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Bücher zum Thema
Radiologie
Radiologie: RRR-Referenzreihe
Book of Abstracts – 8th International Symposium – on Highfield MR in Clinical Applications
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Aarts, JCNM
Is a 3.0 Tesla MRI cost effective for brain imaging in a general hospital?
Abskharon, J
3D Reconstructed Contrast Enhanced MR Angiography: 1.5 Tesla versus 3 Tesla in Detection of the Different Branches of the Internal Iliac Artery before Uterine Artery Embolization
Antoch, G
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Arteaga de Castro, CS
1H-Spectroscopy at 7T in Prostate Cancer for Metabolite Detection to improve tumor characterization
Bahr, A
Liver MR imaging in humans at 7 Tesla: Initial results
Baumeister, R
MR-Lymphangiography at 3.0T – Correlation with Lymphoscintigraphy
Biessels, GJ
Detection of cerebral microbleeds with dual echo T2*-weighted imaging at 7.0 Tesla MRI
Bitz, A
7 Tesla Cardiac MRI in Humans
Bitz, AK
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Brote, I
7 Tesla Cardiac MRI in Humans
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Chenevert, TL
Liver fat quantitation at 3T using a single breath hold multi-echo sequence
Chng, SM
Perfusion territories of the deep brain structures: territorial arterial spin labeling MRI at 3.0 Tesla fieldstrength.
Clusmann, H
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Conijn, MMA
Detection of cerebral microbleeds with dual echo T2*-weighted imaging at 7.0 Tesla MRI
de Leeuw, LA
Is a 3.0 Tesla MRI cost effective for brain imaging in a general hospital?
Cost-effectiveness of 3T MRI versus 1.5T in imaging of the knee in general radiology practice.
Duijndam, A
Abdominal MR Imaging at 3.0T: Preliminary Clinical Experience with 2-Point mDIXON as an Alternative to eThrive and Chemical Shift Imaging
Eggers, H
Abdominal MR Imaging at 3.0T: Preliminary Clinical Experience with 2-Point mDIXON as an Alternative to eThrive and Chemical Shift Imaging
Espinola-Klein, C
Perfusion Imaging in the Soft Tissues in Patients with Diabetic Foot Syndrome (DFS) – Preliminary Results
Flacke, S
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Forsting, M
Magnetic resonance imaging of cranial nerves at 7 Tesla
Geerlings, MI
Detection of cerebral microbleeds with dual echo T2*-weighted imaging at 7.0 Tesla MRI
Gieseke, J
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Liver MRI at 3.0 Tesla in patients with focal or diffuse liver disease: An intraindividual comparative study of T1-, T2- and diffusion weighted imaging using parallel RF transmission with patient-adaptive B1 shimming
Gizewski, ER
Magnetic resonance imaging of cranial nerves at 7 Tesla
Glaser, C
MR-Lymphangiography at 3.0T – Correlation with Lymphoscintigraphy
Improving image quality in shoulder MRI at 3T – BLADE vs. TSE
Golay, X
Perfusion territories of the deep brain structures: territorial arterial spin labeling MRI at 3.0 Tesla fieldstrength.
Grams, AE
Magnetic resonance imaging of cranial nerves at 7 Tesla
Hendrikse, J
Detection of cerebral microbleeds with dual echo T2*-weighted imaging at 7.0 Tesla MRI
Perfusion territories of the deep brain structures: territorial arterial spin labeling MRI at 3.0 Tesla fieldstrength.
Herigault, G
Abdominal MR Imaging at 3.0T: Preliminary Clinical Experience with 2-Point mDIXON as an Alternative to eThrive and Chemical Shift Imaging
Herrmann, KA
MR-Lymphangiography at 3.0T – Correlation with Lymphoscintigraphy
Horng, A
Improving image quality in shoulder MRI at 3T – BLADE vs. TSE
Hussain, HK
Liver fat quantitation at 3T using a single breath hold multi-echo sequence
Hussain, SM
Abdominal MR Imaging at 3.0T: Preliminary Clinical Experience with 2-Point mDIXON as an Alternative to eThrive and Chemical Shift Imaging
Ivancevic, MK
Liver fat quantitation at 3T using a single breath hold multi-echo sequence
Jakobs, TF
MR-Lymphangiography at 3.0T – Correlation with Lymphoscintigraphy
Kalkmann, J
Magnetic resonance imaging of cranial nerves at 7 Tesla
Kinner, S
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Klomp, DWJ
1H-Spectroscopy at 7T in Prostate Cancer for Metabolite Detection to improve tumor characterization
König, R
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Kraff, O
Magnetic resonance imaging of cranial nerves at 7 Tesla
7 Tesla Cardiac MRI in Humans
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Kreitner, KF
Perfusion Imaging in the Soft Tissues in Patients with Diabetic Foot Syndrome (DFS) – Preliminary Results
Kukuk, GM
Liver MRI at 3.0 Tesla in patients with focal or diffuse liver disease: An intraindividual comparative study of T1-, T2- and diffusion weighted imaging using parallel RF transmission with patient-adaptive B1 shimming
Ladd, ME
Magnetic resonance imaging of cranial nerves at 7 Tesla
7 Tesla Cardiac MRI in Humans
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Ladd, SC
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Lauenstein, TC
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Lehnert, T
3D Reconstructed Contrast Enhanced MR Angiography: 1.5 Tesla versus 3 Tesla in Detection of the Different Branches of the Internal Iliac Artery before Uterine Artery Embolization
Luijten, PR
Magnetization prepared 3D-FLAIR Imaging at 7.0 Tesla
Detection of cerebral microbleeds with dual echo T2*-weighted imaging at 7.0 Tesla MRI
1H-Spectroscopy at 7T in Prostate Cancer for Metabolite Detection to improve tumor characterization
Maderwald, S
Magnetic resonance imaging of cranial nerves at 7 Tesla
7 Tesla Cardiac MRI in Humans
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Müller, A
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Müller, P
Improving image quality in shoulder MRI at 3T – BLADE vs. TSE
Mürtz, P
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Liver MRI at 3.0 Tesla in patients with focal or diffuse liver disease: An intraindividual comparative study of T1-, T2- and diffusion weighted imaging using parallel RF transmission with patient-adaptive B1 shimming
Naguib, N
3D Reconstructed Contrast Enhanced MR Angiography: 1.5 Tesla versus 3 Tesla in Detection of the Different Branches of the Internal Iliac Artery before Uterine Artery Embolization
Nahuis, JJ
Is a 3.0 Tesla MRI cost effective for brain imaging in a general hospital?
