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Gadobutrol (Gadovist Gadavist ZK 135079) is a non-ionic macrocyclic gadolinium-based contrast agent (GBCA) that is usedfor tissue contrast enhancement in magnetic resonance imaging (MRI)
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Gadobutrol (Gadovist Gadavist ZK 135079) is a non-ionic macrocyclic gadolinium-based contrast agent (GBCA) that is usedfor tissue contrast enhancement in magnetic resonance imaging (MRI)
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Gadopentetate Dimeglumine (Gadopentetic acid dimeglumine Gd-DTPA Meglumine gadopentetate) a complex of gadolinium with a chelating agent diethylenetriamine penta-acetic acid is an extracellular intravenous contrast agent used in magnetic resonance imaging
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Also available in 5 mg, 10 mg, 50 mg, 100 mg, 500 mg and bulk. Please contact Fisher for quotes. Ferumoxytol (Magnetic Black) is a non-gadolinium based contrast agent for use in magnetic resonance imaging applications. Purity 98%
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Also available in 1 mL, 10 mg, 25 mg, 50 mg, 200 mg and bulk. Please contact Fisher for quotes. Gadoteridol (Gd-HP-DO3A) is a gadolinium-based MRI contrast agent that can be used for central nervous system imaging. Purity 98.63%
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Mn(II)-DO3A sodium is a manganese(II) complex supplied as its sodium salt for research into MRI contrast agents and as a potential alternative to gadolinium-based agents. It is provided as a solid reagent intended for laboratory research use only.
Mn(II) complex designed as alternative to gadolinium-based MRI contrast agents.
Provided as the sodium salt for improved solubility and handling.
Available in small research quantities (e.g., 10 mg) for laboratory studies.
Reported purity approximately 70.0%.
Molecular weight 421.28 and formula C14H23MnN4NaO6.
CAS number 120066-53-7 for unambiguous identification.
Documentation available: data sheet, SDS, and COA for handling and characterization.
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Gadodiamide is a gadolinium-based paramagnetic agent commonly utilized in magnetic resonance imaging (MRI) studies As a nonionic hydrophilic chelate complex gadodiamide contains a central gadolinium (Gd) ion coordinated to an organic ligand to ensure solubility and stable circulation Upon intravenous administration its paramagnetic properties interact with protons in surrounding tissues shortening proton relaxation times (T1) thereby enhancing image contrast during MRI analysis This contrast enhancement enables detailed visualization of anatomical structures such as blood vessels tissues and pathological lesions within various biological systems Gadodiamide is widely employed in biomedical research to assess blood-brain barrier integrity evaluate vascular function and facilitate imaging studies focused on tissue perfusion and vascular abnormalities
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