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The new target chamber at LIPSION: The new translation stage and goniometer and the new irradiation platform for single cell experiments

Nilsson, Charlotta LU ; Petriconi, S; Reinert, T and Butz, T (2007) In Nuclear Instruments and Methods in Physics Research Section B 260(1). p.71-76
Abstract
A new target chamber as well as a new 7-axes translation stage with goniometer will shortly be implemented at the LIPSION nanoprobe in Leipzig. This new stage should enable linear motion as well as rotary motion with high precision, positioning accuracy and repeatability. These different features have been investigated online as well as offline, with encouraging results. Along with the new equipment, new software is also being developed, to provide stage control running over network. These software developments, including a graphical user interface, will also be described. As part of the new target chamber, a new external beam facility and irradiation platform for single ion experiments on single living cells is being assembled. A detailed... (More)
A new target chamber as well as a new 7-axes translation stage with goniometer will shortly be implemented at the LIPSION nanoprobe in Leipzig. This new stage should enable linear motion as well as rotary motion with high precision, positioning accuracy and repeatability. These different features have been investigated online as well as offline, with encouraging results. Along with the new equipment, new software is also being developed, to provide stage control running over network. These software developments, including a graphical user interface, will also be described. As part of the new target chamber, a new external beam facility and irradiation platform for single ion experiments on single living cells is being assembled. A detailed description of the new cell irradiation platform, including beam extraction, new cell dishes, and cell recognition aspects will be given. It will be shown that the possibility of offline cell recognition, possibly using a differential interference contrast microscope, is an option. (Less)
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author
organization
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Contribution to journal
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published
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in
Nuclear Instruments and Methods in Physics Research Section B
volume
260
issue
1
pages
71 - 76
external identifiers
  • scopus:34249884475
DOI
10.1016/j.nimb.2007.01.279
language
English
LU publication?
yes
id
b0ebc3fb-a3d3-445b-8152-941caa841704 (old id 714087)
date added to LUP
2007-12-11 11:40:57
date last changed
2017-01-01 08:10:02
@article{b0ebc3fb-a3d3-445b-8152-941caa841704,
  abstract     = {A new target chamber as well as a new 7-axes translation stage with goniometer will shortly be implemented at the LIPSION nanoprobe in Leipzig. This new stage should enable linear motion as well as rotary motion with high precision, positioning accuracy and repeatability. These different features have been investigated online as well as offline, with encouraging results. Along with the new equipment, new software is also being developed, to provide stage control running over network. These software developments, including a graphical user interface, will also be described. As part of the new target chamber, a new external beam facility and irradiation platform for single ion experiments on single living cells is being assembled. A detailed description of the new cell irradiation platform, including beam extraction, new cell dishes, and cell recognition aspects will be given. It will be shown that the possibility of offline cell recognition, possibly using a differential interference contrast microscope, is an option.},
  author       = {Nilsson, Charlotta and Petriconi, S and Reinert, T and Butz, T},
  language     = {eng},
  number       = {1},
  pages        = {71--76},
  series       = {Nuclear Instruments and Methods in Physics Research Section B},
  title        = {The new target chamber at LIPSION: The new translation stage and goniometer and the new irradiation platform for single cell experiments},
  url          = {http://dx.doi.org/10.1016/j.nimb.2007.01.279},
  volume       = {260},
  year         = {2007},
}