| [1] | 郁莉斐, 张玉琴, 廖建湘,  等. 葡萄糖转运体1缺陷综合征疾病特征及生酮饮食治疗多中心临床研究[J]. 中华儿科杂志, 2020, 58(11): 881-886. | 
																													
																						| [2] | 刘家雯, 丁鑫, 操德智,  等. 生酮饮食治疗药物难治性Dravet综合征的疗效和安全性的前瞻性对照研究[J]. 中华实用儿科临床杂志, 2019, 34(15): 1160-1165. | 
																													
																						| [3] | Schoeler NE, Leu C, Balestrini S,  et al. Genome-wide association study: exploring the genetic basis for responsiveness to ketogenic dietary therapies for drug-resistant epilepsy[J]. Epilepsia, 2018, 59(8): 1557-1566. doi: 10.1111/epi.14516
																																					pmid: 30009487
 | 
																													
																						| [4] | Ko A, Jung DE, Kim SH,  et al. The efficacy of ketogenic diet for specific genetic mutation in developmental and epileptic encephalopathy[J]. Front Neurol, 2018, 9: 530. doi: 10.3389/fneur.2018.00530
																																					pmid: 30061856
 | 
																													
																						| [5] | Rogawski MA, Löscher W, Rho JM. Mechanisms of action of antiseizure drugs and the ketogenic diet[J]. Cold Spring Harb Perspect Med, 2016, 6(5): a022780. | 
																													
																						| [6] | Schoeler NE, Cross JH, Sander JW,  et al. Can we predict a favourable response to ketogenic diet therapies for drug‐resistant epilepsy?[J]. Epilepsy Res, 2013, 106(1-2): 1-16. doi: 10.1016/j.eplepsyres.2013.06.002
																																					pmid: 23820448
 | 
																													
																						| [7] | 中国医师协会神经内科医师分会儿童神经专业委员会, 中华医学会儿科学分会神经学组. 生酮饮食治疗儿童癫痫性脑病循证指南[J]. 中华实用儿科临床杂志, 2019, 34(12): 881-888. | 
																													
																						| [8] | Yoshitomi S, Takahashi Y, Yamaguchi T,  et al. Efficacy and tolerability of perampanel in pediatric patients with Dravet syndrome[J]. Epilepsy Res, 2019, 154: 34-38. doi: S0920-1211(19)30052-X
																																					pmid: 31035242
 | 
																													
																						| [9] | Gauthier AC, Manganas LN, Mattson RH. A novel inherited SCN1A mutation associated with GEFS+ in benign and encephalopathic epilepsy[J]. J Clin Neurosci, 2017, 40: 82-84. doi: S0967-5868(16)31250-4
																																					pmid: 28262406
 | 
																													
																						| [10] | 刘晓军, 韦新平, 吴波,  等. 离子通道基因变异致早发癫痫性脑病17例临床特征和基因变异分析[J]. 中华实用儿科临床杂志, 2019, 34 (12): 918-921. | 
																													
																						| [11] | Miao P, Tang S, Ye J,  et al. Electrophysiological features: The next precise step for SCN2A developmental epileptic encephalopathy[J]. Mol Genet Genomic Med, 2020, 8(7): e1250. | 
																													
																						| [12] | Tian X, Zhang Y, Zhang J,  et al. Ketogenic diet in infants with early-onset epileptic encephalopathy and SCN2A mutation[J]. Yonsei Med J, 2021, 62(4): 370-373. doi: 10.3349/ymj.2021.62.4.370
 | 
																													
																						| [13] | Turkdogan D, Thomas G, Demirel B. Ketogenic diet as a successful early treatment modality for SCN2A mutation[J]. Brain Dev, 2019, 41(4): 389-391. doi: 10.1016/j.braindev.2018.10.015
 | 
																													
																						| [14] | Kim HJ, Yang D, Kim SH,  et al. The phenotype and treatment of SCN2A‐related developmental and epileptic encephalopathy[J]. Epileptic Disord, 2020, 22(5): 563-570. doi: 10.1684/epd.2020.1199
 | 
																													
																						| [15] | Markus Wolff, Katrine M Johannesen, Ulrikev B S Hedrich, et al. Genetic and phenotypic heterogeneity suggest therapeutic implications in SCN2A-related disorders. Brain, 2017, 140(5): 1316-1336. doi: 10.1093/brain/awx054
																																					pmid: 28379373
 | 
																													
																						| [16] | Vreugdenhil M, Bruehl C, Voskuyl RA, et al. Poly-unsaturated fatty acids modulate sodium and calcium currents in CA1 neurons[J]. Proc Natl Acad Sci USA, 1996, 93(22): 12559-12563. doi: 10.1073/pnas.93.22.12559
 | 
																													
																						| [17] | Jiao X, Xue J, Gong P, et al. Analyzing clinical and genetic characteristics of a cohort with multiple congenital anomalies-hypotonia-seizures syndrome (MCAHS)[J]. Orphanet J Rare Dis, 2020, 15(1): 78. doi: 10.1186/s13023-020-01365-0
																																					pmid: 32220244
 | 
																													
																						| [18] | Joshi C, Kolbe DL, Mansilla MA,  et al Ketogenic diet-a novel treatment for early epileptic encephalopathy due to PIGA deficiency[J]. Brain Dev, 2016, 38(9): 848-851. doi: 10.1016/j.braindev.2016.04.004
 | 
																													
																						| [19] | Chiyonobu T, Inoue N, Morimoto M,  et al. Glyco-sylphosphatidylinositol (GPI) anchor deficiency caused by mutations in PIGW is associated with West syndrome and hyperphosphatasia with mental retardation syndrome[J]. J Med Genet, 2014, 51(3): 203-207. doi: 10.1136/jmedgenet-2013-102156
																																					pmid: 24367057
 | 
																													
																						| [20] | Langlois S, Tarailo-Graovac M, Sayson B,  et al. De novo dominant variants affecting the motor domain of KIF1A are a cause of PEHO syndrome[J]. Eur J Hum Genet, 2016, 24(6): 949-953. doi: 10.1038/ejhg.2015.217
																																					pmid: 26486474
 | 
																													
																						| [21] | Jagadish S, Payne ET, Wong-Kisiel L,  et al. The Ketogenic and Modified Atkin's diet therapy for children with refractory epilepsy of genetic etiology[J]. Pediatr Neurol, 2019, 94: 32-37. doi: 10.1016/j.pediatrneurol.2018.12.012
 |