1 |
GBD 2019 Mental Disorders Collaborators. Global, regional, and national burden of 12 mental disorders in 204 countries and territories, 1990‒2019: a systematic analysis for the Global Burden of Disease Study 2019[J]. Lancet Psychiatry, 2022, 9(2): 137-150.
|
2 |
CLARK L A, CUTHBERT B, LEWIS-FERNÁNDEZ R, et al. Three approaches to understanding and classifying mental disorder: ICD-11, DSM-5, and the national institute of mental health's research domain criteria (RDoC)[J]. Psychol Sci Public Interest, 2017, 18(2): 72-145.
|
3 |
THOMPSON S M. Modulators of GABAA receptor-mediated inhibition in the treatment of neuropsychiatric disorders: past, present, and future[J]. Neuropsychopharmacology, 2024, 49(1): 83-95.
|
4 |
LONDON A, BENHAR I, SCHWARTZ M. The retina as a window to the brain-from eye research to CNS disorders[J]. Nat Rev Neurol, 2013, 9(1): 44-53.
|
5 |
MAUSCHITZ M M, LOHNER V, KOCH A, et al. Retinal layer assessments as potential biomarkers for brain atrophy in the Rhineland Study[J]. Sci Rep, 2022, 12(1): 2757.
|
6 |
LIM J K L, LI Q X, HE Z, et al. Retinal functional and structural changes in the 5×FAD mouse model of Alzheimer's disease[J]. Front Neurosci, 2020, 14: 862.
|
7 |
GAIRE B P, KORONYO Y, FUCHS D T, et al. Alzheimer's disease pathophysiology in the retina[J]. Prog Retin Eye Res, 2024, 101: 101273.
|
8 |
CHEUNG C Y, MOK V, FOSTER P J, et al. Retinal imaging in Alzheimer's disease[J]. J Neurol Neurosurg Psychiatry, 2021, 92(9): 983-994.
|
9 |
GEEVARGHESE A, WOLLSTEIN G, ISHIKAWA H, et al. Optical coherence tomography and glaucoma[J]. Annu Rev Vis Sci, 2021, 7: 693-726.
|
10 |
OKUGAWA G, SEDVALL G C, AGARTZ I. Reduced grey and white matter volumes in the temporal lobe of male patients with chronic schizophrenia[J]. Eur Arch Psychiatry Clin Neurosci, 2002, 252(3): 120-123.
|
11 |
ASCASO F J, LAURA C, QUINTANILLA M Á, et al. Retinal nerve fiber layer thickness measured by optical coherence tomography in patients with schizophrenia: a short report[J]. Eur J Psychiat, 2010, 24(4): 227-235.
|
12 |
LEE W W, TAJUNISAH I, SHARMILLA K, et al. Retinal nerve fiber layer structure abnormalities in schizophrenia and its relationship to disease state: evidence from optical coherence tomography[J]. Invest Ophthalmol Vis Sci, 2013, 54(12): 7785-7792.
|
13 |
YILMAZ U, KÜÇÜK E, ÜLGEN A, et al. Retinal nerve fiber layer and macular thickness measurement in patients with schizophrenia[J]. Eur J Ophthalmol, 2016, 26(4): 375-378.
|
14 |
BOUDRIOT E, SCHWORM B, SLAPAKOVA L, et al. Optical coherence tomography reveals retinal thinning in schizophrenia spectrum disorders[J]. Eur Arch Psychiatry Clin Neurosci, 2023, 273(3): 575-588.
|
15 |
徐淑莉, 禚传君, 陈清刚. 精神分裂症患者黄斑及视神经纤维损害研究[J]. 精神医学杂志, 2023, 36(6): 638-641.
|
|
XU S L, ZHUO C J, CHEN Q G. Research on the lesions of macula and optic nerve fibers in patients with schizophrenia[J]. Journal of Psychiatry, 2023, 36(6): 638-641.
|
16 |
SILVERSTEIN S M, PATERNO D, CHERNESKI L, et al. Optical coherence tomography indices of structural retinal pathology in schizophrenia[J]. Psychol Med, 2018, 48(12): 2023-2033.
