美国CIRS 073胸部体模,CIRS 073胸模

  • 发布时间:2018-12-12 09:27:20,加入时间:2016年04月27日(距今3318天)
  • 地址:中国»广东»深圳:深圳市福田区八卦岭工业区615栋409
  • 公司:深圳市展业达鸿科技有限公司, 用户等级:普通会员 已认证
  • 联系:朱小姐,手机:13530850680 电话:0755-22913855 QQ:8329063

美国CIRS 008M躯干体模产品简介:

美国CIRS 008M躯干体模主要用于放射疗法的测试体模 / MRI躯干体模

 美国CIRS 073胸部体模,CIRS 073胸部模体用于超声检查,MRI

The Multi-Modality Breast Biopsy and Sonographic Trainer is designed to train users in various aspects of breast imaging and image-guided interventional procedures.  The phantom accurately mimics the heterogeneous appearance of breast tissue under ultrasound, mammography and MRI, and has cystic and dense lesions embedded within the breast background. Half of the dense lesions are spherical and have a micron microcalcification embedded within it, while the other half have a spiculated shape.  In addition to helping users identify different types of masses in the complex structure of the breast, the calcifications are useful markers for image registration between modalities.

The phantom includes a flexible Z-Skin™ membrane that simulates the look and feel of skin during scanning and biopsy.  The skin material closes up on itself after puncture with a needle, providing good protection from dessication even after multiple training sessions.  

The material inside the phantom is formulated to minimize the effect of needle tracks while practicing biopsy techniques on the embedded masses.  This material also has remarkable self-healing properties, and tracks will usually disappear within minutes (sometime seconds) of needle removal.  Each cystic mass may be aspirated once and each dense mass may be biopsied multiple times.

美国CIRS 073胸部体模,CIRS 073胸部模体

美国CIRS 073胸部体模,CIRS 073胸部模体特点:

  Compatible with X-ray, Ultrasound, and MRI

  Heterogeneous tissue to simulate imaging of human breast

  Encased in flexible membrane for increased durability

  Self-healing material for extended phantom use

  Cystic, dense, high stiffness and attenuative masses for biopsy training

  Background speed of sound similar to fatty breast tissue (≈1475 m/s)  makes it suitable for demonstrating tissue aberration correction (TAC) algorithms

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