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CIRS US CIRS 050 Small Component Ultrasonic Model

NegotiableUpdate on 02/23
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CIRS US CIRS050 Small Component Ultrasonic Model Product Introduction: Quality Assurance for Small Component Ultrasonic Imaging. Removable water wells can be used for testing curves and internal cavity probes. Reliable use is ensured for over ten years through re inspection and maintenance services. The CIRS050 Small Component Ultrasonic Model in the industry has a compact design and is very suitable for high-resolution imaging systems with limited penetration depth
Product Details
CIRS CIRS 050 Small Component Ultrasonic Model Product Introduction:

The quality assurance of small component ultrasound imaging is that the detachable water well can be used for testing curves and internal cavity probes. Through re inspection and maintenance services, it ensures reliable use for more than ten years, including the CIRS 050 small component ultrasound model in the industry. It has a compact design and is very suitable for high-resolution imaging systems with limited penetration depth. CIRS 050 model is called Zerdine ® The proprietary tissue simulation material composition can accurately simulate the ultrasound features found in human liver. The series of line targets included in CIRS 050 will appear as bright spots or lines on ultrasound images. These targets are made of nylon with a diameter of 0.1 millimeters. Our model also includes two known volumes, a 10mm cystic/hyperechoic mass and an anechoic lesion embedded in a phantom. These qualities are made of Zerdine and have different contrast and attenuation compared to the background material.
Characteristics of CIRS 050 small component ultrasonic phantom model in the United States:
Focal lesion detectability, uniformity, penetration depth, beam profile/focal area/transverse response width, vertical distance measurement, horizontal distance measurement, axial and transverse resolution, high resolution, low contrast, target detectability, high contrast, target detectability, volume measurement accuracy, dead zone evaluation