|
17 |
JEROTIC S, RISTIC I, PEJOVIC S, et al. Retinal structural abnormalities in young adults with psychosis spectrum disorders[J]. Prog Neuropsychopharmacol Biol Psychiatry, 2020, 98: 109825.
|
18 |
MILLER M, ZEMON V, NOLAN-KENNEY R, et al. Optical coherence tomography of the retina in schizophrenia: inter-device agreement and relations with perceptual function[J]. Schizophr Res, 2020, 219: 13-18.
|
19 |
KANGO A, GROVER S, GUPTA V, et al. A comparative study of retinal layer changes among patients with schizophrenia and healthy controls[J]. Acta Neuropsychiatr, 2023, 35(3): 165-176.
|
20 |
ASCASO F J, RODRIGUEZ-JIMENEZ R, CABEZÓN L, et al. Retinal nerve fiber layer and macular thickness in patients with schizophrenia: influence of recent illness episodes[J]. Psychiatry Res, 2015, 229(1/2): 230-236.
|
21 |
SAIDHA S, SOTIRCHOS E S, OH J, et al. Relationships between retinal axonal and neuronal measures and global central nervous system pathology in multiple sclerosis[J]. JAMA Neurol, 2013, 70(1): 34-43.
|
22 |
DINKIN M. Trans-synaptic retrograde degeneration in the human visual system: slow, silent, and real[J]. Curr Neurol Neurosci Rep, 2017, 17(2): 16.
|
23 |
TÜRKÖZER H B, LIZANO P, ADHAN I, et al. Regional and sex-specific alterations in the visual cortex of individuals with psychosis spectrum disorders[J]. Biol Psychiatry, 2022, 92(5): 396-406.
|
24 |
SEKAR A, BIALAS A R, DE RIVERA H, et al. Schizophrenia risk from complex variation of complement component 4[J]. Nature, 2016, 530(7589): 177-183.
|
25 |
KURTULMUS A, ELBAY A, PARLAKKAYA F B, et al. An investigation of retinal layer thicknesses in unaffected first-degree relatives of schizophrenia patients[J]. Schizophr Res, 2020, 218: 255-261.
|
26 |
KAYA H, AYIK B, TASDELEN R, et al. Comparing retinal changes measured by optical coherence tomography in patients with schizophrenia and their siblings with healthy controls: are retinal findings potential endophenotype candidates?[J]. Asian J Psychiatr, 2022, 72: 103089.
|
27 |
KOMATSU H, ONOGUCHI G, SILVERSTEIN S M, et al. Retina as a potential biomarker in schizophrenia spectrum disorders: a systematic review and meta-analysis of optical coherence tomography and electroretinography[J]. Mol Psychiatry, 2024, 29(2): 464-482.
|
28 |
MEHRABAN A, SAMIMI S M, ENTEZARI M, et al. Peripapillary retinal nerve fiber layer thickness in bipolar disorder[J]. Graefes Arch Clin Exp Ophthalmol, 2016, 254(2): 365-371.
|
29 |
MUSTAFA A, TURGAY U. Optical coherence tomography angiography in patients with euthymic bipolar disorder[J]. J Affect Disord, 2022, 317: 15-21.
|
30 |
KALENDEROGLU A, SEVGI-KARADAG A, CELIK M, et al. Can the retinal ganglion cell layer (GCL) volume be a new marker to detect neurodegeneration in bipolar disorder?[J]. Compr Psychiatry, 2016, 67: 66-72.
|
31 |
KHALIL M A, SALEH A A, GOHAR S M, et al. Optical coherence tomography findings in patients with bipolar disorder[J]. J Affect Disord, 2017, 218: 115-122.
|
32 |
POLO V, SATUE M, GAVIN A, et al. Ability of swept source OCT to detect retinal changes in patients with bipolar disorder[J]. Eye, 2019, 33(4): 549-556.
|
33 |
GOKCINAR N B, BUTURAK S V, OZKAL F, et al. Optical coherence tomography neurodegenerative findings in patients with bipolar disorder[J]. Asia Pac Psychiatry, 2020, 12(4): e12394.
