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Visual Activity Evoked by Infrared in Humans After Dark Adaptation

Visual Activity Evoked by Infrared in Humans After Dark Adaptation

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02909985
Enrollment
21
Registered
2016-09-21
Start date
2015-09-30
Completion date
2016-08-31
Last updated
2024-12-13

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Age Related Macular Degeneration, Colorblindness, Congenital Stationary Night Blindness, Retinitis Pigmentosa

Keywords

Infrared, Dark Adaptation, Vision, Scotopic Threshold Response, Transient Receptor Potential (TRP) Channels, Human

Brief summary

This pilot study will evaluate the visual response to infrared (IR) in humans after dark adaptation. The investigators plan to determine which wavelength and intensity the human eye is most sensitive to in healthy and color-blind participants by using a broad spectrum light source and wavelength-specific IR bandpass filters. The long-term goal of this research is to better understand the role that IR plays in visual function, and whether this can be manipulated to allow for vision in certain retinal pathologies that result from loss of photoreceptor cells. The investigators central objective is to test the electrophysiologic response to IR in the dark-adapted retinal and visual pathways. The investigator's central hypothesis is that IR evokes a visual response in humans after dark adaptation, and the characteristics of this response suggest transient receptor potential (TRP) channel involvement. The investigators rationale is that a better understanding of how IR impacts vision may allow for an alternative mechanism for vision in a number of diseases that cause blindness from the degradation or loss of function of photoreceptor cells. The investigators will test the investigator's hypothesis with the following Aims: Aim 1: Arm 1: To determine the optimal IR wavelength for visual perception in dark-adapted human participants. The investigators hypothesize that the healthy human eye will detect IR irradiation, with a maximum sensitivity at a specific wavelength. Using a broad-spectrum light source with wavelength-specific bandpass filters, the spectral range of visual perception to IR will be evaluated. Arm 2: To determine the optimal IR wavelength for visual perception in dark-adapted human participants who are colorblind. The investigators hypothesize that the colorblind human eye will detect IR irradiation, with a maximum sensitivity at a specific wavelength. Using a broad-spectrum light source with wavelength-specific bandpass filters, the spectral range of visual perception to IR will be evaluated.

