brain matrix slicer cat. Search Results


90
Stoelting inc acryl brain matrix
Acryl Brain Matrix, supplied by Stoelting inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Siemens AG 64-slice 128-layer spiral ct scanner
64 Slice 128 Layer Spiral Ct Scanner, supplied by Siemens AG, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
64-slice 128-layer spiral ct scanner - by Bioz Stars, 2026-08
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Promega celltiter 96® aqueous one solution
Celltiter 96® Aqueous One Solution, supplied by Promega, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
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86
Warner Instruments brain slice harp
Brain Slice Harp, supplied by Warner Instruments, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 86 stars, based on 1 article reviews
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90
Siemens AG spect 99mtc-trodat-1 spect-ct
Extracted data from behavioural studies. (n = 64)
Spect 99mtc Trodat 1 Spect Ct, supplied by Siemens AG, 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/brain+matrix+slicer+cat%2E/pmc11806873-75-39-42?v=Siemens+AG
Average 90 stars, based on 1 article reviews
spect 99mtc-trodat-1 spect-ct - by Bioz Stars, 2026-08
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90
Polysciences inc aqua poly/mount
Extracted data from behavioural studies. (n = 64)
Aqua Poly/Mount, supplied by Polysciences inc, 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/brain+matrix+slicer+cat%2E/pmc07604596-219-9-11?v=Polysciences+inc
Average 90 stars, based on 1 article reviews
aqua poly/mount - by Bioz Stars, 2026-08
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90
DWK Life Sciences dounce homogenizer
Extracted data from behavioural studies. (n = 64)
Dounce Homogenizer, supplied by DWK Life Sciences, 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/brain+matrix+slicer+cat%2E/pmc07812919-74-15-19?v=DWK+Life+Sciences
Average 90 stars, based on 1 article reviews
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93
Addgene inc brain slices expressing iglusnfr3 v857
Multiplexing FSCV and the genetically encoded fluorescent sensor <t>(iGluSnFR3.v857)</t> setup. (A) Schematic of the design of imaging/FSCV experiments and slice preparation. CFME is implanted near the glutamate‐expressing sites. (B) Fluorescent imaging of iGluSnFR3.v857, with arrows pointing to the CFME and capillary for adenosine injection. (C) Example release traces of simultaneously detected adenosine, dopamine, and glutamate. Adenosine (20 pmol) was applied at 5 s by nanoinjector, and the electrical stimulation was applied at 10 s.
Brain Slices Expressing Iglusnfr3 V857, supplied by Addgene inc, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/brain+matrix+slicer+cat%2E/pmc12230777-68-0-7?v=Addgene+inc
Average 93 stars, based on 1 article reviews
brain slices expressing iglusnfr3 v857 - by Bioz Stars, 2026-08
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90
Scientific Systems Design Inc brain slice keeper
Multiplexing FSCV and the genetically encoded fluorescent sensor <t>(iGluSnFR3.v857)</t> setup. (A) Schematic of the design of imaging/FSCV experiments and slice preparation. CFME is implanted near the glutamate‐expressing sites. (B) Fluorescent imaging of iGluSnFR3.v857, with arrows pointing to the CFME and capillary for adenosine injection. (C) Example release traces of simultaneously detected adenosine, dopamine, and glutamate. Adenosine (20 pmol) was applied at 5 s by nanoinjector, and the electrical stimulation was applied at 10 s.
Brain Slice Keeper, supplied by Scientific Systems Design Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
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90
Siemens AG 128-slice multi-slice spiral computed tomography(msct) scanner siemens 128-slice
Multiplexing FSCV and the genetically encoded fluorescent sensor <t>(iGluSnFR3.v857)</t> setup. (A) Schematic of the design of imaging/FSCV experiments and slice preparation. CFME is implanted near the glutamate‐expressing sites. (B) Fluorescent imaging of iGluSnFR3.v857, with arrows pointing to the CFME and capillary for adenosine injection. (C) Example release traces of simultaneously detected adenosine, dopamine, and glutamate. Adenosine (20 pmol) was applied at 5 s by nanoinjector, and the electrical stimulation was applied at 10 s.
128 Slice Multi Slice Spiral Computed Tomography(msct) Scanner Siemens 128 Slice, supplied by Siemens AG, 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/brain+matrix+slicer+cat%2E/10__1097_slash_md__0000000000041183-77-9-15?v=Siemens+AG
Average 90 stars, based on 1 article reviews
128-slice multi-slice spiral computed tomography(msct) scanner siemens 128-slice - by Bioz Stars, 2026-08
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90
RWD Life Science mouse brain slicing mold rwd life 68707
Multiplexing FSCV and the genetically encoded fluorescent sensor <t>(iGluSnFR3.v857)</t> setup. (A) Schematic of the design of imaging/FSCV experiments and slice preparation. CFME is implanted near the glutamate‐expressing sites. (B) Fluorescent imaging of iGluSnFR3.v857, with arrows pointing to the CFME and capillary for adenosine injection. (C) Example release traces of simultaneously detected adenosine, dopamine, and glutamate. Adenosine (20 pmol) was applied at 5 s by nanoinjector, and the electrical stimulation was applied at 10 s.
Mouse Brain Slicing Mold Rwd Life 68707, supplied by RWD Life Science, 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/brain+matrix+slicer+cat%2E/10__4103_slash_1673___5374__392890-108-14-18?v=RWD+Life+Science
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Biozol Diagnostica Vertrieb GmbH dapi-fluoromount-g
Multiplexing FSCV and the genetically encoded fluorescent sensor <t>(iGluSnFR3.v857)</t> setup. (A) Schematic of the design of imaging/FSCV experiments and slice preparation. CFME is implanted near the glutamate‐expressing sites. (B) Fluorescent imaging of iGluSnFR3.v857, with arrows pointing to the CFME and capillary for adenosine injection. (C) Example release traces of simultaneously detected adenosine, dopamine, and glutamate. Adenosine (20 pmol) was applied at 5 s by nanoinjector, and the electrical stimulation was applied at 10 s.
Dapi Fluoromount G, supplied by Biozol Diagnostica Vertrieb GmbH, 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/brain+matrix+slicer+cat%2E/pmc09445019-375-6-10?v=Biozol+Diagnostica+Vertrieb+GmbH
Average 90 stars, based on 1 article reviews
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Image Search Results


