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Increased cup-to-disc ratio

MedGen UID:
812241
Concept ID:
C3805911
Finding
Synonyms: Elevated cup to disc ratio; Elevated cup to disk ratio; Increased cup disc ratio; Increased cup disk ratio; Optic cupping
 
HPO: HP:0012796

Definition

An elevation in the ratio of the diameter of the cup of the optic disc to the total diameter of the disk. The optic disc has an orange-pink rim with a pale center (the cup) that does not contain neuroretinal tissue. An increase in this ratio therefore may indicate a decrease in the quantity of healthy neuroretinal cells. [from HPO]

Conditions with this feature

Elsahy-Waters syndrome
MedGen UID:
923028
Concept ID:
C0809936
Disease or Syndrome
The core phenotype of Elsahy-Waters syndrome consists of brachycephaly, facial asymmetry, marked hypertelorism, proptosis, blepharochalasis, midface hypoplasia, broad nose with concave nasal ridge, and prognathism; radicular dentin dysplasia with consequent obliterated pulp chambers, apical translucent cysts, recurrent infections, and early loss of teeth; vertebral fusions, particularly at C2-C3; and moderate mental retardation. Skin wrinkling over the glabellar region seems common, and in males, hypospadias has always been present. Inter- and intrafamilial variability has been reported regarding the presence of vertebral fusions, hearing loss, and dentigerous cysts. Midface hypoplasia, facial asymmetry, progressive dental anomalies, and impaired cognitive development become more evident in adulthood (summary by Castori et al., 2010).
Glaucoma 1, open angle, F
MedGen UID:
355096
Concept ID:
C1863926
Disease or Syndrome
Glaucoma 1, open angle, H
MedGen UID:
409919
Concept ID:
C1969811
Disease or Syndrome
Open angle glaucoma-1H (GLC1H) is characterized by elevated intraocular pressures (IOPs) associated with visual field and optic nerve abnormalities. In some families, affected members present mostly in the 'juvenile-onset' (JOAG) age range (between 3 and 35 to 40 years of age), whereas in other families, affected individuals present mostly in the 'adult-onset' (POAG) age range (after age 35 or 40 years). Patients with early-onset disease generally have a more severe presentation, with higher IOPs and higher likelihood of being blind in at least 1 eye (summary by Mackay et al., 2015; Collantes et al., 2022). For a general phenotypic description and a discussion of genetic heterogeneity of primary open angle glaucoma (POAG), see 137760.
Glaucoma 1, open angle, P
MedGen UID:
854866
Concept ID:
C3888338
Disease or Syndrome
Glaucomas are a group of common neurodegenerative diseases of the optic nerve and retinal ganglion cells, characterized by progressive cupping of the optic nerve head with resultant visual field loss. Elevated intraocular pressure (IOP) is a strong risk factor for glaucoma; however, glaucoma can occur at any IOP. The most common form of glaucoma in the US is primary open-angle glaucoma (POAG; see 137760). POAG that occurs with an IOP below an arbitrary threshold of 21 mm Hg is often termed 'normal tension glaucoma' (summary by Fingert et al., 2011). For a discussion of genetic heterogeneity of primary open angle glaucoma, see 137760.
Glaucoma 3, primary congenital, E
MedGen UID:
934606
Concept ID:
C4310639
Disease or Syndrome
Primary congenital glaucoma (PCG) is characterized by elevated intraocular pressure (IOP), enlargement of the globe (buphthalmos), edema, and opacification of the cornea with rupture of Descemet's membrane (Haab's striae), thinning of the anterior sclera and iris atrophy, anomalously deep anterior chamber, and structurally normal posterior segment except for progressive glaucomatous optic atrophy. Symptoms include photophobia, blepharospasm, and excessive tearing. Typically, the diagnosis is made in the first year of life. Depending on when treatment is instituted, visual acuity may be reduced and/or visual fields may be restricted. In untreated individuals, blindness invariably occurs.
Glaucoma, primary closed-angle
MedGen UID:
1712967
Concept ID:
C5394374
Disease or Syndrome
Primary closed-angle glaucoma (GLCC) is characterized by age-related variation in the degree of iridocorneal angle closure and its sequelae, with patients in the first 3 decades of life showing a normal eye exam, whereas older patients progressively show more evidence of angle closure and glaucomatous damage, including optic nerve head changes and visual field defects (Suri et al., 2018).

Professional guidelines

PubMed

Gangwani RA, McGhee SM, Lai JS, Chan CK, Wong D
J Glaucoma 2016 Jan;25(1):101-5. doi: 10.1097/IJG.0000000000000138. PMID: 25264989

Recent clinical studies

Etiology

Torres Ledesma B, Bueno García P, Torres Pereda JP
Arch Soc Esp Oftalmol (Engl Ed) 2021 Dec;96(12):668-672. Epub 2021 Oct 23 doi: 10.1016/j.oftale.2020.11.013. PMID: 34844689
Huryn LA, Turriff A, Harney LA, Carr AG, Chevez-Barrios P, Gombos DS, Ram R, Hufnagel RB, Hill DA, Zein WM, Schultz KAP, Bishop R, Stewart DR
Ophthalmology 2019 Feb;126(2):296-304. Epub 2018 Oct 17 doi: 10.1016/j.ophtha.2018.09.038. PMID: 30339877Free PMC Article
Gangwani RA, McGhee SM, Lai JS, Chan CK, Wong D
J Glaucoma 2016 Jan;25(1):101-5. doi: 10.1097/IJG.0000000000000138. PMID: 25264989
Abu-Amero KK, Kondkar AA, Mousa A, Osman EA, Al-Obeidan SA
Curr Eye Res 2013 Sep;38(9):959-64. doi: 10.3109/02713683.2013.794246. PMID: 23651069
Chew SS, Vasudevan S, Patel HY, Gurria LU, Kerr NM, Gamble G, Crowston JG, Danesh-Meyer HV
Ophthalmology 2011 Feb;118(2):254-9. Epub 2010 Sep 29 doi: 10.1016/j.ophtha.2010.06.026. PMID: 20884056

