three-axis micromanipulator mp-285 Search Results


96
Sutter Instrument Company three axis micromanipulator
Three Axis Micromanipulator, supplied by Sutter Instrument Company, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-axis+micromanipulator+mp-285/MP-285+Manipulator+Mechanical+Alone/10__1117_slash_1__ap__6__6__066003-117-17-20
Average 96 stars, based on 1 article reviews
three axis micromanipulator - by Bioz Stars, 2026-09
96/100 stars
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97
Narishige inc second micropipette holder
Setup: in-plane (A–C) and profile modes (D and E). (A) Experimental setup for in-plane aspiration experiments. In this case, the <t>micropipette</t> is positioned perpendicular to the surface of adherent endothelial cells cultured on the bottom of a petri dish. The syringe pump on the left creates a constant-rate aspiration pressure increase. (B) Plot of the projected cell area versus time for three different cells. The projected cell area is measured from pictures taken throughout the detachment. (C) Time-lapse of a cell throughout a detachment assay (corresponding to the solid line in B, and to the cell on the right in Movie S1). Scale bar, 10 μm. (D) Experimental setup for profile aspiration experiments. In this case, the aspiration micropipette is still positioned perpendicular to the surface of the endothelial cells, but they adhere to a Cytodex-3 bead, held in position by a second, larger micropipette (on the right). (E) Time lapse of the detachment assay of an endothelial cell adhering to a Cytodex-3 bead. Scale bar, 10 μm.
Second Micropipette Holder, supplied by Narishige inc, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-axis+micromanipulator+mp-285/Micromanipulator/pmc04621874-90-31-46
Average 97 stars, based on 1 article reviews
second micropipette holder - by Bioz Stars, 2026-09
97/100 stars
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99
AutoMate Scientific Inc roe input device
Setup: in-plane (A–C) and profile modes (D and E). (A) Experimental setup for in-plane aspiration experiments. In this case, the <t>micropipette</t> is positioned perpendicular to the surface of adherent endothelial cells cultured on the bottom of a petri dish. The syringe pump on the left creates a constant-rate aspiration pressure increase. (B) Plot of the projected cell area versus time for three different cells. The projected cell area is measured from pictures taken throughout the detachment. (C) Time-lapse of a cell throughout a detachment assay (corresponding to the solid line in B, and to the cell on the right in Movie S1). Scale bar, 10 μm. (D) Experimental setup for profile aspiration experiments. In this case, the aspiration micropipette is still positioned perpendicular to the surface of the endothelial cells, but they adhere to a Cytodex-3 bead, held in position by a second, larger micropipette (on the right). (E) Time lapse of the detachment assay of an endothelial cell adhering to a Cytodex-3 bead. Scale bar, 10 μm.
Roe Input Device, supplied by AutoMate Scientific Inc, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-axis+micromanipulator+mp-285/ROE+INPUT+DEVICE/custom%40su_fg_285roe%4036699624
Average 99 stars, based on 1 article reviews
roe input device - by Bioz Stars, 2026-09
99/100 stars
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90
Ludl Electronic two-axis motorized stage mac6000
Setup: in-plane (A–C) and profile modes (D and E). (A) Experimental setup for in-plane aspiration experiments. In this case, the <t>micropipette</t> is positioned perpendicular to the surface of adherent endothelial cells cultured on the bottom of a petri dish. The syringe pump on the left creates a constant-rate aspiration pressure increase. (B) Plot of the projected cell area versus time for three different cells. The projected cell area is measured from pictures taken throughout the detachment. (C) Time-lapse of a cell throughout a detachment assay (corresponding to the solid line in B, and to the cell on the right in Movie S1). Scale bar, 10 μm. (D) Experimental setup for profile aspiration experiments. In this case, the aspiration micropipette is still positioned perpendicular to the surface of the endothelial cells, but they adhere to a Cytodex-3 bead, held in position by a second, larger micropipette (on the right). (E) Time lapse of the detachment assay of an endothelial cell adhering to a Cytodex-3 bead. Scale bar, 10 μm.
Two Axis Motorized Stage Mac6000, supplied by Ludl Electronic, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-axis+micromanipulator+mp-285/motorized+stage+mac6000/pmc11708879-188-6-9