|
34 |
AYIK B, KAYA H, TASDELEN R, et al. Retinal changes in bipolar disorder as an endophenotype candidate: comparison of OCT-detected retinal changes in patients, siblings, and healthy controls[J]. Psychiatry Res, 2022, 313: 114606.
|
35 |
KURT A, ZOR K R, YıLDıRıM BIÇER G, et al. Optical coherence tomography findings in bipolar disorder patients and the related factors[J]. Psychiatry Clin Psychopharmacol, 2023, 33(4): 254-263.
|
36 |
ALTUN I K, TUREDI N, ARAS N, et al. Psychopharmacological signatures in the retina in schizophrenia and bipolar disorder: an optic coherence tomography study[J]. Psychiatr Danub, 2020, 32(3/4): 351-358.
|
37 |
PRASANNAKUMAR A, KUMAR V, MAILANKODY P, et al. A systematic review and meta-analysis of optical coherence tomography studies in schizophrenia, bipolar disorder and major depressive disorder[J]. World J Biol Psychiatry, 2023, 24(8): 707-720.
|
38 |
JUNG K I, HONG S Y, SHIN D Y, et al. Attenuated visual function in patients with major depressive disorder[J]. J Clin Med, 2020, 9(6): 1951.
|
39 |
LIU Y H, TONG Y S, HUANG L Z, et al. Factors related to retinal nerve fiber layer thickness in bipolar disorder patients and major depression patients[J]. BMC Psychiatry, 2021, 21(1): 301.
|
40 |
LIU X, LAI S K, MA S S, et al. Development of a novel retina-based diagnostic score for early detection of major depressive disorder: an interdisciplinary view[J]. Front Psychiatry, 2022, 13: 897759.
|
41 |
YILDIZ M, ALIM S, BATMAZ S, et al. Duration of the depressive episode is correlated with ganglion cell inner plexifrom layer and nasal retinal fiber layer thicknesses: optical coherence tomography findings in major depression[J]. Psychiatry Res Neuroimaging, 2016, 251: 60-66.
|
42 |
SÖNMEZ İ, KÖŞGER F, AYKAN Ü. Retinal nerve fiber layer thickness measurement by spectral-domain optical coherence tomography in patients with major depressive disorder[J]. Noro Psikiyatr Ars, 2017, 54(1): 62-66.
|
43 |
SCHÖNFELDT-LECUONA C, SCHMIDT A, KREGEL T, et al. Retinal changes in patients with major depressive disorder: a controlled optical coherence tomography study[J]. J Affect Disord, 2018, 227: 665-671.
|
44 |
GENC A, DALKIRAN M, PIRDOĞAN AYDıN E, et al. The alteration of retinal nerve fibre layer thickness with repetitive transcranial magnetic stimulation in patients with treatment resistant major depression[J]. Int J Psychiatry Clin Pract, 2019, 23(1): 57-61.
|
45 |
KALENDEROGLU A, ÇELIK M, SEVGI-KARADAG A, et al. Optic coherence tomography shows inflammation and degeneration in major depressive disorder patients correlated with disease severity[J]. J Affect Disord, 2016, 204: 159-165.
|
46 |
van der HEIDE F C T, STEENS I L M, GERAETS A F J, et al. Association of retinal nerve fiber layer thickness, an index of neurodegeneration, with depressive symptoms over time[J]. JAMA Netw Open, 2021, 4(11): e2134753.
|
47 |
POLAT S, GEDIZ B S, ERCAN A C, et al. The place of optical coherence tomography in patients with obsessive compulsive disorder[J]. Eurasian J Med, 2019, 51(3): 237-241.
|
48 |
BAYKARA S, KAZĞAN A, YILDIRIM H, et al. Retinal changes in generalized anxiety disorder patients[J]. Int J Psychiatry Med, 2024, 59(3): 270-286.
|
49 |
BAYKARA S, YILDIRIM H, KAZĞAN A, et al. Retinal changes in panic disorder patients[J]. Psychiatry Res Neuroimaging, 2022, 324: 111496.
|