WO2003001178A2 - Jeu ordonne tridimensionnel dynamique de sondes - Google Patents
Jeu ordonne tridimensionnel dynamique de sondes Download PDFInfo
- Publication number
- WO2003001178A2 WO2003001178A2 PCT/US2002/011586 US0211586W WO03001178A2 WO 2003001178 A2 WO2003001178 A2 WO 2003001178A2 US 0211586 W US0211586 W US 0211586W WO 03001178 A2 WO03001178 A2 WO 03001178A2
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- optical
- probes
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Definitions
- the optical bottle differs from an optical vortex in that it has a zero electric field only at the focus and a non-zero electric field in all other directions surrounding the focus, at an end of the vortex.
- An optical bottle may be useful in trapping atoms and nanoclusters which may be too small or too absorptive to trap with an optical vortex or optical tweezers.
- the optical rotator is a recently described optical tool which provides a pattern of spiral arms which trap objects. Changing the pattern causes the trapped objects to rotate.
- FIG. 5 A illustrates a first operative movement of probes.
- FIG. 6B illustrates an inverted microscope to which the compact system of Fig. 6A attaches.
- Preferred dynamic optical elements include phase-only spatial light modulators such as the "PAL-SLM series X7665", manufactured by Hamamatsu, of Japan or the "SLM 512N15' and SLM 512SA7,” both manufactured by Boulder Nonlinear Systems of Layafette Colorado. These phase patterning optical elements are computer controlled to generate the beamlets 2000-2004 (FIG. 1) by a hologram encoded in the medium which can be varied to generate the beamlets and select the form of the beamlets.
- phase-only spatial light modulators such as the "PAL-SLM series X7665", manufactured by Hamamatsu, of Japan or the "SLM 512N15' and SLM 512SA7,” both manufactured by Boulder Nonlinear Systems of Layafette Colorado.
- These phase patterning optical elements are computer controlled to generate the beamlets 2000-2004 (FIG. 1) by a hologram encoded in the medium which can be varied to generate the beamlets and select the form of the beamlets.
- the probes can be added to the vessel 10 in a sequential order.
- identity of a probe is known by its load order or a probe's identify can be known on the basis of the time that the probe is added.
- the probes having binding or reactivity characteristics that differ from one another can be segregated to different predetermined locations, based on the difference in properties. The probes are then selected on the basis of their location within the vessel. As seen in FIG.
- the sequence may continue passing the probes from the second set of predetermined positions P2 to a third set of predetermined positions P3, from the third set of positions P3 to a fourth set of predetermined positions P4, and from the fourth set of predetermined positions P4 to a fifth set of predetermined positions P5 by the rotation of the phase patterning optical element to align the appropriate region 42-46 corresponding to the desired position P1-P5.
- the time interval between the termination of one set of optical traps and the generation of the next should be of a duration to ensure that the probes are transferred to the next set of optical traps before they drift away.
- a dichroic mirror beam splitter 58 Interposed in the third light channel between the second light channel and the back aperture 57 of the focusing lens is a dichroic mirror beam splitter 58.
- Other components within the compact system for forming the optical traps 50 include a first mirror Ml, which reflects the beamlets emanating from the phase patterning optical element through the first light channel, a first set of transfer optics TOl disposed within the first light channel, aligned to receive the beamlets reflected by the first mirror Ml, a second set of transfer optics TO2 disposed within the first light channel, aligned to receive the beamlets passing through the first set of transfer lenses TOl, and a second mirror M2, positioned at the intersection of the first light channel and the second light channel, aligned to reflect beamlets passing through the second set of transfer optics TO2 and through the third light channel 55 a.
- FIG. 6B Shown in FIG. 6B is an elevational view of a Nixon TE 200 series microscope into which the compact system for forming the optical traps 50 has been mounted, generally designated 60.
- the nosepiece 54 with the attached a housing 52 fits directly into the microscope via the mount (not shown) for the nosepiece 54a and 54b.
- the housing and its contents and attached optical element 51 are secured to the nosepiece 54a and 54b require few or no alterations or modifications to the remainder of the microscope.
- an illumination source 61 may be provided above the objective lens 56.