Detailed description

BACKGROUND: Visual impairment affects 285 million people worldwide. The prevalence of visual impairment in the US is expected to rise from 3.3 million in 2000 to 5.5 million in 2020. This will exacerbate the current economic burden of vision loss, which is already $38.2 billion per year in direct and indirect costs. The leading cause of blindness in high-income countries is due to age-related macular degeneration (AMD), a disease that leads to gradual loss of the photoreceptor cell layer. An estimated 1.75 million people have AMD in the US and another 7.3 million are at risk. Importantly, despite the loss of photoreceptor cells in AMD, the other cellular layers in the retina remain largely intact. The retina lines the back of the eye and is composed of structural layers. The outer nuclear layer contains photoreceptors called rods and cones. The inner nuclear layer includes bipolar, horizontal, and amacrine cells. Most anteriorly, the ganglion cell layer has axons that exit the eye as the optic nerve. Visual image formation begins when a photon of light enters the eye, passes through all retinal layers, and is absorbed by the photoreceptor cells. These cells transduce the photon of light into an electrochemical signal, which is communicated to bipolar cells, followed by the ganglion cells. Here, an action potential is generated and propagated via the optic nerve to the area of the brain where vision perception occurs. When the eye is dark-adapted, the cells in this pathway are potentially more sensitive to other types of stimuli, such as IR. The investigators believe cation channels called TRP channels in ganglion cells are activated by IR in this dark-adapted state, creating the visual response to IR. Heat is a known activator of certain subtypes of these channels elsewhere in the body. TRP channels are also responsible for IR vision in pit vipers and vampire bats. Palczewska et al. reported that visual perception to IR occurred through a process of direct two-photon isomerization of visual pigments. However, other evidence suggests IR perception can occur through single IR photon absorption. Studies that use IR to test the functionality of implanted visual prosthesis have noted a greater response to IR in the non-implanted eye when compared to the implanted eye on both VEP tests and ERG. On ERG, a specialized response specific to IR was found called the scotopic threshold response (STR). This response occurs under dark-adapted conditions and correlates with a response at the ganglion cell layer. Direct IR activation of TRP channels on ganglion cells could initiate a visual response. Based on these findings, the investigators hypothesize the human response to IR under dark adaptation occurs at the level of the ganglion cells through heat-activated TRP channels. RESEARCH DESIGN AIM1: To determine the optimal IR wavelength for human visual perception while dark-adapted in the healthy human eye. Introduction for Aim 1: The objective of this aim is to determine the optimal wavelength of IR to which the human eye is sensitive. To obtain this objective, the investigators will test the working hypothesis that the healthy human eye, and those with colorblindness, will detect a range of IR wavelengths, with a preference for a specific wavelength. The investigators will test the working hypothesis using a broad-spectrum light source with wavelength-specific bandpass filters in the IR range. The investigators' rationale for this aim is that understanding the optimal IR wavelength of the human eye will aid in future investigations when testing the visual response to IR using diagnostic equipment. This is important because it could impact the way other ophthalmologic modalities use IR to diagnose and treat visual pathologies. Research Design for Aim 1: A total of healthy 21 participants (15 with normal vision and 6 with colorblindness) aged 18 and older will be recruited using the University of New Mexico (UNM) Clinical and Translational Science Center (CTSC) Clinical Research Volunteer Registry HRRC-06412. Informed consent, participant demographics, past medial and visual history, and a general eye exam will be obtained using the CTSC research coordinator. Each participant will be placed in a dark room for an hour to allow for optimal dark adaptation of the eye. The investigators will use a broad-spectrum light source with wavelength-specific bandpass filters of different IR wavelengths. A total of 12 filters will be used ranging from 850 nm to 1400nm. Intensity curves will be built for each wavelength, by slowly turning up the power until the participant indicates a visual response to the stimulus. Data Analysis for Aim 1: Data will be analyzed by the investigators. Descriptive statistics will be used to evaluate demographics, general and visual health information, and reported optimal wavelengths. The investigators' analysis will compare differences among responses for each wavelength. To the investigators' knowledge, there have been no studies evaluating which IR wavelength is optimal for human visual perception, thus the investigators assume a low effect size of 10%, which would produce an 82% chance of at least two out of 30 healthy participants giving a preferred response to a specific wavelength. The investigators will describe the estimated effect sizes in response to the findings. Expected Outcomes for Aim 1: The investigators expect the human eye to perceive a range of IR wavelengths, but have a specific wavelength optimal in terms of brightness. Potential Problems & Alternative Strategies for Aim 1: To prevent sampling bias, the investigators plan to obtain a representative sample from New Mexico; however, participants may be younger and more educated than the general population. The confounding bias of light pollution may occur, which would prevent dark adaptation and decrease the IR sensitivity. A photometer will assess the room for background photons.

Interventions

OTHERTungsten halogen light with narrow bandpass filters

As intensity in increased from 0 to 12 V, participants will say if/when they see a visual response to infrared light from a broad band tungsten halogen light source that passes through narrow bandpass filters ranging from 850 nm to 1400 nm. At the end of three trials per filter, the intensity will be turned up to 12 V, and participants will describe the color they see.

Sponsors

University of New Mexico
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
DIAGNOSTIC
Masking
SINGLE (Subject)

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* Normal Vision * Colorblindness * Age related macular degeneration * Congenital Stationary Night Blindness

Exclusion criteria

* Diabetes * Heart disease * History of eye injury * History of eye trauma * History of eye disease except for those specified in the inclusion criteria * Pregnant women will also be excluded from Aim 2 and 3 * Persons with allergies to adhesives will be excluded from Aim 2 and 3 * Contact dermatitis * Documented adverse reaction to dilating drops * Documented adverse reaction to topical anesthetics * Vulnerable populations

Design outcomes

Primary

MeasureTime frameDescription
Visual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.after 30 minutes of dark adaptation, up to 2 hoursWe measured the minimum threshold intensities (uW) via subjective perception of near IR light (900 - 1400 nm) in 50 nm intervals. After 30 minutes of dark adaptation and over three trials, participants verbalized by saying 'yes' to the minimal intensity they could see the IR stimulus as the power source for the light was slowly increased from 0V to 12 V. The voltage was averaged for the three trials at each wavelength. Analysis of variance was used to evaluate the effect of the wavelength on the threshold intensity. This was done for two groups/arms, one with normal color vision and one with colorblind vision.

Secondary

MeasureTime frameDescription
Description of Colorafter 30 minutes of dark adaptation, up to 2 hoursA subjective description of color was given by each participant for each wavelength between 850 - 1400nm while at 12V.

Countries

United States

Participant flow

Recruitment details

Healthy adult participants with normal vision or who are colorblind were recruited using the University of New Mexico CTSC Clinical Research Volunteer Registry (HRRC 06-412), a Craigslist advertisement, and word of mouth.