Diagnosis

Torres Ledesma B, Bueno García P, Torres Pereda JP
Arch Soc Esp Oftalmol (Engl Ed) 2021 Dec;96(12):668-672. Epub 2021 Oct 23 doi: 10.1016/j.oftale.2020.11.013. PMID: 34844689
Chang J, Lee J, Ha A, Han YS, Bak E, Choi S, Yun JM, Kang U, Shin IH, Shin JY, Ko T, Bae YS, Oh BL, Park KH, Park SM
Ophthalmology 2021 Jan;128(1):78-88. Epub 2020 Jun 26 doi: 10.1016/j.ophtha.2020.06.036. PMID: 32598951
Huryn LA, Turriff A, Harney LA, Carr AG, Chevez-Barrios P, Gombos DS, Ram R, Hufnagel RB, Hill DA, Zein WM, Schultz KAP, Bishop R, Stewart DR
Ophthalmology 2019 Feb;126(2):296-304. Epub 2018 Oct 17 doi: 10.1016/j.ophtha.2018.09.038. PMID: 30339877Free PMC Article
Gangwani RA, McGhee SM, Lai JS, Chan CK, Wong D
J Glaucoma 2016 Jan;25(1):101-5. doi: 10.1097/IJG.0000000000000138. PMID: 25264989
Chew SS, Vasudevan S, Patel HY, Gurria LU, Kerr NM, Gamble G, Crowston JG, Danesh-Meyer HV
Ophthalmology 2011 Feb;118(2):254-9. Epub 2010 Sep 29 doi: 10.1016/j.ophtha.2010.06.026. PMID: 20884056

Therapy

Kudsieh B, Casado López de la Franca E, Díez Gómez MA, Ruiz Moreno JM
Arch Soc Esp Oftalmol (Engl Ed) 2020 Jul;95(7):353-356. Epub 2020 May 15 doi: 10.1016/j.oftal.2020.03.008. PMID: 32423629
Friedman DS, Holbrook JT, Ansari H, Alexander J, Burke A, Reed SB, Katz J, Thorne JE, Lightman SL, Kempen JH; MUST Research Group
Ophthalmology 2013 Aug;120(8):1571-9. Epub 2013 Apr 16 doi: 10.1016/j.ophtha.2013.01.025. PMID: 23601801Free PMC Article
Mataftsi A, Dabbagh A, Moore W, Nischal KK
J Cataract Refract Surg 2012 Oct;38(10):1719-23. Epub 2012 Jul 26 doi: 10.1016/j.jcrs.2012.05.034. PMID: 22841425

Prognosis

Abu-Amero KK, Kondkar AA, Mousa A, Osman EA, Al-Obeidan SA
Curr Eye Res 2013 Sep;38(9):959-64. doi: 10.3109/02713683.2013.794246. PMID: 23651069
Friedman DS, Holbrook JT, Ansari H, Alexander J, Burke A, Reed SB, Katz J, Thorne JE, Lightman SL, Kempen JH; MUST Research Group
Ophthalmology 2013 Aug;120(8):1571-9. Epub 2013 Apr 16 doi: 10.1016/j.ophtha.2013.01.025. PMID: 23601801Free PMC Article
Mataftsi A, Dabbagh A, Moore W, Nischal KK
J Cataract Refract Surg 2012 Oct;38(10):1719-23. Epub 2012 Jul 26 doi: 10.1016/j.jcrs.2012.05.034. PMID: 22841425

Clinical prediction guides

Chang J, Lee J, Ha A, Han YS, Bak E, Choi S, Yun JM, Kang U, Shin IH, Shin JY, Ko T, Bae YS, Oh BL, Park KH, Park SM
Ophthalmology 2021 Jan;128(1):78-88. Epub 2020 Jun 26 doi: 10.1016/j.ophtha.2020.06.036. PMID: 32598951
Huryn LA, Turriff A, Harney LA, Carr AG, Chevez-Barrios P, Gombos DS, Ram R, Hufnagel RB, Hill DA, Zein WM, Schultz KAP, Bishop R, Stewart DR
Ophthalmology 2019 Feb;126(2):296-304. Epub 2018 Oct 17 doi: 10.1016/j.ophtha.2018.09.038. PMID: 30339877Free PMC Article
Abu-Amero KK, Kondkar AA, Mousa A, Osman EA, Al-Obeidan SA
Curr Eye Res 2013 Sep;38(9):959-64. doi: 10.3109/02713683.2013.794246. PMID: 23651069
Chew SS, Vasudevan S, Patel HY, Gurria LU, Kerr NM, Gamble G, Crowston JG, Danesh-Meyer HV
Ophthalmology 2011 Feb;118(2):254-9. Epub 2010 Sep 29 doi: 10.1016/j.ophtha.2010.06.026. PMID: 20884056
Tsai CS, Ritch R, Schwartz B, Lee SS, Miller NR, Chi T, Hsieh FY
Arch Ophthalmol 1991 Feb;109(2):199-204. doi: 10.1001/archopht.1991.01080020045040. PMID: 1993028

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