Refine
Has Fulltext
- yes (41)
Is part of the Bibliography
- yes (41)
Year of publication
Document Type
- Journal article (27)
- Doctoral Thesis (14)
Keywords
- magnetic resonance imaging (41) (remove)
Institute
- Physikalisches Institut (14)
- Institut für diagnostische und interventionelle Radiologie (Institut für Röntgendiagnostik) (12)
- Deutsches Zentrum für Herzinsuffizienz (DZHI) (6)
- Graduate School of Life Sciences (4)
- Neurologische Klinik und Poliklinik (4)
- Medizinische Klinik und Poliklinik I (3)
- Institut für Klinische Epidemiologie und Biometrie (2)
- Institut für Molekulare Infektionsbiologie (2)
- Institut für diagnostische und interventionelle Neuroradiologie (ehem. Abteilung für Neuroradiologie) (2)
- Klinik und Poliklinik für Nuklearmedizin (2)
Sonstige beteiligte Institutionen
EU-Project number / Contract (GA) number
- 701983 (1)
Global optimization of default phases for parallel transmit coils for ultra-high-field cardiac MRI
(2021)
The development of novel multiple-element transmit-receive arrays is an essential factor for improving B\(_1\)\(^+\) field homogeneity in cardiac MRI at ultra-high magnetic field strength (B\(_0\) > = 7.0T). One of the key steps in the design and fine-tuning of such arrays during the development process is finding the default driving phases for individual coil elements providing the best possible homogeneity of the combined B\(_1\)\(^+\)-field that is achievable without (or before) subject-specific B\(_1\)\(^+\)-adjustment in the scanner. This task is often solved by time-consuming (brute-force) or by limited efficiency optimization methods. In this work, we propose a robust technique to find phase vectors providing optimization of the B-1-homogeneity in the default setup of multiple-element transceiver arrays. The key point of the described method is the pre-selection of starting vectors for the iterative solver-based search to maximize the probability of finding a global extremum for a cost function optimizing the homogeneity of a shaped B\(_1\)\(^+\)-field. This strategy allows for (i) drastic reduction of the computation time in comparison to a brute-force method and (ii) finding phase vectors providing a combined B\(_1\)\(^+\)-field with homogeneity characteristics superior to the one provided by the random-multi-start optimization approach. The method was efficiently used for optimizing the default phase settings in the in-house-built 8Tx/16Rx arrays designed for cMRI in pigs at 7T.
Objectives
In this in-vitro study, teeth were imaged using photoacoustic tomography (PAT), cone-beam computed tomography (CBCT), and micro-computed tomography (μ-CT). The study had aim: to identify the best wavelength for PAT images to determine the accuracy of the three imaging methods, and to determine whether PAT images of teeth can achieve acceptable reconstruction quality.
Methods
Nineteen human mandibular single-rooted incisors were extracted from patients with trauma or periodontitis. To determine the best wavelength for acquiring photoacoustic images, all 19 teeth were scanned in vitro with PAT, using different laser wavelengths between 680 and 960 nm. The images were analyzed using image analysis software. To assess the accuracy of PAT and compare it with the accuracy of CBCT, each tooth was also scanned in vitro using CBCT and the reference standard technique of μ-CT. Subsequently, three different three-dimensional models, one for each imaging technique, were created for each tooth. Finally, the three different three-dimensional models acquired for the same tooth were matched and analyzed regarding volume and surface.
Results
The highest quality tooth images were achieved using the 680 nm wavelength, which showed the best contrast ratio. The full geometry of the dental root (μ-CT compared with PAT) could be visualized with relative standard deviations of 0.12 mm for the surface and −7.33 mm3 for the volume (n = 19). The full geometry of the dental root (μ-CT compared with CBCT) could be visualized with relative standard deviations of 0.06 mm for the surface and −14.56 mm3 for the volume (n = 19). The difference between the PAT–μ-CT group and CBCT–μ-CT group regarding the total average of the root surface area was not significant (p>0.06).
Conclusion
Images, which were acquired using PAT at 680nm showed the best contrast ration, enabling the identification of dentin, cementum and the dental pulp. No significant differences were found between the PAT–μ-CT group and CBCT–μ-CT group regarding the total average of the RSA and the total volume. Thus, three-dimensional reconstructions based on in-vitro PAT are already of acceptable reconstruction quality.
