• Title/Summary/Keyword: 염색체 중복

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Partial trisomy of chromosome 18q11.2-q12: A case report (18q11.2-q12 부분 삼염색체 1예)

  • Cho, Ah Ra;Kim, Hye Ryoun;Lee, Mi Kyung;Yun, Sin Weon;Lee, Jung Ju
    • Clinical and Experimental Pediatrics
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    • v.52 no.10
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    • pp.1171-1174
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    • 2009
  • Edwards syndrome, also called trisomy 18, is one of the most common autosomal anomalies. The survival rate of patients with Edwards syndrome is very low and its characteristic findings include cardiac malformations, mental retardation, growth retardation, specific craniofacial anomalies, clenched hands, rocker-bottom feet, and omphalocele. Compared with the classic Edwards syndrome, the symptom of partial duplication of chromosome 18 is relatively mild with a good prognosis. We report the case of a baby with partial duplication 18q11.2-q12. The characteristic phenotype features of Edwards syndrome were observed in the patient. However, the symptom was milder than the typical Edwards syndrome. At present, we can expect better prognosis for this patient.

A Case of a del(8p)/dup(8q) Recombinant Chromosome (8번 염색체 단완 결실과 장완 중복을 동반한 신생아 1례)

  • Kim, Jeong-Young;Im, Hyo-Bin;Son, Sang-Hee;Jeong, So-Young;Sung, Min-Jung;Seo, Son-Sang
    • Neonatal Medicine
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    • v.16 no.1
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    • pp.76-80
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    • 2009
  • A male baby with intrauterine growth retardation had a short neck, small hands and feet, hypospadia, both grade I hydronephrosis, type II atrial septal defect, and moderate valvular pulmonary stenosis. The routine chromosome and banding analyses revealed a 46,XY,rec(8)del(8)(p21)dup(8) (q24.1)inv(8)(p21q24.1)pat chromosome constitution. His mother has normal chromosomes, but the father had 46,XY,inv(8)(p21q24.n Also his uncle had an inv(8) chromosome constitution. We used lymphocytes and examined 40 mitotic cells. All mitotic cells showed deletion of 8p21-->pter and duplication of 8q24.1 -->qter. Because Sp21 involves secretion of macrophage and lymphocyte against cancer cells, long-term follow-up for cancer will be needed.

A Nordoff-Robbins Music Therapy Case with a Child with Chromosome 15q Duplication Syndrome: The Therapist's Changes and Growth (15q 염색체중복 증후군 아동과의 놀도프-로빈스 음악치료 임상사례 - 치료사의 변화와 성장을 중심으로)

  • Kwak, Hee Jung;Kim, Dong Min
    • Journal of Music and Human Behavior
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    • v.5 no.1
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    • pp.47-65
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    • 2008
  • This case study is on the course of therapy with a client named E with Chromosome 15q Duplications Syndrome during the therapist's level 1 training, which offers a certification of Nordoff-Robbins Music Therapist(NRMT), at the Nordoff-Robbins Music therapy Center at New York University. This study gives an overview of the clinical process with E as well as the Nordoff-Robbins approach. Yet it is also focused on the therapist's personal and clinical experience and growth throughout the course of therapy. It shows how the therapist experienced various challenging situations and obstacles in the clinical process. There were consistent and diverse trials and mistakes. Throughout the process, therapist could learn more deeply about E's physical, psychological and emotional needsand have new perspectives on how to be a music therapist. The therapist applied 'Qualities of Clinical-Musical Interaction', one of the concepts in Nordoff-Robbins Music therapy, to organize the work with E.

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The Recurrent Pregnancy Loss Associated with a Female Carrier of a Structural Chromosome Rearrangement (염색체 구조적 이상을 가진 산모의 재조합에 의한 태아의 비정상 핵형분석결과의 증례보고)

  • Lee, Soo-Min;Go, Sang-Hee;Jo, Soo-Kyung;Park, So-Hyun;Moon, Soo-Jin;Lee, Dong-Suk;Kim, Ki-Chul;Hwang, Do-Yeong
    • Journal of Genetic Medicine
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    • v.7 no.2
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    • pp.156-159
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    • 2010
  • Inversion, one of the balanced rearrangements, usually does not lead to phenotypic abnormalities; all genetic information exists in the proper amount, merely in a different order or in an abnormal location. However, offspring of an inversion carrier is at risk of chromosomal imbalance because an inversion loop can be formed during crossing-over of the paternal and the maternal chromosomes in meiosis. We report a 38-year-old woman with inversion and balanced translocation and her fetus with unusual rearrangement causing chromosomal imbalance. We performed conventional cytogenetic analysis, MLPA, and subtelomeric FISH in the cells of the embryo. The results showed that the distal portion of chromosome 13q was added to the terminal portion of chromosome 9p during crossing-over. Therefore, the final karyotype of the fetus was 46,XY,rec(9)t(9;13)(p22;q32)inv(9)(p12q13)mat, confirmed using molecular-cytogenetic analyzing tools.

