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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >A temperature sensor implant for active implantable medical devices for in vivo subacute heating tests under MRI
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A temperature sensor implant for active implantable medical devices for in vivo subacute heating tests under MRI

机译:用于在MRI下的体内亚急性加热试验中的活性植入医疗装置的温度传感器植入物

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Purpose To introduce a temperature sensor implant (TSI) that mimics an active implantable medical device (AIMD) for animal testing of MRI heating. Computer simulations and phantom experiments poorly represent potential temperature increases. Animal experiments could be a better model, but heating experiments conducted immediately after the surgery suffer from alterations of the thermoregulatory and tissue properties during acute testing conditions. Therefore, the aim of this study was to introduce a temperature sensor implant that mimics an AIMD and capable of measuring the electrode temperature after implantation of the device without any further intervention at any time after the surgery in an animal model. Methods A battery‐operated TSI, which resembled an AIMD, was used to measure the lead temperature and impedance and the case temperature. The measured values were transmitted to an external computer via a low‐power Bluetooth communication protocol. In addition to validation experiments on the phantom, a sheep experiment was conducted to test the feasibility of the system in subacute conditions. Results The measurements had a maximum of 0.5°C difference compared to fiber‐optic temperature probes. In vivo animal experiments demonstrated feasibility of the system. Conclusion An active implant, which can measure its own temperature, was proposed to investigate implant heating during MRI examinations. Magn Reson Med 79:2824–2832, 2018. ? 2017 International Society for Magnetic Resonance in Medicine.
机译:目的,引入温度传感器植入物(TSI),其模仿活性可植入的医疗装置(AIMD),用于MRI加热的动物测试。计算机仿真和幻影实验代表潜在的温度差。动物实验可以是更好的模型,但在急性试验条件下,手术患有热调节性和组织特性的改变后立即进行的加热实验。因此,本研究的目的是引入温度传感器植入物,该温度传感器植入物模仿瞄准,并且能够在动物模型中手术后的任何时间随时介入装置后测量电极温度。方法采用类似于AIMD的电池供电的TSI测量铅温度和阻抗以及壳体温度。通过低功耗蓝牙通信协议将测量值发送到外部计算机。除了对幻影的验证实验外,还进行了一种羊实验,以测试系统在亚急性条件下的可行性。结果与光纤温度探针相比,测量值最高为0.5°C差异。在体内动物实验中表现出系统的可行性。结论旨在测量其自身温度的活性植入物,以研究MRI检查期间的植入物加热。 Magn Reson Med 79:2824-2832,2018。? 2017年医学磁共振的国际社会。

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