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BRUKER 4.7T-160 Magnex Scientific Laboratory Mri Lab Animals

4.7t-160 Bruker Magnex Scientific Laboratory

( Brand: Bruker ), ( Manufacturer Part Number: 4.7T/160 )

Review BRUKER Magnex Scientific Laboratory Mri Lab Animals Model

The Bruker BioSPIN 4.7T-160 MRI system is a state-of-the-art, high-field small animal magnetic resonance imaging (MRI) scanner designed for advanced research in preclinical imaging. This MRI system, specifically the 4.7T-160 model, is equipped with a 160mm inner diameter bore, providing ample space for accommodating larger animal models, such as non-human primates, swine, and large rodents.

The Bruker 4.7T-160 MRI system features an active shield gradient set with a maximum gradient strength of 450mT/m, enabling robust and high-quality imaging with excellent spatial resolution and signal-to-noise ratio (SNR). The system is also equipped with a powerful cryogen-free 1H/31P/13C/19F triple-resonance probe, allowing for multi-nuclear imaging and spectroscopy, providing researchers with a comprehensive toolset for studying metabolic and functional changes in their subjects.

Additionally, the Bruker 4.7T-160 MRI system is equipped with a suite of advanced imaging and analysis software, including ParaVision, enabling researchers to perform a wide range of imaging sequences, such as T1-weighted, T2-weighted, Diffusion-weighted, and functional MRI. The system also supports real-time data acquisition and analysis, allowing for faster and more efficient data processing, and enabling researchers to monitor changes in their subjects over time.

In summary, the Bruker BioSPIN 4.7T-160 MRI system offers a powerful and flexible platform for preclinical imaging research, providing researchers with the tools they need to study the underlying mechanisms of diseases in animal models with high spatial and temporal resolution, and to develop new therapeutic strategies based on their findings.

Pros of buying a Bruker Magnex 4.7T MRI for laboratory animal research:

1. High-resolution imaging: The 4.7T magnetic field strength provides excellent image resolution, making it suitable for detailed studies of small animals.

2. Advanced imaging techniques: It supports various imaging modalities such as T1, T2, T2*, DWI, fMRI, and spectroscopy, enabling researchers to explore different aspects of animal physiology.

3. Wide bore: The wide-bore design allows for the comfortable placement of larger animals, reducing stress and improving data quality.

4. Automated data analysis: The system comes with software for automated data analysis, saving researchers time and effort.

5. Customizable: The system can be customized to meet specific research requirements, such as the addition of specialized coils or accessories.

Cons of buying a Bruker Magnex 4.7T MRI for laboratory animal research:

1. High cost: The Bruker Magnex 4.7T MRI is a high-end, specialized piece of equipment with a significant price tag. This may not be feasible for all research labs.

2. Requires specialized expertise: Operating and maintaining an MRI requires specific knowledge and training, which may not be readily available in all research labs.

3. Space and infrastructure requirements: The MRI requires a dedicated, controlled environment with specific temperature, humidity, and magnetic field stability conditions.

4. Limited accessibility: Given the high cost and specialized requirements, the MRI may not be accessible to all researchers within an institution, potentially limiting collaboration and data sharing.

Conclusion:

While the Bruker Magnex 4.7T MRI offers superior image resolution, advanced imaging techniques, and a customizable design, its high cost, specialized requirements, and accessibility limitations must be carefully considered. If your research lab can meet these demands and has the necessary resources, the investment in a 4.7T MRI can greatly enhance your research capabilities. However, if your resources are limited, you may consider alternative, less expensive imaging modalities or collaborating with research labs that have access to an MRI.

Details:

Bruker magnex scientific laboratory mri for lab animals model 4. Shipping charges are calculated by zip code and weight.

specifications analyticalinstrumentzo:

  • brand: Bruker
  • mpn: 4.7t/160

Offer analyticalinstrumentzo:

  • min. bid: $48,756.39
  • quantity: 1
  • Sold: 0
  • Started: December 7, 2017, 6:30 am
  • best offer: false
  • bids: 0

Payments analyticalinstrumentzo:

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Returns analyticalinstrumentzo:

  • paid by: Buyer
  • type: Money Back
  • details: Returns will be accepted as long as our tamper resistant labels are intact and nothing is missing from the item.
  • policy: returns accepted
  • time: 14 Days

General analyticalinstrumentzo:

  • business industrial > healthcare life science lab equipment business industrial > analytical instruments lab equipment
  • condition: Used
  • in stock: Yes

Seller analyticalinstrumentzo:

  • zipcode: 08110
  • city: Pennsauken, New Jersey

Ratings:

  1. great product and seller A 12-06-17
  2. 100% perfect transaction. thanks. AAA 12-06-17
  3. Great thank you 12-06-17
  4. Great seller. Great item. Thanks! 12-06-17
  5. The United Kingdoms largest surplus dealer wishes to thank you for your business 12-06-17

Shipping analyticalinstrumentzo:

  • type: Freight
category: business & industrial > healthcare life science lab equipment business industrial > analytical instruments lab equipment, sku: 2184437504716241,
Review#1 great product and seller A ()
Review#2 100% perfect transaction. thanks. AAA ()
Review#3 Great thank you ()
Review#4 Great seller. Great item. Thanks! ()
Review#5 The United Kingdoms largest surplus dealer wishes to thank you for your business ()
Bruker 4.7T-160 Is Similar To:
  • (30.3% similar) Conditioned is new. This covers the cost of the box and packaging materials. For very large items, this fee also covers some of the time and labor necessary to build a custom box or pallet. Here to check. Please for expedited shipping. Anything not in the pictures or is not included. Reference no. ...(February 17th, 2015)

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