TY - GEN
T1 - Ultrasonic vibration microdissection system for molecular analysis of tissue
AU - Wang, Huixiang
AU - Sun, Lining
AU - Chen, Liguo
AU - Liu, Yaxin
PY - 2005
Y1 - 2005
N2 - Molecular techniques are transforming our understanding of cellular function and disease. However, accurate molecular analysis methods will be limited if the input DNA, RNA, or protein is not derived from pure population of cells or is contaminated by the wrong cells. Ultrasonic Vibration Microdissection provides the technology to procure pure population of targeted cells from tissue sections for subsequent analysis. It is a bio-manipulation system, which includes manipulator unit and control unit. Ultrasonic Vibration Microdissection is based on mechanical effect of ultrasound. We employed the multiplayer piezoelectric actuator for generating the ultrasonic vibration for cutting. With the help of ultrasound effect, an extremely fine microneedle was set in motion at a high frequency and low amplitude (Approx. 16-50 kHz, and 0-3μm) to cut the tissue. Experimental results show that embedded tissue, even thicker sections, can be quickly and precisely cut. Research indicates that Ultrasonic Vibration Microdissection is completely safe for DNA, RNA and protein analysis etc.
AB - Molecular techniques are transforming our understanding of cellular function and disease. However, accurate molecular analysis methods will be limited if the input DNA, RNA, or protein is not derived from pure population of cells or is contaminated by the wrong cells. Ultrasonic Vibration Microdissection provides the technology to procure pure population of targeted cells from tissue sections for subsequent analysis. It is a bio-manipulation system, which includes manipulator unit and control unit. Ultrasonic Vibration Microdissection is based on mechanical effect of ultrasound. We employed the multiplayer piezoelectric actuator for generating the ultrasonic vibration for cutting. With the help of ultrasound effect, an extremely fine microneedle was set in motion at a high frequency and low amplitude (Approx. 16-50 kHz, and 0-3μm) to cut the tissue. Experimental results show that embedded tissue, even thicker sections, can be quickly and precisely cut. Research indicates that Ultrasonic Vibration Microdissection is completely safe for DNA, RNA and protein analysis etc.
UR - https://www.scopus.com/pages/publications/33846918181
M3 - 会议稿件
AN - SCOPUS:33846918181
SN - 0780387406
SN - 9780780387409
T3 - Annual International Conference of the IEEE Engineering in Medicine and Biology - Proceedings
SP - 5058
EP - 5061
BT - Proceedings of the 2005 27th Annual International Conference of the Engineering in Medicine and Biology Society, IEEE-EMBS 2005
T2 - 2005 27th Annual International Conference of the Engineering in Medicine and Biology Society, IEEE-EMBS 2005
Y2 - 1 September 2005 through 4 September 2005
ER -