This expert opinion paper on cardiac imaging after acute ischemic stroke or transient ischemic attack (TIA) includes a statement of the "Heart and Brain" consortium of the German Cardiac Society and the German Stroke Society. The Stroke Unit-Commission of the German Stroke Society and the German Atrial Fibrillation NETwork (AFNET) endorsed this paper. Cardiac imaging is a key component of etiological work-up after stroke. Enhanced echocardiographic tools, constantly improving cardiac computer tomography (CT) as well as cardiac magnetic resonance imaging (MRI) offer comprehensive non- or less-invasive cardiac evaluation at the expense of increased costs and/or radiation exposure. Certain imaging findings usually lead to a change in medical secondary stroke prevention or may influence medical treatment. However, there is no proof from a randomized controlled trial (RCT) that the choice of the imaging method influences the prognosis of stroke patients. Summarizing present knowledge, the German Heart and Brain consortium proposes an interdisciplinary, staged standard diagnostic scheme for the detection of risk factors of cardio-embolic stroke. This expert opinion paper aims to give practical advice to physicians who are involved in stroke care. In line with the nature of an expert opinion paper, labeling of classes of recommendations is not provided, since many statements are based on expert opinion, reported case series, and clinical experience.
Previous magnetic resonance imaging (MRI) studies revealed structural-functional brain reorganization 12 months after gastric-bypass surgery, encompassing cortical and subcortical regions of all brain lobes as well as the cerebellum. Changes in the mean of cluster-wise gray/white matter density (GMD/WMD) were correlated with the individual loss of body mass index (BMI), rendering the BMI a potential marker of widespread surgery-induced brain plasticity. Here, we investigated voxel-by-voxel associations between surgery-induced changes in adiposity, metabolism and inflammation and markers of functional and structural neural plasticity. We re-visited the data of patients who underwent functional and structural MRI, 6 months (n = 27) and 12 months after surgery (n = 22), and computed voxel-wise regression analyses. Only the surgery-induced weight loss was significantly associated with brain plasticity, and this only for GMD changes. After 6 months, weight loss overlapped with altered GMD in the hypothalamus, the brain's homeostatic control site, the lateral orbitofrontal cortex, assumed to host reward and gustatory processes, as well as abdominal representations in somatosensory cortex. After 12 months, weight loss scaled with GMD changes in right cerebellar lobule VII, involved in language-related/cognitive processes, and, by trend, with the striatum, assumed to underpin (food) reward. These findings suggest time-dependent and weight-loss related gray matter plasticity in brain regions involved in the control of eating, sensory processing and cognitive functioning.
This work deals with the acceleration of cardiovascular MRI for the assessment
of functional information in steady-state contrast and for viability assessment
during the inversion recovery of the magnetization. Two approaches
are introduced and discussed in detail. MOCO-MAP uses an exponential
model to recover dynamic image data, IR-CRISPI, with its low-rank plus
sparse reconstruction, is related to compressed sensing.
MOCO-MAP is a successor to model-based acceleration of parametermapping
(MAP) for the application in the myocardial region. To this end, it
was augmented with a motion correction (MOCO) step to allow exponential
fitting the signal of a still object in temporal direction. Iteratively, this
introduction of prior physical knowledge together with the enforcement of
consistency with the measured data can be used to reconstruct an image
series from distinctly shorter sampling time than the standard exam (< 3 s
opposed to about 10 s). Results show feasibility of the method as well as
detectability of delayed enhancement in the myocardium, but also significant
discrepancies when imaging cardiac function and artifacts caused already by
minor inaccuracy of the motion correction.
IR-CRISPI was developed from CRISPI, which is a real-time protocol
specifically designed for functional evaluation of image data in steady-state
contrast. With a reconstruction based on the separate calculation of low-rank
and sparse part, it employs a softer constraint than the strict exponential
model, which was possible due to sufficient temporal sampling density via
spiral acquisition. The low-rank plus sparse reconstruction is fit for the use on
dynamic and on inversion recovery data. Thus, motion correction is rendered
unnecessary with it.
IR-CRISPI was equipped with noise suppression via spatial wavelet filtering.
A study comprising 10 patients with cardiac disease show medical
applicability. A comparison with performed traditional reference exams offer
insight into diagnostic benefits. Especially regarding patients with difficulty
to hold their breath, the real-time manner of the IR-CRISPI acquisition provides
a valuable alternative and an increase in robustness.
In conclusion, especially with IR-CRISPI in free breathing, a major acceleration
of the cardiovascular MR exam could be realized. In an acquisition
of less than 100 s, it not only includes the information of two traditional
protocols (cine and LGE), which take up more than 9.6 min, but also allows
adjustment of TI in retrospect and yields lower artifact level with similar
image quality.
