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Cited by in CrossRef
For: Hosak L. New findings in the genetics of schizophrenia. World J Psychiatr 2013; 3(3): 57-61 [PMID: 24255876 DOI: 10.5498/wjp.v3.i3.57]
URL: https://www.wjgnet.com/2220-3206/full/v3/i3/57.htm
Number Citing Articles
1
Dongjun Dai, Jia Cheng, Kena Zhou, Yuelong Lv, Qidong Zhuang, Rongjiong Zheng, Kai Zhang, Danjie Jiang, Shugui Gao, Shiwei Duan. Significant association between DRD3 gene body methylation and schizophreniaPsychiatry Research 2014; 220(3): 772 doi: 10.1016/j.psychres.2014.08.032
2
M. Vajagathali, V. Ramakrishnan. Genetic predisposition of BDNF (rs6265) gene is susceptible to Schizophrenia: A prospective study and updated meta-analysisNeurología 2022;  doi: 10.1016/j.nrl.2021.10.006
3
R.C. Bates, B.J. Stith, K.E. Stevens, C.E. Adams. Reduced Chrna7 expression in C3H mice is associated with increases in hippocampal parvalbumin and glutamate decarboxylase-67 (GAD67) as well as altered levels of GABAA receptor subunitsNeuroscience 2014; 273: 52 doi: 10.1016/j.neuroscience.2014.05.004
4
Klara Latalova, Omar Sery, Kristyna Hosakova, Ladislav Hosak. <p>Gene–Environment Interactions in Major Mental Disorders in the Czech Republic</p>Neuropsychiatric Disease and Treatment 2020; : 1147 doi: 10.2147/NDT.S238522
5
Zarina Greenberg, Hayley Ramshaw, Quenten Schwarz. Time Windows of Interneuron Development: Implications to Our Understanding of the Aetiology and Treatment of SchizophreniaAIMS Neuroscience 2015; 2(4): 294 doi: 10.3934/Neuroscience.2015.4.294
6
Iva Petrovchich, Alexandra Sosinsky, Anish Konde, Abigail Archibald, David Henderson, Mirjana Maletic-Savatic, Snezana Milanovic. Metabolomics in Schizophrenia and Major Depressive DisorderFrontiers in Biology 2016; 11(3): 222 doi: 10.1007/s11515-016-1400-8
7
PVSN Kiran kumar, Prasenjit Mitra, Raghumoy Ghosh, Shailja Sharma, Naresh Nebhinani, Praveen Sharma. Association of circulating BDNF levels with BDNF rs6265 polymorphism in schizophreniaBehavioural Brain Research 2020; 394: 112832 doi: 10.1016/j.bbr.2020.112832
8
G.A. Miller, B.S. Rockstroh. The Neurobiology of Schizophrenia2016; : 17 doi: 10.1016/B978-0-12-801829-3.00010-0
9
Scott A Anthony. Focus on eye care in schizophreniaClinical and Experimental Optometry 2019; 102(4): 385 doi: 10.1111/cxo.12826
10
Margarita M Maramis, Muhammad Sofyan Almahdy, Atika Atika, Cokorda Bagus Jaya Lesmana, Jakobus Gerick Pantouw. The biopsychosocial-spiritual factors influencing relapse of patients with schizophreniaInternational Journal of Social Psychiatry 2022; 68(8): 1824 doi: 10.1177/00207640211065678
11
Catherine A. Brownstein, Robin J. Kleiman, Elizabeth C. Engle, Meghan C. Towne, Eugene J. D'Angelo, Timothy W. Yu, Alan H. Beggs, Jonathan Picker, Jason M. Fogler, Devon Carroll, Rachel C. O. Schmitt, Robert R. Wolff, Yiping Shen, Va Lip, Kaya Bilguvar, April Kim, Sahil Tembulkar, Kyle O'Donnell, Joseph Gonzalez-Heydrich. Overlapping 16p13.11 deletion and gain of copies variations associated with childhood onset psychosis include genes with mechanistic implications for autism associated pathways: Two case reportsAmerican Journal of Medical Genetics Part A 2016; 170(5): 1165 doi: 10.1002/ajmg.a.37595
12
Enrico Cocchi, Antonio Drago, Alessandro Serretti. Hippocampal Pruning as a New Theory of Schizophrenia EtiopathogenesisMolecular Neurobiology 2016; 53(3): 2065 doi: 10.1007/s12035-015-9174-6
13
Zhiqiang Li, Jianhua Chen, Yifeng Xu, Qizhong Yi, Weidong Ji, Peng Wang, Jiawei Shen, Zhijian Song, Meng Wang, Ping Yang, Qingzhong Wang, Guoyin Feng, Benxiu Liu, Wensheng Sun, Qi Xu, Baojie Li, Lin He, Guang He, Wenjin Li, Zujia Wen, Ke Liu, Fang Huang, Juan Zhou, Jue Ji, Xingwang Li, Yongyong Shi. Genome-wide Analysis of the Role of Copy Number Variation in Schizophrenia Risk in ChineseBiological Psychiatry 2016; 80(4): 331 doi: 10.1016/j.biopsych.2015.11.012
