Consumables

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P128-5Silicon probe design4 cortical channels situated at each shank above the main channels-
P2-64chSilicon probe design<p>Cambridge Neurotech P-series, 64ch, 4 shanks, poly 2, 250µm shank spacing</p>-
P1-32chSilicon probe designCambridge Neurotech P-series, 32ch, 2 shanks, poly 2, 250µm shank spacing-
H4Silicon probe designCambridge Neurotech H4, 32ch, 1 shanks, linear, 25µm spacing-
H2Silicon probe designCambridge Neurotech H2, 64ch, 2 shanks, linear, 25µm spacing, 250µm shank spacing-
P1-64chSilicon probe designCambridge Neurotech P-series, 64ch, 4 shanks, poly 2, 250µm shank spacing-
E1-64chSilicon probe designCambridge Neurotech E-series, 64ch, 4 shanks, edge, 250µm shank spacing-
E2-16chSilicon probe design<p>Cambridge Neurotech E-series, 16ch, 1 shank, edge</p>-
H1Silicon probe designCambridge Neurotech H1, 64ch, 2 shanks, high density sites, poly 4, 250µm shank spacing-
P1-16chSilicon probe designCambridge Neurotech P-series, 16ch, 1 shank, poly 2-
P2-32chSilicon probe design<p>Cambridge Neurotech P-series, 32ch, 2 shanks, poly 2, 250µm shank spacing</p>-
H3Silicon probe designCambridge Neurotech H3, 64ch, 1 shank, linear, 20µm spacing-
E2-64chSilicon probe design<p>Cambridge Neurotech E-series, 64ch, 4 shanks, edge, 250µm shank spacing</p>-
F-seriesSilicon probe designCambridge Neurotech F-series, 64ch, 6 shank, poly 2, 200µm shank spacing-
E1-16chSilicon probe designCambridge Neurotech E-series, 16ch, 1 shank, edge-
E1-32chSilicon probe designCambridge Neurotech E-series, 32ch, 2 shanks, edge, 250µm shank spacing-
MFC_400/430-0.48_2.6mm_MF2.5_FLTOptic fiber designOptic Fiber Glass: Core diameter: 400um - Outer diameter: 430um - NA: 0.48 Length: 2.6mm Metal Ferule OD: 2.5mm Flat tip-
Flexible_Polyimide_64ch_poly3Silicon probe designPolyimide probe-
Neuropixels 1.0 DummySilicon probe design960 channels in total to select from1
Neuropixels 2.0 DummySilicon probe design-1
Neuropixels 2.0Silicon probe design-2
Neuropixels 1.0 Probe - Phase 3B2Silicon probe design960 channels in total to select from1
A4x4-tet-5mm-150-200-121Silicon probe designtetrode to tetrode distance: 150µm first to last tetrode distance: 450µm See company catalog: 2018ProbeCatalog_20180515_Web, p.56-
A2x2-tet-10mm-150-150-121Silicon probe designtetrode to tetrode distance: 150µm See company catalog 2018_ProbeCatalog_20180515_Web, p.41-
A4x2-tet-5mm-500-400-121Silicon probe designtetrode to tetrode distance: 500µm-
A4x2-tet-9mm-1500-170-121Silicon probe designSpecial Order-
A2x32-5mm-25-200-177Silicon probe designSpecial Order-
A1x32-Poly3-10mm-25s-177Silicon probe designSpecial Order-
Buzsaki 5x12Silicon probe design*This probe has an non-uniform layout. See company catalog for more information: 2018ProbeCatalog_20180515_Web, p.55 There is a 800µm section above the staggered tip on the center shank with 4 sites in a linear layout, spaced 200µm apart-
A4x4-3mm-200-200-177Silicon probe designSpecial Order-
A8x4-tet-5mm-150-200-121Silicon probe designtetrode to tetrode distance: 150µm distance from first to last tetrode: 450µm See company catalog: 2018ProbeCatalog_20180515_Web, p.66-
A1x32-Poly2-5mm-50s-177Silicon probe designNeuroNexus 32ch, 1 shank, poly 2 (A1x32-Poly2-5mm-50s-177)-
A4x8-8mm-100-500-703Silicon probe designSpecial Order-
A4x32-Poly2-5mm-20s-lin-160Silicon probe design*This probe has an non-uniform layout. See company catalog for more information: 2018ProbeCatalog_20180515_Web, p.64 Each shank has two sites in a linear layout, separated by 100µm, above the staggered tip. The sites are 100µm above the tip in the first shank, 200µm above the tip in the second shank, 300µm above the tip in the third, and 400µm above the tip in the fourth.-
A1x16-Poly2-10mm-100-625Silicon probe designSpecial Order-
