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RETeval

Tiras de sensor

RETevet

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  • Animal
  • Central Retinal Vein Occlusion
  • Retinopatia Diabética
  • Flicker ERG
  • Inherited Retinal Diseases
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  • Tiras de sensor

Biallelic loss-of-function variants in DSCAM cause a neurodevelopmental syndrome with nystagmus and retinal dysfunction

Julho 9, 2026
Houge, Sofia Douzgou, Cecilie Bredrup, Ragnhild Wivestad Jansson, u. a. „Biallelic loss-of-function variants in DSCAM cause a neurodevelopmental syndrome with nystagmus and retinal dysfunction“. Human Genetics and Genomics Advances 7, Nr. 3 (2026): 100622. Published online July 9, 2026.

Visual Electrophysiology for the Diagnosis of Glaucoma

Junho 12, 2026
Ou, Yvonne, Vikas Chopra, Jullia A. Rosdahl, u. a. „Visual Electrophysiology for the Diagnosis of Glaucoma: A Report by the American Academy of Ophthalmology“. Ophthalmology, Online-Vorab-Publikation, Published online June 12, 2026.

Electroretinography and pupillary response in migraine

Junho 8, 2026
Smith, Carson C., Shane F. H. Trivitt, Matthew J. Cummings, u. a. „Electroretinography and Pupillary Response in Migraine“. Headache, Online-Vorab-Publikation. Published online June 8, 2026.

Improving Parkinson’s disease diagnosis by non-invasive detection of retinal biomarkers in MPTP monkeys using ERG and pupillometry

Junho 3, 2026
Munro, Jonathan, Andrée-Anne Lavigne, Shirley Fecteau, Thérèse Di Paolo, Marc Hébert, und Martin Parent. „Improving Parkinson’s Disease Diagnosis by Non-Invasive Detection of Retinal Biomarkers in MPTP Monkeys Using ERG and Pupillometry“. Npj Parkinson’s Disease, Online-Vorab-Publikation. Published online June 3, 2026.

Molecular mechanism and biomarker monitoring of intraocular cell function analyzed by electrochemical sensors: New progress in ophthalmic research

Junho 1, 2026
Liu, Jinlu, Li Jin, und Xiaohan Qu. „Molecular mechanism and biomarker monitoring of intraocular cell function analyzed by electrochemical sensors: New progress in ophthalmic research“. Microchemical Journal 225 (Juni 2026): 118134. Published online June 2026.

Transient increase in flicker ERG amplitude preceding OCT-detected macular thickening in eyes with acute anterior uveitis

Maio 30, 2026
Kato, Kumiko, Keitaro Mizumoto, Ryunosuke Nagashima, u. a. „Transient Increase in Flicker ERG Amplitude Preceding OCT-Detected Macular Thickening in Eyes with Acute Anterior Uveitis“. Japanese Journal of Ophthalmology, Online-Vorab-Publikation. Published online May 30, 2026.

Technical note: a functional data analysis approach to analyze the light-adapted electroretinogram in children and adolescents

Maio 27, 2026
Hlávka, Zdeněk, Paul A. Constable, Fernando Marmolejo-Ramos, u. a. „Technical Note: A Functional Data Analysis Approach to Analyze the Light-Adapted Electroretinogram in Children and Adolescents“. Documenta Ophthalmologica, Online-Vorab-Publikation. Published online May 27, 2026.

Electroretinographic evaluation of single vision contact lenses with non-refractive opaque features

Maio 19, 2026
Bakaraju, Ravi C., Paul A. Constable, Daniel Tilia, Kevin Patel, und Ranjay Chakraborty. „Electroretinographic evaluation of single vision contact lenses with non-refractive opaque features“. Clinical and Experimental Optometry 0, Nr. 0 (2026): 1–15. Published online May 19, 2026.

Inner retinal cavitations in three cases of NR2E3-associated retinopathy

Maio 14, 2026
Naveen, Prithvi, Camiel J. F. Boon, und Srikanta Kumar Padhy. „Inner Retinal Cavitations in Three Cases of NR2E3-Associated Retinopathy“. Documenta Ophthalmologica, Online-Vorab-Publikation. Published online May 14, 2026.

Intra- and inter-examiner reliability of ERGs recorded with two types of skin electrodes

Maio 8, 2026
Nagashima, Ryunosuke, Kumiko Kato, Keitaro Mizumoto, u. a. „Intra- and Inter-Examiner Reliability of ERGs Recorded with Two Types of Skin Electrodes“. Documenta Ophthalmologica, Online-Vorab-Publikation. Published online May 8, 2026.

RPE Abnormality Is a Potential Primary Cause for Retinal Degeneration in Mucopolysaccharidosis Type VI Patients and a Rat Model

Maio 1, 2026
Sho, Junki, Natsuko Nakamura, Akishi Onishi, u. a. „RPE Abnormality Is a Potential Primary Cause for Retinal Degeneration in Mucopolysaccharidosis Type VI Patients and a Rat Model“. Investigative Ophthalmology & Visual Science 67, Nr. 5 (2026): 41. Published online May 2026.

