact after X-ray imaging.
29 ed acoustic waves for three-dimensional (3D) x-ray imaging.
30 s was recorded in real time using high-speed X-ray imaging.
31 dynamic connectivity," using fast pore-scale X-ray imaging.
32 d as a valuable capability of phase contrast x-ray imaging.
33 ions inside living beetles using synchrotron x-ray imaging.
34 enous injection relative to absorption-based x-ray imaging.
35 developed technique of ultrafast synchrotron X-ray imaging.
36 ed theory for absorption- and phase-contrast X-ray imaging.
37 readily detectable by magnetic resonance and X-ray imaging 3 weeks after infection, and high levels o
38 Furthermore, we showcase quantum shells for X-ray imaging achieving a spatial resolution as high as
39 y accurate data labeling enabled by operando x-ray imaging allowed us to demonstrate a facile and pra
41 eraging publicly available datasets of chest X-ray images and the corresponding radiology reports, we
42 in a lamella of FeGe using resonant magnetic x-ray imaging and comparative micromagnetic simulations,
43 ng speeds via in situ synchrotron high-speed X-ray imaging and computational fluid dynamics simulatio
44 We employ the high-speed synchrotron hard X-ray imaging and diffraction techniques to monitor the
46 the development of key imaging instruments: x-ray imaging and emission tomography (nuclear imaging a
49 Assessment included bead distribution at x-ray imaging and histologic examination, tumor viabilit
50 highly transparent glass enables performant X-ray imaging and low-loss waveguiding in fibers drawn a
54 merging applications such as in infrared and x-ray imaging and quantum and matter-wave interferometry
61 With simultaneous high-speed synchrotron x-ray imaging and thermal imaging, coupled with multiphy
63 ed to detect COVID-19 infection in the chest X-ray images, and Epistocracy algorithm can be effective
64 maging approaches (X-ray fluorescence (XRF), X-ray imaging, and CT scans) were used to assess the res
66 rement for high energy (> 40 keV) large-area X-ray imaging applications due to inadequate cost, manuf
68 ddress this issue, we present an alternative X-ray imaging approach to produce transmission, phase an
69 ions of more advanced--and more challenging--X-ray imaging approaches, such as X-ray multimodal tomog
73 during scanning (in the case of synchrotron X-ray imaging) are mitigated by multiple degassing steps
74 e signal is, nevertheless, of great value in X-ray imaging as it is complementary to the absorption i
75 verse and visually plausible synthetic chest X-ray images (as confirmed by board-certified radiologis
77 ture hydrodynamics), our study utilized muCT X-ray imaging at 3.3 mum spatial resolution to estimate
79 -1) for 40-keV x-ray and can conduct dynamic x-ray imaging at a low-dose rate of 32.2 nGy(air) s(-1).
80 led parts of each cartridge were analyzed by X-ray imaging, before dissembling so that the materials
82 jor step toward making correlative cryogenic X-ray imaging broadly accessible in laboratory settings.
84 ts show that both commercial and synchrotron X-ray imaging can be successfully applied to leaf venati
87 applying widely-used XAI methods on COVID-19 X-ray imaging classification tasks, as well as a thoroug
89 delivery was developed that is visible using x-ray imaging (computed tomography (CT), cone beam CT, f
91 produced at LCLS take place at the Coherent X-ray Imaging (CXI) instrument, which can produce spotsi
93 velops an effective algorithm for high-speed X-ray imaging data to identify melt pool geometries accu
94 ctures and two well-known publicly available X-ray image datasets used to diagnose various thoracic d
95 contrast channels provided by multi-contrast X-ray imaging delivers additional information, also when
96 the histologic findings with the findings on x-ray images demonstrated that the lucencies seen by usi
99 ne (excluding the laser) is dominated by the x-ray imaging distances rather than the electron acceler
100 further demonstrated that synchrotron-based X-ray imaging enabled uncovering finer details of the va
103 , we demonstrate that a combination of basic X-ray imaging equipment, a tailored marker-based image a
104 n, and visual assessment of lung diseases on X-ray images estimated by radiologists and clinicians.
105 -situ high-speed high-resolution synchrotron x-ray imaging experiments and multi-physics modeling, we
106 uasicrystals, we performed synchrotron-based X-ray imaging experiments on a decagonal phase with comp
107 ents leading to good interpretation of chest X-ray images for pneumonia detection, especially for dis
108 ed as a superior alternative to conventional X-ray imaging for diagnosing many pathologic conditions.