Nassenstein, K
7 Tesla Cardiac MRI in Humans
Nelles, M
Liver MRI at 3.0 Tesla in patients with focal or diffuse liver disease: An intraindividual comparative study of T1-, T2- and diffusion weighted imaging using parallel RF transmission with patient-adaptive B1 shimming
Notohamiprodjo, M
MR-Lymphangiography at 3.0T – Correlation with Lymphoscintigraphy
Improving image quality in shoulder MRI at 3T – BLADE vs. TSE
Nour-Eldin, NE
3D Reconstructed Contrast Enhanced MR Angiography: 1.5 Tesla versus 3 Tesla in Detection of the Different Branches of the Internal Iliac Artery before Uterine Artery Embolization
Orzada, S
Magnetic resonance imaging of cranial nerves at 7 Tesla
7 Tesla Cardiac MRI in Humans
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Perkins, TG
Abdominal MR Imaging at 3.0T: Preliminary Clinical Experience with 2-Point mDIXON as an Alternative to eThrive and Chemical Shift Imaging
Petersen, ET
Perfusion territories of the deep brain structures: territorial arterial spin labeling MRI at 3.0 Tesla fieldstrength.
Pietsch, T
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Pietschmann, P
Improving image quality in shoulder MRI at 3T – BLADE vs. TSE
Quick, HH
7 Tesla Cardiac MRI in Humans
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Reiser, M
Improving image quality in shoulder MRI at 3T – BLADE vs. TSE
Reiser, MF
MR-Lymphangiography at 3.0T – Correlation with Lymphoscintigraphy
Remmele, S
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Röhrl, B
Perfusion Imaging in the Soft Tissues in Patients with Diabetic Foot Syndrome (DFS) – Preliminary Results
Schaefer, LC
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
Schild, HH
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Liver MRI at 3.0 Tesla in patients with focal or diffuse liver disease: An intraindividual comparative study of T1-, T2- and diffusion weighted imaging using parallel RF transmission with patient-adaptive B1 shimming
Schreiber, LM
Perfusion Imaging in the Soft Tissues in Patients with Diabetic Foot Syndrome (DFS) – Preliminary Results
Smink, J
Liver fat quantitation at 3T using a single breath hold multi-echo sequence
Solbach, K
Liver MR imaging in humans at 7 Tesla: Initial results
Träber, F
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Liver MRI at 3.0 Tesla in patients with focal or diffuse liver disease: An intraindividual comparative study of T1-, T2- and diffusion weighted imaging using parallel RF transmission with patient-adaptive B1 shimming
Umutlu, L
Kidney MR imaging in humans at 7 Tesla: Initial results
Liver MR imaging in humans at 7 Tesla: Initial results
van der Heide, UA
1H-Spectroscopy at 7T in Prostate Cancer for Metabolite Detection to improve tumor characterization
Van Tilburg, JL
Abdominal MR Imaging at 3.0T: Preliminary Clinical Experience with 2-Point mDIXON as an Alternative to eThrive and Chemical Shift Imaging
Venketasubramanian, N
Perfusion territories of the deep brain structures: territorial arterial spin labeling MRI at 3.0 Tesla fieldstrength.
Visser, F
Magnetization prepared 3D-FLAIR Imaging at 7.0 Tesla
Detection of cerebral microbleeds with dual echo T2*-weighted imaging at 7.0 Tesla MRI
Vogl, T
3D Reconstructed Contrast Enhanced MR Angiography: 1.5 Tesla versus 3 Tesla in Detection of the Different Branches of the Internal Iliac Artery before Uterine Artery Embolization
Weber, S
Perfusion Imaging in the Soft Tissues in Patients with Diabetic Foot Syndrome (DFS) – Preliminary Results
Weiss, M
MR-Lymphangiography at 3.0T – Correlation with Lymphoscintigraphy
Wenningmann, I
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Westerbeek, RE
Cost-effectiveness of 3T MRI versus 1.5T in imaging of the knee in general radiology practice.
Wiersma, HW
Cost-effectiveness of 3T MRI versus 1.5T in imaging of the knee in general radiology practice.
Willinek, WA
R2* response of intracranial tumors during (C)O2 challenges at 3.0T
Liver MRI at 3.0 Tesla in patients with focal or diffuse liver disease: An intraindividual comparative study of T1-, T2- and diffusion weighted imaging using parallel RF transmission with patient-adaptive B1 shimming
Ziedses des Plantes, BG
Is a 3.0 Tesla MRI cost effective for brain imaging in a general hospital?
Cost-effectiveness of 3T MRI versus 1.5T in imaging of the knee in general radiology practice.
Zonneveld, BJGL
Is a 3.0 Tesla MRI cost effective for brain imaging in a general hospital?
Zwanenburg, JJM
Magnetization prepared 3D-FLAIR Imaging at 7.0 Tesla
Detection of cerebral microbleeds with dual echo T2*-weighted imaging at 7.0 Tesla MRI