Objective:
Over the past decade, myocardial triglyceride content has become an accepted biomarker for chronic metabolic and cardiac disease. The purpose of this study was to use proton (hydrogen 1)-magnetic resonance spectroscopy (\(^{1}\)H-MRS) at 3Tesla (3 T) field strength to assess potential gender-related differences in myocardial triglyceride content in healthy individuals.
Methods:
Cardiac MR imaging was performed to enable accurate voxel placement and obtain functional and morphological information. Double triggered (i.e., ECG and respiratory motion gating) \(^{1}\)H-MRS was used to quantify myocardial triglyceride levels for each gender. Two-sample t-test and Mann-Whitney U-test were used for statistical analyses.
Results:
In total, 40 healthy volunteers (22 male, 18 female; aged >18 years and age matched) were included in the study. Median myocardial triglyceride content was 0.28% (interquartile range [IQR] 0.17–0.42%) in male and 0.24% (IQR 0.14–0.45%) in female participants, and no statistically significant difference was observed between the genders. Furthermore, no gender-specific difference in ejection fraction was observed, although on average, male participants presented with a higher mean ± SD left ventricular mass (136.3 ± 25.2 g) than female participants (103.9 ± 16.1 g).
Conclusions:
The study showed that \(^{1}\)H-MRS is a capable, noninvasive tool for acquisition of myocardial triglyceride metabolites. Myocardial triglyceride concentration was shown to be unrelated to gender in this group of healthy volunteers.
Einführung: Atherosklerose ist eine führende Ursache von Morbidität und Mortalität weltweit. Die ApoE-Knock-Out-Maus (ApoE-/-) ist das wichtigste Tiermodell für das Studium der Atherosklerose und von Interventionen auf diese Erkrankung. Mittels hochaufgelöster Magnet-Resonanz-Bildgebung ist es möglich, eine nicht-invasive in-vivo Gefäß-Charakterisierung bei Mäusen durchzuführen. In dieser Arbeit wurden die Auswirkungen von Sport auf die Gefäßfunktion der Aorta ascendens und abdominalis bei ApoE-/--Mäusen mittels hochaufgelöster MR-Cine-FLASH-Bildgebung untersucht. Methodik und Ergebnisse: 18 ApoE-/--Mäuse mit oder ohne Lipid-reicher „Western Type Diet“ (WTD) führten 4-6 Wochen lang Laufrad-Training durch. Vor Laufrad-Training wurde zweimal (Validität) und nach Laufrad-Training einmal mittels EKG- und Atmungs-getriggerter Magnet-Resonanz-Cine-FLASH-Bildgebung an einem 7-Tesla-Scanner unter Isofluran-Inhalationsnarkose die Compliance von Aorta ascendens und abdominalis gemessen. Aufnahme-Parameter: TR/TE = 4,3/1,4 ms; Field of View (FOV) = 3,0 x 3,0 cm2; Matrixgröße = 256 x 256; Pixel-Größe = (FOV / Matrix) = (30 mm / 256) = 0,0117 mm2; Schichtdicke = 1,0 mm, Auflösung von 0,0137 mm3. Die Resultate wurden verglichen mit 9 Wildtyp-Mäusen vom Stamm C57BL/6J, und mittels der Auswerte-Software Interactive Data Language (IDL) prozessiert. Es zeigten sich gewisse positive Effekte hinsichtlich Compliance der Aorta ascendens durch Sport, die Ergebnisse waren für ApoE-/--Mäuse ohne WTD jedoch wesentlich konsistenter als für ApoE-/--Mäuse mit WTD, wo die Ergebnisse teilweise widersprüchlich erscheinen. Dasselbe gilt für die Aorta abdominalis, die sich zudem in vielen MR-Untersuchungen nicht auswerten ließ, was zu nicht interpretierbaren Ergebnissen führte. Bezüglich der Validität zeigte sich eine sehr hohe Intra-Observer- und Inter-Observer-Übereinstimmung der Ergebnisse, dies zeigte sich auch für Messungen zu zwei Zeitpunkten. Schlussfolgerung: Die Ergebnisse erscheinen insgesamt kritisch beleuchtet nicht signifikant und zeigen allenfalls Besserungs-Tendenzen für die Compliance der Aorta ascendens und abdominalis bei ApoE-/--Mäusen durch Sport. Weitere MRT-Studien mit höheren Feldstärken und weiterentwickelten MR-Protokollen sind notwendig, um die Aussage dieser Doktorarbeit, dass Atherosklerose bei ApoE-/--Mäusen durch Sport teilweise reversibel ist, zu bestätigen.