Extracted data from behavioural studies. (n = 64)

Journal: Journal of NeuroEngineering and Rehabilitation

Article Title: Neuroimaging and cognitive correlates of postural control in Parkinson’s disease: a systematic review

doi: 10.1186/s12984-024-01539-y

Figure Lengend Snippet: Extracted data from behavioural studies. (n = 64)

Article Snippet: [ ] , PD (n=32, 21m / 11f) aged 60.0 (11.0) UPDRS-III = 28.68 (14.21) OFF medication OA (n=39, 24m / 14f) aged 59.0 (11.0) , Force plate (100 Hz) NS EO X 3 Trial duration: 30s Barefoot , SPECT 99mTc-TRODAT-1 SPECT-CT (Siemens, Symbia T2/dual-head 128 x 128 matrix size 360°C rotation X 60 20s intervals CT: 2.5 mA, 140 kV, 10-mm slices Imaging 4 hours after dose administration (20 mCi pertechnetate) ROIs = Caudate, Anterior Putamen, Posterior Putamen , Sway, in AP direction and total, were sig. increased in PwPD, compared to OA. No sig. correlations between dopamine depletion and postural control (impairment) was found in PwPD. Future studies are recommended to recruit subject with more severe stages of PD and to assess other neurotransmitters like acetylcholine..

