WordNet
- larva of a mosquito (同)wriggler
- one who cant stay still (especially a child); "the toddler was a real wiggler on plane trips" (同)wriggler, squirmer
- the act of wiggling (同)wriggle, squirm
PrepTutorEJDIC
- 揺れ動く人(物),うねりくねって進むもの / ぼうふら
- 〈体・手足・尾など〉‘を'小刻みに揺する(動かす) / 小刻みに揺れ動く / 小刻みに揺れ動くこと
Wikipedia preview
出典(authority):フリー百科事典『ウィキペディア(Wikipedia)』「2016/03/19 07:37:00」(JST)
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Wiggler may refer to:
- Wiggler, the caterpillar-like creature in the Mario series of games.
- Wiggler (JTAG), a parallel port JTAG tool from the Macraigor Systems LLC.
- Wiggler (synchrotron), an insertion device for a synchrotron.
- Wiggler (tool), a centering tool in metalworking.
- Mosquito larvae.
- Bradley Wiggins
English Journal
- Feasibility study of propagation-based phase-contrast X-ray lung imaging on the Imaging and Medical beamline at the Australian Synchrotron.
- Murrie RP1, Stevenson AW2, Morgan KS1, Fouras A3, Paganin DM1, Siu KK1.Author information 1School of Physics, Monash University, Victoria 3800, Australia.2CSIRO Materials Science and Engineering, Private Bag 33, Clayton South, Victoria 3169, Australia.3Department of Mechanical and Aerospace Engineering, Monash University, Victoria 3800, Australia.AbstractPropagation-based phase-contrast X-ray imaging (PB-PCXI) using synchrotron radiation has achieved high-resolution imaging of the lungs of small animals both in real time and in vivo. Current studies are applying such imaging techniques to lung disease models to aid in diagnosis and treatment development. At the Australian Synchrotron, the Imaging and Medical beamline (IMBL) is well equipped for PB-PCXI, combining high flux and coherence with a beam size sufficient to image large animals, such as sheep, due to a wiggler source and source-to-sample distances of over 137 m. This study aimed to measure the capabilities of PB-PCXI on IMBL for imaging small animal lungs to study lung disease. The feasibility of combining this technique with computed tomography for three-dimensional imaging and X-ray velocimetry for studies of airflow and non-invasive lung function testing was also investigated. Detailed analysis of the role of the effective source size and sample-to-detector distance on lung image contrast was undertaken as well as phase retrieval for sample volume analysis. Results showed that PB-PCXI of lung phantoms and mouse lungs produced high-contrast images, with successful computed tomography and velocimetry also being carried out, suggesting that live animal lung imaging will also be feasible at the IMBL.
- Journal of synchrotron radiation.J Synchrotron Radiat.2014 Mar;21(Pt 2):430-45. doi: 10.1107/S1600577513034681. Epub 2014 Jan 30.
- Propagation-based phase-contrast X-ray imaging (PB-PCXI) using synchrotron radiation has achieved high-resolution imaging of the lungs of small animals both in real time and in vivo. Current studies are applying such imaging techniques to lung disease models to aid in diagnosis and treatment develop
- PMID 24562566
- The Materials Science beamline upgrade at the Swiss Light Source.
- Willmott PR1, Meister D, Leake SJ, Lange M, Bergamaschi A, Böge M, Calvi M, Cancellieri C, Casati N, Cervellino A, Chen Q, David C, Flechsig U, Gozzo F, Henrich B, Jäggi-Spielmann S, Jakob B, Kalichava I, Karvinen P, Krempasky J, Lüdeke A, Lüscher R, Maag S, Quitmann C, Reinle-Schmitt ML, Schmidt T, Schmitt B, Streun A, Vartiainen I, Vitins M, Wang X, Wullschleger R.Author information 1Swiss Light Source, Paul Scherrer Institut, CH-5232 Villigen, Switzerland. philip.willmott@psi.chAbstractThe Materials Science beamline at the Swiss Light Source has been operational since 2001. In late 2010, the original wiggler source was replaced with a novel insertion device, which allows unprecedented access to high photon energies from an undulator installed in a medium-energy storage ring. In order to best exploit the increased brilliance of this new source, the entire front-end and optics had to be redesigned. In this work, the upgrade of the beamline is described in detail. The tone is didactic, from which it is hoped the reader can adapt the concepts and ideas to his or her needs.