Participants by arm

ArmCount
Visual Response to IR in Colorvision Eyes
The goal of this aim is to determine which wavelength and intensity of IR the human eye with normal color vision is most sensitive to. This arm includes those with normal color vision who will be exposed to a range of IR wavelengths using a broad-spectrum light source with wavelength-specific bandpass filters in the IR range. Participants will give verbal feedback on when they can see the stimulus over three trials at each wavelength, and then describe the color they see when the light is set at 12 V.
15
Visual Response to IR in Colorblind Eyes
The goal of this aim is to determine which wavelength and intensity of IR the human eye with colorblindness is most sensitive to. This arm includes those with colorblind vision who will be exposed to a range of IR wavelengths using a broad-spectrum light source with wavelength-specific bandpass filters in the IR range. Participants will give verbal feedback on when they can see the stimulus over three trials at each wavelength, and then describe the color they see when the light is set at 12 V.
6
Total21

Baseline characteristics

CharacteristicTotalVisual Response to IR in Colorvision EyesVisual Response to IR in Colorblind Eyes
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
1 Participants0 Participants1 Participants
Age, Categorical
Between 18 and 65 years
20 Participants15 Participants5 Participants
Age, Continuous40 years37.6 years45.7 years
Ethnicity (NIH/OMB)
Hispanic or Latino
4 Participants3 Participants1 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
17 Participants12 Participants5 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race (NIH/OMB)
American Indian or Alaska Native
2 Participants2 Participants0 Participants
Race (NIH/OMB)
Asian
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Black or African American
0 Participants0 Participants0 Participants
Race (NIH/OMB)
More than one race
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
1 Participants0 Participants1 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race (NIH/OMB)
White
18 Participants13 Participants5 Participants
Region of Enrollment
United States
21 participants15 participants6 participants
Sex: Female, Male
Female
6 Participants6 Participants0 Participants
Sex: Female, Male
Male
15 Participants9 Participants6 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
0 / 21
other
Total, other adverse events
0 / 21
serious
Total, serious adverse events
0 / 21

Outcome results

Primary

Visual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.

We measured the minimum threshold intensities (uW) via subjective perception of near IR light (900 - 1400 nm) in 50 nm intervals. After 30 minutes of dark adaptation and over three trials, participants verbalized by saying 'yes' to the minimal intensity they could see the IR stimulus as the power source for the light was slowly increased from 0V to 12 V. The voltage was averaged for the three trials at each wavelength. Analysis of variance was used to evaluate the effect of the wavelength on the threshold intensity. This was done for two groups/arms, one with normal color vision and one with colorblind vision.

Time frame: after 30 minutes of dark adaptation, up to 2 hours

Population: Adults with normal color vision and colorblind vision were evaluated for the minimal threshold intensity (uW) at which they could subjectively perceive IR as the light was slowly increased from 0-12 V. The average of three trials per IR wavelength was obtained.

ArmMeasureGroupValue (MEAN)Dispersion
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.850 nm0.671770454 uWStandard Deviation 0.099031306
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.950 nm0.281608408 uWStandard Deviation 0.070729646
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.900 nm0.205456012 uWStandard Deviation 0.037481007
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1000 nm1.144748348 uWStandard Deviation 0.607965504
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1050 nm1.272084129 uWStandard Deviation 0.672594905
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1100 nm0.258018884 uWStandard Deviation 0.089276004
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1150 nm1.353030502 uWStandard Deviation 0.911531487
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1200 nm0.345439815 uWStandard Deviation 0.143985558
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1250 nm0.341422349 uWStandard Deviation 0.194358383
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1300 nm0.153133406 uWStandard Deviation 0.097493319
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1350 nm0.119277641 uWStandard Deviation 0.0881392
Normal Color VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1400 nm0.419039248 uWStandard Deviation 0.158978102
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1350 nm0.182666 uWStandard Deviation 0.067348
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.850 nm0.809204 uWStandard Deviation 0.141801
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.900 nm0.222247 uWStandard Deviation 0.042895
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1150 nm2.144498 uWStandard Deviation 1.049761
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1000 nm1.056031 uWStandard Deviation 0.792399
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1300 nm0.198776 uWStandard Deviation 0.095276
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.950 nm0.545299 uWStandard Deviation 0.571049
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1200 nm0.422416 uWStandard Deviation 0.11966
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1400 nm0.601534 uWStandard Deviation 0.184694
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1050 nm1.397371 uWStandard Deviation 0.905
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1250 nm0.505195 uWStandard Deviation 0.229724
Colorblind VisionVisual Perception to Infrared: Mean Minimal Intensity (uW) at Which Participants Could See IR Between 900 - 1400 nm.1100 nm0.367814 uWStandard Deviation 0.205764
p-value: <0.0001ANOVA
p-value: <0.0001ANOVA
Secondary

Description of Color

A subjective description of color was given by each participant for each wavelength between 850 - 1400nm while at 12V.