Average 90 stars, based on 1 article reviews
two-axis motorized stage mac6000 - by Bioz Stars, 2026-09
90/100 stars
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90
CNI Laser 633-nm diode laser mrl-iii-633
Setup: in-plane (A–C) and profile modes (D and E). (A) Experimental setup for in-plane aspiration experiments. In this case, the <t>micropipette</t> is positioned perpendicular to the surface of adherent endothelial cells cultured on the bottom of a petri dish. The syringe pump on the left creates a constant-rate aspiration pressure increase. (B) Plot of the projected cell area versus time for three different cells. The projected cell area is measured from pictures taken throughout the detachment. (C) Time-lapse of a cell throughout a detachment assay (corresponding to the solid line in B, and to the cell on the right in Movie S1). Scale bar, 10 μm. (D) Experimental setup for profile aspiration experiments. In this case, the aspiration micropipette is still positioned perpendicular to the surface of the endothelial cells, but they adhere to a Cytodex-3 bead, held in position by a second, larger micropipette (on the right). (E) Time lapse of the detachment assay of an endothelial cell adhering to a Cytodex-3 bead. Scale bar, 10 μm.
633 Nm Diode Laser Mrl Iii 633, supplied by CNI Laser, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-axis+micromanipulator+mp-285/light+source+mll+iii+633+nm+50+mw/10__1117_slash_1__nph__10__1__015003-67-4-7
Average 90 stars, based on 1 article reviews
633-nm diode laser mrl-iii-633 - by Bioz Stars, 2026-09
90/100 stars
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86
Hugo Sachs Elektronik high precision force transducer
Setup: in-plane (A–C) and profile modes (D and E). (A) Experimental setup for in-plane aspiration experiments. In this case, the <t>micropipette</t> is positioned perpendicular to the surface of adherent endothelial cells cultured on the bottom of a petri dish. The syringe pump on the left creates a constant-rate aspiration pressure increase. (B) Plot of the projected cell area versus time for three different cells. The projected cell area is measured from pictures taken throughout the detachment. (C) Time-lapse of a cell throughout a detachment assay (corresponding to the solid line in B, and to the cell on the right in Movie S1). Scale bar, 10 μm. (D) Experimental setup for profile aspiration experiments. In this case, the aspiration micropipette is still positioned perpendicular to the surface of the endothelial cells, but they adhere to a Cytodex-3 bead, held in position by a second, larger micropipette (on the right). (E) Time lapse of the detachment assay of an endothelial cell adhering to a Cytodex-3 bead. Scale bar, 10 μm.
High Precision Force Transducer, supplied by Hugo Sachs Elektronik, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-axis+micromanipulator+mp-285/displacement+force+transducer/pm41683507-149-5-12
Average 86 stars, based on 1 article reviews
high precision force transducer - by Bioz Stars, 2026-09
86/100 stars
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86
Thorlabs axes 285
Setup: in-plane (A–C) and profile modes (D and E). (A) Experimental setup for in-plane aspiration experiments. In this case, the <t>micropipette</t> is positioned perpendicular to the surface of adherent endothelial cells cultured on the bottom of a petri dish. The syringe pump on the left creates a constant-rate aspiration pressure increase. (B) Plot of the projected cell area versus time for three different cells. The projected cell area is measured from pictures taken throughout the detachment. (C) Time-lapse of a cell throughout a detachment assay (corresponding to the solid line in B, and to the cell on the right in Movie S1). Scale bar, 10 μm. (D) Experimental setup for profile aspiration experiments. In this case, the aspiration micropipette is still positioned perpendicular to the surface of the endothelial cells, but they adhere to a Cytodex-3 bead, held in position by a second, larger micropipette (on the right). (E) Time lapse of the detachment assay of an endothelial cell adhering to a Cytodex-3 bead. Scale bar, 10 μm.
Axes 285, supplied by Thorlabs, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-axis+micromanipulator+mp-285/optomechanical+parts/claar_leslie__2018__investigating_basal_ganglia_circuitry_and_function_using_silicon_microprobes_and_optogenetic_techniques-148-32-38
Average 86 stars, based on 1 article reviews
axes 285 - by Bioz Stars, 2026-09
86/100 stars
