Color Doppler Ultrasound System VINNO M86
  • Color Doppler Ultrasound System VINNO M86
Color Doppler Ultrasound System VINNO M86

Color Doppler Ultrasound System VINNO M86

Item #: AM-COR-0439-ZP

Model: VINNO M86

Regulatory Status: Approved by Regulations on the Supervision and Administration of Medical Devices.

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Product Details

Application: Medical Use

Based on the RF data platform, through adaptive echo decoding, it has a combination of artificial intelligence judgment and adaptive intelligent matching, and optimizes the transmission frequency to obtain the same echo information as the natural tissue, and obtain the most authentic tissue structure information image.

The application of automated auxiliary functions is currently the focus of attention of the entire society, and it is constantly developing in various medical fields. Fiyno achieved the automatic identification of the location of the lesion by ultrasound through independent research and development of core computing. Provides comprehensive solutions for hospitals and physical examination centers; provides important guarantees for screening and remote diagnosis; automatically analyzes image data and categorizes management and prompts possible risks; automated workflows help doctors improve work efficiency and medical experience.

The application of automated auxiliary functions is currently the focus of attention of the entire society, and it is constantly developing in various medical fields. Fiyno achieved the automatic identification of the location of the lesion by ultrasound through independent research and development of core computing.
Provides comprehensive solutions for hospitals and physical examination centers; provides important guarantees for screening and remote diagnosis; automatically analyzes image data and categorizes management and prompts possible risks

Strain (heart) myocardial tissue tracking
 The speckle tracking technique draws a strain curve to compare any two myocardial strains in the same plane. It can better reflect the strength of the local myocardial deformability during systole, thereby reflecting the characteristic indicators of the myocardial segmental locality in the same cardiac cycle.
Strain rate (SRI) technology quantifies the degree of myocardial deformation and provides information on the onset and peak time of myocardial contraction. Compared with tissue Doppler, the biggest advantage of strain rate imaging technology is that it can better distinguish the active contraction and passive contraction of the ventricular wall. Post-constriction (active contraction exercise PSS after the aorta is closed) is not only a myocardial The sign of poor viability is still out of sync.

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