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Twenty-Four-Hour Real-Time Continuous Monitoring of Cerebral Edema in Rabbits Based on a Noninvasive and Noncontact System of Magnetic Induction

机译:基于无创,非接触式磁感应系统的二十四小时实时连续监测兔脑水肿

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Cerebral edema is a common disease, secondary to craniocerebral injury, and real-time continuous monitoring of cerebral edema is crucial for treating patients after traumatic brain injury. This work established a noninvasive and noncontact system by monitoring the magnetic induction phase shift (MIPS) which is associated with brain tissue conductivity. Sixteen rabbits (experimental group n = 10, control group, n = 6) were used to perform a 24 h MIPS and intracranial pressure (ICP) simultaneously monitored experimental study. For the experimental group, after the establishment of epidural freeze-induced cerebral edema models, the MIPS presented a downward trend within 24 h, with a change magnitude of ?13.1121 ± 2.3953°; the ICP presented an upward trend within 24 h, with a change magnitude of 12–41 mmHg. The ICP was negatively correlated with the MIPS. In the control group, the MIPS change amplitude was ?0.87795 ± 1.5146 without obvious changes; the ICP fluctuated only slightly at the initial value of 12 mmHg. MIPS had a more sensitive performance than ICP in the early stage of cerebral edema. These results showed that this system is basically capable of monitoring gradual increases in the cerebral edema solution volume. To some extent, the MIPS has the potential to reflect the ICP changes.
机译:脑水肿是颅脑损伤继发的常见疾病,对脑水肿进行实时连续监测对于治疗脑外伤后的患者至关重要。这项工作通过监测与脑组织电导率相关的磁感应相移(MIPS),建立了一个非侵入性和非接触式系统。 16只兔子(实验组n = 10,对照组,n = 6)用于进行24 h MIPS和颅内压(ICP)同时监测的实验研究。对于实验组,硬膜外冷冻诱发的脑水肿模型建立后,MIPS在24小时内呈下降趋势,变化幅度为?13.1121±2.3953°。 ICP在24小时内呈上升趋势,变化幅度为12-41 mmHg。 ICP与MIPS呈负相关。对照组MIPS变化幅度为?0.87795±1.5146,无明显变化。 ICP在初始值为12 mmHg时仅波动很小。在脑水肿的早期阶段,MIPS比ICP具有更敏感的表现。这些结果表明,该系统基本上能够监测脑水肿溶液量的逐渐增加。在某种程度上,MIPS有潜力反映ICP的变化。

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