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97
NeuroNexus Technologies silicon neural probe / silicon microelectrode array
Setup: in-plane (A–C) and profile modes (D and E). (A) Experimental setup for in-plane aspiration experiments. In this case, the <t>micropipette</t> is positioned perpendicular to the surface of adherent endothelial cells cultured on the bottom of a petri dish. The syringe pump on the left creates a constant-rate aspiration pressure increase. (B) Plot of the projected cell area versus time for three different cells. The projected cell area is measured from pictures taken throughout the detachment. (C) Time-lapse of a cell throughout a detachment assay (corresponding to the solid line in B, and to the cell on the right in Movie S1). Scale bar, 10 μm. (D) Experimental setup for profile aspiration experiments. In this case, the aspiration micropipette is still positioned perpendicular to the surface of the endothelial cells, but they adhere to a Cytodex-3 bead, held in position by a second, larger micropipette (on the right). (E) Time lapse of the detachment assay of an endothelial cell adhering to a Cytodex-3 bead. Scale bar, 10 μm.
Silicon Neural Probe / Silicon Microelectrode Array, supplied by NeuroNexus Technologies, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-axis+micromanipulator+mp-285/Silicon+Neural+Probe+%2F+Silicon+Microelectrode+Array/custom%40silicon-neural-probe-silicon-microelectrode-array%4030980031
Average 97 stars, based on 1 article reviews
silicon neural probe / silicon microelectrode array - by Bioz Stars, 2026-09
97/100 stars
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94
NeuroNexus Technologies optrode
Setup: in-plane (A–C) and profile modes (D and E). (A) Experimental setup for in-plane aspiration experiments. In this case, the <t>micropipette</t> is positioned perpendicular to the surface of adherent endothelial cells cultured on the bottom of a petri dish. The syringe pump on the left creates a constant-rate aspiration pressure increase. (B) Plot of the projected cell area versus time for three different cells. The projected cell area is measured from pictures taken throughout the detachment. (C) Time-lapse of a cell throughout a detachment assay (corresponding to the solid line in B, and to the cell on the right in Movie S1). Scale bar, 10 μm. (D) Experimental setup for profile aspiration experiments. In this case, the aspiration micropipette is still positioned perpendicular to the surface of the endothelial cells, but they adhere to a Cytodex-3 bead, held in position by a second, larger micropipette (on the right). (E) Time lapse of the detachment assay of an endothelial cell adhering to a Cytodex-3 bead. Scale bar, 10 μm.
Optrode, supplied by NeuroNexus Technologies, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-axis+micromanipulator+mp-285/Optrode/custom%40optrode%4030980031
Average 94 stars, based on 1 article reviews
optrode - by Bioz Stars, 2026-09
94/100 stars
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86
Thorlabs thor labs rotation platform rp01
Setup: in-plane (A–C) and profile modes (D and E). (A) Experimental setup for in-plane aspiration experiments. In this case, the <t>micropipette</t> is positioned perpendicular to the surface of adherent endothelial cells cultured on the bottom of a petri dish. The syringe pump on the left creates a constant-rate aspiration pressure increase. (B) Plot of the projected cell area versus time for three different cells. The projected cell area is measured from pictures taken throughout the detachment. (C) Time-lapse of a cell throughout a detachment assay (corresponding to the solid line in B, and to the cell on the right in Movie S1). Scale bar, 10 μm. (D) Experimental setup for profile aspiration experiments. In this case, the aspiration micropipette is still positioned perpendicular to the surface of the endothelial cells, but they adhere to a Cytodex-3 bead, held in position by a second, larger micropipette (on the right). (E) Time lapse of the detachment assay of an endothelial cell adhering to a Cytodex-3 bead. Scale bar, 10 μm.
Thor Labs Rotation Platform Rp01, supplied by Thorlabs, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-axis+micromanipulator+mp-285/platform+rotation/claar_leslie__2018__investigating_basal_ganglia_circuitry_and_function_using_silicon_microprobes_and_optogenetic_techniques-148-46-46
Average 86 stars, based on 1 article reviews
thor labs rotation platform rp01 - by Bioz Stars, 2026-09
86/100 stars
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Image Search Results


