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对比超声心动图:超声仪器设置、混合条件及加压对体外Albunex溶液像素强度和微球大小的影响

Contrast echocardiography: influence of ultrasonic machine settings, mixing conditions, and pressurization on pixel intensity and microsphere size of Albunex solutions in vitro.

作者信息

Ota T, Hillman N D, Craig D, Kisslo J, Smith P K

机构信息

Department of Cardiology, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

J Am Soc Echocardiogr. 1997 Jan-Feb;10(1):31-40. doi: 10.1016/s0894-7317(97)80030-2.

DOI:10.1016/s0894-7317(97)80030-2
PMID:9046491
Abstract

To use Albunex as a blood-flow tracer, the stability and consistency of microspheres under mixing conditions must be known. This study examined the effects of mixing conditions and machine settings on the size and echogenicity of Albunex solutions in vitro. Acoustic power, log compression, time-gain compensation, and transducer frequency were varied as Albunex solutions were imaged after mixing with magnetic stirring and pressurized. Higher acoustic power and lower transducer frequency decreased mean pixel intensity of Albunex solution images over time. Intensity, size, and number of Albunex microspheres were not significantly different between stirring speeds. The echogenicity of the Albunex solutions decreased with pressurization, and the critical pressure necessary to reduce the intensity to half its initial value increased with the logarithm of concentration (r = 0.91; p < 0.001). The microsphere size decreased with pressurization and remained smaller after pressure release (3.66 +/- 2.13 versus 1.47 +/- 0.95 microns; p < 0.01). These data indicate that acoustic power and transducer frequency may affect the physical properties of Albunex microspheres, decreasing mean videointensity. Pressure sensitivity of Albunex caused the decrease of videointensity and microsphere size.

摘要

为了将Albunex用作血流示踪剂,必须了解微球在混合条件下的稳定性和一致性。本研究在体外考察了混合条件和机器设置对Albunex溶液大小和回声性的影响。在对Albunex溶液进行磁力搅拌和加压混合后成像时,改变了声功率、对数压缩、时间增益补偿和换能器频率。随着时间的推移,较高的声功率和较低的换能器频率降低了Albunex溶液图像的平均像素强度。不同搅拌速度下Albunex微球的强度、大小和数量无显著差异。Albunex溶液的回声性随加压而降低,将强度降低至初始值一半所需的临界压力随浓度的对数增加(r = 0.91;p < 0.001)。微球大小随加压而减小,压力释放后仍较小(3.66 +/- 2.13对1.47 +/- 0.95微米;p < 0.01)。这些数据表明,声功率和换能器频率可能会影响Albunex微球的物理性质,降低平均视频强度。Albunex的压力敏感性导致视频强度和微球大小降低。

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