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Physical Basics of NMR

This chapter gives a short introduction to the physical and technical basics of nuclear magnetic resonance. It describes the formation of the NMR signal from the generation of the magnetization to the detection in the spectrometer. The behaviour of nuclear spins in a magnetic field is shown bas ...

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FDG PET and PET/CT for Colorectal Cancer

The evaluation of patients with known or suspected recurrent colorectal carcinoma is now an accepted indication for positron emission tomography using 18F-fluorodeoxyglucose (FDG-PET) imaging. PET and CT are complimentary, and therefore, integrated PET/CT imaging should be p ...

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Intracellular Endosomal Magnetic Labeling of Cells

Cellular imaging encompasses the noninvasive and repetitive imaging of targeted cells and cellular processes in living organisms. Magnetic resonance imaging (MRI), with its excellent spatial resolution, is ideally suited to provide unique information on the location and migra ...

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Design and Characterization of Magnetic Resonance Imaging Gene Reporters

We review the current status for magnetic resonance contrast agents that are designed to act as gene reporters. The basic concepts behind magnetic resonance and contrast enhancement are discussed, and factors that influence design of activatable contrast agents are presented. Seve ...

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Targeted Magnetic Resonance Imaging Contrast Agents

The era of personalized medicine is emerging as physicians attempt to diagnose disease in asymptomatic individuals and treat pathology early in its natural history. A novel tool in an emerging armamentarium, molecular imaging will allow noninvasive characterization and segment ...

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Biological Applications of Manganese-Enhanced Magnetic Resonance Imaging

The manganese ion (Mn2+) has long been used in biomedical research as an indicator of calcium (Ca2+) influx in conjunction with fluorescent microscopy because it is well established that Mn2+ enters cells through voltage-gated Ca2+ channels. Mn2+ is also paramagnetic, resulting in a shorten ...

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Tissue pH Measurement by Magnetic Resonance Spectroscopy and Imaging

Noninvasive techniques for measurement of tissue pH can be invaluable in assessing disease extent and response to therapy in a variety of pathological conditions, such as renal acidosis and alkalosis, and cancers. We present the details of three techniques for noninvasive measurement ...

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Hyperpolarized Gas and Oxygen-Enhanced Magnetic Resonance Imaging

Unlike any other organ, imaging of lungs with magnetic resonance faces unique challenges owing to the complex microstructure and presence of gas-tissue interfaces. With the evolution of faster and stronger gradient systems leading to ultrafast imaging with ultrashort echo times, pu ...

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MRI in Preclinical Drug Development

This chapter outlines the challenges that the pharmaceutical industry faces during the course of drug development and discusses the role of magnetic resonance imaging in preclinical drug discovery.

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Magnetic Resonance Imaging of Tumor Physiology

Cancer is one of the most mutable diseases known, exhibiting a superfluity and heterogeneity of molecular pathways that impart an almost chimerical nature to it. Exploiting these pathways for patient therapy demands an understanding of the physiology of tumors from the molecular to the sy ...

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Application of Magnetic Resonance Imaging to Study Pathophysiology in Brain Disease Models

Magnetic resonance imaging (MRI) provides a noninvasive and multimodal tool to study neurological disorders in experimental models. MRI experiments can be sensitized to various contrast parameters and, hence, enable comprehensive assessment of normal and abnormal brain phys ...

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Cardiac Magnetic Resonance Spectroscopy: A Window for Studying Physiology

Cardiac magnetic resonance spectroscopy (MRS) opens a window to the metabolism of the heart. Various intermediates of metabolic pathways can be observed and followed over time. Most applications of cardiac MRS have been performed with the 31P nuclei, which reflect the metabolites from the ...

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Functional Magnetic Resonance Imaging of the Kidney

In addition to exquisite anatomical detail, magnetic resonance imaging (MRI) provides a variety of avenues to study functional status of tissue. These functional parameters could either provide additional information, in terms of pathophysiology, or may improve the specificity ...

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Brain Tumors

For most cancers, PET is essentially a diagnostic tool. For brain tumors, PET has got its main contribution at the level of the therapeutic management. Indeed, specific reasons render the therapeutic management of brain tumors, especially gliomas, a real challenge. Although some gliomas may ...

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Prostate Cancer

Prostate cancer is biologically and clinically a heterogeneous disease and its imaging evaluation will need to be tailored to the specific phases of the disease in a patient-specific, risk-adapted manner. We first present a brief overview of the natural history of prostate cancer before di ...

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Pancreatic and Hepatobiliary Cancers

Morphology-based imaging modalities have replaced classical conventional nuclear medicine modalities for detection of liver or pancreatic lesions. With positron emission tomography and the glucose analog F-18 fluorodeoxyglucose (FDG), a sensitive and specific modali ...

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PET in Testicular Cancer

Testicular cancer is a rare tumor, subdivided into seminomatous and nonseminomatous tumors. Whereas there are no serum tumor markers in the first group, they are present in nonseminomatous tumors, and are also important prognostic factors. Overall, the prognosis for testicular cance ...

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Methodological Aspects of Multicenter Studies with Quantitative PET

Quantification of whole-body FDG PET studies is affected by many physiological and physical factors. Much of the variability in reported standardized uptake value (SUV) data seen in the literature results from the variability in methodology applied among these studies, i.e., due to the use ...

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FDG-PET/CT in Lymphoma

Molecular Imaging has played a prominent role in the assessment of lymphoma for now almost three decades since the introduction of 67Ga-citrate imaging for staging and restaging of both Hodgkin’s and non-Hodgkin’s lymphoma (HL and NHL). Since then other molecular probes have been investig ...

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FDG PET Imaging of Head and Neck Cancers

In initial staging of head and neck cancers, the addition of FDG PET to conventional imaging improves the accuracy for cervical nodal metastases. The sensitivity of FDG PET is, however, limited in nodes

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