A8x16-Poly2-5mm-20s-lin-160Silicon probe design*This probe has an non-uniform layout. See company catalog for more information: 2018ProbeCatalog_20180515_Web, p.67 Each shank has two sites in a linear layout, separated by 100µm, above the staggered tip. The sites are 100µm above the tip in the first shank, 200µm above the tip in the second shank, 300µm above the tip in the third, and so forth.-
Buzsaki64LSilicon probe designNeuroNexus 64ch, 8 shanks, staggered, buzsaki-style, 200µm shank spacing, 10mm shanks (Buzsaki64L)-
Buzsaki32Silicon probe designNeuroNexus 32ch, 8 shanks, staggered, buzsaki-style, 200µm shank spacing (Buzsaki32)-
A4x16-5mm-50-500-703Silicon probe designSpecial Order-
A4x2-tet-5mm-150-200-121Silicon probe designtetrode to tetrode distance: 150µm-
A3x8-16-buz-lin-5mm-50-150-160-703Silicon probe design*This probe has an non-uniform layout. See company catalog for more information: 2018ProbeCatalog_20180515_Web, p.47 Above information is for the side shank. The side shanks follow Buzsaki "Octrode layout" Center shank information: Probe length (mm): 5mm Layout: linear Vertical spacing between sites(µm): 50µm Shank spacing between each side shank to center(µm): 82µm Shank spacing from left side shank to right side shank (µm, listed above): 300µm Site area (µm^2): 703µm^2-
A4x8-10mm-200-200-413Silicon probe designSpecial Order-
A4x2-tet-7mm-500-400-312Silicon probe designSpecial Order-
A1x8-2.5mm-150-413Silicon probe designSpecial Order-
A1x16-Poly2-5mm-50-STD-177Silicon probe designSpecial Order-
A4x16-poly2-5mm-20s-lin-160Silicon probe design*This probe has an non-uniform layout. See company catalog for more information: 2018ProbeCatalog_20180515_Web, p.57 Each shank has two sites in a linear layout, separated by 100µm, above the staggered tip. The sites are 100µm above the tip in the first shank, 200µm above the tip in the second shank, 300µm above the tip in the third, and 400µm above the tip in the fourth.-
A2x32-Poly2-6mm-23s-200-160Silicon probe design* This probe has an non-uniform layout. See company catalog for more information: 2018ProbeCatalog_20180515_Web, p.106 The right shank has a length of 5.27mm, the left shank has a length of 6mm. Special Order-
A5x12-16-Buz-lin-5mm-100-200-160-177Silicon probe design*This probe has an non-uniform layout. See company catalog for more information: 2018ProbeCatalog_20180515_Web, p.59 The above information is for the side shanks The center shank is as follows: Probe length(mm): 6.2mm Layout: linear Vertical spacing between sites(µm): 500µm for the top 4 sites, 100µm for the remaining 12 sites, Site area (µm^2): 177-
A2x32-Poly5-10mm-20s-200-100Silicon probe designSpecial Order-
A8x32-Poly2-5mm-20s-lin-160Silicon probe designNeuroNexus 256ch, 8 shank, poly 2 with 20µm vertical pitch, 150µm shank spacing (A8x32-Poly2-5mm-20s-lin-160)-
Buzsaki A4x16_poly3_6mm20s_200_160Silicon probe designNeuroNexus 64ch, 4 shanks, poly 3, 200µm shank spacing (Buzsaki Poly 3 custom design a4x16_poly3_6mm20s_200_160)-
A8x1-tet-2mm-200-121Silicon probe design*This probe has an non-uniform layout. See company catalog for more information: 2018ProbeCatalog_20180515_Web, p.52 Another site with an area of 4200µm^2 is located on the fourth shank from the left, 500µm above the tetrode-
A1x32-Poly3-5mm-25s-177Silicon probe designNeuroNexus 32ch, 1 shank, poly 3 (A1x32-Poly3-5mm-25s-177)-
Buzsaki64Silicon probe designNeuroNexus 64ch, 8 shanks, staggered, buzsaki-style, 200µm shank spacing (Buzsaki64)-
A1x32-7mm-100-1250Silicon probe designSpecial Order-
A2x2-tet-3mm-150-150-121Silicon probe designtetrode to tetrode distance: 150µm See company catalog 2018_ProbeCatalog_20180515_Web, p.41-
A8x8-5mm-200-160-BuzsakiSilicon probe designSpecial Order-
A2x8-11mm-125-200-177Silicon probe designSpecial Order-
Buzsaki256Silicon probe designNeuroNexus 256ch, 8 shank, linear 50µm vertical pitch, 300µm shank spacing (Buzsaki256)-
