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Bioimpedance measurement device for chronic wound healing monitoring

机译:用于慢性伤口愈合监测的生物阻抗测量装置

摘要

A chronic wound is loosely defined as a wound that fails to heal within a time period of a few months. Elderly bedridden people and people suffering from certain underlying medical conditions, such as vascular diseases and type 2 diabetes, are particularly prone to develop chronic wound. The group of people exposed is increasing in numbers. Treatment of a chronic ulceration is very costly and the monitoring of healing is often based on visual inspection by medical professionals. There exists a need for objective and non-intrusive method for assessment of chronic wound healing.In this Master of Science Thesis a prototype of a bioimpedance device for monitoring of chronic wound healing was designed, constructed and tested. The device works from an indicator basis and measures the changes in the tissue impedance. The direction of the change correlates with the change in the volume and in the conductivity of the tissue, consequently in the swelling around the inflamed wound. Decrease in extracellular fluid can be detected as increasing low frequency impedance. The device measures impedance at 5kHz and 100kHz frequency by using triangular excitation. The emphasis of the design was on the simplicity of the device to provide a possibility for downscaling in the future. Ultimately the device would be integrated on a patch type platform together with a drug delivery system.The test measurements with the bioimpedance device were fairly extensive. The measurements were performed with a purely resistive load and a 2R-1C circuit. For 5kHz excitation the results for both load circuits did show only a slight mean error with a fairly small standard deviation. For 100kHz excitation the results did show larger mean error with a small standard deviation. Small standard deviation points to a systematic error. However, the 100kHz results are somewhat controversial since the difference between mean error for the purely resistive load and for the 2R-1C is fairly large. Restricted in vivo measurements were also performed. The in-vivo measurements did show large error compared to the reference measurements. Due to the limited nature of the measurements solid conclusions from these measurements cannot be made. All in all, the test measurements indicate the potential of simplified design. The accuracy of the device can be increased remarkably with certain improvements made to the design.
机译:慢性伤口被粗略地定义为在几个月内无法愈合的伤口。卧床不起的老人和患有某些基础医学状况(例如血管疾病和2型糖尿病)的人特别容易患上慢性伤口。暴露人群的数量正在增加。慢性溃疡的治疗非常昂贵,并且通常基于医学专业人员的目视检查来监测愈合情况。需要一种客观且非侵入性的方法来评估慢性伤口愈合。在本科学硕士论文中,设计,构建和测试了用于监测慢性伤口愈合的生物阻抗装置的原型。该设备以指示器为基础进行工作,并测量组织阻抗的变化。变化的方向与组织的体积和电导率的变化相关,因此与发炎的伤口周围的肿胀有关。随着低频阻抗的增加,可以检测到细胞外液的减少。该器件通过使用三角激励来测量5kHz和100kHz频率下的阻抗。设计的重点是简化设备,以提供将来缩小尺寸的可能性。最终,该设备将与药物输送系统一起集成在贴片式平台上。使用生物阻抗设备进行的测试测量相当广泛。使用纯电阻负载和2R-1C电路进行测量。对于5kHz激励,两个负载电路的结果均仅显示出很小的平均误差,而标准偏差却很小。对于100kHz激励,结果的确显示出较大的平均误差和较小的标准偏差。小的标准偏差表示系统误差。但是,由于纯电阻负载和2R-1C的平均误差之间的差异很大,因此100kHz的结果有些争议。还进行了限制性的体内测量。与参考测量相比,体内测量确实显示出较大的误差。由于测量的有限性,无法从这些测量得出可靠的结论。总而言之,测试测量表明了简化设计的潜力。通过对设计进行某些改进,可以显着提高设备的精度。

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    Kekonen Atte;

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  • 年度 2013
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