scholarly article | Q13442814 |
P2093 | author name string | Chi Pui Pang | |
Yuk Fai Leung | |||
Mingzhi Zhang | |||
Prahatha Venkatraman | |||
Logan Ganzen | |||
P2860 | cites work | A mutation in the cone-specific pde6 gene causes rapid cone photoreceptor degeneration in zebrafish. | Q46852193 |
Chemical suppression of a genetic mutation in a zebrafish model of aortic coarctation | Q47074041 | ||
A new form of inherited red-blindness identified in zebrafish | Q47074063 | ||
Effects of lorazepam and WAY-200070 in larval zebrafish light/dark choice test | Q47721467 | ||
Japan stem-cell trial stirs envy | Q47813587 | ||
Systematic screening of behavioral responses in two zebrafish strains. | Q47881882 | ||
Segmental homologies among reticulospinal neurons in the hindbrain of the zebrafish larva | Q48300554 | ||
The Mauthner-initiated startle response in teleost fish | Q48314945 | ||
Automated visual choice discrimination learning in zebrafish (Danio rerio). | Q48457178 | ||
iPhone® applications as versatile video tracking tools to analyze behavior in zebrafish (Danio rerio) | Q48729104 | ||
Locomotor activity assay in zebrafish larvae: influence of age, strain and ethanol | Q48793580 | ||
The development of eye movements in the zebrafish (Danio rerio) | Q49106137 | ||
Parental Whole Life Cycle Exposure to Dietary Methylmercury in Zebrafish (Danio rerio) Affects the Behavior of Offspring | Q50524931 | ||
Assessing locomotor activity in larval zebrafish: Influence of extrinsic and intrinsic variables | Q50673841 | ||
The effects of nicotine on cone and rod b-wave responses in larval zebrafish | Q50870690 | ||
Genetic variation in strains of zebrafish (Danio rerio) and the implications for ecotoxicology studies | Q51678940 | ||
Modulation of locomotor activity in larval zebrafish during light adaptation | Q51981991 | ||
Sensorimotor gating in larval zebrafish. | Q51987087 | ||
Cell mosaic patterns in the native and regenerated inner retina of zebrafish: implications for retinal assembly | Q52172323 | ||
Genetic disorders of vision revealed by a behavioral screen of 400 essential loci in zebrafish. | Q52536430 | ||
Measuring the optokinetic response of zebrafish larvae | Q52578170 | ||
Effects of abnormal lighting on the development of zebrafish visual behavior | Q73222391 | ||
Rapid analysis of angiogenesis drugs in a live fluorescent zebrafish assay | Q73376523 | ||
Antioxidants slow photoreceptor cell death in mouse models of retinitis pigmentosa | Q80372689 | ||
Cell-based assays for high-throughput screening | Q82876835 | ||
Retinitis pigmentosa | Q21203028 | ||
Disruption of the basal body protein POC1B results in autosomal-recessive cone-rod dystrophy | Q24300726 | ||
Missense mutation in the gene encoding the alpha subunit of rod transducin in the Nougaret form of congenital stationary night blindness | Q24328892 | ||
Homozygosity mapping of the Achromatopsia locus in the Pingelapese | Q24540079 | ||
Mutation spectrum of the rhodopsin gene among patients with autosomal dominant retinitis pigmentosa | Q24560214 | ||
Zebrafish ultraviolet visual pigment: absorption spectrum, sequence, and localization | Q24562431 | ||
Forward genetic analysis of visual behavior in zebrafish | Q24811127 | ||
Long-Term Results from an Epiretinal Prosthesis to Restore Sight to the Blind | Q27304688 | ||
The role of mislocalized phototransduction in photoreceptor cell death of retinitis pigmentosa | Q27308102 | ||
A Naturally-Derived Compound Schisandrin B Enhanced Light Sensation in the pde6c Zebrafish Model of Retinal Degeneration | Q27320832 | ||
Coupling mechanical deformations and planar cell polarity to create regular patterns in the zebrafish retina | Q27330085 | ||
Drug discovery: a historical perspective | Q28138834 | ||
Retinal degeneration mutants in the mouse | Q28202375 | ||
Human embryonic stem cell-derived retinal pigment epithelium in patients with age-related macular degeneration and Stargardt's macular dystrophy: follow-up of two open-label phase 1/2 studies | Q28252926 | ||
Identification of genetic and chemical modulators of zebrafish mechanosensory hair cell death | Q28472316 | ||
Large-Scale Assessment of the Zebrafish Embryo as a Possible Predictive Model in Toxicity Testing | Q28478853 | ||
Correction: A Naturally-Derived Compound Schisandrin B Enhanced Light Sensation in the pde6c Zebrafish Model of Retinal Degeneration | Q28551571 | ||
