Search results for "Nuclear magnetic resonance"

showing 10 items of 1743 documents

Self-Complementary Dimers of Oxalamide-Functionalized Resorcinarene Tetrabenzoxazines

2018

Self‐complementarity is a useful concept in supramolecular chemistry, molecular biology and polymeric systems. Two resorcinarene tetrabenzoxazines decorated with four oxalamide groups were synthesized and characterized. The oxalamide groups possessed self‐complementary hydrogen bonding sites between the carbonyls and amide groups. The self‐complementary nature of the oxalamide groups resulted in self‐included dimeric assemblies. The hydrogen bonding interactions within the tetrabenzoxazines gave rise to the formation of dimers, which were confirmed by single‐crystal X‐ray diffractions analysis and supported by NMR spectroscopy and mass spectrometry. The self‐included dimers were connected b…

massaspektrometriaspectroscopyNoncovalent interactionsobligaatiotspektroskopiaSupramolecular chemistrycarbonylsdimers ; noncovalent interactions ; resorcinarenes ; supramolecular chemistry ; X-ray diffraction010402 general chemistry01 natural sciencesBiochemistryoligomerchemistry.chemical_compounddimersAmidePolymer chemistryNon-covalent interactionsresorcinarenesta116mass spectrometrychemistry.chemical_classificationbondsta114010405 organic chemistryHydrogen bondOrganic ChemistryIntermolecular forceGeneral ChemistryNuclear magnetic resonance spectroscopyPolymerResorcinareneX-ray diffraction0104 chemical sciencesoligomeeriamideschemistryvetyamidithydrogenself-complementaritySupramolecular chemistrykarbonyylitChemistry: An Asian Journal
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Proton magnetic resonance imaging with para-hydrogen induced polarization.

2012

A major challenge in imaging is the detection of small amounts of molecules of interest. In the case of magnetic resonance imaging (MRI) their signals are typically concealed by the large background signal of e.g. the body. This problem can be tackled by hyperpolarization which increases the NMR signals up to several orders of magnitude. However, this strategy is limited for (1)H, the most widely used nucleus in NMR and MRI, because the enormous number of protons in the body screens the small amount of hyperpolarized ones. Here, we describe a method giving rise to high (1)H MRI contrast for hyperpolarized molecules against a large background signal. The contrast is based on the J-coupling i…

medicine.diagnostic_testChemistryDephasingMetabolic imagingGeneral Physics and AstronomyContrast MediaMagnetic resonance imagingSpin isomers of hydrogenInduced polarizationMagnetic Resonance ImagingProton magnetic resonanceNuclear magnetic resonancemedicineHyperpolarization (physics)Physical and Theoretical ChemistryProtonsHydrogenPhysical chemistry chemical physics : PCCP
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Flip-angle measurement by magnetization inversion: Calibration of magnetization nutation angle in hyperpolarized 3 He magnetic resonance imaging lung…

2010

The aim of this work was to establish a new, fast, and robust method of flip-angle calibration for magnetic resonance imaging of hyperpolarized 3He. The method called flip-angle measurement with magnetization inversion is based on acquiring images from periodically inverted longitudinal magnetization created using the spatial modulation of magnetization technique. By measuring the width of the area where the magnetization was inverted by the spatial modulation of magnetization preparation in phase images, the flip angle can be generated using a simple equation. To validate and establish the limits of the proposed method, flip-angle measurement with magnetization inversion acquisitions were …

medicine.diagnostic_testChemistrybusiness.industryNutationInverse transform samplingMagnetic resonance imagingImage processingMagnetizationNuclear magnetic resonanceOpticsFlip anglemedicineRadiology Nuclear Medicine and imagingWaferbusinessExcitationMagnetic Resonance in Medicine
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Fusingin vivoandex vivoNMR sources of information for brain tumor classification

2011

In this study we classify short echo-time brain magnetic resonance spectroscopic imaging (MRSI) data by applying a model-based canonical correlation analyses algorithm and by using, as prior knowledge, multimodal sources of information coming from high-resolution magic angle spinning (HR-MAS), MRSI and magnetic resonance imaging. The potential and limitations of fusing in vivo and ex vivo nuclear magnetic resonance sources to detect brain tumors is investigated. We present various modalities for multimodal data fusion, study the effect and the impact of using multimodal information for classifying MRSI brain glial tumors data and analyze which parameters influence the classification results…

medicine.diagnostic_testComputer sciencebusiness.industryApplied MathematicsMultimodal dataBrain tumorMagnetic resonance spectroscopic imagingMagnetic resonance imagingPattern recognitionmedicine.diseaseNuclear magnetic resonanceIn vivomedicineMagic angle spinningBrain magnetic resonance imagingArtificial intelligencebusinessInstrumentationEngineering (miscellaneous)Ex vivoMeasurement Science and Technology
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No influence of magnetic fields on cell cycle progression using conditions relevant for patients during MRI.

