Awarded contract

A system for non-invasive preclinical ultrasound imaging

Details

Value
EUR 368,500
Topic
Laboratory, optical and precision equipments (excl. glasses)
Published
11 October 2022

Tender description

For the purchase of a system for non-invasive preclinical ultrasound imaging. A single system is to be purchased that will permit visualisation of all of the following preclinical models: • Mouse embryos and zebrafish at resolutions down to 30 µm using an ultra-high frequency transducer (up to 71 MHz). • Mouse hearts and the vasculature in genetic and drug-induced models of disease at 30 µm resolution using a transducer of 30-40 MHz with a frame rate capable of imaging heart rates of up to 750 beats per minute. ECG-gating is also required for 3D reconstruction of the heart. • Rat hearts and the vasculature in genetic and drug-induced models of disease (as detailed above for mice) using a transducer of ~29 MHz. • Mouse or rat brains (requiring a lower frequency transducer of ~22 MHz). Additional capability is required for upgrading for imaging of pig hearts and the vasculature (requires low frequency transducers of 4-10 MHz) and for photoacoustic imaging. The system must have the following provision: • Integrated physiology traces for small animals, including display of ECG, respiration waveform, and body temperature. • Capability for capturing B-mode and M-mode images, and for analysis of the images to provide data on cardiac and vascular function and dimensions in the above preclinical models (including strain and speckle-tracking). • Capability for Power Doppler, Pulsed-Wave Doppler, Pulsed-Wave tissue Doppler and colour Doppler for assessment of blood flow. • Capability for contrast imaging. The University has published this VEAT notice and intends to award a contract to FUJIFILM Visualsonics Inc. following the expiry of 10 full calendar days after the expiry of this notice. Lot 1: For the purchase of a system for non-invasive preclinical ultrasound imaging. A single system is to be purchased that will permit visualisation of all of the following preclinical models: • Mouse embryos and zebrafish at resolutions down to 30 µm using an ultra-high frequency transducer (up to 71 MHz). • Mouse hearts and the vasculature in genetic and drug-induced models of disease at 30 µm resolution using a transducer of 30-40 MHz with a frame rate capable of imaging heart rates of up to 750 beats per minute. ECG-gating is also required for 3D reconstruction of the heart. • Rat hearts and the vasculature in genetic and drug-induced models of disease (as detailed above for mice) using a transducer of ~29 MHz. • Mouse or rat brains (requiring a lower frequency transducer of ~22 MHz). Additional capability is required for upgrading for imaging of pig hearts and the vasculature (requires low frequency transducers of 4-10 MHz) and for photoacoustic imaging. The system must have the following provision: • Integrated physiology traces for small animals, including display of ECG, respiration waveform, and body temperature. • Capability for capturing B-mode and M-mode images, and for analysis of the images to provide data on cardiac and vascular function and dimensions in the above preclinical models (including strain and speckle-tracking). • Capability for Power Doppler, Pulsed-Wave Doppler, Pulsed-Wave tissue Doppler and colour Doppler for assessment of blood flow. • Capability for contrast imaging. The University has published this VEAT notice and intends to award a contract to FUJIFILM Visualsonics Inc. following the expiry of 10 full calendar days after the expiry of this notice.

Timeline

  1. Completed: Award published11 October 2022
    Current notice
  2. Completed: Award date11 October 2022

About the buyer

University of Reading is a public sector buyer in United Kingdom publishing tenders and awards on Stotles. Explore their procurement activity and find more opportunities like this one.

Relevant CPV codes

  • 38000000 · Laboratory, optical and precision equipments (excl. glasses)
  • 38400000 · Instruments for checking physical characteristics

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