A New System for the Rapid Collection of Large Numbers of Developmentally Staged Zebrafish Embryos | Q28743078 | ||
Retinitis pigmentosa | Q29616538 | ||
How were new medicines discovered? | Q29616641 | ||
Zebrafish behavioral profiling identifies multitarget antipsychotic-like compounds. | Q30369007 | ||
The neural basis of visual behaviors in the larval zebrafish. | Q30405413 | ||
Regulated reprogramming in the regeneration of sensory receptor cells. | Q30414064 | ||
Zebrafish--on the move towards ophthalmological research | Q30415226 | ||
Quantification of larval zebrafish motor function in multiwell plates using open-source MATLAB applications. | Q30422016 | ||
Rapid behavior-based identification of neuroactive small molecules in the zebrafish | Q30493523 | ||
Photochemical activation of TRPA1 channels in neurons and animals | Q30537874 | ||
Visnagin protects against doxorubicin-induced cardiomyopathy through modulation of mitochondrial malate dehydrogenase | Q30628082 | ||
Monitoring sleep and arousal in zebrafish | Q37812725 | ||
Pluripotent human stem cells for the treatment of retinal disease | Q37869018 | ||
Behavioral screening for neuroactive drugs in zebrafish | Q37875030 | ||
Optogenetics: A new enlightenment age for zebrafish neurobiology | Q37875036 | ||
The genetics of ocular disorders: Insights from the zebrafish | Q37935720 | ||
Zebrafish-based small molecule screens for novel cardiovascular drugs | Q38139528 | ||
Drug Screening to Treat Early-Onset Eye Diseases: Can Zebrafish Expedite the Discovery? | Q38536894 | ||
Fish-on-a-chip: microfluidics for zebrafish research | Q38753472 | ||
Zebrafish Models of Retinal Disease | Q38770492 | ||
Spectral properties of the zebrafish visual motor response | Q38924887 | ||
Improved retinal function in a mouse model of dominant retinitis pigmentosa following AAV-delivered gene therapy | Q39505058 | ||
Automated, high-throughput, in vivo analysis of visual function using the zebrafish. | Q39987405 | ||
Validation of the use of zebrafish larvae in visual safety assessment. | Q40082869 | ||
Computational classification of different wild-type zebrafish strains based on their variation in light-induced locomotor response. | Q40188189 | ||
Comparison of the usefulness of the MTT, ATP, and calcein assays to predict the potency of cytotoxic agents in various human cancer cell lines. | Q40479447 | ||
Discovery and mechanism of action of a novel series of apoptosis inducers with potential vascular targeting activity | Q40492344 | ||
A High-Throughput Zebrafish Screening Method for Visual Mutants by Light-Induced Locomotor Response | Q40554828 | ||
Red blood cell membrane phosphatidylethanolamine fatty acid content in various forms of retinitis pigmentosa | Q41673394 | ||
Visualising apoptosis in live zebrafish using fluorescence lifetime imaging with optical projection tomography to map FRET biosensor activity in space and time | Q41774474 | ||
Virally delivered Channelrhodopsin-2 Safely and Effectively Restores Visual Function in Multiple Mouse Models of Blindness | Q41991320 | ||
Increased expression of glutathione peroxidase 4 strongly protects retina from oxidative damage. | Q42116744 | ||
PTPMT1 Inhibition Lowers Glucose through Succinate Dehydrogenase Phosphorylation | Q42415411 | ||
Distinct retinal deficits in a zebrafish pyruvate dehydrogenase-deficient mutant. | Q42913202 | ||
Adeno-associated virus-mediated rhodopsin replacement provides therapeutic benefit in mice with a targeted disruption of the rhodopsin gene. | Q43262568 | ||
idTracker: tracking individuals in a group by automatic identification of unmarked animals. | Q43556412 | ||
The zebrafish space cadet gene controls axonal pathfinding of neurons that modulate fast turning movements. | Q43700217 | ||
Rod contributions to the electroretinogram of the dark‐adapted developing zebrafish | Q43827209 | ||
Behavioral screening assays in zebrafish | Q44082659 | ||
Early safety assessment of human oculotoxic drugs using the zebrafish visualmotor response | Q44466352 | ||
Development of a rod photoreceptor mosaic revealed in transgenic zebrafish | Q44472628 | ||
ucb L059, a novel anti-convulsant drug: pharmacological profile in animals | Q44664186 | ||
A randomized, placebo-controlled clinical trial of docosahexaenoic acid supplementation for X-linked retinitis pigmentosa. | Q44826779 | ||