- Journal of synchrotron radiation.J Synchrotron Radiat.2013 Sep;20(Pt 5):667-82. doi: 10.1107/S0909049513018475. Epub 2013 Jul 16.
- The Materials Science beamline at the Swiss Light Source has been operational since 2001. In late 2010, the original wiggler source was replaced with a novel insertion device, which allows unprecedented access to high photon energies from an undulator installed in a medium-energy storage ring. In or
- PMID 23955029
- The macromolecular crystallography beamline I911-3 at the MAX IV laboratory.
- Ursby T1, Unge J, Appio R, Logan DT, Fredslund F, Svensson C, Larsson K, Labrador A, Thunnissen MM.Author information 1MAX IV Laboratory, Lund University, POB 118, Lund SE-221 00, Sweden. thomas.ursby@maxlab.lu.seAbstractThe macromolecular crystallography beamline I911-3, part of the Cassiopeia/I911 suite of beamlines, is based on a superconducting wiggler at the MAX II ring of the MAX IV Laboratory in Lund, Sweden. The beamline is energy-tunable within a range between 6 and 18 keV. I911-3 opened for users in 2005. In 2010-2011 the experimental station was completely rebuilt and refurbished such that it has become a state-of-the-art experimental station with better possibilities for rapid throughput, crystal screening and work with smaller samples. This paper describes the complete I911-3 beamline and how it is embedded in the Cassiopeia suite of beamlines.
- Journal of synchrotron radiation.J Synchrotron Radiat.2013 Jul;20(Pt 4):648-53. doi: 10.1107/S0909049513011734. Epub 2013 May 18.
- The macromolecular crystallography beamline I911-3, part of the Cassiopeia/I911 suite of beamlines, is based on a superconducting wiggler at the MAX II ring of the MAX IV Laboratory in Lund, Sweden. The beamline is energy-tunable within a range between 6 and 18 keV. I911-3 opened for users in 2005.
- PMID 23765310
- Reference dosimetry at the Australian Synchrotron's imaging and medical beamline using free-air ionization chamber measurements and theoretical predictions of air kerma rate and half value layer.
- Crosbie JC1, Rogers PA, Stevenson AW, Hall CJ, Lye JE, Nordström T, Midgley SM, Lewis RA.Author information 1Department of Obstetrics and Gynaecology, University of Melbourne, The Royal Women's Hospital, Parkville, Victoria 3052, Australia. jcrosbie@unimelb.edu.auAbstractPURPOSE: Novel, preclinical radiotherapy modalities are being developed at synchrotrons around the world, most notably stereotactic synchrotron radiation therapy and microbeam radiotherapy at the European Synchrotron Radiation Facility in Grenoble, France. The imaging and medical beamline (IMBL) at the Australian Synchrotron has recently become available for preclinical radiotherapy and imaging research with clinical trials, a distinct possibility in the coming years. The aim of this present study was to accurately characterize the synchrotron-generated x-ray beam for the purposes of air kerma-based absolute dosimetry.
- Medical physics.Med Phys.2013 Jun;40(6):062103. doi: 10.1118/1.4803675.
- PURPOSE: Novel, preclinical radiotherapy modalities are being developed at synchrotrons around the world, most notably stereotactic synchrotron radiation therapy and microbeam radiotherapy at the European Synchrotron Radiation Facility in Grenoble, France. The imaging and medical beamline (IMBL) at
- PMID 23718601
Japanese Journal
- 18aCP-5 ヘリカルウィグラーを用いた大強度自由電子ビームによる発振実験
- Transverse effects in a free-electron laser oscillator with two electron beams
- 4.5 自由電子レーザー中の相対論的荷電粒子の運動(4.応用,粒子運動論〜惑星から荷電粒子まで)
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- In Super Mario 64, a Wiggler appears as a boss in Tiny-Huge Island. To reach Wiggler, Mario must go into Tiny Island and ground pound the pool above its house at the very top of the Island, then go into Huge Island and fit through a ...
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