2003

The purpose of this study was to examine whether exposure to magnetic fields (MFs) relevant for magnetic resonance imaging (MRI) in clinical routine influences cell cycle progression in two tumor cell lines in vitro. HL60 and EA2 cells were exposed to four types of MFs: (i) static MF of 1.5 and 7.05 T, (ii) extremely low frequency magnetic gradient fields (ELFMGFs) with ± 10 mT/m and 100 Hz, as well as ± 100 mT/m and 100 Hz, (iii) pulsed high frequency MF in the radiofrequency (RF) range (63.6 MHz, 5.8 μT), and (iv) a combination of (i–iii). Exposure periods ranged from 1 to 24 h. Cell cycle distribution (G0/G1, S, and G2/M phases) was analyzed by flow cytometry. Cell cycle analysis did not…

medicine.diagnostic_testPhysiologyChemistryCell CycleBiophysicsMagnetic resonance imagingDose-Response Relationship RadiationHL-60 CellsGeneral MedicineEnvironmental ExposureCell cycleMagnetostaticsRadiation DosageMagnetic Resonance ImagingFlow cytometryNuclear magnetic resonanceElectromagnetic FieldsCell culturemedicineHumansRadiology Nuclear Medicine and imagingExtremely low frequencyIrradiationRadiometryBioelectromagneticsBioelectromagnetics
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MRI of the inner ear: use of modified GRASS and fast spin-echo sequences

1996

We report our experience with MRI of the normal and pathological inner ear with fast spin-echo and modified gradient recalled at steady state sequences. Although earlier studies on temporal bone MRI were discouraging, improvements in MR technology combined with the use of paramagnetic contrast media can make MRI a useful diagnostic tool for the assessment of inner ear pathology. Conventional spin-echo imaging seems not to be the modality of choice because of the relatively thick slices and the long acquisition times.

medicine.diagnostic_testbusiness.industryMagnetic resonance imagingReal-time MRIFast spin echoParamagnetic contrast mediamedicine.anatomical_structureNuclear magnetic resonanceTemporal boneSpin echoMedicineRadiology Nuclear Medicine and imagingInner earsense organsNeurology (clinical)Cardiology and Cardiovascular MedicinebusinessNuclear medicineNeuroradiologyNeuroradiology
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Temperature Measurement by Diffusion-Weighted Imaging

2021

Diffusion-weighted imaging (DWI) thermometry is a magnetic resonance-based imaging tool that allows the noninvasive measurement of brain core temperature. Although only applicable to cerebrospinal fluid, it is thought to be potentially useful in assessing the thermal pathophysiology of the brain in both patients and healthy subjects. The objective of this article is to provide a concise but thorough review of the basic physical principles and the principal applications of DWI thermometry as a potential method to elucidate the pathophysiology of several brain diseases and neurologic syndromes.

medicine.diagnostic_testbusiness.industryTemperatureDiffusion-weighted imaging (DWI) temperature DWI thermometry MR imaging Ventricular temperaturesHealthy subjectsMagnetic resonance imagingThermometryCore temperatureMagnetic Resonance ImagingTemperature measurementMr imagingBody Temperature030218 nuclear medicine & medical imaging03 medical and health sciencesDiffusion Magnetic Resonance Imaging0302 clinical medicineNuclear magnetic resonanceImaging ToolmedicineHumansRadiology Nuclear Medicine and imagingbusiness030217 neurology & neurosurgeryDiffusion MRIMagnetic Resonance Imaging Clinics of North America
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Visualization of inert gas wash-out during high-frequency oscillatory ventilation using fluorine-19 MRI

2010

High-frequency oscillatory ventilation is looked upon as a lung-protective ventilation strategy. For a further clarification of the physical processes promoting gas transport, a visualization of gas flow and the distribution of ventilation are of considerable interest. Therefore, fluorine-19 magnetic resonance imaging of the imaging gas octafluorocyclobutane (C(4) F(8) ) during high-frequency oscillatory ventilation was performed in five healthy pigs. For that, a mutually compatible ventilation-imaging system was set up and transverse images were acquired every 5 sec using FLASH sequences on a 1.5 T scanner. Despite a drop in signal-to-noise ratio after the onset of high-frequency oscillato…

medicine.diagnostic_testchemistry.chemical_elementMagnetic resonance imaginglaw.inventionTransverse planeOctafluorocyclobutanechemistry.chemical_compoundNuclear magnetic resonancechemistrylawAnesthesiaVentilation (architecture)medicineFluorineRadiology Nuclear Medicine and imagingRespiratory systemInert gasHigh frequency oscillatory ventilationMagnetic Resonance in Medicine
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Reaction of 4-acylaminomethylpyridine N-oxides with phenylbutazone in the presence of acetic anhydride

1987

medicine.drug_classInfraredOrganic ChemistryCarboxamideBiological activityNuclear magnetic resonance spectroscopyAmine oxidechemistry.chemical_compoundAcetic anhydridechemistrymedicinePhenylbutazoneOrganic chemistrymedicine.drugJournal of Heterocyclic Chemistry
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Efecto del estiramiento miocárdico sobre las frecuencias de activación determinadas mediante análisis espectral durante la fibrilación ventricular

2002

Introduction and objectives. The aim of this study was to analyze the effects of myocardial stretching on excitation frequencies, as determined by spectral analysis, during ventricular fibrillation. Methods. In 12 isolated rabbit heart preparations, ventricular activation during ventricular fibrillation was recorded with multiple electrodes. Recordings were obtained before, during and after ventricular dilatation produced with an intraventricular balloon. The dominant frequency of the signals obtained with each of the electrodes was determined by spectral analysis. Results. During the control phase, the mean, minimum and maximum dominant frequencies were, respectively, 14.3 ± 1.7, 12.5 ± 1.…

medicine.medical_specialtyExperimental modelbusiness.industryRabbit heartVentricular dilatationDominant frequencymedicine.diseaseSurgeryVentricular activationmedicine.anatomical_structureNuclear magnetic resonanceVentricleVentricular fibrillationmedicineCardiology and Cardiovascular MedicinebusinessLateral wallRevista Española de Cardiología
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