Techniques: Control, Biomarker Discovery, Comparison, Marker, Modification, Inhibition, Activity Assay, Disruption, Diagnostic Assay, Battery, Functional Assay, Variant Assay

Extracted data from brain-imaging studies assessing brain function associations with postural control performance (n=7)

Journal: Journal of NeuroEngineering and Rehabilitation

Article Title: Neuroimaging and cognitive correlates of postural control in Parkinson’s disease: a systematic review

doi: 10.1186/s12984-024-01539-y

Figure Lengend Snippet: Extracted data from brain-imaging studies assessing brain function associations with postural control performance (n=7)

Article Snippet: [ ] , PD (n=32, 21m / 11f) aged 60.0 (11.0) UPDRS-III = 28.68 (14.21) OFF medication OA (n=39, 24m / 14f) aged 59.0 (11.0) , Force plate (100 Hz) NS EO X 3 Trial duration: 30s Barefoot , SPECT 99mTc-TRODAT-1 SPECT-CT (Siemens, Symbia T2/dual-head 128 x 128 matrix size 360°C rotation X 60 20s intervals CT: 2.5 mA, 140 kV, 10-mm slices Imaging 4 hours after dose administration (20 mCi pertechnetate) ROIs = Caudate, Anterior Putamen, Posterior Putamen , Sway, in AP direction and total, were sig. increased in PwPD, compared to OA. No sig. correlations between dopamine depletion and postural control (impairment) was found in PwPD. Future studies are recommended to recruit subject with more severe stages of PD and to assess other neurotransmitters like acetylcholine..

Techniques: Control, Imaging, Single Photon Emission Computed Tomography, Functional Assay

Multiplexing FSCV and the genetically encoded fluorescent sensor (iGluSnFR3.v857) setup. (A) Schematic of the design of imaging/FSCV experiments and slice preparation. CFME is implanted near the glutamate‐expressing sites. (B) Fluorescent imaging of iGluSnFR3.v857, with arrows pointing to the CFME and capillary for adenosine injection. (C) Example release traces of simultaneously detected adenosine, dopamine, and glutamate. Adenosine (20 pmol) was applied at 5 s by nanoinjector, and the electrical stimulation was applied at 10 s.

Journal: Journal of Neurochemistry

Article Title: Multiplexing FSCV and iGluSnFR3 Sensors Reveals Adenosine Transiently Inhibits Stimulated Dopamine and Glutamate Release

doi: 10.1111/jnc.70147

Figure Lengend Snippet: Multiplexing FSCV and the genetically encoded fluorescent sensor (iGluSnFR3.v857) setup. (A) Schematic of the design of imaging/FSCV experiments and slice preparation. CFME is implanted near the glutamate‐expressing sites. (B) Fluorescent imaging of iGluSnFR3.v857, with arrows pointing to the CFME and capillary for adenosine injection. (C) Example release traces of simultaneously detected adenosine, dopamine, and glutamate. Adenosine (20 pmol) was applied at 5 s by nanoinjector, and the electrical stimulation was applied at 10 s.

Article Snippet: Brain slices expressing iGluSnFR3.v857 (Cat. # 175186, Addgene) were analyzed using wide‐field epifluorescence imaging (Olympus) equipped with a Hamamatsu ORCA‐Flash 4.0 camera.

Techniques: Multiplexing, Imaging, Slice Preparation, Expressing, Injection

Exogenous adenosine inhibits glutamate and dopamine release transiently. (A, C, E) Examples of iGluSnFR3.v857 response vs. time traces at different distances. Adenosine was injected 5 s before the electric stimulation and glutamate was measured at distances from the injection site: (A) < 100 μm, (C) 100–250 μm, (E) > 250 μm. (B, D, F). Average inhibition effect of adenosine on glutamate release at different distances from adenosine application: (B) < 100 μm, (D) 100–250 μm, (F) > 250 μm. (G) Concentration vs. time traces of dopamine release < 100 μm. (H) Averaged dopamine release with adenosine. Adenosine significantly inhibits dopamine release within the < 100 μm range (One‐way ANOVA, ** p < 0.0012, F 2,21 = 9.221, **** p < 0.0001, F 2,21 = 20.32, n = 8).

