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Ex vivo assessment and in vivo validation of non-invasive stent monitoring techniques based on microwave spectrometry

机译:基于微波光谱的无创支架监测技术的离体评估和体内验证

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摘要

Some conditions are well known to be directly associated with stent failure, including in-stent re-occlusion and stent fracture. Currently, identification of these high-risk conditions requires invasive and complex procedures. This study aims to assess microwave spectrometry (MWS) for monitoring stents non-invasively. Preliminary ex vivo data are presented to move to in vivo validation. Fifteen mice were assigned to receive subcutaneous stent implantations (n = 10) or sham operations (n = 5). MWS measurements were carried out at 0, 2, 4, 7, 14, 22, and 29 days of follow-up. Additionally, 5 stented animals were summited to micro-CT analyses at the same time points. At 29 days, 3 animals were included into a stent fracture subgroup and underwent a last MWS and micro-CT analysis. MWS was able to identify stent position and in-stent stenosis over time, also discerning significant differences from baseline measures (P < 0.001). Moreover, MWS identified fractured vs. non-fractured stents in vivo. Taken together, MWS emerges as a non-invasive, non-ionizing alternative for stent monitoring. MWS analysis clearly distinguished between in-stent stenosis and stent fracture phenomena.
机译:众所周知,某些情况与支架故障直接相关,包括支架内再阻塞和支架断裂。当前,识别这些高风险状况需要侵入性和复杂的过程。这项研究旨在评估微波光谱法(MWS)用于无创监测支架。提供了初步的离体数据以进行体内验证。十五只小鼠被分配接受皮下支架植入术(n = 10)或假手术(n = 5)。在随访的0、2、4、7、14、22和29天进行MWS测量。另外,在同一时间点对5只带支架的动物进行微CT分析。在第29天,将3只动物纳入支架骨折亚组,并进行了最后的MWS和micro-CT分析。随时间推移,MWS能够识别支架位置和支架内狭窄,并且与基线测量值也具有显着差异(P <0.001)。此外,MWS在体内鉴定出骨折支架与非骨折支架。综上所述,MWS成为用于支架监测的非侵入性,非电离替代品。 MWS分析清楚地区分了支架内狭窄和支架断裂现象。

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