Chan Bin-Da, Icoz Kutay, Huang Wanfeng, Chang Chun-Li, Savran Cagri A
School of Mechanical Engineering, Purdue University, West Lafayette, IN 47907, USA.
Lab Chip. 2014 Nov 7;14(21):4188-96. doi: 10.1039/c4lc00765d.
We report a simple and highly versatile system to select and weigh individual dry biological particles. The system is composed of a microtweezer to pick and place individual particles and a cantilever-based resonator to weigh them. The system can weigh entities that vary from a red blood cell (10(-11) g) to the eye-brain complex of an insect (10(-6) g), covering a 5-order-of-magnitude mass range. Due to its versatility and ease of use, this weighing method is highly compatible with established laboratory practices. The system can provide complementary mass information for a wide variety of individual particles imaged using scanning electron microscopy and determine comparative weights of individual biological entities that are attached to microparticles as well as weigh fractions of individual biological entities that have been subjected to focused ion beam milling.
我们报告了一种简单且用途广泛的系统,用于挑选和称量单个干燥生物颗粒。该系统由一个用于拾取和放置单个颗粒的微镊子以及一个基于悬臂的谐振器组成,用于对颗粒进行称重。该系统能够称量质量范围跨度达5个数量级的物体,从一个红细胞(约10^(-11)克)到昆虫的眼脑复合体(约10^(-6)克)不等。由于其多功能性和易用性,这种称重方法与既定的实验室操作高度兼容。该系统可为使用扫描电子显微镜成像的各种单个颗粒提供补充质量信息,确定附着在微粒上的单个生物实体的相对重量,以及对经过聚焦离子束铣削的单个生物实体的部分进行称重。