Color Doppler Ultrasound System XH70A
  • Color Doppler Ultrasound System XH70A
Color Doppler Ultrasound System XH70A

Color Doppler Ultrasound System XH70A

Item #: AM-COR-0451-ZP

Model: XH70A

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

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Product Details

Application: Medical Use

I. High-tech platform

The XH70A transmits ultrasonic waves from a new single-crystal S-Vue ™ probe, enters the data signal through the needle-free probe interface, and then passes through the S-Vision ™ beamformer, fine imaging technology, HDVI HD volumetric imaging technology, integrated multi-unit processing system, The most advanced signal processing platform in the industry has been built. The rich and pure image information obtained is finally presented to the doctor using the most professional LED display. The real, three-dimensional, and life-like images make doctors more confident in diagnosis.

Rich image optimization technology

Harmonic tissue harmonic imaging

Due to the nonlinear effects of harmonics, the energy of harmonics is significantly enhanced in a certain depth range, which helps to improve the sound-to-noise ratio; because the frequency of harmonics is higher than the fundamental wave, it is more sensitive to low-speed blood flow detection. Harmonic imaging Enhanced display of blood in the heart cavity and blood vessels.

S-Harmonic Samsung Harmonic Imaging Technology

Samsung Harmonic Imaging Technology also uses Pulse Inversion Harmonic, Coded Harmonic Imaging

Pulse Inversion Harmonic is a technology that emits a normal phase pulse while transmitting a reverse phase pulse signal with the same amplitude and 180 degrees out of phase, and then adding the two to obtain a harmonic image. As a result, the addition of a pair of positive and negative pulse signals becomes zero, but the in-phase harmonic signals add to each other, so the signal-to-noise ratio is significantly improved, and the image quality is improved.

Coded Harmonics Imaging digitally encodes the ultrasound beam on the basis of real-time ultrasound imaging, which can obtain high-frequency harmonic signals, make the image clearer, and have higher contrast. Sidelobe artifacts generated during fundamental wave imaging improve image clarity. Coded harmonic imaging can improve the quality of two-dimensional ultrasound images, especially the display of the contents of the fluid cavity, thereby providing more ultrasound diagnostic information.

S-FLOW Fine Blood Flow Imaging

Detection of fine blood vessels and low-speed blood flow signals through innovative ultra-high-sensitivity color Doppler. This advanced Doppler technology can make blood flow lifelike and more realistic; umbilical arteries, thyroid adenomas, and renal blood vessels have obvious effects. ; And provide the most accurate diagnosis without being affected by the patient's physiology.

Third, advanced probe technology

The internal structure is very uniform, which can make the direction of material polarization highly consistent, greatly improving the efficiency of acoustic-electric conversion, minimizing the loss of acoustic energy, bringing richer tissue information and better image quality.

Fourth, a full range of functional software packages

It breaks through the field of view of the linear array probe, expands convexity, and increases the scanning angle. Increasing the display area in the middle and far field areas makes it easier to find lesions, which is especially beneficial to the inspection of breast, thyroid, and skeletal muscle.

It can continuously obtain a series of cut planes, automatically and quickly and seamlessly stitch into the entire image, which is used to observe larger tissues or lesions.

1) Support angular scanning

2) Can choose segment image comparison analysis or independent analysis

3) Can be arbitrarily rotated, enlarged and measured.

By measuring the thickness of the vascular intima, it can effectively evaluate, analyze and predict the risk of cardiovascular and cerebrovascular diseases.

1) Freely choose between automatic and manual methods

2) The near and far field measurement results are automatically displayed at the same time, and the analysis report is detailed

3) Custom edit analysis based on population, age, gender, region, etc.

Tissues are deformed due to external pressure: normal tissues> malignant tissues, which can show that the normal and malignant tissues have different degrees of deformation and are displayed in different colors using coding techniques; the softness and hardness of the tissues are compared for comparison.

ElastoScan superficial elastography

Selecting a region of interest once can quickly and easily check, and the operator can obtain a value between the target strain value and the reference strain value.

E-Thyroid ™
E-Thyroid ™ is a technique for acquiring thyroid elastography without external compression, using CCA pulsation and quantitative indicators to determine the likelihood of a malignant tumor.

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