A5x12-Poly2-5mm-20s-lin-160Silicon probe designNeuroNexus 64ch, 5 shanks, poly 2, 200µm shank spacing (A5x12-Poly2-5mm-20s-lin-160)-
Buzsaki16Silicon probe designdistance between the first two sites: 20µm-
Buzsaki32LSilicon probe designNeuroNexus 32ch, 4 shanks, staggered, buzsaki-style, 200µm shank spacing, 10mm shanks (Buzsaki32L)-
EEG screwsSingle wire electrodeSmall EEG electrode which consists of a stainless steel jeweler’s screw welded to a stainless steel lead contact. Electrodes can be easily turned into holes that have been pre-drilled in the skull. The common screw 000-120 thread and ~0.8mm OD, with a length of 2-3mm.-
Other optic fiber designOptic fiber designThis entry can be used temporarily when an option is missing allowing you to continue your work while an entry is being approved.-
Other silicon probe designSilicon probe designThis entry can be used temporarily when an option is missing allowing you to continue your work while an entry is being approved.-
Other single wire electrodeSingle wire electrodeThis entry can be used temporarily when an option is missing allowing you to continue your work while an entry is being approved.-
Other virus constructVirus construct-1
EMG wireSingle wire electrode--
Virus 1Virus construct--
UM22-300 Optic fiber designØ300 µm Core Solarization-Resistant, Polyimide-Coated Multimode Fiber-
FG105LCAOptic fiber designØ105 µm Core Glass Clad Silica Multimode Optical Fiber, 0.22 NA. Bare fiber. Multimode Fiber, 0.22 NA, Low OH, Ø105 µm Core, 400 - 2400 nm-
UM22-600 Optic fiber designØ600 µm Core Solarization-Resistant, Polyimide-Coated Multimode Fiber-
FG200LEAOptic fiber designØ200 µm Core Glass Clad Silica Multimode Optical Fiber, 0.22 NA-
FG1000LEAOptic fiber designØ1000 µm Core Glass Clad Silica Multimode Optical Fiber, 0.22 NA-
UM22-200Optic fiber designØ200 µm Core Polyimide-Coated Multimode Fibers-
FG400LEPOptic fiber designØ400 µm Core Polyimide-Coated Multimode Fibers-
FG200UEAOptic fiber designØ200 µm Core Glass Clad Silica Multimode Optical Fiber, 0.22 NA-
FG1000UEAOptic fiber designØ1000 µm Core Glass Clad Silica Multimode Optical Fiber, 0.22 NA-
FG400UEP Optic fiber designØ400 µm Core Polyimide-Coated Multimode Fibers-
FG200LEPOptic fiber designØ200 µm Core Polyimide-Coated Multimode Fibers-
UM22-400 Optic fiber designØ400 µm Core Polyimide-Coated Multimode Fibers-
UM22-100Optic fiber designØ100 µm Core Solarization-Resistant, Polyimide-Coated Multimode Fiber-
FG400UEAOptic fiber designØ400 µm Core Glass Clad Silica Multimode Optical Fiber, 0.22 NA-
FG600UEAOptic fiber designØ600 µm Core Glass Clad Silica Multimode Optical Fiber, 0.22 NA-
FG600LEAOptic fiber designØ600 µm Core Glass Clad Silica Multimode Optical Fiber, 0.22 NA-
FG200UEP Optic fiber designØ200 µm Core Polyimide-Coated Multimode Fibers-
FG105UCAOptic fiber designØ105 µm Core Glass Clad Silica Multimode Optical Fiber, 0.22 NA. Bare fiber. Multimode Fiber, High OH, Ø105 µm Core, 250 - 1200 nm-
FG050LGAOptic fiber designØ50 µm Core Glass Clad Silica Multimode Optical Fiber, 0.22 NA-
FG400LEAOptic fiber designØ400 µm Core Glass Clad Silica Multimode Optical Fiber, 0.22 NA-
AAV-CaMKIIa-OptoA1-EYFPVirus constructOpto-XRs  (AAV5)-
AAV-GFAP-hChR2(H134R)-mCherryVirus constructOptical Excitation: ChR2-GFAP (AAV1, 2, 5 & 8)-
AAV-CaMKIIa-C1V1(E162T)-p2A-EYFPVirus constructThird-generation Optogenetic Inhibition: eNpHR3.0-
AAV-CaMKIIa-hChR2(H134R)-EYFP Virus constructOptical Excitation: ChR2-
AAV-EF1a-DIO-EYFPVirus constructControl Fluorophores-
AAV-EF1a-DIO-ChETA-EYFPVirus constructUltrafast Optogenetic Control: ChETA-
AAV-CaMKIIa-mCherryVirus constructControl Fluorophores-
AAV-EF1a-DIO-C1V1(E122T/E162T)-TS-EYFPVirus constructThird-generation Optogenetic Inhibition: eNpHR3.0-
AAV-CaMKIIa-C1V1(E122T/E162T)-TS-EYFP Virus constructThird-generation Optogenetic Inhibition: eNpHR3.0-
AAV-CaMKIIa-OptoD1-EYFPVirus constructOpto-XRs  (AAV5)-
AAV-CAG-GFPVirus constructControl Vectors-