Background
Surgical procedures in small animal models of heart disease might evoke alterations in cardiac morphology and function. The aim of this study was to reveal and quantify such potential artificial early or long term effects in vivo, which might account for a significant bias in basic cardiovascular research, and, therefore, could potentially question the meaning of respective studies.
Methods
Female Wistar rats (n = 6 per group) were matched for weight and assorted for sham left coronary artery ligation or control. Cardiac morphology and function was then investigated in vivo by cine magnetic resonance imaging at 7 Tesla 1 and 8 weeks after the surgical procedure. The time course of metabolic and inflammatory blood parameters was determined in addition.
Results
Compared to healthy controls, rats after sham surgery showed a lower body weight both 1 week (267.5±10.6 vs. 317.0±11.3 g, n<0.05) and 8 weeks (317.0±21.1 vs. 358.7±22.4 g, n<0.05) after the intervention. Left and right ventricular morphology and function were not different in absolute measures in both groups 1 week after surgery. However, there was a confined difference in several cardiac parameters normalized to the body weight (bw), such as myocardial mass (2.19±0.30/0.83±0.13 vs. 1.85±0.22/0.70±0.07 mg left/right per g bw, p<0.05), or enddiastolic ventricular volume (1.31±0.36/1.21±0.31 vs. 1.14±0.20/1.07±0.17 µl left/right per g bw, p<0.05). Vice versa, after 8 weeks, cardiac masses, volumes, and output showed a trend for lower values in sham operated rats compared to controls in absolute measures (782.2±57.2/260.2±33.2 vs. 805.9±84.8/310.4±48.5 mg, p<0.05 for left/right ventricular mass), but not normalized to body weight. Matching these findings, blood testing revealed only minor inflammatory but prolonged metabolic changes after surgery not related to cardiac disease.
Conclusion
Cardio-thoracic surgical procedures in experimental myocardial infarction cause distinct alterations upon the global integrity of the organism, which in the long term also induce circumscribed repercussions on cardiac morphology and function. This impact has to be considered when analyzing data from respective animal studies and transferring these findings to conditions in patients.
Purpose:
Bolus‐based dynamic contrast agent (CA) perfusion measurements of the heart are subject to systematic errors due to CA bolus dispersion in the coronary arteries. To better understand these effects on quantification of myocardial blood flow and myocardial perfusion reserve (MPR), an in‐silico model of the coronary arteries down to the pre‐arteriolar vessels has been developed.
Methods:
In this work, a computational fluid dynamics analysis is performed to investigate these errors on the basis of realistic 3D models of the left and right porcine coronary artery trees, including vessels at the pre‐arteriolar level. Using advanced boundary conditions, simulations of blood flow and CA transport are conducted at rest and under stress. These are evaluated with regard to dispersion (assessed by the width of CA concentration time curves and associated vascular transport functions) and errors of myocardial blood flow and myocardial perfusion reserve quantification.
Results:
Contrast agent dispersion increases with traveled distance as well as vessel diameter, and decreases with higher flow velocities. Overall, the average myocardial blood flow errors are −28% ± 16% and −8.5% ± 3.3% at rest and stress, respectively, and the average myocardial perfusion reserve error is 26% ± 22%. The calculated values are different in the left and right coronary tree.
Conclusion:
Contrast agent dispersion is dependent on a complex interplay of several different factors characterizing the cardiovascular bed, including vessel size and integrated vascular length. Quantification errors evoked by the observed CA dispersion show nonnegligible distortion in dynamic CA bolus‐based perfusion measurements. We expect future improvements of quantitative perfusion measurements to make the systematic errors described here more apparent.
Da die häufigste Ursache der pathologischen Mamillensekretion ein benigner Prozess ist, sollte die Diagnostik mittels nicht invasiver Verfahren im Vordergrund stehen. Dabei stellt die Kernspintomographie eine wichtige Modalität dar, vor allem wenn die Mammographie und die Mammasonographie keine Befunde zeigen. In dieser Studie wurden Patientinnen mit pathologischer Mamillensekretion mittels MR-Mammographie bei 3,0 Tesla und anschließend mittels Galaktographie untersucht.
