In vivo measurements of cone photoreceptor spacing in myopic eyes from images obtained by an adaptive optics fundus camera

scientific article published in November 2007

In vivo measurements of cone photoreceptor spacing in myopic eyes from images obtained by an adaptive optics fundus camera is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1007/S10384-007-0477-7
P698PubMed publication ID18158598

P2093author name stringTakashi Fujikado
Yoshiyuki Kitaguchi
Toshifumi Mihashi
Kenichiro Bessho
Tatsuo Yamaguchi
Naoki Nakazawa
P2860cites workImprovements on Littmann's method of determining the size of retinal features by fundus photographyQ47374283
Adaptive optics with a programmable phase modulator: applications in the human eye.Q50788749
Neural and optical limits to visual performance in myopiaQ59298358
Eye Shape in Emmetropia and MyopiaQ59298375
Pathologic findings in pathologic myopiaQ67584555
Supernormal vision and high-resolution retinal imaging through adaptive opticsQ73900804
Effect of myopia on visual acuity measured with laser interference fringesQ33220384
Direct and noninvasive assessment of parafoveal capillary leukocyte velocityQ33226216
High-resolution retinal imaging of cone-rod dystrophyQ33241647
Retinal cone mosaic imaged with transverse scanning optical coherence tomographyQ33244832
Adaptive optics flood-illumination camera for high speed retinal imaging.Q33465757
The arrangement of the three cone classes in the living human eye.Q33852770
Human photoreceptor topographyQ34034782
Functional photoreceptor loss revealed with adaptive optics: an alternate cause of color blindnessQ34321474
The reflectance of single cones in the living human eye.Q44595317
Retinal stretching limits peripheral visual acuity in myopiaQ45203416
Organization of the human trichromatic cone mosaic.Q46764062
P433issue6
P921main subjectadaptive opticsQ506922
photoreceptor proteinQ7187894
myopiaQ168403
P304page(s)456-461
P577publication date2007-11-01
P1433published inJapanese Journal of OphthalmologyQ15752406
P1476titleIn vivo measurements of cone photoreceptor spacing in myopic eyes from images obtained by an adaptive optics fundus camera
P478volume51

Reverse relations

cites work (P2860)
Q64083661Adaptive Optics (rtx1) High-Resolution Imaging of Photoreceptors and Retinal Arteries in Patients with Diabetic Retinopathy
Q33649997Adaptive optics retinal imaging--clinical opportunities and challenges
Q42040723Automatic cone photoreceptor segmentation using graph theory and dynamic programming
Q36912091Automatic detection of cone photoreceptors in split detector adaptive optics scanning light ophthalmoscope images
Q35848390Axial length and cone density as assessed with adaptive optics in myopia.
Q90390192Comparison of Individual Retinal Layer Thicknesses between Highly Myopic Eyes and Normal Control Eyes Using Retinal Layer Segmentation Analysis
Q58568130Deep learning based detection of cone photoreceptors with multimodal adaptive optics scanning light ophthalmoscope images of achromatopsia
Q42704856Detection of photoreceptor disruption by adaptive optics fundus imaging and Fourier-domain optical coherence tomography in eyes with occult macular dystrophy
Q48235192Distribution of cone density, spacing and arrangement in adult healthy retinas with adaptive optics flood illumination
Q83230923Human foveal cone photoreceptor topography and its dependence on eye length
Q55180803Impact of Liquid Crystals in Active and Adaptive Optics.
Q82827905Impairment of retinal adaptive circuitry in the myopic eye
Q51415407In vivo imaging of a cone mosaic in a patient with achromatopsia associated with a GNAT2 variant.
Q33343534Individual variations in human cone photoreceptor packing density: variations with refractive error
Q33650673Intersubject Variability of Foveal Cone Photoreceptor Density in Relation to Eye Length
Q35759255Macular Bruch's Membrane Length and Axial Length. The Beijing Eye Study
Q38572958Microfluctuations in accommodation: an update on their characteristics and possible role
Q30720148Myopia, an underrated global challenge to vision: where the current data takes us on myopia control
Q38659151Open source software for automatic detection of cone photoreceptors in adaptive optics ophthalmoscopy using convolutional neural networks.
Q30850901Photoreceptor images of normal eyes and of eyes with macular dystrophy obtained in vivo with an adaptive optics fundus camera
Q35121750Quantitative analysis of cone photoreceptor distribution and its relationship with axial length, age, and early age-related macular degeneration
Q28657480Retinal cell imaging in myopic chickens using adaptive optics multiphoton microscopy
Q33771293Retinal thinning in tree shrews with induced high myopia: optical coherence tomography and histological assessment.
Q36031304Variation in rod and cone density from the fovea to the mid-periphery in healthy human retinas using adaptive optics scanning laser ophthalmoscopy
Q45984883Visual performance fall-off with eccentricity in myopes versus emmetropes.
Q57496009Visual performance of myopia control soft contact lenses in non-presbyopic myopes

Search more.