Purpose: To demonstrate that silent substitution stimuli can be used to generate electroretinograms (ERGs) that effectively isolate rod photoreceptor function in humans without the need for dark adaptation, and that this approach constitutes a viable alternative to current clinical standard testing protocols.Methods: Rod-isolating and non-isolating sinusoidal flicker stimuli were generated on a 4 primary light-emitting diode (LED) Ganzfeld stimulator to elicit ERGs from participants with normal and compromised rod function who had not undergone dark-adaptation. Responses were subjected to Fourier analysis, and the amplitude and phase of the fundamental were used to examine temporal frequency and retinal illuminance response characteristics....
The human pupillary light response is driven by all classes of photoreceptors in the human eye—the t...
The study of the electrical response of the retina to a luminous stimulus is one of the main fields ...
Purpose To develop a signal processing paradigm for extracting ERG responses to temporal sinusoidal ...
YesPurpose: To demonstrate that silent substitution stimuli can be used to generate electroretinogra...
YesThe purpose of this paper is to demonstrate: 1) that silent substitution stimuli can be used gene...
Purpose To evaluate rod and cone contributions to the dark-adapted 15-Hz flicker electroretinogram (...
YesPurpose To record transient ERGs from the lightadapted human retina using silent substitution st...
The a-wave of the human corneal recorded, dark-adapted, electroretinogram (ERG) provides a non-invas...
AbstractThe dark-adapted cone electroretinogram (ERG) is difficult to isolate because of unwanted ro...
To refine methods of electroretinographical (ERG) recording for the analysis of low retinal potentia...
Purpose: To assess the nature and extent of non-linear processes in pupil responses using rod- and c...
Background: The scotopic 15-Hz flicker electroretinogram (ERG) has two limbs (slow and fast ERG rod ...
Using double silent substitution, it is possible to generate L-cone and M-cone isolating electroreti...
The human pupillary light response is driven by all classes of photoreceptors in the human eye—the t...
PURPOSE. Electroretinography (ERG) is the gold standard in clinical examinations of retinal function...
The human pupillary light response is driven by all classes of photoreceptors in the human eye—the t...
The study of the electrical response of the retina to a luminous stimulus is one of the main fields ...
Purpose To develop a signal processing paradigm for extracting ERG responses to temporal sinusoidal ...
YesPurpose: To demonstrate that silent substitution stimuli can be used to generate electroretinogra...
YesThe purpose of this paper is to demonstrate: 1) that silent substitution stimuli can be used gene...
Purpose To evaluate rod and cone contributions to the dark-adapted 15-Hz flicker electroretinogram (...
YesPurpose To record transient ERGs from the lightadapted human retina using silent substitution st...
The a-wave of the human corneal recorded, dark-adapted, electroretinogram (ERG) provides a non-invas...
AbstractThe dark-adapted cone electroretinogram (ERG) is difficult to isolate because of unwanted ro...
To refine methods of electroretinographical (ERG) recording for the analysis of low retinal potentia...
Purpose: To assess the nature and extent of non-linear processes in pupil responses using rod- and c...
Background: The scotopic 15-Hz flicker electroretinogram (ERG) has two limbs (slow and fast ERG rod ...
Using double silent substitution, it is possible to generate L-cone and M-cone isolating electroreti...
The human pupillary light response is driven by all classes of photoreceptors in the human eye—the t...
PURPOSE. Electroretinography (ERG) is the gold standard in clinical examinations of retinal function...
The human pupillary light response is driven by all classes of photoreceptors in the human eye—the t...
The study of the electrical response of the retina to a luminous stimulus is one of the main fields ...
Purpose To develop a signal processing paradigm for extracting ERG responses to temporal sinusoidal ...