Journal: Journal of Neurochemistry

Article Title: Multiplexing FSCV and iGluSnFR3 Sensors Reveals Adenosine Transiently Inhibits Stimulated Dopamine and Glutamate Release

doi: 10.1111/jnc.70147

Figure Lengend Snippet: Exogenous adenosine inhibits glutamate and dopamine release transiently. (A, C, E) Examples of iGluSnFR3.v857 response vs. time traces at different distances. Adenosine was injected 5 s before the electric stimulation and glutamate was measured at distances from the injection site: (A) < 100 μm, (C) 100–250 μm, (E) > 250 μm. (B, D, F). Average inhibition effect of adenosine on glutamate release at different distances from adenosine application: (B) < 100 μm, (D) 100–250 μm, (F) > 250 μm. (G) Concentration vs. time traces of dopamine release < 100 μm. (H) Averaged dopamine release with adenosine. Adenosine significantly inhibits dopamine release within the < 100 μm range (One‐way ANOVA, ** p < 0.0012, F 2,21 = 9.221, **** p < 0.0001, F 2,21 = 20.32, n = 8).

Article Snippet: Brain slices expressing iGluSnFR3.v857 (Cat. # 175186, Addgene) were analyzed using wide‐field epifluorescence imaging (Olympus) equipped with a Hamamatsu ORCA‐Flash 4.0 camera.

Techniques: Injection, Inhibition, Concentration Assay

Control experiment by injecting PBS buffer. (A) Example iGluSnFR3.v857 response vs. time traces after injecting PBS at < 100 μm. (B) Example concentration vs. time traces of stimulated dopamine release at < 100 μm from the site of injection. Overall effect of PBS injection on (C) glutamate (one‐way ANOVA, n = 6, F 2,15 = 1.404, p = 0.2760) and (D) dopamine release (one‐way ANOVA, n = 3, F 2,6 = 1.461, p = 0.3042) at < 100 μm.

Journal: Journal of Neurochemistry

Article Title: Multiplexing FSCV and iGluSnFR3 Sensors Reveals Adenosine Transiently Inhibits Stimulated Dopamine and Glutamate Release

doi: 10.1111/jnc.70147

Figure Lengend Snippet: Control experiment by injecting PBS buffer. (A) Example iGluSnFR3.v857 response vs. time traces after injecting PBS at < 100 μm. (B) Example concentration vs. time traces of stimulated dopamine release at < 100 μm from the site of injection. Overall effect of PBS injection on (C) glutamate (one‐way ANOVA, n = 6, F 2,15 = 1.404, p = 0.2760) and (D) dopamine release (one‐way ANOVA, n = 3, F 2,6 = 1.461, p = 0.3042) at < 100 μm.

Article Snippet: Brain slices expressing iGluSnFR3.v857 (Cat. # 175186, Addgene) were analyzed using wide‐field epifluorescence imaging (Olympus) equipped with a Hamamatsu ORCA‐Flash 4.0 camera.

Techniques: Control, Concentration Assay, Injection

Adenosine modulation of glutamate and dopamine is blocked by A 1 inhibitor DPCPX. (A) Example of iGluSnFR3.v857 response vs. time traces. (B) Example of concentration vs. time traces of stimulated dopamine release. (C, D) Overall effect of DPCPX in the absence and presence of adenosine injection on glutamate (One‐way ANOVA, n = 6, F 3,20 = 0.9485, p = 0.4360) and dopamine release (One‐way ANOVA, n = 6, F 3,20 = 0.5429, p = 0.6585).

Journal: Journal of Neurochemistry

Article Title: Multiplexing FSCV and iGluSnFR3 Sensors Reveals Adenosine Transiently Inhibits Stimulated Dopamine and Glutamate Release

doi: 10.1111/jnc.70147

Figure Lengend Snippet: Adenosine modulation of glutamate and dopamine is blocked by A 1 inhibitor DPCPX. (A) Example of iGluSnFR3.v857 response vs. time traces. (B) Example of concentration vs. time traces of stimulated dopamine release. (C, D) Overall effect of DPCPX in the absence and presence of adenosine injection on glutamate (One‐way ANOVA, n = 6, F 3,20 = 0.9485, p = 0.4360) and dopamine release (One‐way ANOVA, n = 6, F 3,20 = 0.5429, p = 0.6585).

Article Snippet: Brain slices expressing iGluSnFR3.v857 (Cat. # 175186, Addgene) were analyzed using wide‐field epifluorescence imaging (Olympus) equipped with a Hamamatsu ORCA‐Flash 4.0 camera.

Techniques: Concentration Assay, Injection