A category approach to predicting the developmental (neuro) toxicity of organotin compounds: The value of the zebrafish (Danio rerio) embryotoxicity test (ZET) | Q46043331 | ||
Perception of Fourier and non-Fourier motion by larval zebrafish | Q46063199 | ||
Phenotypic vs. Target-Based Drug Discovery for First-in-Class Medicines | Q46110703 | ||
Laser ablations reveal functional relationships of segmental hindbrain neurons in zebrafish | Q30632990 | ||
Multiplexed 3D FRET imaging in deep tissue of live embryos | Q30665832 | ||
Photoreceptor transplantation in retinitis pigmentosa: short-term follow-up | Q30885976 | ||
Sunscreen for fish: co-option of UV light protection for camouflage | Q31149240 | ||
Wet age-related macular degeneration | Q33227872 | ||
Deep brain photoreceptors control light-seeking behavior in zebrafish larvae | Q33354390 | ||
VideoHacking: Automated Tracking and Quantification of Locomotor Behavior with Open Source Software and Off-the-Shelf Video Equipment | Q33444590 | ||
Zebrafish behavioral profiling links drugs to biological targets and rest/wake regulation | Q33523962 | ||
Increased expression of catalase and superoxide dismutase 2 reduces cone cell death in retinitis pigmentosa | Q33579158 | ||
Wild-type cone photoreceptors persist despite neighboring mutant cone degeneration | Q33586537 | ||
High-throughput in vivo vertebrate screening | Q33635305 | ||
An in vivo zebrafish screen identifies organophosphate antidotes with diverse mechanisms of action | Q33740260 | ||
Statistical Analysis of Zebrafish Locomotor Behaviour by Generalized Linear Mixed Models | Q33774469 | ||
Zebrafish larvae lose vision at night. | Q33778269 | ||
A behavioral screen for isolating zebrafish mutants with visual system defects | Q33783204 | ||
A behavioral assay to measure responsiveness of zebrafish to changes in light intensities | Q33890682 | ||
Count and density of human retinal photoreceptors | Q33971940 | ||
Homozygosity mapping reveals PDE6C mutations in patients with early-onset cone photoreceptor disorders. | Q34018557 | ||
Behavioral profiling of zebrafish embryos exposed to a panel of 60 water-soluble compounds | Q34090121 | ||
The art and design of genetic screens: zebrafish | Q34104121 | ||
Principles of early drug discovery | Q34150775 | ||
A point mutation of the rhodopsin gene in one form of retinitis pigmentosa | Q34168407 | ||
Identification of compounds with anti-convulsant properties in a zebrafish model of epileptic seizures | Q34316262 | ||
A randomized trial of vitamin A and vitamin E supplementation for retinitis pigmentosa | Q34366637 | ||
Cell-Based Versus Isolated Target Screening: How Lucky Do You Feel? | Q34426023 | ||
Genetics of photoreceptor degeneration and regeneration in zebrafish | Q34533601 | ||
Identification of zebrafish insertional mutants with defects in visual system development and function | Q34557391 | ||
Retinal repair by transplantation of photoreceptor precursors | Q34580415 | ||
Locomotor behaviors in zebrafish (Danio rerio) larvae | Q34713934 | ||
Light-activated channels targeted to ON bipolar cells restore visual function in retinal degeneration | Q34773506 | ||
Restoration of visual function in retinal degeneration mice by ectopic expression of melanopsin. | Q34845685 | ||
Inter-individual and inter-strain variations in zebrafish locomotor ontogeny | Q34946536 | ||
Antioxidants reduce cone cell death in a model of retinitis pigmentosa | Q34983972 | ||
Optogenetics for retinal disorders | Q35017748 | ||
The cost-effectiveness of the Argus II retinal prosthesis in Retinitis Pigmentosa patients. | Q35147398 | ||
Toward a better understanding of human eye disease insights from the zebrafish, Danio rerio. | Q35176354 | ||
Phenotype-driven chemical screening in zebrafish for compounds that inhibit collective cell migration identifies multiple pathways potentially involved in metastatic invasion | Q35587087 | ||
The pros and cons of vertebrate animal models for functional and therapeutic research on inherited retinal dystrophies | Q35621100 | ||
Extensive genetic diversity and substructuring among zebrafish strains revealed through copy number variant analysis. | Q35673740 | ||
Adaptation of high-throughput screening in drug discovery-toxicological screening tests. | Q35719340 | ||
Statistical Analysis of Zebrafish Locomotor Response | Q35799334 | ||
