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Compact tunable high-voltage sub-nanosecond pulse generator for intracellular investigations. / Palego, C.; Jin, R.; Halder, S. et al.
2011. Paper presented at 10th International Congress of EBEA, Rome, Italy, 21-24 February 2011.

Research output: Contribution to conferencePaper

HarvardHarvard

Palego, C, Jin, R, Halder, S & Hwang, J 2011, 'Compact tunable high-voltage sub-nanosecond pulse generator for intracellular investigations', Paper presented at 10th International Congress of EBEA, Rome, Italy, 21-24 February 2011, 3/01/01.

APA

Palego, C., Jin, R., Halder, S., & Hwang, J. (2011). Compact tunable high-voltage sub-nanosecond pulse generator for intracellular investigations. Paper presented at 10th International Congress of EBEA, Rome, Italy, 21-24 February 2011.

CBE

Palego C, Jin R, Halder S, Hwang J. 2011. Compact tunable high-voltage sub-nanosecond pulse generator for intracellular investigations. Paper presented at 10th International Congress of EBEA, Rome, Italy, 21-24 February 2011.

MLA

Palego, C. et al. Compact tunable high-voltage sub-nanosecond pulse generator for intracellular investigations. 10th International Congress of EBEA, Rome, Italy, 21-24 February 2011, 03 Jan 0001, Paper, 2011.

VancouverVancouver

Palego C, Jin R, Halder S, Hwang J. Compact tunable high-voltage sub-nanosecond pulse generator for intracellular investigations. 2011. Paper presented at 10th International Congress of EBEA, Rome, Italy, 21-24 February 2011.

Author

Palego, C. ; Jin, R. ; Halder, S. et al. / Compact tunable high-voltage sub-nanosecond pulse generator for intracellular investigations. Paper presented at 10th International Congress of EBEA, Rome, Italy, 21-24 February 2011.

RIS

TY - CONF

T1 - Compact tunable high-voltage sub-nanosecond pulse generator for intracellular investigations

AU - Palego, C.

AU - Jin, R.

AU - Halder, S.

AU - Hwang, J.

PY - 2011/2/21

Y1 - 2011/2/21

N2 - This paper proposes a compact tunable high-voltage sub-nanosecond pulse generator for intracellular investigations without being hindered by heating, electrical connection, or membrane resistance. Simulation confirms that the compact pulse generator is capable of delivering higher-than-10 KV/cm field to different subcellular structures and is suitable for scaling up to multichannel microfluidic screening of individual cells with high throughput

AB - This paper proposes a compact tunable high-voltage sub-nanosecond pulse generator for intracellular investigations without being hindered by heating, electrical connection, or membrane resistance. Simulation confirms that the compact pulse generator is capable of delivering higher-than-10 KV/cm field to different subcellular structures and is suitable for scaling up to multichannel microfluidic screening of individual cells with high throughput

M3 - Paper

T2 - 10th International Congress of EBEA, Rome, Italy, 21-24 February 2011

Y2 - 3 January 0001

ER -