利用超声波信号精确评估温度对聚合物人造血液模型特性的影响

IF 1 Q3 MEDICINE, GENERAL & INTERNAL Electronic Journal of General Medicine Pub Date : 2024-01-01 DOI:10.29333/ejgm/13898
Mohannad Adel Sayah, A. Oglat, M. Matjafri, A. Abukonna, Marwan Alshipli
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引用次数: 0

摘要

目的:本研究旨在精确评估温度对高分子材料制成的血液模拟液(BMF)模型的声学和物理特性的影响。材料与方法:丙二醇(PG)和聚乙二醇(PEG)被制作成人造血液模型。在 22 ℃、25 ℃、35 ℃、36 ℃ 和 37 ℃ 的特定温度范围内,使用超声信号测试 BMF 的声学(速度和衰减)和物理性质(密度和粘度)。测试结果在中心频率为 5 MHz 时,脉冲回波可使声学值(速度和衰减)和物理值(密度和粘度)随温度升高而线性降低。速度、衰减、密度和粘度值的差异分别为细微差别(±0.01、±0.001、±0.005 和 ±0.151)。结论当使用 PG 和 PEG 特殊材料的 BMF 模体时,22Co-37Co 范围内的温度测试对声学和物理性质有细微影响(±0.01、±0.001、±0.005 和 ±0.151)。在保证超声成像系统的质量时,可以考虑这种细微差别的影响。
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Precisely evaluation of temperature influence on artificial blood phantom properties made of polymers using ultrasound signals
Purpose: The study aims to evaluate precisely influence of temperature on the acoustical and physical properties of blood mimicking fluid (BMF) phantom made of polymer material. Materials & methods: Propylene glycol (PG) and polyethylene glycol (PEG) were fabricated to create artificial blood phantom. Acoustic (speed and attenuation) and physical properties (density and viscosity) of BMF were tested at specific temperatures of range 22 °C, 25 °C, 35 °C, 36 °C, and 37 °C using ultrasound signals. Results: At center frequency of 5 MHz, pulse-echo allows to acoustical (speed and attenuation) and physical (density and viscosity) values to be linearly decreased with increasing of temperature. The difference in values of speed, attenuation, density, and viscosity was nuance (±0.01, ±0.001, ±0.005, and ±0.151), respectively. Conclusions: Temperature test of range 22Co-37Co have nuance influence (±0.01, ±0.001, ±0.005, and ±0.151) on acoustical and physical properties when BMF phantom of special material of PG and PEG was used. This nuance influence may be taken in account in quality assurance of ultrasound imaging system.
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来源期刊
Electronic Journal of General Medicine
Electronic Journal of General Medicine MEDICINE, GENERAL & INTERNAL-
CiteScore
3.60
自引率
4.80%
发文量
79
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