Molecular Cytogenetic Characterization of Supernumerary Marker Chromosomes by Chromosomal Microarray (염색체 마이크로어레이를 이용한 표지염색체의 분자세포유전학적 특성)

  • Bae, Mi-Hyun;Yoo, Han-Wook;Lee, Jin-Ok;Hong, Maria;Seo, Eul-Ju
    • Journal of Genetic Medicine
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    • v.8 no.2
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    • pp.119-124
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    • 2011
  • Purpose: Supernumerary marker chromosome (SMC) could be associated with various phenotypic abnormalities based on the chromosomal origin of SMCs. The present study aimed to determine the genomic contents of SMCs using chromosomal microarray and to analyze molecular cytogenetic characterizations and clinical phenotypes in patients with SMCs. Materials and Methods: Among patients with SMCs detected in routine chromosomal analysis, SMCs originating from chromosome 15 were excluded from the present study. CGH-based oligonucleotide chromosomal microarray was performed in 4 patients. Results: The chromosomal origins of SMCs were identified in 3 patients. Case 1 had a SMC of 16.1 Mb in 1q21.1-q23.3. Case 2 showed 21 Mb gain in 19p13.11-q13.12. Case 3 had a 4.5 Mb-sized SMC rearranged from 2 regions of 2.5 Mb in 22q11.1-q11.21 and 2.0 Mb in 22q11.22-q11.23. Conclusion: Case 1 presented a wide range of phenotypic abnormalities including the phenotype of 1q21.1 duplication syndrome. In case 2, Asperger-like symptoms are apparently related to 19p12-q13.11, hearing problems and strabismus to 19p13.11 and other features to 19q13.12. Compared with cat-eye syndrome type I and 22q11.2 microduplication syndrome, anal atresia in case 3 is likely related to 22q11.1-q11.21 while other features are related to 22q11.22-q11.23. Analyzing SMCs using high-resolution chromosomal microarray can help identify specific gene contents and to offer proper genetic counseling by determining genotype-phenotype correlations.

Video Sequence Segmentation using Distributed Genetic Algorithms (분산 유전자 알고리즘을 이용한 동영상 분할)

  • 황상원;김은이;김항준
    • Proceedings of the Korea Institute of Convergence Signal Processing
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    • 2000.08a
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    • pp.317-320
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    • 2000
  • 동영상 분할은 컴퓨터 비전 분야에서 중요한 단계로 많이 연구되고 있다 그러나 동영상 분할은 계산 복잡도에 의해 제약을 받는다. 이를 해결하기 위해, 본 논문은 분산 유전자 알고리즘에 기반한 계산 효율을 높일 수 있는 새로운 동영상 분할 방법을 제안한다. 일반적으로 동영상에서 연속한 두 프레임은 높은 상관관계를 가진다. 따라서, 한 프레임의 분할 결과는 이전 프레임의 분할 결과를 사용해서 연속적으로 얻어진다. 그리고 중복된 계산을 제거하기 위해 움직이는 객체에 대응되는 염색체만을 진화시킨다. 실험 결과는 제안한 방법의 효율성을 보여준다.

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Monocentric Derivative Y Chromosome with Duplication of the SRY Gene in an Azoospermic Male (무정자증 불임남성에서 관찰된 SRY 유전자의 중복을 동반한 일동원체성 derivative Y 염색체)

  • Choi, Eun-Young;Lee, Bom-Yi;Park, Ju-Yeon;Lee, Yeon-Woo;Oh, Ah-Rum;Lee, Shin-Young;Kim, Shin-Young;Han, You-Jung;Lee, Mee-Bum;Ryu, Hyun-Mee;Seo, Ju-Tae;Park, So-Yeon
    • Journal of Genetic Medicine
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    • v.7 no.2
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    • pp.160-164
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    • 2010
  • Structural abnormalities of the Y chromosome affect normal testicular differentiation and spermatogenesis. The present case showed a rare monocentric derivative Y chromosome with partial duplication of Yp including the SRY gene and deletion of Yq12 heterochromatin. The karyotype was 46,X,der(Y)(pter${\rightarrow}$q11.23::p11.2${\rightarrow}$pter).ish der(Y)(DYZ3+,DYZ1-,SRY++), confirmed through a FISH study. Even though the patient possessed an abnormal Y chromosome, testicular biopsy showed normal testicular volumes in the proband, with gonadal hormonal levels in the normal range but bilateral varicocele and hypospermatogenesis. We speculate that the abnormal Y chromosome arose from sister chromatids during Y chromosome recombination or intra chromosomal NAHR (non-allelic homologous recombination) during meiosis in the patient's father or in the very early stages of embryogenesis. The derivative Y chromosome might interfere in the meiotic stage of spermatogenesis, leading to the developmental arrest of germ cells. The present case illustrates that the infertility phenotype can have various causes. Also, it emphasizes the importance of accurate and various genetic analyses and could aid in male infertility treatment.

