| Literature DB >> 27411785 |
Stefan Brodoehl1,2, Otto W Witte3,4, Carsten M Klingner3,4.
Abstract
BACKGROUND: In many functional magnetic resonance imaging (fMRI) studies, experimental design often depends on the eye state (i.e., whether the participants had their eyes open or closed). Closed eyes during an fMRI is the general convention, particularly when patients are in a resting-state, but the eye state is difficult to verify. Although knowledge of the impact of the eye state on brain activity is steadily growing, only a few research groups have implemented standardized procedures to monitor eye movements and eye state. These procedures involve advanced methods that are costly (e.g., fMRI-compatible cameras) and often time-consuming (e.g., EEG/EOG).Entities:
Keywords: EPI; Eye closure; Eye movements; Vision; fMRI
Mesh:
Year: 2016 PMID: 27411785 PMCID: PMC4944461 DOI: 10.1186/s12868-016-0282-7
Source DB: PubMed Journal: BMC Neurosci ISSN: 1471-2202 Impact factor: 3.288
Age and gender of subjects
| Age (years) | Gender | Handedness | |
|---|---|---|---|
| #1 | 23 | w | Right |
| #2 | 22 | w | Right |
| #3 | 23 | w | Right |
| #4 | 22 | m | Right |
| #5 | 24 | w | Right |
| #6 | 23 | w | Right |
| #7 | 23 | w | Right |
| #8 | 23 | m | Right |
| #9 | 24 | m | Right |
| #10 | 21 | m | Right |
| #11 | 27 | m | Right |
| #12 | 21 | m | Right |
| #13 | 23 | w | Right |
| #14 | 26 | m | Right |
| Mean | 23.2 ± 1.67 | (7/14 male) |
All subjects were right-handed, as determined by the Edinburgh handedness inventory; any subject with neurologic diseases or peripheral dysesthesia were excluded
Fig. 3Norm vectors for the segmented eye bulbs (normalized images) in a subject. The upper row in black shows the predetermined eye state (1 closed, 0 opened). RB (right) and LB (left) are the x/y/z dimensions of the norm (unity) vector describing the absolute eye position at each given time point. The correlation coefficients for the x/y/z dimensions of the left and right eyes are as follows: x-dimension 0.978, y-dimension −0.636 and z-dimension 0.994. The correlations with predetermined eye states are x-dimension 0.919 (left) and 0.920 (right), y-dimension 0.704 (left) and −0.838 (right) and z-dimension 0.930 (left) and 0.938 (right). X-axis: time in seconds; y-axis of left/right eye: x/y/z dimensions of norm vector (in voxel)
Fig. 4Mean intensity of the right, left and both bulbs of a single subject. Categorized values of 1 (values above ½ range) and 0 (below ½ range) are presented on the left. The correlation of the mean intensity of the left and right eyes was 0.971, and the correlation with the predefined eye state was left 0.91 (discrete 0.98), right 0.92 (discrete 0.99), both eyes 0.91 (discrete 0.99)
Fig. 5Summarized results for n = 14 subjects. The results before image normalization are presented on the left (a, c, e, g); the results after image normalization are presented on the right (b, d, f, h). Grey bars indicate eyes closed; for better visualization, these bars are overlaid on all subfigures below. a/b the predetermined eye state as verbally instructed during MRI recording. c/d x/y/z dimensions of the normalized length vector (unity vector with length of 1 voxel) of each bulb. Correlations between the left and right bulb: (before normalization) x-dimension 0.70, y-dimension −0.77, z-dimension 0.82; (after normalization) x-dimension 0.43, y-dimension 0.89, z-dimension 0.81. Correlation with the predetermined eye state: (before normalization) x/left 0.76, x/right 0.82, y/left −0.80, y/right 0.78, z/left 0.79, z/right 0.85; (after normalization) x/left 0.74, x/right 0.50, y/left 0.90, y/right 0.87, z/left 0.82, z/right 0.75. e/f Angle of the length vector in the x- and z-dimension. The angles were calculated in radians. Correlations between the left and right bulb: (before normalization) horizontal 0.77, vertical 0.88; (after normalization) horizontal 0.67, vertical 