Scientifica LBM-7 Manual Manipulator delivers precision across a wide range of experiments. Technical Data
Scientifica LBM-7

Scientifica LBM-7

Schematics

LBM-7 Front view

LBM-7 Side view

LBM-7 Top view

Accessories

Extension Bracket (LBM-2005-00)

This bracket provides the freedom to position the probe in difficult places whilst maintaining absolute stability.

Sliding Bracket (LBM-2010-00)

Safely slide your pipette or electrode in and out of the experimental area with 75 mm of travel to make pipette exchange even easier.

Extra Smooth Adjusters (LBM-2025-00)

This manipulator is supremely adjustable in all seven axes, but for scientists who want even more sensitivity, larger diameter adjuster knobs perfectly complement the standard device.

LBM-7 Fixed Mounting Bracket (IVM-505-00)

Allows the user to mount the IVM on the LBM-7 either to the approach axis stage or to a sliding carriage attached to the approach axis stage. If mounted on the approach axis stage it can only mount in the same axis as the stage. If mounted on the sliding bracket it can be mounted at 90º or in the same axis as the approach axis.

LBM-7 Adjustable Mounting Bracket (IVM-510-00)

This allows the approach axis of the LBM-7 to be removed and the IVM be mounted in its place. It can then be rotated and locked in position at the correct angle.

Riser Block for the LBM 7

A 70 mm block to raise the height of the manipulator.

Post and Platform for MMBP (PP-3400-00)

Used to mount the MicroStar onto the Scientifica MMBP

Electrode Holding Bar (EHB-500)

Electrode/probe holding bar with v groove.

Design & Specifications

  • Number of Axes: 4 linear, 3 rotational
  • Travel Distance: 25 mm in X and Z axes, 12.7 mm in Y axis
  • Thread pitch on adjusters: 0.8 mm in X and Z axes, 0.5 mm in Y axis (per revolution)
  • Stages: Aluminium with preloaded linear ball bearing races
  • Weight: 1 kg

调查报告

  • Sniff-Like Patterned Input Results in Long-Term Plasticity at the Rat Olfactory Bulb Mitral and Tufted Cell to Granule Cell Synapse.

    Chatterjee, M., Perez de los Cobos Pallares, F., Loebel, A., Lukas, M., & Egger, V. (2016). Sniff-Like Patterned Input Results in Long-Term Plasticity at the Rat Olfactory Bulb Mitral and Tufted Cell to Granule Cell Synapse. Neural Plasticity, 2016, 1-16. http://dx.doi.org/10.1155/2016...

  • A horizontal slice preparation for examining the functional connectivity of dorsal column fibres in mouse spinal cord.

    Flynn, J., Brichta, A., Galea, M., Callister, R., & Graham, B. (2011). A horizontal slice preparation for examining the functional connectivity of dorsal column fibres in mouse spinal cord. Journal Of Neuroscience Methods, 200(2), 113-120. http://dx.doi.org/10.1016/j.jn...

  • Optical fibre-tip probes for SERS: numerical study for design considerations.

    Hutter, T., Elliott, S., Mahajan, S. (2018). Optical fibre-tip probes for SERS: numerical study for design considerations. Optics Express, 26(12), 15539-15550. https://doi.org/10.1364/OE.26....

  • Long-Term Plasticity at the Mitral and Tufted Cell to Granule Cell Synapse of the Olfactory Bulb Investigated with a Custom Multielectrode in Acute Brain Slice Preparations.

    Lukas, M., Holthoff, K., Egger, V. (2018). Long-Term Plasticity at the Mitral and Tufted Cell to Granule Cell Synapse of the Olfactory Bulb Investigated with a Custom Multielectrode in Acute Brain Slice Preparations. Olfactory Receptors, 157-167. https://link.springer.com/prot...

  • Structure–Activity Relationship Studies of Argiotoxins: Selective and Potent Inhibitors of Ionotropic Glutamate Receptors.

    Poulsen, M., Lucas, S., Bach, T., Barslund, A., Wenzler, C., & Jensen, C. et al. (2013). Structure–Activity Relationship Studies of Argiotoxins: Selective and Potent Inhibitors of Ionotropic Glutamate Receptors. Journal Of Medicinal Chemistry, 56(3), 1171-1181. http://dx.doi.org/10.1021/jm30...

  • Evaluation of PhTX-74 as Subtype-Selective Inhibitor of GluA2-Containing AMPA Receptors.

    Poulsen, M., Lucas, S., Stromgaard, K., & Kristensen, A. (2013). Evaluation of PhTX-74 as Subtype-Selective Inhibitor of GluA2-Containing AMPA Receptors. Molecular Pharmacology, 85(2), 261-268. http://dx.doi.org/10.1124/mol....

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