首页> 外文会议>Optical Fibers and Sensors for Medical Diagnostics and Treatment Applications VI; Progress in Biomedical Optics and Imaging; vol.7 no.6 >TEMPERATURE AND PRESSURE FIBER-OPTIC SENSORS APPLIED TO MINIMALLY INVASIVE DIAGNOSTICS AND THERAPIES
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TEMPERATURE AND PRESSURE FIBER-OPTIC SENSORS APPLIED TO MINIMALLY INVASIVE DIAGNOSTICS AND THERAPIES

机译:用于微创诊断和治疗的温度和压力光纤传感器

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摘要

We present how fiber-optic temperature or pressure sensors could be applied to minimally invasive diagnostics and therapies. For instance a miniature pressure sensor based on micro-optical mechanical systems (MOMS) could solve most of the problems associated with fluidic pressure transduction presently used for triggering purposes. These include intra-aortic balloon pumping (IABP) therapy and other applications requiring detection of fast and/or subtle fluid pressure variations such as for intracranial pressure monitoring or for urology diagnostics. As well, miniature temperature sensors permit minimally invasive direct temperature measurement in diagnostics or therapies requiring energy transfer to living tissues. The extremely small size of fiber-optic sensors that we have developed allows quick and precise in situ measurements exactly where the physical parameters need to be known. Furthermore, their intrinsic immunity to electromagnetic interference (EMI) allows for the safe use of EMI-generating therapeutic or diagnostic equipments without compromising the signal quality. With the trend of ambulatory health care and the increasing EMI noise found in modern hospitals, the use of multi-parameter fiber-optic sensors will improve constant patient monitoring without any concern about the effects of EMI disturbances. The advantages of miniature fiberoptic sensors will offer clinicians new monitoring tools that open the way for improved diagnostic accuracy and new therapeutic technologies.
机译:我们介绍了如何将光纤温度或压力传感器应用于微创诊断和治疗。例如,基于微光学机械系统(MOMS)的微型压力传感器可以解决与当前用于触发目的的流体压力转换相关的大多数问题。这些包括主动脉内气囊泵(IABP)治疗和其他需要检测快速和/或细微的流体压力变化的应用,例如颅内压监测或泌尿科诊断。同样,微型温度传感器允许在需要将能量转移到活组织的诊断或疗法中进行微创直接温度测量。我们开发的光纤传感器尺寸非常小,可以在需要知道物理参数的地方进行快速,精确的原位测量。此外,它们固有的抗电磁干扰能力(EMI)可以安全使用产生EMI的治疗或诊断设备,而不会影响信号质量。随着门诊医疗保健的趋势以及现代医院中不断增加的EMI噪声,多参数光纤传感器的使用将改善对患者的持续监控,而无需担心EMI干扰的影响。微型光纤传感器的优点将为临床医生提供新的监视工具,从而为提高诊断准确性和新的治疗技术开辟道路。

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