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Consumables

Consumables refer to items that are intended to be used once or have a limited lifespan before they need to be replaced. These include materials and products that are consumed or depleted during the course of experiments or procedures. Consumables are critical for maintaining the integrity, accuracy, and reproducibility of scientific experiments. In BrainSTEM, consumables are a shared model across users.

Types of consumable

  • Optic fiber designs: Thin, flexible fibers used for transmitting light signals, crucial for optical neural imaging and optogenetic manipulation of neurons.
  • Silicon probe designs: Microfabricated devices designed for recording or stimulating neural activity, allowing for high-resolution interfacing with neural tissue.
  • Virus constructs: Genetically engineered viruses used for delivering genes into neurons, enabling the study of gene function or the manipulation of neural activity.
  • Wire electrodes: Thin metal wires used for recording electrical signals from or delivering electrical stimulation to neurons, essential for electrophysiological studies.

Submission process

Anyone can submit consumables or submit changes to existing ones, but all submissions must be approved before they are available for usage. Please see existing entries for examples as to what to submit.

Fields

  • Name: The name of the consumable (required; must be unique).
  • Type: The type of consumable - see available types above (required).
  • Supplier: The supplier of the consumable (required).
  • Description: A description of the consumable.
  • Type specific fields: Each type has custom fields (required).

Permissions

Once a entry has been approved it becomes available to everyone.

API Access

The API allows for programmable access, enabling you to read, edit, and delete entries through the API. For details about the fields and data structure, refer to the Consumables API endpoint documentation.