14
Xiaodi Jia, Tianxiao Zhang, Lu Li, Dongke Fu, Huali Lin, Gang Chen, Xinshe Liu, Fanglin Guan. Two-stage additional evidence support association of common variants in theHDAC3with the increasing risk of schizophrenia susceptibilityAmerican Journal of Medical Genetics Part B: Neuropsychiatric Genetics 2016; 171(8): 1105 doi: 10.1002/ajmg.b.32491
15
Behnam Vafadari, Shiladitya Mitra, Marzena Stefaniuk, Leszek Kaczmarek. Psychosocial Stress Induces Schizophrenia-Like Behavior in Mice With Reduced MMP-9 ActivityFrontiers in Behavioral Neuroscience 2019; 13 doi: 10.3389/fnbeh.2019.00195
16
John P. John, Priyadarshini Thirunavukkarasu, Harsha N. Halahalli, Meera Purushottam, Sanjeev Jain. A systematic review of the effect of genes mediating neurodevelopment and neurotransmission on brain morphology: Focus on schizophreniaNeurology, Psychiatry and Brain Research 2015; 21(1): 1 doi: 10.1016/j.npbr.2014.11.003
17
Maral Mardani Moghanaki, Zahra Noormohammadi, Iman Salahshourifar, Niloufar Mahdavi Hazaveh. MAOA-uVNTR variations in schizophrenia: case and control studyBulletin of the National Research Centre 2022; 46(1) doi: 10.1186/s42269-022-00951-5
18
Ingrid Fricke-Galindo, Blanca E. Pérez-Aldana, Luis R. Macías-Kauffer, Susana González-Arredondo, David Dávila-Ortiz de Montellano, Carlos L. Aviña-Cervantes, Marisol López-López, Yaneth Rodríguez-Agudelo, Nancy Monroy-Jaramillo. Impact of COMT, PRODH and DISC1 Genetic Variants on Cognitive Performance of Patients with SchizophreniaArchives of Medical Research 2022; 53(4): 388 doi: 10.1016/j.arcmed.2022.03.004
19
Marie Raffin, Angele Consoli, Marianna Giannitelli, Anne Philippe, Boris Keren, Nicolas Bodeau, Douglas F. Levinson, David Cohen, Claudine Laurent-Levinson. Catatonia in Children and Adolescents: A High Rate of Genetic ConditionsJournal of the American Academy of Child & Adolescent Psychiatry 2018; 57(7): 518 doi: 10.1016/j.jaac.2018.03.020
20
Thomas Schnell. Handbuch Klinische Psychologie2019; : 1 doi: 10.1007/978-3-662-45995-9_20-1
21
Antonio Benítez-Burraco, Montserrat Barcos-Martínez, Isabel Espejo-Portero, Maite Fernández-Urquiza, Raúl Torres-Ruiz, Sandra Rodríguez-Perales, Ma Salud Jiménez-Romero. Narrowing the Genetic Causes of Language Dysfunction in the 1q21.1 Microduplication SyndromeFrontiers in Pediatrics 2018; 6 doi: 10.3389/fped.2018.00163
22
Somayeh Alinaghi, Elham Alehabib, Amir Hossein Johari, Fatemeh Vafaei, Shima Salehi, Hossein Darvish, Hamid Ghaedi. Expression analysis and genotyping of DGKZ: a GWAS-derived risk gene for schizophreniaMolecular Biology Reports 2019; 46(4): 4105 doi: 10.1007/s11033-019-04860-1
23
Gang Chen, Fanglin Guan, Huali Lin, Lu Li, Dongke Fu. Genetic analysis of common variants in the HDAC2 gene with schizophrenia susceptibility in Han ChineseJournal of Human Genetics 2015; 60(9): 479 doi: 10.1038/jhg.2015.66
24
John Read, Jeffrey Masson. Biological Psychiatry and the Mass Murder of “Schizophrenics”: From Denial to Inspirational AlternativeEthical Human Psychology and Psychiatry 2022; 24(2): 69 doi: 10.1891/EHPP-2021-0006
25
Jennifer Z.J. Maccani, Devin C. Koestler, E. Andrés Houseman, David A. Armstrong, Carmen J. Marsit, Karl T. Kelsey. DNA methylation changes in the placenta are associated with fetal manganese exposureReproductive Toxicology 2015; 57: 43 doi: 10.1016/j.reprotox.2015.05.002
26
Jana Janoutová, Omar Šerý, Petr Ambroz, Ladislav Hosák, Vladimír Janout. Psychosocial risk factors in schizophreniaPsychiatrie pro praxi 2016; 17(E-verze 3/16): e20 doi: 10.36290/psy.2016.040
27
DONGJUN DAI, YUNLIANG WANG, JIAOJIAO YUAN, XINGYU ZHOU, DANJIE JIANG, JINFENG LI, YUZHENG ZHANG, HONGLEI YIN, SHIWEI DUAN. Meta-analyses of 10 polymorphisms associated with the risk of schizophreniaBiomedical Reports 2014; 2(5): 729 doi: 10.3892/br.2014.308