Time frame: after 30 minutes of dark adaptation, up to 2 hours

Population: Adult participants who have normal color vision and those who are colorblind will be dark adapted for 30 minutes and then complete outcome measure 1 followed by outcome measure 2, in which the light source will be increased to a maximum of 12 V, and the participant will give a subjective description of color for each wavelength between 850 - 1400 nm in 50nm increments.~Note\* Unable to add color chart results reported as 'color' to outcome measure data table.

ArmMeasureGroupCategoryValue (COUNT_OF_PARTICIPANTS)
Normal Color VisionDescription of ColorColor perception at 1100 λBlack (no color)1 Participants
Normal Color VisionDescription of ColorColor perception at 950 λBlack (no color)0 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λPink1 Participants
Normal Color VisionDescription of ColorColor perception at 850 λGrey0 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λRed1 Participants
Normal Color VisionDescription of ColorColor perception at 950 λPink1 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λDark Red0 Participants
Normal Color VisionDescription of ColorColor perception at 900 λBlue0 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λOrange0 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λRed1 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λYellow0 Participants
Normal Color VisionDescription of ColorColor perception at 850 λOrange0 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λLight brown1 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λDark Red0 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λLight blue1 Participants
Normal Color VisionDescription of ColorColor perception at 900 λLight Purple0 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λBlue1 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λOrange1 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λLight Purple0 Participants
Normal Color VisionDescription of ColorColor perception at 850 λTeal Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λWhite6 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λYellow0 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λGrey2 Participants
Normal Color VisionDescription of ColorColor perception at 900 λWhite0 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λTeal Green1 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λLight brown0 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λTeal Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λLight blue1 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λBlack (no color)2 Participants
Normal Color VisionDescription of ColorColor perception at 900 λGrey0 Participants
Normal Color VisionDescription of ColorColor perception at 1150 λPink0 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λBlue0 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λRed1 Participants
Normal Color VisionDescription of ColorColor perception at 850 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λDark Red4 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λLight Purple0 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λOrange5 Participants
Normal Color VisionDescription of ColorColor perception at 900 λTeal Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λYellow1 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λWhite1 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λLight brown1 Participants
Normal Color VisionDescription of ColorColor perception at 850 λYellow0 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λLight blue0 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λGrey0 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λBlue1 Participants
Normal Color VisionDescription of ColorColor perception at 900 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λLight Purple0 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λTeal Green1 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λWhite1 Participants
Normal Color VisionDescription of ColorColor perception at 850 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λGrey0 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λTeal Green0 Participants
Normal Color VisionDescription of ColorColor perception at 900 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 850 λRed12 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λBlack (no color)1 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λBlack (no color)10 Participants
Normal Color VisionDescription of ColorColor perception at 1200 λPink0 Participants
Normal Color VisionDescription of ColorColor perception at 900 λBlack (no color)1 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λRed1 Participants
Normal Color VisionDescription of ColorColor perception at 1000 λPink0 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λDark Red4 Participants
Normal Color VisionDescription of ColorColor perception at 850 λBlack (no color)0 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λOrange6 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λRed0 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λYellow1 Participants
Normal Color VisionDescription of ColorColor perception at 900 λPink2 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λLight brown1 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λDark Red0 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λLight blue0 Participants
Normal Color VisionDescription of ColorColor perception at 850 λLight brown0 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λBlue0 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λOrange0 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λLight Purple1 Participants
Normal Color VisionDescription of ColorColor perception at 950 λRed0 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λWhite0 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λYellow0 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λGrey0 Participants
Normal Color VisionDescription of ColorColor perception at 850 λPink0 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λTeal Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λLight brown0 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 950 λDark Red1 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λLight blue2 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λBlack (no color)1 Participants
Normal Color VisionDescription of ColorColor perception at 850 λLight Purple0 Participants
Normal Color VisionDescription of ColorColor perception at 1250 λPink0 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λBlue0 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λRed11 Participants
Normal Color VisionDescription of ColorColor perception at 950 λOrange4 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λDark Red1 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λLight Purple0 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λOrange1 Participants
Normal Color VisionDescription of ColorColor perception at 900 λRed4 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λYellow0 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λWhite3 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λLight brown0 Participants
Normal Color VisionDescription of ColorColor perception at 950 λYellow2 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λLight blue0 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λGrey0 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λBlue0 Participants
Normal Color VisionDescription of ColorColor perception at 850 λLight blue0 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λLight Purple0 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λTeal Green2 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λWhite0 Participants
