Ultrasound imaging test phantom S-MM-2.3
for CT scanfor MRIprostate

Ultrasound imaging test phantom - S-MM-2.3 - Yezitronix - for CT scan / for MRI / prostate
Ultrasound imaging test phantom - S-MM-2.3 - Yezitronix - for CT scan / for MRI / prostate
Ultrasound imaging test phantom - S-MM-2.3 - Yezitronix - for CT scan / for MRI / prostate - image - 2
Ultrasound imaging test phantom - S-MM-2.3 - Yezitronix - for CT scan / for MRI / prostate - image - 3
Ultrasound imaging test phantom - S-MM-2.3 - Yezitronix - for CT scan / for MRI / prostate - image - 4
Ultrasound imaging test phantom - S-MM-2.3 - Yezitronix - for CT scan / for MRI / prostate - image - 5
Ultrasound imaging test phantom - S-MM-2.3 - Yezitronix - for CT scan / for MRI / prostate - image - 6
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Characteristics

Type of calibration
for ultrasound imaging, for CT scan, for MRI
Area of the body
prostate

Description

Multimodality Prostate Phantom Most Accurate Prostate Phantom & Surrounding Tissues Mimicking Device for Ultrasound Applications Yezitronix' Multi Modality Prostate Phantom Model S-MM-2.3 for Ultrasound, CT or MRI is a multiple usage phantom developed for training medical procedures such as ultrasound guided surgery, needle biopsy and radiation seed implantation. Its ingenious and versatile design makes S-MM-2.3 model an incredible useful tool for training and simulation of different ultrasound rectal probes and surgical elements involves in prostate medical procedures. The prostate phantom construct mimics the exact 3D shape size of: 40cc prostate Urethra Seminal vesicle Ejaculatory duct Rectal wall Partial bladder Fat muscle tissues Perineal tissue Numerous lesions located inside the prostate. All organs & tissues are correctly adjusted to mimic exact ultrasound echogenicity as seen by surgeon during OR Procedure. Suitable for: OEMs. medical devices simulation, robotic system calibration, hospitals, clinics, med schools training and demonstrations. All phantom tissues' mechanical properties are approximated to human tissues. All prostate phantom layers mimic the tissue behaviour (dynamics) when pierced. When for example a needle is piercing the Multi-Layer Prostate Phantom construct, it will generate a "Haptic Feedback (tactile)" to the user, simulating the real human tissue during biopsy or Brachytherapy procedure. Multi-layer material : each tissue or organ is independent and has its own characteristics defined by a real 3D shape, echogenicity level and mechanical properties.
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