Applications of Semiconductor Fabrication Methods to Nanomedicine: A Review of Recent Inventions and Techniques.

Achanta Rajasekhar, Barjor Gimi, Walter Hu
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引用次数: 7

Abstract

We live in a world of convergence where scientific techniques from a variety of seemingly disparate fields are being applied cohesively to the study and solution of biomedical problems. For instance, the semiconductor processing field has been primarily developed to cater to the needs of the ever decreasing transistor size and cost while increasing functionality of electronic circuits. In recent years, pioneers in this field have equipped themselves with a powerful understanding of how the same techniques can be applied in the biomedical field to develop new and efficient systems for the diagnosis, analysis and treatment of various conditions in the human body. In this paper, we review the major inventions and experimental methods which have been developed for nano/micro fluidic channels, nanoparticles fabricated by top-down methods, and in-vivo nanoporous microcages for effective drug delivery. This paper focuses on the information contained in patents as well as the corresponding technical publications. The goal of the paper is to help emerging scientists understand and improvise over these inventions.

半导体制造方法在纳米医学中的应用:最新发明和技术综述。
我们生活在一个融合的世界里,来自各种看似不同领域的科学技术正在被紧密地应用于生物医学问题的研究和解决。例如,半导体加工领域的发展主要是为了满足晶体管尺寸和成本不断减小的需求,同时增加电子电路的功能。近年来,这一领域的先驱们对如何将同样的技术应用于生物医学领域,开发新的高效系统,用于诊断、分析和治疗人体各种疾病,已经有了深刻的理解。本文综述了纳米/微流体通道、自上而下制备纳米颗粒和体内纳米孔微笼等方面的主要发明和实验方法。本文的重点是专利所包含的信息以及相应的技术出版物。这篇论文的目的是帮助新兴科学家理解和即兴创作这些发明。
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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