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1 phy using a Siemens high-resolution research tomograph.
2 or 93 min using the High-Resolution Research Tomograph.
3 (11)C-P943 scanning on a high-resolution PET tomograph.
4 for 27 oncology patients using an LSO-based tomograph.
5 sing a lutetium oxyorthosilicate (LSO)-based tomograph.
6 lind design and were imaged on a triple-head tomograph.
7 HNO PET utilizing a high-resolution research tomograph.
8 12 and April 2014, with a clinical MPM-based tomograph.
9 mall-animal PET was performed on either of 2 tomographs.
10 multiple populations studied with different tomographs.
11 reproducible across patient populations and tomographs.
12 neal imaging by a LS-IVCM (Heidelberg Retina Tomograph 3 with Rostock Cornea Module; Heidelberg Engin
13 ed prospectively using the Heidelberg Retina Tomograph 3/Rostock Cornea Module (Heidelberg Engineerin
15 using H(2)(15)O and a 3-dimensional-only PET tomograph allow regional estimates of the transmural dis
16 t per patient) were evaluated using a retina tomograph and white-on-white standard automated perimetr
18 lorbetapir PET on a high-resolution research tomograph, and FTD patients also underwent (18)F-FDG PET
21 nimals were anesthetized and were inside the tomograph during 18F-FDG uptake, whereas 6 animals were
23 ) were scanned on an intermediate resolution tomograph (full width at half maximum, 8 mm); the subseq
25 ng laser tomography (CSLT, Heidelberg Retina Tomograph, Heidelberg Engineering GmbH, Heidelberg, Germ
26 e head (ONH) topography with HRT-II (retinal tomograph; Heidelberg Engineering GmbH, Heidelberg, Germ
27 aser ophthalmoscopy (SLO; Heidelberg Retinal Tomograph; Heidelberg Engineering GmbH, Heidelberg, Germ
28 was evaluated at baseline (Heidelberg Retina Tomograph; Heidelberg Engineering, Dossenheim, Germany),
30 mated perimetry (SAP) and Heidelberg Retinal Tomograph (HRT II) were both more sensitive than GAT (41
31 nd disease severity on the Heidelberg Retina Tomograph (HRT) Glaucoma Probability Score (GPS) and the
32 tereo disc photographs and Heidelberg Retina Tomograph (HRT) images were obtained during one visit, w
33 s an update on research on Heidelberg retina tomograph (HRT) imaging of the optic nerve head in glauc
34 pants (246 eyes) with >/=4 Heidelberg Retina Tomograph (HRT)-II exams from the Diagnostic Innovations
37 Eyes were imaged by CSLO (Heidelberg Retinal Tomograph [HRT]; Heidelberg Engineering, GmbH, Dossenhei
39 area measurement using the Heidelberg Retina Tomograph II (Heidelberg Engineering, Dossenheim, German
40 ec, Inc., Dublin, CA), the Heidelberg Retina Tomograph II (HRT II; Heidelberg Engineering, GmbH, Doss
41 sity was measured with the Heidelberg Retina Tomograph II (Rostock Cornea Module) 3, 15, and 36 to 42
42 as measured with a retinal tomograph (Retina Tomograph II [HRT]; Heidelberg Engineering, Heidelberg,
43 s in IOP and CDR based on Heidelberg Retinal Tomograph II imaging (Heidelberg Engineering, Dossenheim
44 VCM was performed with the Heidelberg Retina Tomograph II, Cornea Module, using the "section" modalit
45 topographic imaging with Heidelberg Retinal Tomograph III (HRT-III) (Heidelberg Engineering) CSLO wi
46 with LSCD collected by the Heidelberg Retina Tomograph III Rostock Corneal Module Confocal Microscope
49 pplication of the NEMA standard to LSO-based tomographs in the presence of intrinsic radiation are di
51 ied digital volume correlation of X-ray nano-tomographs of a nanoindentation to measure the sub-surfa
55 with a report on the use of day 21 computed tomograph response to predict outcome, reinforces that m
56 of the patients was measured with a retinal tomograph (Retina Tomograph II [HRT]; Heidelberg Enginee
57 mograph (Stratus), and the Heidelberg Retina Tomograph retinal nerve fiber layer measurements for dif
59 polarimeter (GDx VCC), the optical coherence tomograph (Stratus), and the Heidelberg Retina Tomograph
60 on the HRRT system (high-resolution research tomograph), the highest-resolution whole-head scanner av
61 nimals were positioned far enough inside the tomograph to obtain region-of-interest-based measures fr
62 abilities of the Versatile Emission Computed Tomograph (VECTor) dedicated to (simultaneous) preclinic
65 d using a micro-PET (micro-positron emission tomograph) with an 18-fluorodeoxyglucose (18-FDG) tracer
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