RETeval

RETeval is a portable, handheld electroretinography (ERG) device developed by LKC Technologies for assessing retinal function. It enables ERG testing without pharmacologic pupil dilation and without corneal contact electrodes, allowing use in clinical, screening, and point-of-care environments.[1]

Overview

Electroretinography measures the electrical responses of retinal cells—including photoreceptors, bipolar cells, and ganglion cells—to light stimulation.[2] Traditional ERG systems typically require pupil dilation and corneal electrodes.

RETeval is designed as a non-mydriatic alternative, using skin electrodes and automated stimulus calibration. This allows ERG testing in settings where conventional systems may be impractical, including primary care, mobile screening, and bedside evaluation.[3]

Technology

Skin electrode recording

RETeval uses disposable adhesive skin electrodes placed below the eye rather than corneal contact electrodes. These electrodes detect electrical signals generated by the retina in response to light stimulation, which are conducted through ocular tissues to the skin surface. This approach avoids the need for topical anesthesia and may improve tolerability in some patients.[1]

Pupil size compensation

The device incorporates infrared-based pupil monitoring and adjusts flash luminance to maintain constant retinal illuminance (measured in trolands). This enables reliable ERG measurements without pharmacologic dilation.[1]

Portable design

RETeval is battery-powered and handheld, allowing use outside traditional electrophysiology laboratories. Portable ERG systems have been developed to improve accessibility to retinal function testing, particularly in screening contexts.[3]

Clinical applications

Diabetic retinopathy

RETeval has been widely studied in the detection and monitoring of diabetic retinopathy. ERG abnormalities, particularly delayed implicit time, have been shown to correlate with disease severity.[4]

Portable ERG systems such as RETeval have been shown to be effective for screening vision-threatening diabetic retinopathy and may detect functional abnormalities before structural changes are visible.[5]

Other retinal and optic nerve disorders

RETeval has also been used in clinical and research settings for:

ERG-based measures such as the photopic negative response (PhNR) are used to assess ganglion cell function in optic neuropathies.[6]

Comparison with conventional ERG

Peer-reviewed studies have evaluated the performance of portable ERG systems. Reported findings include reproducible ERG responses and potential clinical utility in screening and monitoring retinal disease, although differences from conventional systems have been noted.[3][5]

Research and validation

Multiple peer-reviewed studies have evaluated the clinical performance of portable ERG systems, including RETeval.

A comparative study found that RETeval can produce reproducible ERG responses with diagnostic utility, although amplitudes may differ from those obtained using conventional systems.[3]

Other studies have demonstrated its utility in screening for diabetic retinopathy and assessing retinal function in patients with systemic disease.[5]

Regulatory status

RETeval has received regulatory clearance in multiple regions, including approval by the U.S. Food and Drug Administration for use as an aid in the detection of retinal dysfunction.

See also

References

  1. ^ a b c Arias-Alvarez, M (2026). "The mydriasis-free handheld ERG device and its utility in clinical practice". Biomedicines. 14 (2): 384. doi:10.3390/biomedicines14020384. PMC 12938018. PMID 41751283.
  2. ^ McCulloch, DL (2015). "ISCEV Standard for full-field clinical electroretinography (2015 update)". Doc Ophthalmol. doi:10.1007/s10633-015-9509-9 (inactive 17 April 2026).{{cite journal}}: CS1 maint: DOI inactive as of April 2026 (link)
  3. ^ a b c d You, JY (2022). "Comparing the RETeval portable ERG device with conventional tabletop ERG systems". Doc Ophthalmol. 146 (2): 137–150. doi:10.1007/s10633-022-09903-w. PMC 10082128. PMID 36273363.
  4. ^ Brigell, M (2020). "Enhancing risk assessment in diabetic retinopathy by combining retinal function and structure". Transl Vis Sci Technol. 9 (9): 40. doi:10.1167/tvst.9.9.40. PMC 7453041. PMID 32908803.
  5. ^ a b c Arias-Alvarez, M (2024). "Electrophysiological findings in long-term type 1 diabetes using RETeval". Sci Rep. 14 (1): 3520. doi:10.1038/s41598-024-54099-5. PMC 10861544. PMID 38347052.
  6. ^ Machida, S (2008). "Clinical applications of the photopic negative response to optic nerve diseases". J Ophthalmol.

Content Disclaimer

Informasi ini disarikan dari Wikipedia dan disajikan kembali untuk tujuan edukasi. Konten tersedia di bawah lisensi CC BY-SA 3.0. Kami tidak bertanggung jawab atas ketidakakuratan data yang bersumber dari kontribusi publik tersebut.

  1. The information displayed on this website is sourced in part or in whole from Wikipedia and has been adapted for the purpose of restating it. We strive to provide accurate and relevant information, however:
  2. There is no guarantee of absolute accuracy. Wikipedia is an open, collaborative project that can be edited by anyone, so information is subject to change.
  3. It is not intended to constitute professional advice. The content displayed is for informational and educational purposes only. For important decisions (e.g., medical, legal, or financial), please consult a professional.
  4. Content copyright. Wikipedia is licensed under the Creative Commons Attribution-ShareAlike License (CC BY-SA). This means that content may be reused with appropriate attribution and shared under a similar license.
  5. Responsible use. Any risk arising from the use of information from this website is entirely the responsibility of the user.