Vevo 3100 - VisualSonics FujiFilm

The Ultimate Preclinical Imaging Experience

The Vevo 3100 is a new and innovative platform created for the future of imaging. It combines ultra high-frequency ultrasound imaging, quantification and education in a convenient easy to use all-in-one platform designed for small animal studies.

Customizable User Interface

The unique, gesture-driven user interface can be personalized by multiple users and is easily controlled with the glide of a finger and without keys or buttons. Its intuitive control panel allows customizable workflow for rapid data acquisition, providing extremely high- throughput when needed. Optimized workflow is always at your fingertips.

Imaging has never been easier!

Vevo HD Image Technology

This revolutionary technology exclusive to the Vevo 3100 reduces speckle noise and artifacts in images while preserving and enhancing critical tissue information. This real-time image processing algorithm allows you to visualize your high-resolution data like never before. Vessel walls appear sharp; pre-palpable lesions are clearly delineated; rib shadows are reduced. The Vevo 3100 Imaging platform also combines real-time learning with onboard step-by-step imaging tutorials and guides.

Visualize your data like never before.

With smart engineering and a minimalist design, the Vevo 3100 has a reduced footprint and weight by 40 percent that encourages portability and navigation of this capital instrument in high traffic and unique research environments to conduct groundbreaking science. 

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Vevo 3100 Imaging Platform & Roadmap Learn at home with FUJIFILM VisualSonics - 3D ultrasound imaging Vevo 3100 4D imaging VisualSonics FujiFilm live webinar - Wednesday, May 25, 2016, 7 pm CEST Capture the entire heart in motion! Use special pricing period and uptrade to Vevo 3100 Vevo Travel Awards Ultrasound for Mice? YES! VisualSonics iPACS In-vivo longitudinal study of rodent skeletal muscle atrophy using ultrasonography Microbubble-assisted ultrasound-induced transient phosphatidylserine translocation Monitoring of blood vessel density may facilitate early diagnosis of lymph node metastasis 4D cardiac murine ultrasound: comparison to traditional techniques and MRI Pulmonary flow as an method for determining cardiac output in mice after myocardial infarction Vevo Voice Photoacoustic molecular imaging of breast cancer using antibody-dye contrast agents In vivo biodistribution of contrast agents - whole body photoacoustic imaging Exploration of melanoma metastases in mice brains using endogenous contrast photoacoustic imaging Measuring absolute blood perfusion in mice using dynamic contrast-enhanced ultrasound This tiny robot walks, crawls, jumps and swims. But it is not alive. Creating a bold new future in ultrasound and photoacoustics Photoacoustic Imaging of placental oxygenation B fibers are the best predictors of cardiac activity during Vagus nerve stimulation Contrast-enhanced ultrasound imaging Understanding subtle cardiac changes Comprehending diseased cardiac mechanics using speckle tracking echocardiography Assessment of myocardial dynamics using photoacoustics & cardiac elastography Assessment of angiotensin II-induced mouse models of abdominal aortic aneurysm Take advantage of 4D mode Learning hub: Online video training for Vevo users VisualSonics AutoLV AutoLV analysis software
Miroslav Vecheta

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