0.55. Correlations with the predetermined eye state: (before normalization) horizontal left 0.72, right 0.75, vertical left 0.86, right 0.90; (after normalization) horizontal left 0.79, right 0.74, vertical left 0.80, right 0.69. g/h Mean intensity of the segmented eye bulb (low-/high-pass filtered 0.1–0.01 Hz). Correlations between the left and right bulb (before normalization) 0.998; (after normalization) 0.998. Correlations with the predetermined eye state: (before normalization) left 0.947, right 0.946, both eyes 0.947; (after normalization) left 0.950, right 0.951, both eyes 0.951
Fig. 1Regions of interest (ROIs) in normalized EPI images and segmentation. Example image: 53 × 63 × 52 (x/y/z dimension). Left ROI: [−48 to −18] × [45 to 74] × [−50 to −26] and right ROI [21 to 51] × [47 to 74] × [−50 to −26]. Defined ROIs are shown in the upper row in white rectangles. Segmented bulbs are shown in the lower row and highlighted in white
Fig. 2A 3D view of segmented bulbs in a subject with open eyes. x/y/z coordinates appear in NIFTI format; the black thick line in each bulb is the maximum length vector. The horizontal (β, between length vector and the x-axis) and vertical (α, between length vector and the y-axis) angles are shown
Eye bulb volumes of the segmented images before (left) and after (right) normalization
| Subj. | Realigned only | Normalized | ||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Size bulb (voxel) | Size (mm3) | Size bulb (voxel) | Size (mm3) | |||||||||||||
| Left | SD | Right | SD | Left | SD | Right | SD | Left | SD | Right | SD | Left | SD | Right | SD | |
| 1 | 218.3 | 14.2 | 255.3 | 15.9 | 5893.7 | 382.6 | 6894.3 | 428.3 | 223.3 | 22.9 | 236.3 | 18.0 | 6029.6 | 618.0 | 6379.3 | 485.1 |
| 2 | 246.0 | 45.0 | 294.4 | 26.6 | 6642.6 | 1214.8 | 7948.6 | 719.3 | 256.1 | 31.3 | 244.0 | 23.1 | 6915.1 | 846.4 | 6587.1 | 622.7 |
| 3 | 153.7 | 16.4 | 172.7 | 21.6 | 4148.7 | 443.7 | 4664.2 | 584.3 | 213.5 | 75.7 | 227.7 | 95.4 | 5764.6 | 2044.5 | 6146.8 | 2574.9 |
| 4 | 315.6 | 47.7 | 382.0 | 33.2 | 8521.1 | 1288.8 | 10313.0 | 896.7 | 308.1 | 56.1 | 305.5 | 35.7 | 8319.4 | 1515.9 | 8248.1 | 962.7 |
| 5 | 372.8 | 31.6 | 377.2 | 43.7 | 10066.3 | 852.9 | 10183.1 | 1179.0 | 348.7 | 42.6 | 319.5 | 36.1 | 9414.2 | 1150.1 | 8627.2 | 975.9 |
| 6 | 289.8 | 37.8 | 334.6 | 36.7 | 7823.4 | 1020.3 | 9032.9 | 991.5 | 287.3 | 28.8 | 298.2 | 26.6 | 7758.1 | 777.6 | 8050.6 | 718.5 |
| 7 | 303.5 | 34.4 | 382.6 | 32.5 | 8195.1 | 928.9 | 10330.5 | 876.5 | 293.8 | 35.5 | 332.2 | 32.7 | 7932.1 | 958.6 | 8968.3 | 883.1 |
| 8 | 150.4 | 11.9 | 159.8 | 16.9 | 4059.5 | 320.8 | 4315.5 | 456.8 | 248.6 | 23.0 | 251.0 | 21.1 | 6711.3 | 621.2 | 6778.2 | 569.2 |
| 9 | 172.1 | 13.0 | 105.8 | 16.9 | 4646.3 | 352.1 | 2857.3 | 457.2 | 235.2 | 28.3 | 202.5 | 28.6 | 6349.3 | 762.8 | 5467.6 | 772.8 |
| 10 | 281.2 | 13.0 | 157.6 | 16.9 | 7592.6 | 352.1 | 4254.8 | 457.2 | 283.9 | 29.9 | 215.4 | 28.4 | 7665.7 | 808.3 | 5814.7 | 765.6 |
| 11 | 261.0 | 49.0 | 354.5 | 42.3 | 7047.4 | 1322.1 | 9572.1 | 1143.4 | 265.1 | 38.1 | 301.0 | 26.6 | 7157.6 | 1029.1 | 8126.9 | 717.6 |
| 12 | 327.9 | 30.6 | 279.2 | 22.9 | 8853.6 | 827.4 | 7539.0 | 618.7 | 293.0 | 38.1 | 254.5 | 17.4 | 7911.2 | 1030.0 | 6872.6 | 471.1 |
| 13 | 235.2 | 69.4 | 240.0 | 70.8 | 6351.7 | 1875.0 | 6479.9 | 1911.6 | 266.7 | 54.1 | 261.1 | 72.6 | 7201.2 | 1461.0 | 7050.0 | 1959.4 |
| 14 | 226.0 | 28.9 | 262.8 | 24.3 | 6101.6 | 780.6 | 7094.8 | 656.4 | 270.0 | 38.4 | 269.9 | 27.5 | 7289.9 | 1036.5 | 7287.8 | 743.0 |
| MW | 256 ± 64 | 269 ± 89 | 6911 ± 1736 | 7260 ± 2404 | 271 ± 34 | 265 ± 39 | 7318 ± 927 | 7163 ± 1043 | ||||||||
Images were recorded with a 3 × 3 × 3 mm resolution; therefore, the conversion factor from voxel volume to mm3 is 27. There was no significant difference between the bulb volumes before and after normalization (at p ≤ 0.05); however, volumes were correlated with 0.92 for the left and right eyes