MLPA Applications in Genetic Testing (유전자진단에 있어서 Multiplex Ligation Dependent Probe Amplification (MLPA)의 이론과 실제)

  • Kim, Gu-Hwan;Lee, Beom-Hee;Yoo, Han-Wook
    • Journal of Genetic Medicine
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    • v.6 no.2
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    • pp.146-154
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    • 2009
  • Multiplex ligation dependent probe amplification (MLPA) is a PCR-based method to detect gene dosage. Since its introduction, MLPA has been used to test a large number of genes for major deletions or duplications. Genetic testing, as a diagnostic tool for genetic disease, has been used primarily to identify point mutations, including base substitutions and small insertions/deletions, using PCR and sequence analysis. However, it is difficult to identify large deletions or duplications using routine PCR- gel based assays, especially in heterozygotes. The MLPA is a more feasible method for identification of gene dosage than another routine PCR-based methods, and better able to detect deleterious deletions or duplications. In addition to detection of gene dosage, MLPA can be applied to identify methylation patterns of target genes, aneuploidy during prenatal diagnoses, and large deletions or duplications that may be associated with various cancers. The MLPA method offers numerous advantages, as it requires only a small amount of template DNA, is applicable to a wide variety of applications, and is high-throughput. On the other hand, this method suffers from disadvantages including the possibility of false positive results affected by template DNA quality, difficulties identifying SNPs located in probe sequences, and analytical complications in quantitative aspects.

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Case of Partial Trisomy 9q Derived from Paternal Chromosome (아버지로부터 유래된 9번 염색체 장완의 부분 세염색체 1례)

  • Jung, Ji-Eun;Song, Eun-Jeong;Park, Hye-Jin;Lee, Kye-Hyang;Lee, Kyung-Hoon;Choi, Eun-Jin;Kim, Jin-Kyung;Chung, Hai-Lee;Seo, Eok-Su;Kim, Woo-Taek
    • Neonatal Medicine
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    • v.16 no.1
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    • pp.71-75
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    • 2009
  • There are few cases of partial trisomy of 9q, known as partial 9q trisomy syndrome with low birth weight, microcephaly, hypotelorism, beaked nose, small lip, long finger, hypertrophic pyloric stenosis, ventricular septal defect, and mental retardation. We report partial trisomy of 9q derived from a paternal chromosome, which has different features of other syndromes, including prematurity, atrial and ventricular septal defect, patent ductus arteriosus, persistent left superior vena cava, congenital hydronephrosis, and scrotal hernia.

A Case of Short Arm Deletion and Long Arm Duplication at Chromosome 3 (3번 염색체 단완 결실과 장완 중복을 동반한 1례)

  • Kong, Seung Hyun;Seo, Jeong Il;Kang, Jang Hui;Jung, So Young;Mok, Ji Sun
    • Clinical and Experimental Pediatrics
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    • v.48 no.12
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    • pp.1389-1389
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    • 2005
  • The long arm duplication of chromosome 3 was reported for the first time in 1966 by Falek et al., and Hirschhorn et al. came to identify the duplication of 3q21${\rightarrow}$qter region in 1973. In most cases of duplication 3q syndrome patients, pure duplication of 3qter is believed to be rare and is often reported accompanied with deletion of another segment of the chromosome. Approximately 75 percent of parents of the patient in the meantime have been demonstrated to have unbalanced translocations or inversions of the chromosome. Partial deletion of the distal part of the short arm of chromosome 3 was first reported by Verjaal and De Nef in 1978 and terminal deletion of chromosome 3 (3p25-qter) has been observed in most cases. In karyotyping of chromosomes of immature infants showing the manifestations of flat occiputs, low set ears, hypertelorism, broad nasal roots, thin lips, web necks, hypotonia, hypertrichosis skin, cryptorchidism etc, we experienced a case diagnosed as 46,XY, rec(3)dup(3)(q21)del(3)(p25)inv(3)(p25q21).