[科学研究和技术服务业] [2020-03-11]
[卫生和社会工作,科学研究和技术服务业] [2020-03-09]
[科学研究和技术服务业,公共管理、社会保障和社会组织] [2020-03-05]
[医药制造业,科学研究和技术服务业] [2020-03-04]
[科学研究和技术服务业] [2020-02-28]
TIC行业壁垒高且 防御性强,穿越周期持续发展。全球检验检测行业发展历史悠久,我国检验检测制度始于20 世纪七八十年代改革开放之初。中国第三方检测市场占总的检测市场规模的比例逐年稳步提高,我们总结了第三方检测行业的六大属性,检测行业能够穿越周期,公信力是立足之本。
[科学研究和技术服务业] [2020-02-26]
[科学研究和技术服务业] [2020-02-20]
[科学研究和技术服务业] [2020-02-18]
[公共管理、社会保障和社会组织,科学研究和技术服务业] [2020-02-18]
[科学研究和技术服务业] [2020-02-10]
Microarrays are the most popular form of lab-on-a-chip technology, due to the wide range of differentiation and low price of the equipment. Increasing use of personal medical devices and the need for immediate results from diagnostic tests are the major factors driving the demand for microarrays in the lab-on-a-chip market. The technological advances have increased the throughput of device production, improved rapid prototyping efforts, and enabled researchers to enhance the complexity and sophistication of experiments that can be performed on a microfluidic chip. As a result, microfluidic technology has its immense potential for research in life science and medicine. In the United States, the usage of high-throughput screening (HTS) technologies increased drastically in academic research. With the rising interest in HTS, the lab-on-chip technology is expected to be widely used in the country, due to its applications in high-throughput screening. The lab-on-a-chip device has its application in the medical field in the diagnosis of various infectious diseases, which eases sample handling and yields efficient results in a snap of time. Thus, the increasing application of LOC in clinical diagnostics is due to its beneficial features, such as low cost, high parallelization, accuracy, and ease-of-use, with low volume sample and faster response time.