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RH 795 *CAS#: 172807-13-5*

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Physical properties
Molecular weight585.41
SolventWater
Spectral properties
Extinction coefficient (cm -1 M -1)78800
Excitation (nm)486
Emission (nm)689
Storage, safety and handling
H-phraseH303, H313, H333
Hazard symbolXN
Intended useResearch Use Only (RUO)
R-phraseR20, R21, R22
StorageFreeze (< -15 °C); Minimize light exposure
UNSPSC12352200

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CAS
172807-13-5
Molecular weight
585.41
Extinction coefficient (cm -1 M -1)
78800
Excitation (nm)
486
Emission (nm)
689
RH 795 is a neuron-tracing dye. It is used for monitoring membrane potential, synaptic activity and ion channel activity of neurons.

Calculators


Common stock solution preparation

Table 1. Volume of Water needed to reconstitute specific mass of RH 795 *CAS#: 172807-13-5* to given concentration. Note that volume is only for preparing stock solution. Refer to sample experimental protocol for appropriate experimental/physiological buffers.

0.1 mg0.5 mg1 mg5 mg10 mg
1 mM170.82 µL854.102 µL1.708 mL8.541 mL17.082 mL
5 mM34.164 µL170.82 µL341.641 µL1.708 mL3.416 mL
10 mM17.082 µL85.41 µL170.82 µL854.102 µL1.708 mL

Molarity calculator

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Spectrum


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spectrum

Spectral properties

Extinction coefficient (cm -1 M -1)78800
Excitation (nm)486
Emission (nm)689

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References


View all 19 references: Citation Explorer
A new neurophysiological/neuropathological ex vivo model localizes the origin of glioma-associated epileptogenesis in the invasion area
Authors: Senner V, Kohling R, Puttmann-Cyrus S, Straub H, Paulus W, Speckmann EJ.
Journal: Acta Neuropathol (Berl) (2004): 1
In vivo fluorescence microscopy of neuronal activity in three dimensions by use of voltage-sensitive dyes
Authors: Fisher JA, Civillico EF, Contreras D, Yodh AG.
Journal: Opt Lett (2004): 71
Novel naphthylstyryl-pyridium potentiometric dyes offer advantages for neural network analysis
Authors: Obaid AL, Loew LM, Wuskell JP, Salzberg BM.
Journal: J Neurosci Methods (2004): 179
Functional glutamatergic and glycinergic inputs to several superior olivary nuclei of the rat revealed by optical imaging
Authors: Srinivasan G, Friauf E, Lohrke S.
Journal: Neuroscience (2004): 617
Blockade of astrocyte metabolism causes delayed excitation as revealed by voltage-sensitive dyes in mouse brainstem slices
Authors: Hulsmann S, Straub H, Richter DW, Speckmann EJ.
Journal: Exp Brain Res (2003): 117
Stimulus-induced patterns of bioelectric activity in human neocortical tissue recorded by a voltage sensitive dye
Authors: Straub H, Kuhnt U, Hohling JM, Kohling R, Gorji A, Kuhlmann D, Tuxhorn I, Ebner A, Wolf P, Pannek HW, Lahl R, Speckmann EJ.
Journal: Neuroscience (2003): 587
Effect of neonatal capsaicin treatment on neural activity in the medullary dorsal horn of neonatal rats evoked by electrical stimulation to the trigeminal afferents: an optical, electrophysiological, and quantitative study
Authors: Takuma S., undefined
Journal: Brain Res (2001): 1
Separation of signal and noise from in vivo optical recording in Guinea pigs using independent component analysis
Authors: Maeda S, Inagaki S, Kawaguchi H, Song WJ.
Journal: Neurosci Lett (2001): 137
Optical imaging of neural activity in multiple auditory cortical fields of guinea pigs
Authors: Horikawa J, Hess A, Nasu M, Hosokawa Y, Scheich H, Taniguchi I.
Journal: Neuroreport (2001): 3335
An in vitro preparation to access cellular and neuronal components in the mouse inner ear
Authors: Le Calvez S, Ulfendahl M.
Journal: J Neurocytol (2000): 645