Weizmann Institute Completes Installation of 15.2T Multicolor MR Imaging System

15 Tesla ultra-high field pre-clinical MRI system to further accelerate multi-disciplinary research

19 Oct 2017
Frankie MacDonald
Administrator / Office Personnel

Industry news

The Weizmann Institute of Science in Rehovot, Israel, have announced the installation of the Biospec® 15.2 Tesla USR™ preclinical ultra-high field magnetic resonance imaging (MRI) instrument from Bruker. The new instrument is installed in the Daniel Wolf building of the Department of Chemical Research, and is used by the MRI Biosensors laboratory, led by Dr. Bar-Shir, and the laboratory of Professor Neeman, to open new frontiers in molecular and microscopic imaging, adding to the team's existing world-class MRI instruments.

The new 15.2 Tesla MRI is one of the latest MRI instruments from Bruker to be installed on site in Israel, alongside the Bruker BioSpec 4.7 Tesla MRI and the Bruker 400WB (wide-bore) spectrometer. The instrument will enable multiplexed imaging, not previously available to the institute in its current MRI capabilities, with the aim to develop, optimize, and implement genetically engineered reporter systems for MRI with artificial "multicolor" characteristics. The extremely high spatial resolution of the 15.2 Tesla MRI will increase the number of artificial colors that can be observed, and open new avenues for monitoring biological multiplexity.

The Weizmann Institute is a world-class institution in MRI research, with specialized capabilities in the Bar-Shir Laboratory and the Neeman Laboratory. The Neeman lab combines cutting-edge pre-clincal MRI experience with the ability to monitor in vivo biological variables non-invasively in order to track the progression of diseases, such as cancer, or of intervention in the same living animal, which greatly improves biological and translational relevance. The Bar-Shir lab aims to develop new biosensors and tracers for MRI applications by using synthetic chemistry, nanotecnology and molecular biology approaches. Such biosensors will help scientists around the world to study biological events longitudinally and non-invasively in deep tissues of live animals.

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Dr. Amnon Bar-Shir, Department of Organic Chemistry at the Weizmann Institute of Science, stated: "We feel this new installation will be a real game changer for our facility. The new 15T MRI will give us superior spectral resolution and boosts the signal-to-noise ratio for higher spatial resolution and faster measurements. The new instrument will facilitate the research of our world-class team and will reinforce Weizmann's position as one of the premier centers in the world for MR research."

Dr. Wulf I. Jung, President of the Bruker BioSpin Preclinical Imaging division, added: "We are extremely pleased to partner with the Weizmann Institute and provide the enabling MRI research tools they need to advance the scientific understanding of the biomolecular processes of many diseases, as well as the understanding of advanced bio-materials that will impact many emerging diagnostic and therapeutic approaches."

The BioSpec® product series is designed for the emerging market of preclinical and molecular MR imaging and MRI research. State-of-the-art MRI CryoProbe™ technology combined with ultra-high field USR magnets deliver high spatial resolution in vivo at highest stability, thus enabling customers to come closer to the molecular and cellular level research they desire. Due to the largest preclinical portfolio of sequences and in vivo optimized measurement protocols, virtually any small animal MR imaging application in life science, biomedical and preclinical research can be conducted.

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BiosensorsBiosensors are devices used to detect an analyte using biological molecules specific to the analyte coupled to a detector. Biosensor instruments may be photometric, typically using surface plasma resonance (SPR), electrochemical or QCM (quartz crystal microbalance) biosensors. Biosensors should be selective, portable, robust and sensitive and have a fast response time. Systems may be manual or automated and usually have associated software.In Vivo Imaging Systems<i>In vivo</i> imaging systems, including pre-clinical imaging systems and medical imaging systems are used to non-invasively visualize and capture images of live animals and plants. Monitor the natural processes or diseases of your subjects using small-animal pre-clinical imaging systems, including single photon positron emission tomography (SPECT), positron emission tomography (PET), computed tomography (micro-CT), magnetic resonance imaging (MRI), X-ray radiography, ultrasound, fluorescence and bioluminescence imagers. Multimodal systems and software solutions are also available for correlative analysis of organ, tissue, cell, or molecular-level processes. Find the best in vivo imaging products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Clinical TrialsClinical Trials, an essential part of drug discovery process, assess the safety and effectiveness of a new medication or device in the pharmaceutical industry. Clinical Trials are a phased process (Phase 0, Phase I, Phase II, Phase III and Phase IV) which begins after initial preclinical testing.ImagingImaging techniques are essential for obtaining visual representations of samples to understand structures, processes, and function in biological, chemical, and physical research. These tools range from traditional light microscopy to advanced imaging modalities like MRI and electron microscopy, providing researchers with valuable data for diagnostics, drug discovery, and material analysis. Explore imaging solutions in our peer-reviewed product directory to compare products, check reviews, and get pricing directly from manufacturers.MRIBiosensors