Retinal Neurophysiological Parameters in Young Patients With Type 1 Diabetes

Maio 1, 2026
Torm, Marie Elise Wistrup, Jesper Johannesen, Thomas W. Gardner, Javad Nouri Hajari, Oliver Niels Klefter, und Michael Larsen. „Retinal Neurophysiological Parameters in Young Patients With Type 1 Diabetes“. Investigative Ophthalmology & Visual Science 67, Nr. 5 (2026): 3. Published online May 2026.

Homozygous Pathogenic Variant in Elongation Factor-Like 1 (EFL1) as a Causal Factor in Shwachman-Diamond Syndrome 2 in a Palestinian Child, With Distinct Ocular Manifestations

Abril 27, 2026
Taha, Ibrahim, Antonella Minelli, Cesare Danesino, u. a. „Homozygous Pathogenic Variant in Elongation Factor‐Like 1 ( EFL1 ) as a Causal Factor in Shwachman‐Diamond Syndrome 2 in a Palestinian Child, With Distinct Ocular Manifestations“. Molecular Genetics & Genomic Medicine 14, Nr. 5 (2026): e70226. Published online April 27, 2026.

High-Altitude Retinopathy With Bilateral Macular Hemorrhage and Brain Edema

Abril 26, 2026
Zając, Hanna, Agnieszka Gałka-Zielony, Anna Turno-Kręcicka, und Ewa Horoch-Łyszczarek. „High-Altitude Retinopathy With Bilateral Macular Hemorrhage and Brain Edema“. Journal of VitreoRetinal Diseases. Published online April 26, 2026.

Synonymous editing alters ion channel function, favoring prime editing for retinal disease correction

Abril 23, 2026
Kabra, Meha, Mariya Moosajee, Ana Navarrete, u. a. „Synonymous editing alters ion channel function, favoring prime editing for retinal disease correction“. International Journal of Biological Sciences 22, Nr. 9 (2026): 4670–90. Published online April 23, 2026.

ERG-Graph: Graph Signal Processing of the Electroretinogram for Classification of Neurodevelopmental Disorders

Abril 11, 2026
Mercado-Diaz, Luis Roberto, Javier O. Pinzon-Arenas, Paul A. Constable, u. a. „ERG-Graph: Graph Signal Processing of the Electroretinogram for Classification of Neurodevelopmental Disorders“. Bioengineering 13, Nr. 4 (2026): 446. Published online April 11, 2026.

Flicker Electroretinogram in Schizophrenia and Depression

Abril 4, 2026
Sriharsha, Lanka, Kaushik Chatterjee, Avinash Singh Parihar, Neha Sharma, Amit Sethi, und Kapil Joshi. „Flicker Electroretinogram in Schizophrenia and Depression“. Journal of Marine Medical Society, 2026, 10.4103/jmms.jmms_29_26.

Comparison between RETevalTM Hand-Held Flash VEP and Standard Pattern-Reversal VEP in Diagnosing Optic Nerve Diseases

Março 31, 2026
Hasdini, Prasthiti Dewi, Doni Widyandana, Nyssa Alexandra Tedjonegoro, und Indra Tri Mahayana. „Comparison between RETevalTM Hand-Held Flash VEP and Standard Pattern-Reversal VEP in Diagnosing Optic Nerve Diseases“. Pakistan Journal of Ophthalmology 42, Nr. 2 (2026). Published online March 31, 2026.

Measuring electroretinograms in tree shrews with a portable electrophysiology device

Março 30, 2026
Dhakal, Rohit, Nilda C. Sanchez, Timothy J. Gawne, und Safal Khanal. „Measuring Electroretinograms in Tree Shrews with a Portable Electrophysiology Device“. Documenta Ophthalmologica, Online-Vorab-Publikation. Published online March 30, 2026.

Electroretinography biomarkers indicate disrupted visual processing in Fragile X syndrome

Março 27, 2026
Pu, Qianyi, Naomi Bennett, Tejas C. Sekhar, Mary T. Stanley, und Elizabeth Berry-Kravis. „Electroretinography Biomarkers Indicate Disrupted Visual Processing in Fragile X Syndrome“. Journal of Neurodevelopmental Disorders 18, Nr. 1 (2026): 27. Published online March 27, 2026.

Clinical and Genetic Characteristics of a Chinese Occult Maculopathy Cohort

Março 1, 2026
Jiang, Zixuan, Jiamin Ouyang, Zhen Yi, u. a. „Clinical and Genetic Characteristics of a Chinese Occult Maculopathy Cohort“. Translational Vision Science & Technology 15, Nr. 3 (2026): 32. Published online March 2026.

