Forsberg F, Roy R, Merton D A, Rawool N M, Liu J B, Huang M, Kessler D, Goldberg B B
Department of Radiology, Thomas Jefferson University, Philadelphia, PA, USA.
Ultrasound Med Biol. 1998 Oct;24(8):1143-50. doi: 10.1016/s0301-5629(98)00062-3.
Hypobaric activation is a new injection technique for use with the contrast agent EchoGen and, in this study, the agent's ability to produce parenchymal enhancement in vivo, with and without prior hypobaric activation, was investigated. Injections, ranging in dose from 0.05 to 0.5 mL/kg, were administrated through a peripheral vein to eight woodchucks with multiple hepatomas. At the 0.10 mL/kg dose level, seven of eight injections following hypobaric activation (88%) resulted in definite parenchymal enhancement. Conversely, dosages of 0.10 mL/kg without prior hypobaric activation produced no grey-scale changes. Only at the 0.4 and 0.5 mL/kg dosage level did the conventional administration technique obtain similar results (4 of 5 injections increased the echogenicity for a 0.4 mL/kg dose). These differences were statistically significant (p = 0.031). In vitro experiments were conducted to establish the physical mechanisms behind hypobaric activation. Relative measurements of contrast microbubble sizes were performed with a phase Doppler particle analyzer after hypobaric and after conventional (bolus) activation. Hypobaric activation produced approximately 20 times more microbubbles per unit volume than the conventional method. In conclusion, this investigation has demonstrated the benefits of prior hypobaric activation when performing in vivo contrast studies with EchoGen and determined the physical mechanisms behind this new injection technique. Hypobaric activation of EchoGen increases contrast enhancement and reduces dose size.
低压激活是一种与造影剂EchoGen配合使用的新型注射技术。在本研究中,研究了该造影剂在有或无预先低压激活的情况下在体内产生实质增强的能力。通过外周静脉向八只患有多发性肝癌的土拨鼠注射剂量范围为0.05至0.5 mL/kg的造影剂。在0.10 mL/kg剂量水平下,八次低压激活后的注射中有七次(88%)导致了明确的实质增强。相反,未经预先低压激活的0.10 mL/kg剂量未产生灰度变化。只有在0.4和0.5 mL/kg剂量水平下,传统给药技术才获得了类似的结果(0.4 mL/kg剂量的五次注射中有四次增加了回声性)。这些差异具有统计学意义(p = 0.031)。进行了体外实验以确定低压激活背后的物理机制。在低压激活和传统(团注)激活后,使用相多普勒粒子分析仪对造影微泡大小进行了相对测量。低压激活产生的每单位体积微泡数量比传统方法多约20倍。总之,本研究证明了在使用EchoGen进行体内造影研究时预先低压激活的益处,并确定了这种新型注射技术背后的物理机制。EchoGen的低压激活增加了造影增强并减小了剂量大小。