Large-Scale Phenotype-Based Antiepileptic Drug Screening in a Zebrafish Model of Dravet Syndrome(1,2,3). | Q35805872 | ||
Genetics of photoreceptor development and function in zebrafish | Q35959767 | ||
Target-based drug discovery: is something wrong? | Q36046572 | ||
Stem Cell-Based Therapeutic Applications in Retinal Degenerative Diseases | Q36127641 | ||
OFF ganglion cells cannot drive the optokinetic reflex in zebrafish | Q36277254 | ||
Progesterone receptor membrane component-1 regulates hepcidin biosynthesis | Q36430759 | ||
Progressive cone and cone-rod dystrophies: phenotypes and underlying molecular genetic basis. | Q36462441 | ||
Zebrafish: a model system for the study of eye genetics | Q36503151 | ||
ω-3 Intake and Visual Acuity in Patients With Retinitis Pigmentosa Receiving Vitamin A | Q36554776 | ||
Chemical and metabolomic screens identify novel biomarkers and antidotes for cyanide exposure | Q36788769 | ||
Quantification of locomotor activity in larval zebrafish: considerations for the design of high-throughput behavioral studies | Q36914645 | ||
Target deconvolution strategies in drug discovery | Q36961595 | ||
Towards therapeutic application of ocular stem cells. | Q36981014 | ||
The optokinetic response in zebrafish and its applications. | Q36992292 | ||
Zebrafish mutants as models for congenital ocular disorders in humans. | Q37024257 | ||
Small molecule developmental screens reveal the logic and timing of vertebrate development | Q37276174 | ||
Photoreceptor protection by adeno-associated virus-mediated LEDGF expression in the RCS rat model of retinal degeneration: probing the mechanism | Q37349100 | ||
A zebrafish model for pyruvate dehydrogenase deficiency: rescue of neurological dysfunction and embryonic lethality using a ketogenic diet | Q37358186 | ||
A homologous genetic basis of the murine cpfl1 mutant and human achromatopsia linked to mutations in the PDE6C gene | Q37429002 | ||
Induced pluripotent stem cell therapies for retinal disease | Q37641699 | ||
Leber congenital amaurosis: clinical correlations with genotypes, gene therapy trials update, and future directions | Q37652856 | ||
Improvements in vision-related quality of life in blind patients implanted with the Argus II Epiretinal Prosthesis | Q37696466 | ||
The molecular basis of human retinal and vitreoretinal diseases | Q37723484 | ||
Cell-based assays: fuelling drug discovery | Q37771896 | ||
P275 | copyright license | Creative Commons Attribution | Q6905323 |
P6216 | copyright status | copyrighted | Q50423863 |
P433 | issue | 6 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | Danio rerio | Q169444 |
drug screening | Q10505555 | ||
retinal degeneration | Q3043268 | ||
sensory nervous system | Q11101 | ||
eukaryote | Q19088 | ||
biomedical investigative technique | Q66648976 | ||
P5008 | on focus list of Wikimedia project | ScienceSource | Q55439927 |
P304 | page(s) | 1185 | |
P577 | publication date | 2017-06-02 | |
P13046 | publication type of scholarly work | review article | Q7318358 |
P1433 | published in | International Journal of Molecular Sciences | Q3153277 |
P1476 | title | Utilizing Zebrafish Visual Behaviors in Drug Screening for Retinal Degeneration | |
P478 | volume | 18 |
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Q60548385 | Eyes shut homolog is important for the maintenance of photoreceptor morphology and visual function in zebrafish |
Q64059272 | Human cytomegaloviral multifunctional protein kinase pUL97 impairs zebrafish embryonic development and increases mortality |
Q57072514 | Leveraging Zebrafish to Study Retinal Degenerations |
Q64246690 | Normalization of large-scale behavioural data collected from zebrafish |
Q33774469 | Statistical Analysis of Zebrafish Locomotor Behaviour by Generalized Linear Mixed Models |
Q64085493 | The Olfactory System of Zebrafish as a Model for the Study of Neurotoxicity and Injury: Implications for Neuroplasticity and Disease |
Q96348652 | Visuomotor deficiency in panx1a knockout zebrafish is linked to dopaminergic signaling |
Q47260540 | Whole-exome sequencing reveals POC5 as a novel gene associated with autosomal recessive retinitis pigmentosa |
Q64116798 | Zebrafish Larvae as a Behavioral Model in Neuropharmacology |
Q60043617 | Zebrafish: Development of a Vertebrate Model Organism |
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