Von Juli 2009 bis Juni 2012 wurden 50 Patientinnen in die Studie eingeschlossen, die eine pathologische Mamillensekretion zeigten und einer MR-Mammographie bei 3,0 Tesla zustimmten. Bei allen Studienteilnehmerinnen waren sowohl die Mammographie als auch die Mammasonographie negativ oder zeigten einen unklaren Befund. Weitere Einschlusskriterien waren im Normbereich liegende Nieren- und Prolaktinwerte.
Sechs Patientinnen zeigten einen beidseitigen Ausfluss. Hier wurden beide Brüste in die Studie eingeschlossen, so dass insgesamt 56 Fälle mit einem Durchschnittsalter von 51,2 Jahren (Standardabweichung ± 12,8 Jahre, Median 52,5 Jahre) betrachtet wurden. Ältere Patientinnen zeigten dabei häufiger maligne Ursachen als jüngere, ohne Nachweis eines signifikanten Unterschieds (p = 0,272).
Bei der klinischen Untersuchung war in 44,6% (25/56) ein nicht-blutiger und in 55,4% (31/56) ein blutiger Ausfluss erkennbar. Die Inzidenz der Malignität in der Gruppe der blutigen Sekretion war höher (19,4% vs. 8,0%), jedoch nicht signifikant (p = 0,23). In der Literatur wird davon berichtet, dass bei blutigem Ausfluss das Risiko für ein Mammakarzinom höher ist. Es wird aber auch darauf hingewiesen, dass bei einem nicht-blutigen Ausfluss ein Malignom keinesfalls ausgeschlossen werden kann.
Die häufigste Ursache der pathologischen Mamillensekretion war, wie auch in der Literatur berichtet wird, mit 39,4% ein Papillom. Insgesamt wurde in 14,8% ein Malignom nachgewiesen. Dies ist etwas höher als die vergleichbaren Angaben von 2% - 10% in der Literatur.
Es bestand ein signifikanter, direkt proportionaler Zusammenhang zwischen Größe in der MR-Mammographie und Malignität (p = 0,019). Ein Phänomen, das Liberman et al. ebenfalls beschrieben. Sowohl sie als auch Langer et al. empfehlen somit bei Läsionen, die kleiner als 5 mm sind, aufgrund der geringen Malignomrate auf eine Biopsie zu verzichten. Auch in der vorliegenden Studie waren alle Läsionen < 5 mm benigne.
Zwischen der MR-mammographisch geschätzten Größe und der histopathologisch ermittelten Größe konnte eine signifikant hohe Korrelation gezeigt werden (Korrelationskoeffizient nach Pearson 0,095, p < 0,0001). Dabei wurden die Befunde in der Kernspintomographie tendenziell größer dargestellt. Die gleiche Erfahrung machten auch Son et al. und Schouten van der Velden et al..
Die Ergebnisse der MR-Mammographie wurden mit der danach durchgeführten Galaktographie verglichen. Ein wichtiger Nachteil der Galaktographie zeigte sich in der eingeschränkten Durchführbarkeit. In 23,3% konnte diese nicht erfolgreich beendet werden. In der Literatur wird von ähnlichen Prozentsätzen gesprochen. Zusätzlich erzielten wir im Vergleich zur MR-Mammographie sowohl eine geringere Sensitivität (86% vs. 96%) als auch eine niedrigere Spezifität (33% vs. 70%) für die Galaktographie, was sicherlich auch die Schwierigkeit der Unterscheidung zwischen benignen und malignen Befunden bei einer Galaktographie widerspiegelt. Morrogh et al. verglichen die Galaktographie mit der MR-Mammographie bei 1,5 Tesla ebenfalls bei Patientinnen mit pathologischer Mamillensekretion und negativer Standarddiagnostik. Die von ihnen berichtete Sensitivität von 83% für die MR-Mammographie ist vergleichbar mit der der vorliegenden Studie (75%). Bei 1,5 Tesla erreichten sie allerdings nur eine Spezifität von 62%, die geringer ist als die von uns errechnete Spezifität von 88%. Auch andere Studien referieren eine höhere Spezifität bei höherer Feldstärke.
Um dies allerdings aussagekräftig zu zeigen, muss eine intraindividuelle Studie bei 1,5 Tesla und 3,0 Tesla durchgeführt werden.
Zusammenfassend kann man jedoch sagen, dass die Galaktographie durch die nicht invasive, strahlungsfreie MR-Mammographie bei der Untersuchung von Patientinnen mit pathologischer Mamillensekretion ersetzt werden sollte, insbesondere wenn die Standarddiagnostik keine auffälligen Befunde liefern konnte.