110 ng pipeline for the standardization of chest X-ray images, for the visualization of lesions and for d
113 maging, combining thermal/cold neutrons with X-ray imaging has been developed at many neutron facilit
117 s have played a major role in nanoscale soft X-ray imaging, high-resolution and high-efficiency diffr
118 e advanced sensing technologies: synchrotron X-ray imaging, high-speed IR camera, and high-spatial-re
119 ansfer learning schema of processing of lung X-ray images, including augmentation, in order to detect
120 Medical radiography (lab-based polychromatic X-ray imaging instruments routinely used in hospitals an
121 adapts to all those situations in which the X-ray image is obtained by scanning a sample through the
126 ated in a separate experiment, and abdominal X-ray imaging localized most capsule stimulations to the
127 s are the current limitations of ultrasound, x-ray imaging, magnetic resonance imaging (MRI), single-
129 tory testing, electrocardiography, and plain x-ray imaging may often suffice for such patients, but g
130 ging method has advantages compared to other X-ray imaging methods in simplicity of experimental arra
131 ability of synchrotron-based nanotomographic X-ray imaging methods, namely holotomography and transmi
133 ork we use digital analysis of 3D microscale X-ray images of a range of sandstone samples to constrai
135 In our experiments we use high-resolution X-ray images of knees in patients which were identified
136 eveloped a user-friendly software to convert X-ray images of resin-embedded samples into angles and c
140 ined high-resolution (approximately 1") deep x-ray images of the globular cluster 47Tucanae (NGC 104)
141 subsequently generate volumetric tomographic X-ray images of the patient from a single projection vie
142 ty of our nanophotonic scintillators through X-ray imaging of biological and inorganic specimens.
143 illustrate the potential of single-molecule X-ray imaging of biological assembles with helical symme
144 nert valence electrons, making time-resolved X-ray imaging of chemically active valence electron dens
145 IPAA compliance, this work involved detailed x-ray imaging of discarded tissue from two mastectomy sp
147 g tags (LBTs) for two- and three-dimensional X-ray imaging of individual proteins in cells with a sub
150 lts were obtained by implementing high-speed X-ray imaging of the film collapse on a heated sphere su
152 o currently available techniques enables the x-ray imaging of tumors that are just a few millimeters
154 adjust the correlation between masked chest X-ray image patches and their corresponding reports, the
156 urement that uses synchrotron phase contrast X-ray imaging (PCXI) to non-invasively measure the trans
160 d crystals, whereas single particle coherent X-ray imaging requires development to extend the resolut
163 th and without the Pt layer, corroborated by x-ray imaging, reveals reversible switching of the therm
165 opy with combined backscattered electron and X-ray imaging (SEM-BEX) represents a new way to conduct
169 aging has unique advantage over conventional X-ray imaging, since it enables higher penetration into
170 gmentation model was trained using 704 chest X-ray images sourced from the Montgomery County and Shen
174 discuss the application of a newly developed x-ray imaging technique called Spatial Frequency Heterod
175 Computed tomography is a well-established x-ray imaging technique to reconstruct the three-dimensi
178 elative approach combining three-dimensional X-ray imaging techniques at different length scales for
179 r opportunities for safer and more efficient X-ray imaging techniques in a number of scientific and p
182 ple environment is required state-of-the-art X-ray imaging techniques, such as scanning and full-fiel
188 can accurately assess the percentage of the x-ray image that is "dense," but this does not accuratel
189 hat a self-supervised model trained on chest X-ray images that lack explicit annotations performs pat
190 e show with scanning electron microscopy and X-ray imaging that distance effects on gas exchange are
191 set comprising a diverse collection of chest X-ray images, that included both positive and negative c
194 context and spatial relationships from chest X-ray images, the proposed framework deploys the ViT mod
195 o 17.7 mm), and infarct registered with live x-ray images to facilitate device navigation and choice
199 and post-cycling Bragg coherent diffraction X-ray imaging to directly reveal three-dimensional intra
204 aracteristic inflammatory changes present on X-ray imaging typical for the most commonly diagnosed rh
205 he composite's microstructure captured by 3D X-ray imaging using a nano-computed tomographic scanner.
206 the nature of the pigments, we also use with X-ray images, visible near-infrared hyperspectral imagin
208 ombination as measured by bioluminescent and X-ray imaging was significantly greater than single agen
211 dy biases, as well as more than 95,000 chest X-ray images, we show that Swarm Learning classifiers ou
212 peed videography, embedded force sensing and X-ray imaging, we capture the detailed dynamics of this
214 Using high-resolution three-dimensional X-ray imaging, we visualized the in situ evolution of CO
218 previous "semi-automated" techniques, where X-ray images were used as the network input, in this wor
221 he protocol enhances the contrast when using X-ray imaging, while preventing sample motion during the
226 ese properties translate to high-performance X-ray imaging with sensitivity up to 173 muC Gy(air) (-1
227 s paper demonstrates high spatial resolution X-ray imaging with solution-processable two-dimensional
228 gy on the dark-field signal in speckle-based X-ray imaging with wave-optics simulations for ensembles
229 laboratories were experimenting with simple x-ray images within the first year of the discovery of s