Baran Jonathan M, Webster John G
Biomedical Engineering Department, University of Wisconsin, Madison, WI 53706, USA .
Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:792-5. doi: 10.1109/IEMBS.2009.5332754.
Ultrasound continues to be one of the major imaging modalities used for the diagnosis and treatment of a number of medical conditions. Therefore emphasis on innovation is continually increasing the quality of the ultrasound systems. However focus is just beginning to shift into the low-cost and portable applications of ultrasound. These systems present interesting constraints which must be considered to transform a standalone system into a portable version. This review takes a look at some of the attempts which have been published, as well as some of the issues which have still yet to be resolved. In conclusion, low-cost portable ultrasound has the capability to be developed and commercialized, but until a suitable replacement to piezoelectric crystals has been developed (possibly CMUTs?) low-cost portable ultrasound system will be held back by the high cost burden associated with the cost of piezoceramics.
超声仍然是用于诊断和治疗多种医疗状况的主要成像方式之一。因此,对创新的重视不断提高超声系统的质量。然而,关注点刚刚开始转向超声的低成本和便携式应用。这些系统存在一些有趣的限制因素,要将独立系统转变为便携式版本必须加以考虑。本文综述了已发表的一些尝试,以及一些尚未解决的问题。总之,低成本便携式超声有能力得到开发并实现商业化,但在开发出压电晶体的合适替代品(可能是电容式微机械超声换能器?)之前,低成本便携式超声系统将因与压电陶瓷成本相关的高昂成本负担而受到阻碍。