Literature DB >> 19420331

Stimulus-evoked intrinsic optical signals in the retina: pharmacologic dissection reveals outer retinal origins.

Jesse Schallek1, Randy Kardon, Young Kwon, Michael Abramoff, Peter Soliz, Daniel Ts'o.   

Abstract

PURPOSE: To elucidate the anatomic origins of stimulus-evoked intrinsic optical signals in the mammalian retina by using selective pharmacologic blockade of specific retinal layers.
METHODS: Four adult cats were used to investigate the stimulus-evoked intrinsic signals. The retinas were visually stimulated with a liquid crystal display (LCD) integrated into a modified fundus camera. The evoked signals in the near infrared (NIR) were recorded with a digital camera to image the changes in the optical reflectance of the retinas. Variants of the electroretinogram (pattern ERG and long-pulse ERG) were also recorded as additional measures of retinal function. Specific retinal layers were inactivated via intravitreal injections of the voltage-gated sodium channel blocker, tetrodotoxin (TTX), the metabotropic glutamate receptor (mGluR6) agonist, 2-amino-4-phosphonobutyric acid (APB), and/or the ionotropic glutamate receptor antagonist cis-2,3 piperidinedicarboxylic acid (PDA). The stimulus-evoked intrinsic signals were imaged before and after drug injection.
RESULTS: ERG recordings and tests of the consensual pupillary response confirmed the effectiveness of each drug. Yet despite the pharmacologic blockade of the inner retina (TTX) and postreceptoral retinal circuitry (APB and PDA), the stimulus-evoked intrinsic signals remained essentially unaltered from preinjection conditions. Similarly, the time course of the signal did not appreciably shift in time or shape.
CONCLUSIONS: The findings demonstrate that stimulus-evoked intrinsic signals persist after injection of APB, PDA, and TTX, drugs that work to suppress inner and postreceptoral retinal circuitry. The persistence of the intrinsic signals after administration of these drugs indicates that the dominant intrinsic signals are likely to arise from the outer retina.

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Year:  2009        PMID: 19420331      PMCID: PMC5201214          DOI: 10.1167/iovs.08-3291

Source DB:  PubMed          Journal:  Invest Ophthalmol Vis Sci        ISSN: 0146-0404            Impact factor:   4.799


  29 in total

1.  Standard for pattern electroretinography. International Society for Clinical Electrophysiology of Vision.

Authors:  M Bach; M Hawlina; G E Holder; M F Marmor; T Meigen; Y Miyake
Journal:  Doc Ophthalmol       Date:  2000-07       Impact factor: 2.379

2.  Rapid light-induced changes in near infrared transmission of rods in Bufo marinus.

Authors:  H H Harary; J E Brown; L H Pinto
Journal:  Science       Date:  1978-12-08       Impact factor: 47.728

3.  Effects of APB, PDA, and TTX on ERG responses recorded using both multifocal and conventional methods in monkey. Effects of APB, PDA, and TTX on monkey ERG responses.

Authors:  William A Hare; Hau Ton
Journal:  Doc Ophthalmol       Date:  2002-09       Impact factor: 2.379

4.  A study of retinal venous blood oxygen saturation in human subjects by photographic means.

Authors:  J B HICKAM; R FRAYSER; J C ROSS
Journal:  Circulation       Date:  1963-03       Impact factor: 29.690

Review 5.  Special report: Noninvasive multi-parameter functional optical imaging of the eye.

Authors:  Darin A Nelson; Sara Krupsky; Ayala Pollack; Eyal Aloni; Michael Belkin; Ivo Vanzetta; Mordechai Rosner; Amiram Grinvald
Journal:  Ophthalmic Surg Lasers Imaging       Date:  2005 Jan-Feb

6.  Intrinsic signal imaging in macaque retina reveals different types of flash-induced light reflectance changes of different origins.

Authors:  Gen Hanazono; Kazushige Tsunoda; Kei Shinoda; Kazuo Tsubota; Yozo Miyake; Manabu Tanifuji
Journal:  Invest Ophthalmol Vis Sci       Date:  2007-06       Impact factor: 4.799

Review 7.  Changes in neuron structure during action potential propagation and synaptic transmission.

Authors:  L B Cohen
Journal:  Physiol Rev       Date:  1973-04       Impact factor: 37.312

8.  The photopic negative response of the macaque electroretinogram: reduction by experimental glaucoma.

Authors:  S Viswanathan; L J Frishman; J G Robson; R S Harwerth; E L Smith
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9.  Three cone mechanisms in the primate electroretinogram: two with, one without off-center bipolar responses.

Authors:  H U Evers; P Gouras
Journal:  Vision Res       Date:  1986       Impact factor: 1.886

10.  Effects of light and darkness on oxygen distribution and consumption in the cat retina.

Authors:  R A Linsenmeier
Journal:  J Gen Physiol       Date:  1986-10       Impact factor: 4.086

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  12 in total

1.  Retinal intrinsic optical signals in a cat model of primary congenital glaucoma.

Authors:  Jesse B Schallek; Gillian J McLellan; Suresh Viswanathan; Daniel Y Ts'o
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Review 2.  Fast intrinsic optical signal correlates with activation phase of phototransduction in retinal photoreceptors.

Authors:  Xincheng Yao; Tae-Hoon Kim
Journal:  Exp Biol Med (Maywood)       Date:  2020-06-19

3.  New wrinkles in retinal densitometry.

Authors:  Benjamin D Masella; Jennifer J Hunter; David R Williams
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4.  Imaging translucent cell bodies in the living mouse retina without contrast agents.

Authors:  A Guevara-Torres; D R Williams; J B Schallek
Journal:  Biomed Opt Express       Date:  2015-05-18       Impact factor: 3.732

5.  Blood contrast agents enhance intrinsic signals in the retina: evidence for an underlying blood volume component.

Authors:  Jesse Schallek; Daniel Ts'o
Journal:  Invest Ophthalmol Vis Sci       Date:  2011-03-10       Impact factor: 4.799

Review 6.  Noninvasive functional imaging of the retina reveals outer retinal and hemodynamic intrinsic optical signal origins.

Authors:  Daniel Ts'o; Jesse Schallek; Young Kwon; Randy Kardon; Michael Abramoff; Peter Soliz
Journal:  Jpn J Ophthalmol       Date:  2009-09-08       Impact factor: 2.447

7.  Stimulus-evoked intrinsic optical signals in the retina: spatial and temporal characteristics.

Authors:  Jesse Schallek; Hongbin Li; Randy Kardon; Young Kwon; Michael Abramoff; Peter Soliz; Daniel Ts'o
Journal:  Invest Ophthalmol Vis Sci       Date:  2009-05-06       Impact factor: 4.799

Review 8.  Imaging Retinal Activity in the Living Eye.

Authors:  Jennifer J Hunter; William H Merigan; Jesse B Schallek
Journal:  Annu Rev Vis Sci       Date:  2019-09-15       Impact factor: 6.422

9.  Slow Cone Reflectance Changes during Bleaching Determined by Adaptive Optics Scanning Laser Ophthalmoscope in Living Human Eyes.

Authors:  Masakazu Hirota; Suguru Miyagawa; Hiroyuki Kanda; Takao Endo; Tibor Karl Lohmann; Tomomitsu Miyoshi; Takeshi Morimoto; Takashi Fujikado
Journal:  PLoS One       Date:  2015-06-29       Impact factor: 3.240

10.  Characteristics of retinal reflectance changes induced by transcorneal electrical stimulation in cat eyes.

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Journal:  PLoS One       Date:  2014-03-20       Impact factor: 3.240

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