In this paper, the development of a fully implantable wireless sensor able to provide continuous real-time accurate pressure measurements is presented. Surface Acoustic Wave (SAW) technology was used to deposit resonators on crystalline quartz wafers; the wafers were then assembled to produce a pressure sensitive device. Excitation and reading via a miniature antenna attached to the pressure sensor enables continuous external interrogation. The main advantages of such a configuration are the long term stability of quartz and the low power necessary for the interrogation, which allows 24/7 interrogation by means of a hand-held, battery powered device. Such data are of vital importance to clinicians monitoring and treating the effects of hypertension and heart failure. A prototype was designed and tested using both a bio-phantom test rig and an animal model. The pressure traces for both compare very well with a commercially available catheter tip pressure transducer. The work presented in this paper is the first known wireless pressure data from the left ventricle of the heart of a living swine.
Continuous in vivo blood pressure measurements using a fully implantable wireless SAW sensor.
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作者:Murphy Olive H, Bahmanyar Mohammad Reza, Borghi Alessandro, McLeod Christopher N, Navaratnarajah Manoraj, Yacoub Magdi H, Toumazou Christofer
| 期刊: | Biomedical Microdevices | 影响因子: | 3.300 |
| 时间: | 2013 | 起止号: | 2013 Oct;15(5):737-49 |
| doi: | 10.1007/s10544-013-9759-7 | ||
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