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Cerebrospinal fluid-compensated medication reservoir for an implantable infusion device: Concept and preliminary evaluation

机译:用于植入式输液设备的脑脊髓液补偿药物储库:概念和初步评估

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摘要

Conventional gas-compensated medication reservoirs used for implantable infusion devices require perfect sealing of the gas chamber, because the gases used are generally toxic. In addition, the physical properties of selected gas critically affect the performance of infusion devices and hydraulic performance of the infusion device can be affected by the amount of medication discharged. In this study, we suggest a new medication reservoir that adopts a cerebrospinal fluid (CSF)-compensating mechanism, such that when a medication is released from the reservoir by a mechanical actuator, native CSF enters into the reservoir to minimize the build-up of pressure drop. We evaluated in vitro performance and conducted in vivo feasibility tests by using an intrathecal infusion device developed at the Korean National Cancer Center. Experimental results showed that the proposed CSF-compensated infusion pump was essentially less affected by ambient temperature or pressure conditions compared to the gas-compensated infusion pump. Moreover, it showed moderate implant feasibility and operating stability during an animal experiment performed for 12 days. We believe that the proposed volumecompensating mechanism could be applied in various medical fields that use implantable devices.
机译:用于植入式输液装置的传统的气体补偿药物储存器需要完全密封气室,因为所使用的气体通常是有毒的。另外,所选气体的物理性质严重影响输液装置的性能,并且输液装置的液压性能可能会受到排出的药物量的影响。在这项研究中,我们建议采用脑脊液(CSF)补偿机制的新型药物储库,这样,当通过机械执行器从储库中释放药物时,天然CSF进入储库以最大程度地减少脑脊液的积聚。压力下降。我们通过使用韩国国家癌症中心开发的鞘内输注设备评估了体外性能并进行了体内可行性测试。实验结果表明,与气体补偿输液泵相比,建议的CSF补偿输液泵受环境温度或压力条件的影响较小。此外,在进行为期12天的动物实验期间,它显示出中等的植入可行性和操作稳定性。我们相信,所提出的体积补偿机制可以应用于使用可植入装置的各种医学领域。

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