Normal Color VisionDescription of ColorColor perception at 950 λLight brown5 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λGrey0 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 900 λDark Red1 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λBlack (no color)1 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λPink1 Participants
Normal Color VisionDescription of ColorColor perception at 950 λLight blue0 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λRed10 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λBlack (no color)8 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λDark Red3 Participants
Normal Color VisionDescription of ColorColor perception at 850 λDark Red3 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λOrange0 Participants
Normal Color VisionDescription of ColorColor perception at 1050 λPink0 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λYellow0 Participants
Normal Color VisionDescription of ColorColor perception at 950 λBlue0 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λLight brown0 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λRed0 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λLight blue0 Participants
Normal Color VisionDescription of ColorColor perception at 900 λOrange7 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λBlue0 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λDark Red0 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λLight Purple0 Participants
Normal Color VisionDescription of ColorColor perception at 950 λLight Purple1 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λWhite0 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λOrange2 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λGrey0 Participants
Normal Color VisionDescription of ColorColor perception at 850 λBlue0 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λTeal Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λYellow5 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 950 λWhite1 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λLight brown0 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λBlack (no color)1 Participants
Normal Color VisionDescription of ColorColor perception at 900 λYellow0 Participants
Normal Color VisionDescription of ColorColor perception at 1350 λPink1 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λLight blue0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λRed6 Participants
Normal Color VisionDescription of ColorColor perception at 950 λGrey0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λDark Red0 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λBlue0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λOrange6 Participants
Normal Color VisionDescription of ColorColor perception at 850 λWhite0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λYellow1 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λLight Purple1 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λLight brown0 Participants
Normal Color VisionDescription of ColorColor perception at 950 λTeal Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λLight blue0 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λWhite3 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λBlue0 Participants
Normal Color VisionDescription of ColorColor perception at 900 λLight brown0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λLight Purple0 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λGrey2 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λWhite0 Participants
Normal Color VisionDescription of ColorColor perception at 950 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λGrey0 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λTeal Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λTeal Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1300 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λGreen0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 950 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λBlack (no color)1 Participants
Normal Color VisionDescription of ColorColor perception at 1100 λLight Green0 Participants
Normal Color VisionDescription of ColorColor perception at 1400 λPink1 Participants
Normal Color VisionDescription of ColorColor perception at 900 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λPink0 Participants
Colorblind VisionDescription of ColorColor perception at 850 λLight Purple0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λTeal Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λGreen1 Participants
Colorblind VisionDescription of ColorColor perception at 850 λRed4 Participants
Colorblind VisionDescription of ColorColor perception at 850 λDark Red0 Participants
Colorblind VisionDescription of ColorColor perception at 850 λOrange1 Participants
Colorblind VisionDescription of ColorColor perception at 850 λYellow0 Participants
Colorblind VisionDescription of ColorColor perception at 850 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 850 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 850 λWhite0 Participants
Colorblind VisionDescription of ColorColor perception at 850 λGrey0 Participants
Colorblind VisionDescription of ColorColor perception at 850 λTeal Green0 Participants
Colorblind VisionDescription of ColorColor perception at 850 λGreen1 Participants
Colorblind VisionDescription of ColorColor perception at 850 λLight Green0 Participants
Colorblind VisionDescription of ColorColor perception at 850 λBlack (no color)0 Participants
Colorblind VisionDescription of ColorColor perception at 850 λPink0 Participants
Colorblind VisionDescription of ColorColor perception at 900 λRed1 Participants
Colorblind VisionDescription of ColorColor perception at 900 λDark Red0 Participants
Colorblind VisionDescription of ColorColor perception at 900 λOrange2 Participants
Colorblind VisionDescription of ColorColor perception at 900 λYellow0 Participants
Colorblind VisionDescription of ColorColor perception at 900 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 900 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 900 λBlue0 Participants
Colorblind VisionDescription of ColorColor perception at 900 λLight Purple0 Participants
Colorblind VisionDescription of ColorColor perception at 900 λWhite0 Participants
Colorblind VisionDescription of ColorColor perception at 900 λGrey0 Participants
Colorblind VisionDescription of ColorColor perception at 900 λTeal Green1 Participants
Colorblind VisionDescription of ColorColor perception at 900 λGreen1 Participants
Colorblind VisionDescription of ColorColor perception at 900 λLight Green1 Participants
Colorblind VisionDescription of ColorColor perception at 900 λBlack (no color)0 Participants
Colorblind VisionDescription of ColorColor perception at 900 λPink0 Participants
Colorblind VisionDescription of ColorColor perception at 950 λRed1 Participants
Colorblind VisionDescription of ColorColor perception at 950 λDark Red0 Participants
Colorblind VisionDescription of ColorColor perception at 950 λOrange0 Participants
Colorblind VisionDescription of ColorColor perception at 950 λYellow2 Participants
Colorblind VisionDescription of ColorColor perception at 950 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 950 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 950 λBlue0 Participants
Colorblind VisionDescription of ColorColor perception at 950 λLight Purple0 Participants
Colorblind VisionDescription of ColorColor perception at 950 λWhite0 Participants
Colorblind VisionDescription of ColorColor perception at 950 λGrey1 Participants
Colorblind VisionDescription of ColorColor perception at 950 λTeal Green0 Participants
Colorblind VisionDescription of ColorColor perception at 950 λGreen0 Participants