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- General Health & Medical Sciences (AREA)
- General Physics & Mathematics (AREA)
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- Condensed Matter Physics & Semiconductors (AREA)
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- Dispersion Chemistry (AREA)
- Composite Materials (AREA)
- Spectroscopy & Molecular Physics (AREA)
- Materials Engineering (AREA)
- Crystallography & Structural Chemistry (AREA)
- Fluid Mechanics (AREA)
- Apparatus Associated With Microorganisms And Enzymes (AREA)
- Investigating, Analyzing Materials By Fluorescence Or Luminescence (AREA)
- Measuring Or Testing Involving Enzymes Or Micro-Organisms (AREA)
- Investigating Or Analysing Materials By Optical Means (AREA)
Abstract
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
NZ530239A NZ530239A (en) | 2001-06-20 | 2002-04-12 | Configurable dynamic three dimensional array |
JP2003507524A JP4199107B2 (ja) | 2001-06-20 | 2002-04-12 | 配列可能な動的3次元アレイ |
CA002451222A CA2451222A1 (fr) | 2001-06-20 | 2002-04-12 | Jeu ordonne tridimensionnel dynamique de sondes |
EP02731351A EP1412519A4 (fr) | 2001-06-20 | 2002-04-12 | Jeu ordonne tridimensionnel dynamique de sondes |
US10/735,395 US20040180363A1 (en) | 2002-04-12 | 2003-12-12 | Configurable dynamic three dimensional array |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US88680201A | 2001-06-20 | 2001-06-20 | |
US09/886,802 | 2001-06-20 |
Related Child Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US10/735,395 Continuation-In-Part US20040180363A1 (en) | 2002-04-12 | 2003-12-12 | Configurable dynamic three dimensional array |
Publications (2)
Publication Number | Publication Date |
---|---|
WO2003001178A2 true WO2003001178A2 (fr) | 2003-01-03 |
WO2003001178A3 WO2003001178A3 (fr) | 2003-02-27 |
Family
ID=25389806
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/US2002/011586 WO2003001178A2 (fr) | 2001-06-20 | 2002-04-12 | Jeu ordonne tridimensionnel dynamique de sondes |
Country Status (7)
Country | Link |
---|---|
EP (1) | EP1412519A4 (fr) |
JP (1) | JP4199107B2 (fr) |
CN (2) | CN1715918B (fr) |
CA (1) | CA2451222A1 (fr) |
HK (1) | HK1078933A1 (fr) |
NZ (1) | NZ530239A (fr) |
WO (1) | WO2003001178A2 (fr) |
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP1469483A2 (fr) | 2003-04-16 | 2004-10-20 | Shamci Dr. Monajemsbashi | Echantillon pour manipulation par pinces optiques, et procédé et dispositif pour engendrer des forces induites optiquement |
JP2007510160A (ja) * | 2003-10-28 | 2007-04-19 | アリックス インコーポレイテッド | ホログラフィック光トラッピングを用いて物質を操作し、処理するためのシステム及び方法 |
JP2007537885A (ja) * | 2004-03-17 | 2007-12-27 | アリックス インコーポレイテッド | ホログラフィック光トラッピングを用いて物質を操作し、処理するためのシステム及び方法 |
US7525088B2 (en) | 2004-07-23 | 2009-04-28 | The Science And Technology Facilities Council | Optically controllable device |
US8169600B2 (en) | 2006-09-15 | 2012-05-01 | Arryx, Inc. | Surface mapping by optical manipulation of particles in relation to a functionalized surface |
EP2150806A4 (fr) * | 2007-05-10 | 2013-01-02 | Pacific Biosciences California | Procédés et systèmes d'analyse de matière fluorescente à autofluorescence limitée |
KR20150023810A (ko) * | 2012-06-18 | 2015-03-05 | 존 마일즈 브루배춰 | 미생물 평가 시스템 |
Families Citing this family (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2010538645A (ja) * | 2007-09-11 | 2010-12-16 | アリックス インク | 対象物を選別するための結合方法および装置 |
WO2009035621A1 (fr) * | 2007-09-13 | 2009-03-19 | Arryx, Inc. | Procédés et appareils pour trier des objets dans une analyse médico-légale d'arn et dans des diagnostics médicaux |
