Area of research
Molecular Biology · Cell Biology
Research interest
Research interests include Zebrafish, Biology, Retinal, Opsin, Retina, and Neuroscience.
A potential cis-regulatory element regulates differential expression of long wavelength-sensitive opsins in zebrafish
Thyroid hormone receptor beta-2 (TRβ2) overexpression modulates photoreceptor phenotype diversity in a ligand-dependent manner
Plasticity of cone photoreceptors in adult zebrafish revealed by thyroid hormone exposure
Generating Widespread and Scalable Retinal Lesions in Adult Zebrafish by Intraocular Injection of Ouabain
Long wavelength-sensing cones of zebrafish retina exhibit multiple layers of transcriptional heterogeneity
Assessing Rewiring of the Retinal Circuitry by Electroretinogram (ERG) After Inner Retinal Lesion in Adult Zebrafish
An EvoDevo Study of Salmonid Visual Opsin Dynamics and Photopigment Spectral Sensitivity
Dynamic functional and structural remodeling during retinal regeneration in zebrafish
Eye flukes (Diplostomum spp) damage retinal tissue and may cause a regenerative response in wild threespine stickleback fish
Eye Flukes (Diplostomum Spp.) Damage Retinal Tissue and May Cause a Regenerative Response in Wild Threespine Stickleback Fish
Evidence of regional specializations in regenerated zebrafish retina
Selective Requirements for Vascular Endothelial Cells and Circulating Factors in the Regulation of Retinal Neurogenesis
Thyroid Hormone Treatment Reveals Plasticity of Gene Expression in Cone Photoreceptors of Adult Zebrafish
Investigative Ophthalmology & Visual Science 2021cited by 0position: last
Transcriptional distinctions between LWS cone subtypes are regulated by thyroid hormone in zebrafish
Investigative Ophthalmology & Visual Science 2021cited by 0position: last
Flipping the opsin switch: Cis-regulatory elements required for thyroid hormone-mediated differential expression of the tandemly-replicated long wavelength-sensitive (lws) opsin genes of the zebrafish
Investigative Ophthalmology & Visual Science 2021cited by 0position: first
Functional Physiology of the Regenerated Zebrafish Retina
Investigative Ophthalmology & Visual Science 2021cited by 0position: last
Short-wavelength-sensitive 2 (Sws2) visual photopigment models combined with atomistic molecular simulations to predict spectral peaks of absorbance
Short-wavelength-sensitive 2 (Sws2) visual photopigment models combined with atomistic molecular simulations to predict spectral peaks of absorbance
Vision using multiple distinct rod opsins in deep-sea fishes
Regeneration associated transcriptional signature of retinal microglia and macrophages
Endocrine regulation of multichromatic color vision
Rewiring the Regenerated Zebrafish Retina: Reemergence of Bipolar Neurons and Cone-Bipolar Circuitry Following an Inner Retinal Lesion
Thyroid hormone regulates the tandemly-quadruplicated rh2 cone opsin gene array in zebrafish
Investigative Ophthalmology & Visual Science 2019cited by 2position: last
Transcriptome analysis of adult zebrafish LWS1 vs LWS2 (long wavelength sensitive) cones
Investigative Ophthalmology & Visual Science 2019cited by 0position: first
Endocrine regulation of multi-chromatic color vision
Investigative Ophthalmology & Visual Science 2019cited by 0position: last
Dynamic changes in microglial and macrophage characteristics during degeneration and regeneration of the zebrafish retina
Transcripts within rod photoreceptors of the Zebrafish retina
Predicting peak spectral sensitivities of vertebrate cone visual pigments using atomistic molecular simulations
Isolation of photoreceptors from mature, developing, and regenerated zebrafish retinas, and of microglia/macrophages from regenerating zebrafish retinas
Expression patterns of dscam and sdk gene paralogs in developing zebrafish retina.
Europe PMC (PubMed Central) 2018cited by 12position: middle