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Abstract
' F3 O3 E/ |: F! C- n/ Y$ T4 X* LAligned microcontact printing for patterning the sample in areas of homogeneous RF-field on the highly sensitive surface of planar
7 ?8 }) _; L9 m+ _. L* A, t hNMR microprobes is presented. We experimentally demonstrate that sample patterning allows drastic improvement of the spin excitation) L: l. e! F5 s e& I
uniformity. The NMR microprobes are designed for cell analysis and characterized using lipid vesicles as cell substitutes. Lipid vesicles
, \. A3 q7 a! ]are advantageous as composition and concentration of the confined solution are precisely controlled and because of their similarity
; l/ b7 @4 M' k1 ?to living cells. Using aligned microcontact printing, a monolayer of lipid vesicles is immobilized on the surface of the planar NMR microprobe
0 J1 e! L0 q- J3 T6 Vin a patterned way. 1H NMR spectra and CPMG spin echoes of sucrose solution confined within the lipid vesicles are successfully
0 I( `% G) c& T5 W Y1 q6 }& Vrecorded. Nutation curves of the sample structured in different patterns demonstrate the impact of patterning on the spin excitation uniformity.% c* _1 Z; b, q5 {/ I- m9 c U: }, I
The total detection volumes are between 1 and 2 nL and derived with help of a theoretic model based on 3D finite element simulation.
) _2 a7 \( E% B; k0 [" PThis model predicts the signal-to-noise ratio and the progression of the nutation curves.9 a6 V$ T# r& |$ y
2005 Elsevier Inc. All rights reserved.
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3 E1 ~2 {- A+ \[ 本帖最後由 mt7344 於 2007-6-7 10:38 PM 編輯 ] |
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