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Abnormal basal ganglia MRI signal intensity

MedGen UID:
868351
Concept ID:
C4022745
Anatomical Abnormality
HPO: HP:0012751

Definition

A deviation from normal signal on magnetic resonance imaging (MRI) of the basal ganglia. [from HPO]

Conditions with this feature

X-linked sideroblastic anemia with ataxia
MedGen UID:
335078
Concept ID:
C1845028
Disease or Syndrome
X-linked spinocerebellar ataxia-6 with or without sideroblastic anemia (SCAX6) is an X-linked recessive disorder characterized by delayed motor development apparent in infancy with delayed walking (often by several years) due to ataxia and poor coordination. Additional features may include dysmetria, dysarthria, spasticity of the lower limbs, hyperreflexia, dysdiadochokinesis, strabismus, and nystagmus. The disorder is slowly progressive, and patients often lose ambulation. Brain imaging usually shows cerebellar atrophy. Most affected individuals have mild hypochromic, microcytic sideroblastic anemia, which may be asymptomatic. Laboratory studies show increased free erythrocyte protoporphyrin (FEP) and ringed sideroblasts on bone marrow biopsy. Female carriers do not have neurologic abnormalities, but may have subtle findings on peripheral blood smear (Pagon et al., 1985; D'Hooghe et al., 2012). For a discussion of genetic heterogeneity of X-linked spinocerebellar ataxia (SCAX), see SCAX1 (302500).
Combined oxidative phosphorylation deficiency 44
MedGen UID:
1718899
Concept ID:
C5394293
Disease or Syndrome
Combined oxidative phosphorylation deficiency-44 (COXPD44) is an autosomal recessive mitochondrial disorder with multisystemic manifestations. Most affected individuals present in infancy or early childhood with global developmental delay, hypotonia, and abnormal movements. Most patients develop seizures, often associated with status epilepticus, and some patients may have optic atrophy. One patient with hypertrophic cardiomyopathy has been reported. Serum lactate may be increased, although that finding is inconsistent. Detailed biochemical analysis shows variable combined deficiencies of mitochondrial oxidative complexes that appear to be tissue-specific (summary by Wei et al., 2020). For discussion of genetic heterogeneity of combined oxidative phosphorylation deficiency, see COXPD1 (609060).
Combined oxidative phosphorylation deficiency 59
MedGen UID:
1845781
Concept ID:
C5882730
Disease or Syndrome
Combined oxidative phosphorylation deficiency-59 (COXPD59) may present as a lethal infantile form of Leigh syndrome (see 256000) or as a milder disorder with hypertrophic cardiomyopathy, lactic acidosis, attention deficit-hyperactivity disorder (ADHD) and survival into adulthood (summary by Amarasekera et al., 2023). For a discussion of genetic heterogeneity of combined oxidative phosphorylation deficiency, see COXPD1 (609060).

Professional guidelines

PubMed

Yoon DL, Kim YJ, Koo BS, Kim YG, Lee CK, Yoo B
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Recent clinical studies

Etiology

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Diagnosis

Ikeda S, Yamaguchi Y, Sera Y, Ohshiro H, Uchino S, Yamashita Y, Ogawa M
Transplantation 2000 Jun 15;69(11):2339-43. doi: 10.1097/00007890-200006150-00021. PMID: 10868637
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Eur Radiol 1999;9(9):1913-5. doi: 10.1007/s003300050947. PMID: 10602975
Boltshauser E, Stocker H, Sailer H, Valavanis A
Neurofibromatosis 1989;2(5-6):274-7. PMID: 2518508
Drayer BP, Burger P, Hurwitz B, Dawson D, Cain J, Leong J, Herfkens R, Johnson GA
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Radiology 1986 May;159(2):493-8. doi: 10.1148/radiology.159.2.3961182. PMID: 3961182

Therapy

Choi PK, Chung JY, Lee SJ, Kang HG
Medicine (Baltimore) 2018 Sep;97(39):e12480. doi: 10.1097/MD.0000000000012480. PMID: 30278535Free PMC Article
Kashihara K, Kawada S, Takahashi Y
J Neurol Sci 2009 Dec 15;287(1-2):275-7. Epub 2009 Aug 28 doi: 10.1016/j.jns.2009.08.004. PMID: 19716567
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Pediatr Neurol 1995 Nov;13(4):340-2. doi: 10.1016/0887-8994(95)00194-8. PMID: 8771172

Prognosis

Bekiesinska-Figatowska M, Mierzewska H, Jurkiewicz E
Eur J Radiol 2013 May;82(5):837-49. Epub 2013 Jan 10 doi: 10.1016/j.ejrad.2012.12.006. PMID: 23313708
Bathla G, Hegde AN
Clin Radiol 2013 Jun;68(6):545-54. Epub 2012 Nov 9 doi: 10.1016/j.crad.2012.05.021. PMID: 23142023
Laothamatas J, Sungkarat W, Hemachudha T
Adv Virus Res 2011;79:309-27. doi: 10.1016/B978-0-12-387040-7.00014-7. PMID: 21601052
Rauch RA, Markham CH, Rand RW, Becker DP, Lufkin RB
J Magn Reson Imaging 1994 Jan-Feb;4(1):19-24. doi: 10.1002/jmri.1880040107. PMID: 8148551
Angelini L, Nardocci N, Rumi V, Zorzi C, Strada L, Savoiardo M
J Neurol 1992 Oct;239(8):417-25. doi: 10.1007/BF00856805. PMID: 1447570

Clinical prediction guides

Takakuwa T, Shiraishi N, Terashima M, Yamanaka M, Okamoto I, Imai H, Ishizu K, Yamada S, Ishikawa A, Kanahashi T
J Anat 2021 Aug;239(2):498-516. Epub 2021 Mar 23 doi: 10.1111/joa.13433. PMID: 33754346Free PMC Article
Majovska J, Nestrasil I, Paulson A, Nascene D, Jurickova K, Hlavata A, Lund T, Orchard PJ, Vaneckova M, Zeman J, Magner M, Dusek P
Mol Genet Metab 2021 Mar;132(3):189-197. Epub 2020 Dec 3 doi: 10.1016/j.ymgme.2020.11.008. PMID: 33317989
Bekiesinska-Figatowska M, Mierzewska H, Jurkiewicz E
Eur J Radiol 2013 May;82(5):837-49. Epub 2013 Jan 10 doi: 10.1016/j.ejrad.2012.12.006. PMID: 23313708
Ikeda S, Yamaguchi Y, Sera Y, Ohshiro H, Uchino S, Yamashita Y, Ogawa M
Transplantation 2000 Jun 15;69(11):2339-43. doi: 10.1097/00007890-200006150-00021. PMID: 10868637
Boltshauser E, Stocker H, Sailer H, Valavanis A
Neurofibromatosis 1989;2(5-6):274-7. PMID: 2518508

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