Severe early-onset retinal and lenticular abnormalities associated with homozygous c.575T>C (p.Ile192Thr) variants in the VSX2 gene

Fevereiro 15, 2026
Naveen, Prithvi, Camiel J. F. Boon, und Srikanta Kumar Padhy. „Severe early-onset retinal and lenticular abnormalities associated with homozygous c.575T>C (p.Ile192Thr) variants in the VSX2 gene“. Ophthalmic Genetics 0, Nr. 0 (2026): 1–10. Published online February 15, 2026.

Dynamic neurovascular adaptation of the retina during high-altitude hypoxia: integrated analysis of ERG and OCTA changes in healthy subjects

Fevereiro 10, 2026
Yu, Xinli, Jiaxi Li, Yuchen Wang, Xuemin Li, und Li Ding. „Dynamic neurovascular adaptation of the retina during high-altitude hypoxia: integrated analysis of ERG and OCTA changes in healthy subjects“. Journal of Applied Physiology, Online-Vorab-Publikation. Published online February 10, 2026.

The Mydriasis-Free Handheld ERG Device and Its Utility in Clinical Practice: A Review

Fevereiro 5, 2026
Arias-Alvarez, Marta, Maria Sopeña-Pinilla, Diego Rodriguez-Mena, und Isabel Pinilla. „The Mydriasis-Free Handheld ERG Device and Its Utility in Clinical Practice: A Review“. Biomedicines 14, Nr. 2 (2026). Published online February 6, 2026.

Electroretinography (ERG) alterations following positional changes in gas-filled eyes after a vitrectomy

Fevereiro 2, 2026
Ichinohe, Hiroshi, Yuki Yamabe, Shotaro Fujibayashi, u. a. „Electroretinography (ERG) Alterations Following Positional Changes in Gas-Filled Eyes after a Vitrectomy“. Documenta Ophthalmologica. Published online February 2, 2026.

In-Depth Analysis of the Intravitreal Biocompatibility of Polyethylene Glycol of Different Molecular Weight in an In Vivo Porcine Model

Fevereiro 1, 2026
Hammer, Maximilian, Ludwig Geisweid, Niklas Junker, u. a. „In-Depth Analysis of the Intravitreal Biocompatibility of Polyethylene Glycol of Different Molecular Weight in an In Vivo Porcine Model“. Investigative Ophthalmology & Visual Science 67, Nr. 2 (2026): 37. Published online February 2026.

Relationship between retinal neurodysfunction and cognitive impairment in type 2 diabetes

Janeiro 29, 2026
Simó, Rafael, Cristina Hernández, Simona Frontoni, u. a. „Relationship between Retinal Neurodysfunction and Cognitive Impairment in Type 2 Diabetes: Results of the RECOGNISED Cross-Sectional Study“. Diabetologia, Online-Vorab-Publikation, 29. Published online January 29, 2026.

CDHR1-Associated Retinal Dystrophies: Expanding the Clinical and Genetic Spectrum with a Hungarian Cohort

Janeiro 19, 2026
Takács, Ágnes, Balázs Varsányi, Mirella Barboni, u. a. „CDHR1-Associated Retinal Dystrophies: Expanding the Clinical and Genetic Spectrum with a Hungarian Cohort“. Genes 17, Nr. 1 (2026): 102. Published online January 19, 2026.

Technical note: contour plot visualization of the light adapted electroretinogram using a generalized additive model

Janeiro 18, 2026
Brabec, Marek, Lynne Loh, Irene O. Lee, u. a. „Technical Note: Contour Plot Visualization of the Light Adapted Electroretinogram Using a Generalized Additive Model“. Documenta Ophthalmologica. Published online January 18, 2026.

CDHR1-Associated Retinal Dystrophies: Expanding the Clinical and Genetic Spectrum with a Hungarian Cohort

Janeiro 18, 2026
Takács, Ágnes, Balázs Varsányi, Mirella Barboni, u. a. „CDHR1-Associated Retinal Dystrophies: Expanding the Clinical and Genetic Spectrum with a Hungarian Cohort“. Genes 17, Nr. 1 (2026). Published online January 18, 2026.
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  • Produtos
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California Proposition 65 information

Prop-65Warning: This product can expose you to chemicals including lead, which is known to the State of California to cause cancer and birth defects or other reproductive harm. For more information go to www.P65Warnings.ca.gov.

Substance Tables:

The table below lists substances which may be contained within LKC’s RETeval and RETevet products. Substances listed as Type 1 are within permissible levels in one or more of LKC’s products. Substances listed as Type 2 are used in the production of some components used in LKC products and may be present at trace levels, but are typically destroyed during processing. 

RETeval and RETevet Devices

Substance CAS # Type Listed as causing:
Nickel 7440-02-0 1 Cancer
Acrylonitrile 107-13-1 2
Ethylbenzine 100-41-4 2
Crystaline Silica 14808-60-7 1
Lead 7439-92-1 1 Cancer Developmental Toxicity Male Reproductive Toxicity Female Reproductive Toxicity
Methylene Chloride 75-09-2 2 Cancer Female Reproductive Toxicity
Bisphenol A 80-05-7 2
N-Hexane  110-54-3 2 Male Reproductive Toxicity