Colorblind VisionDescription of ColorColor perception at 950 λLight Green1 Participants
Colorblind VisionDescription of ColorColor perception at 950 λBlack (no color)0 Participants
Colorblind VisionDescription of ColorColor perception at 950 λPink1 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λRed0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λDark Red0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λOrange0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λYellow0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λBlue0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λLight Purple0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λWhite1 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λGrey0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λTeal Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λGreen0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λLight Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λBlack (no color)5 Participants
Colorblind VisionDescription of ColorColor perception at 1000 λPink0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λRed0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λDark Red0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λOrange0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λYellow0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λBlue0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λLight Purple0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λWhite0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λGrey1 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λTeal Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λGreen0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λLight Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λBlack (no color)5 Participants
Colorblind VisionDescription of ColorColor perception at 1050 λPink0 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λRed0 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λDark Red0 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λOrange1 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λYellow1 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λBlue0 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λLight Purple0 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λWhite0 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λGrey1 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λTeal Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λGreen1 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λLight Green1 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λBlack (no color)0 Participants
Colorblind VisionDescription of ColorColor perception at 1100 λPink1 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λRed0 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λDark Red0 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λOrange1 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λYellow0 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λBlue0 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λLight Purple1 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λWhite2 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λGrey1 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λTeal Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λGreen0 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λLight Green1 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λBlack (no color)0 Participants
Colorblind VisionDescription of ColorColor perception at 1150 λPink0 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λRed1 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λDark Red0 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λOrange1 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λYellow1 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λBlue0 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λLight Purple0 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λWhite0 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λGrey1 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λTeal Green1 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λGreen0 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λLight Green1 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λBlack (no color)0 Participants
Colorblind VisionDescription of ColorColor perception at 1200 λPink0 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λRed0 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λDark Red0 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λOrange1 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λYellow1 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λBlue1 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λLight Purple0 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λWhite0 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λGrey1 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λTeal Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λGreen1 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λLight Green1 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λBlack (no color)0 Participants
Colorblind VisionDescription of ColorColor perception at 1250 λPink0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λRed1 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λDark Red0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λOrange2 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λYellow2 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λBlue0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λLight Purple0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λWhite0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λGrey0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λLight Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λBlack (no color)0 Participants
Colorblind VisionDescription of ColorColor perception at 1300 λPink0 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λRed2 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λDark Red0 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λOrange1 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λYellow1 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λBlue0 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λLight Purple0 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λWhite0 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λGrey0 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λTeal Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λGreen2 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λLight Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λBlack (no color)0 Participants
Colorblind VisionDescription of ColorColor perception at 1350 λPink0 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λRed1 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λDark Red1 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λOrange1 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λYellow0 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λLight brown0 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λLight blue0 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λBlue0 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λLight Purple0 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λWhite0 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λGrey1 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λTeal Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λGreen2 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λLight Green0 Participants
Colorblind VisionDescription of ColorColor perception at 1400 λBlack (no color)0 Participants
Colorblind VisionDescription of ColorColor perception at 850 λBlue0 Participants

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026