Potential of ultrasonic processing in biomedical applications

Siddhi Lokhande, Bhagyashree V. Salvi and Pravin Shende
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Abstract

Ultrasound waves are sound waves with frequencies higher than the human audible frequencies and application of these waves in biomedical science is explored in this article. A novel approach that involved the use of ultrasound was discovered in around 1950 and since then, it is experimented on to obtain various applications like gene/drug delivery, diagnosis, theranostics, tissue engineering, etc. Ultrasound waves are sound waves travelling at frequencies above human audible frequencies and are further classified into three types: high frequency, medium frequency and low frequency, each showing different therapeutic applications. Ultrasound has shown its application in various fields like dentistry, wastewater management, etc. Apart from therapeutic use, ultrasound is also implemented in synthesis, extraction, tissue engineering, gene delivery and many more applications. This article mentions the recent applications of ultrasound as a non-invasive route for the treatment of several diseases also due to its enhanced penetration of cells which helped greatly in the delivery of drugs/genes, in the extraction of various essential biological components from plants, in the synthesis of several compounds, in the field of theranostics – a combination of diagnosis and therapy, in tissue engineering, etc.

Abstract Image

超声波处理在生物医学应用中的潜力
超声波是一种频率高于人类听觉频率的声波,本文将探讨这些声波在生物医学中的应用。1950 年左右,人们发现了一种使用超声波的新方法,从那时起,人们就开始对其进行实验,以获得各种应用,如基因/药物输送、诊断、治疗学、组织工程等。超声波是频率高于人类听觉频率的声波,可进一步分为三种类型:高频、中频和低频,每种类型都有不同的治疗应用。超声波在牙科、废水管理等多个领域都有应用。除治疗用途外,超声波还可用于合成、提取、组织工程、基因传递等许多应用领域。本文将介绍超声波作为治疗多种疾病的非侵入性途径的最新应用,这也是由于超声波增强了对细胞的穿透力,大大有助于药物/基因的传递、从植物中提取各种重要的生物成分、合成多种化合物、治疗学领域--诊断与治疗的结合、组织工程等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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