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Three-Dimensional Printing (3DP) of neonatal head phantom for ultrasound: Thermocouple embedding and simulation of bone

机译:新生儿头部幻影的三维打印(3DP):热电偶嵌入和骨骼模拟

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摘要

A neonatal head phantom, comprising of an ellipsoidal geometry and including a circular aperture for simulating the fontanel was designed and fabricated, in order to allow an objective assessment of thermal rise in tissues during trans-cranial ultrasonic scanning of pre-term neonates. The precise position of a series of thermocouples was determined on the basis of finite-element analysis, which identified crucial target points for the thermal monitoring within the phantom geometry. Three-Dimensional Printing (3DP) was employed for the manufacture of the skull phantom, which was subsequently filled with dedicated brain-mimic material. A novel 3DP material combination was found to be able to mimic the acoustic properties of neonatal skull bone. Similarly, variations of a standard recipe for tissue mimic were examined, until one was found to mimic the brain of an infant. A specific strategy was successfully pursued to embed a thermocouple within the 3DP skull phantom during the manufacturing process. An in-process machine vision system was used to assess the correct position of the deposited thermocouple inside the fabricated skull phantom. An external silicone-made skin-like covering completed the phantom and was manufactured through a Direct Rapid Tooling (DRT) technique.
机译:设计和制造了一种新生儿头模,该头模具有椭圆形的几何形状,并包括一个用于模拟the石的圆形孔,以便能够客观评估早产新生儿的经颅超声扫描过程中组织中的热升高。一系列热电偶的精确位置是在有限元分析的基础上确定的,该分析确定了幻象几何体中进行热监控的关键目标点。三维印刷(3DP)用于制造颅骨幻影,随后填充专用的脑模拟材料。发现一种新颖的3DP材料组合能够模仿新生儿颅骨的声学特性。类似地,检查了用于组织模仿的标准配方的各种变化,直到发现可以模仿婴儿大脑的一种。在制造过程中,成功地采用了一种特定的策略将热电偶嵌入3DP头骨幻像中。使用过程中机器视觉系统来评估所沉积的热电偶在制造的颅骨体模内的正确位置。外部有机硅制成的类似皮肤的覆盖物完成了幻影,并通过直接快速加工(DRT)技术制造。

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