PL2280875T3 (pl) * | 2008-04-23 | 2012-10-31 | Signode Int Ip Holdings Llc | Urządzenie do opasywania taśmą ściągającą z układem przekładni |
CN109239937A (zh) * | 2018-09-15 | 2019-01-18 | 天津大学 | 一种光镊自动化操控装置 |
CN113053556A (zh) * | 2021-03-10 | 2021-06-29 | 暨南大学 | 具有可重构性的生物微马达阵列及其应用 |
Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP3102523B2 (ja) * | 1992-10-12 | 2000-10-23 | 日本電信電話株式会社 | 微粒子の配列制御方法 |
US5776674A (en) * | 1995-06-05 | 1998-07-07 | Seq, Ltd | Chemical biochemical and biological processing in thin films |
CN1079158C (zh) * | 1996-11-26 | 2002-02-13 | 中国科学院上海光学精密机械研究所 | 光悬浮测量系统 |
US6055106A (en) * | 1998-02-03 | 2000-04-25 | Arch Development Corporation | Apparatus for applying optical gradient forces |
-
2002
- 2002-04-12 CN CN 200510081431 patent/CN1715918B/zh not_active Expired - Fee Related
- 2002-04-12 CA CA002451222A patent/CA2451222A1/fr not_active Abandoned
- 2002-04-12 CN CNA028162889A patent/CN1545561A/zh active Pending
- 2002-04-12 EP EP02731351A patent/EP1412519A4/fr not_active Withdrawn
- 2002-04-12 JP JP2003507524A patent/JP4199107B2/ja not_active Expired - Fee Related
- 2002-04-12 NZ NZ530239A patent/NZ530239A/en not_active Application Discontinuation
- 2002-04-12 WO PCT/US2002/011586 patent/WO2003001178A2/fr active Application Filing
-
2006
- 2006-01-13 HK HK06100648.0A patent/HK1078933A1/xx not_active IP Right Cessation
Cited By (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP1469483A2 (fr) | 2003-04-16 | 2004-10-20 | Shamci Dr. Monajemsbashi | Echantillon pour manipulation par pinces optiques, et procédé et dispositif pour engendrer des forces induites optiquement |
EP1469483A3 (fr) * | 2003-04-16 | 2009-06-03 | Monajemsbashi, Shamci, Dr. | Echantillon pour manipulation par pinces optiques, et procédé et dispositif pour engendrer des forces induites optiquement |
JP2007510160A (ja) * | 2003-10-28 | 2007-04-19 | アリックス インコーポレイテッド | ホログラフィック光トラッピングを用いて物質を操作し、処理するためのシステム及び方法 |
EP1687663A4 (fr) * | 2003-10-28 | 2010-03-31 | Arryx Inc | Systeme et procede de manipulation et de traitement de nano-materiaux faisant appel au piegeage optique holographique |
JP2007537885A (ja) * | 2004-03-17 | 2007-12-27 | アリックス インコーポレイテッド | ホログラフィック光トラッピングを用いて物質を操作し、処理するためのシステム及び方法 |
EP1745530A4 (fr) * | 2004-03-17 | 2009-08-05 | Arryx Inc | Systeme et procede pour manipuler et traiter des materiaux par piegeage optique holographique |
US7525088B2 (en) | 2004-07-23 | 2009-04-28 | The Science And Technology Facilities Council | Optically controllable device |
US8169600B2 (en) | 2006-09-15 | 2012-05-01 | Arryx, Inc. | Surface mapping by optical manipulation of particles in relation to a functionalized surface |
EP2150806A4 (fr) * | 2007-05-10 | 2013-01-02 | Pacific Biosciences California | Procédés et systèmes d'analyse de matière fluorescente à autofluorescence limitée |
KR20150023810A (ko) * | 2012-06-18 | 2015-03-05 | 존 마일즈 브루배춰 | 미생물 평가 시스템 |
KR102102285B1 (ko) | 2012-06-18 | 2020-04-20 | 존 마일즈 브루배춰 | 미생물 평가 시스템 |
Also Published As
Publication number | Publication date |
---|---|
HK1078933A1 (en) | 2006-03-24 |
JP2004532991A (ja) | 2004-10-28 |
EP1412519A4 (fr) | 2007-07-04 |
JP4199107B2 (ja) | 2008-12-17 |
CN1715918A (zh) | 2006-01-04 |
CN1715918B (zh) | 2010-05-12 |
CA2451222A1 (fr) | 2003-01-03 |
NZ530239A (en) | 2006-08-31 |
WO2003001178A3 (fr) | 2003-02-27 |
EP1412519A2 (fr) | 2004-04-28 |
CN1545561A (zh) | 2004-11-10 |
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