ARIETTA 650 DeepInsight
Expertly designed to optimize productivity.
The model which supports DeepInsight technology to provide high quality images on its compact and maneuverable body.
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Streamline Your Practice
We believe that optimizing productivity can lead to improved outcomes, and that reproducible, precise imaging and a versatile system can make your ultrasound examinations more productive.
ARIETTA 65 makes such productive exams more realizable. Under the concepts of Smooth Workflow, Superb Imaging, and Simple to use Applications, it helps you optimize productivity and streamline your practice.
Smooth Workflow
360° Articulating Monitor Arm
Optimize viewing angle and distance by repositioning the monitor to facilitate examinations in a variety of clinical settings.
21.5 inch Widescreen Monitor
With a high contrast ratio and wide viewing angle, the LCD monitor gives a rich representation of the displayed image.
Rotating Operator Console
Swivel the console for more comfortable operation, so that the switch layout matches the angle of your arm.
Adjustable Panel Height
Raise or lower the console to ease physical impact and scan in the style that best suits your workflow.
Battery
Quickly and easily move the ARIETTA 65 to accommodate bedside examinations, emergency care, or scenarios that necessitate changing rooms. No need to power down the machine before moving it – just unplug the ARIETTA 65 and go. (Possible to scan in battery mode)
SuperB Imaging
Migration of our top-performing imaging technologies for enhanced diagnostic confidence and precision
PURE SYMPHONIC ARCHITECTURE
Inherited “Pure Symphonic Architecture”, the technology fostered in the ARIETTA brand to produce high quality “sound” without compromise. The combination of transducer/frontend, beamformer, backend, and monitor. ARIETTA 65 combines technologies to provide high contrast and high penetration images.
Carving Imaging
Images with “Clearer Visibility” are produced by our new image processing technology that enhances tissue structure visibility. Realizes stable imaging with less patient dependency.
ANR(Acoustic Noise Reduction)
Analyzes the received signal of each ※ ASR: Assist Strain Ratio channel in real-time, and suppresses signals that disturb the imaging.
Compound Imaging
Enhances visualization of tissue boundaries by transmitting beams in multiple directions, thus reducing artifacts experienced when using a single beam path.
Versatility of transducers
A comprehensive range of transducers supports diverse clinical applications.
Application
RADIOLOGY
Real-time Tissue Elastography (RTE)*1
Assesses tissue strain in real time and displays the measured differences in tissue stiffness as a color map. Its application has been validated in a wide variety of clinical fields: for the breast, thyroid gland and urinary structures. Using the abdominal convex transducer, it can also provide an estimation of liver fibrosis staging in patients with hepatitis C (LF Index)*1.
HI Strain
HI Strain is an algorithm used to display an Elastography image more consistently than before. It is possible to display Elastography images with high continuity while maintaining temporal resolution and spatial resolution.
Auto Frame Selection (AFS) / Assist Strain Ratio (ASR)
Auto Frame Selection (AFS) picks out the appropriate frame for measurement in RTE. Assist Strain Ratio (ASR) automatically locates the measurement ROI in Fat Lesion Ratio (FLR)*2 measurement. Measurements can be performed more quickly and easily.
*2 FLR = Fat/Lesion Ratio of lesion to subcutaneous fat strain
Needle Emphasis (NE)
Automatically adjusts the deflection angle of beams and images to enhance needle visibility and assist in safe and accurate punctures.
Marking Assist
Lines displayed in B-mode imaging correspond to markers on the transducer head.
Contrast Harmonic Imaging (CHI)*1
Widely-used imaging technique that provides homogeneous enhancement throughout the field of view to enhance diagnostic capability.
Transrectal Transducer
It is possible to display short and long axis images of the prostate side by side in real time. A wide range observation can be achieved with a viewing angle of 180 degrees.
SURGERY
Intraoperative Transducers
Versatile transducers are prepared by application: a convex transducer held between users’ fingers, a laparoscopic transducer held with forceps.
Contrast Harmonic Imaging (CHI)*1
Some transducers support intraoperative contrast-enhanced ultrasound, which is useful to detect a lesion and secure a resection margin in surgical operations.
WOMEN’S HEALTH
3D/4D *1
3D/4D images play an active role as a communication tool to make the mother feel close to the baby. The 4Dshading technology gives a more realistic appearance to the rendered surface of the fetus, and delineates clear 3D/4D images.
Auto EFW *1
By analyzing the characteristics of the target and providing automatic setting of the measurement point, Auto EFW (Estimated Fetal Weight) facilitates parameter measurements for fetal growth evaluation.
CARDIOVASCULAR
Cardiac Functions
Equipped with automated tools for faster, smoother cardiovascular examination, built on data acquired by our premium systems.
Automated ED/ES Detection
Automatically displays ED and ES frames in split screen view.
Automated Sample Gate Alignment
Automatically sets the cursor position of the sample volume gate.
Automated Measurements*1
Automatically measures values used in calculations to assess cardiac function, such as EF.
Dual Gate Doppler
Makes it possible to observe Doppler waveforms from two locations simultaneously. This enables LV diastolic performance indicators, such as the E/e’ Ratio, to be measured during the same heartbeat.
Global Longitudinal Strain (GLS)
Recent interest has been shown in the GLS, the ratio of change in LV endocardium length, which can be altered significantly in patients with heart failure even when a normal Ejection Fraction (EF) is maintained.
2D Tissue Tracking (2DTT) *1
Speckle tracking technique that quantifies and analyzes movement of the entire left ventricle or local movement of the myocardium.
Auto IMT *1
Automatically measures the Intima-Media Thickness (IMT) following the placement of an ROI on the long axis view of the carotid artery.