Setup: in-plane (A–C) and profile modes (D and E). (A) Experimental setup for in-plane aspiration experiments. In this case, the micropipette is positioned perpendicular to the surface of adherent endothelial cells cultured on the bottom of a petri dish. The syringe pump on the left creates a constant-rate aspiration pressure increase. (B) Plot of the projected cell area versus time for three different cells. The projected cell area is measured from pictures taken throughout the detachment. (C) Time-lapse of a cell throughout a detachment assay (corresponding to the solid line in B, and to the cell on the right in Movie S1). Scale bar, 10 μm. (D) Experimental setup for profile aspiration experiments. In this case, the aspiration micropipette is still positioned perpendicular to the surface of the endothelial cells, but they adhere to a Cytodex-3 bead, held in position by a second, larger micropipette (on the right). (E) Time lapse of the detachment assay of an endothelial cell adhering to a Cytodex-3 bead. Scale bar, 10 μm.

Journal: Biophysical Journal

Article Title: Characterizing Cell Adhesion by Using Micropipette Aspiration

doi: 10.1016/j.bpj.2015.06.015

Figure Lengend Snippet: Setup: in-plane (A–C) and profile modes (D and E). (A) Experimental setup for in-plane aspiration experiments. In this case, the micropipette is positioned perpendicular to the surface of adherent endothelial cells cultured on the bottom of a petri dish. The syringe pump on the left creates a constant-rate aspiration pressure increase. (B) Plot of the projected cell area versus time for three different cells. The projected cell area is measured from pictures taken throughout the detachment. (C) Time-lapse of a cell throughout a detachment assay (corresponding to the solid line in B, and to the cell on the right in Movie S1). Scale bar, 10 μm. (D) Experimental setup for profile aspiration experiments. In this case, the aspiration micropipette is still positioned perpendicular to the surface of the endothelial cells, but they adhere to a Cytodex-3 bead, held in position by a second, larger micropipette (on the right). (E) Time lapse of the detachment assay of an endothelial cell adhering to a Cytodex-3 bead. Scale bar, 10 μm.

Article Snippet: Micromanipulators The microscope was equipped with a motorized micromanipulator carrying a first micropipette holder at a 45° angle, and a manual three-axis stage linked to a UT-2 joint to orient a second micropipette holder (MP285 micromanipulator, Sutter Instruments, Novato, CA; IM-H1 micropipette holders and UT-2 joint, Narishige, Tokyo, Japan; three-axis stage, Thorlabs, Newton, NJ).

Techniques: Cell Culture

Critical stress. (A) Plot of binned experimental data showing that the detachment force scales linearly with the initial projected cell area, Scell, implying that a critical stress, σ∗ = 1300 Pa ± 50 Pa, induces cell detachment. Error bars show the standard deviation. N = 335 experimental data points. (B) Critical aspiration pressure, ΔP∗, versus projected cell area for different micropipette diameters. ΔP∗ depends on the micropipette section, Spipette, used in the experiments (●: Spipette ∈ [17 μm2, 72 μm2], ▲: Spipette ∈ [78 μm2, 275 μm2], ▪: Spipette ∈ [314 μm2, 707 μm2]). Error bars show the standard deviation.

Journal: Biophysical Journal

Article Title: Characterizing Cell Adhesion by Using Micropipette Aspiration

doi: 10.1016/j.bpj.2015.06.015

Figure Lengend Snippet: Critical stress. (A) Plot of binned experimental data showing that the detachment force scales linearly with the initial projected cell area, Scell, implying that a critical stress, σ∗ = 1300 Pa ± 50 Pa, induces cell detachment. Error bars show the standard deviation. N = 335 experimental data points. (B) Critical aspiration pressure, ΔP∗, versus projected cell area for different micropipette diameters. ΔP∗ depends on the micropipette section, Spipette, used in the experiments (●: Spipette ∈ [17 μm2, 72 μm2], ▲: Spipette ∈ [78 μm2, 275 μm2], ▪: Spipette ∈ [314 μm2, 707 μm2]). Error bars show the standard deviation.

Article Snippet: Micromanipulators The microscope was equipped with a motorized micromanipulator carrying a first micropipette holder at a 45° angle, and a manual three-axis stage linked to a UT-2 joint to orient a second micropipette holder (MP285 micromanipulator, Sutter Instruments, Novato, CA; IM-H1 micropipette holders and UT-2 joint, Narishige, Tokyo, Japan; three-axis stage, Thorlabs, Newton, NJ).

Techniques: Standard Deviation