Journal of Diagnostics Concepts & Practice >
Diagnosis of atypical Alzheimer′s disease
Received date: 2025-12-31
Revised date: 2026-02-23
Accepted date: 2026-03-03
Online published: 2026-04-25
In 2022, the total number of patients with Alzheimer's disease (AD) and related dementias in China was approximately 16 million, and it is projected to exceed 20 million by 2030, ranking fifth among the diseases that cause death. Early and accurate diagnosis is essential for its treatment and overall management. The majority of AD patients exhibit the typical features of hippocampal amnestic syndrome, while some patients may present with atypical features characterized by early manifestations such as visuospatial impairment, language impairment, executive dysfunction or beha-vioral abnormalities, and sensorimotor deficits, posing challenges for clinical diagnosis. In a neuropathologically confirmed early-onset AD cohort, the misdiagnosis rate for patients with atypical manifestations reaches 53%, whereas that for patients with typical symptoms is only 4%. This article systematically elaborates on the clinical features, key diagnostic points, and differential diagnosis of four atypical AD subtypes: posterior cortical atrophy variant, primary progressive aphasia variant, frontal variant, and corticobasal syndrome variant. Through medical history collection, physical examination, and systematic review, combined with neuropsychological assessment and neuroimaging, clinicians can identify cognitive-behavioral syndromes and clinical-imaging syndromes, thereby recognizing and differentiating patients with typical and atypical manifestations of AD. As the clinical application of biomarkers becomes increasingly widespread, it will promote a deeper understanding of AD clinical manifestations. This will help clinicians in the early recognition of atypical symptoms, thereby providing support for accurate diagnosis, timely intervention, and individualized care for patients with atypical AD.
Key words: Alzheimer's disease; Clinical phenotype; Neuroimaging; Biomarker
ZHANG Nan , LU Qingzheng . Diagnosis of atypical Alzheimer′s disease[J]. Journal of Diagnostics Concepts & Practice, 2026 , 25(02) : 121 -130 . DOI: 10.16150/j.1671-2870.2026.02.002
| [1] | ZHI N, REN R, QI J, et al. The China Alzheimer report 2025[J]. Gen Psych, 2025, 38(4):e102020. |
| [2] | 王英全, 梁景宏, 贾瑞霞, 等. 2020-2050年中国阿尔茨海默病患病情况预测研究[J]. 阿尔茨海默病及相关病, 2019, 2(1):289-298. |
| WANG Y Q, LIANG J H, JIA R X, et al. Alzheimer di-sease in China (2015-2050) estimated using the 1% population sampling survey in 2015[J]. Chin J Alzheimer Dis Relat Disord, 2019, 2(1):289-298. | |
| [3] | REN R, QI J, LIN S, et al. The China Alzheimer report 2022[J]. Gen Psych, 2022, 35(1):e100751. |
| [4] | VANDEVREDE L, SCHINDLER S E. Clinical use of biomarkers in the era of Alzheimer’s disease treatments[J]. Alzheimers Dement, 2025,21:e14201. |
| [5] | VAN DYCK C H, SWANSON C J, AISEN P, et al. Lecanemab in early Alzheimer’s disease[J]. N Engl J Med, 2023, 388(1):9-21. |
| [6] | SIMS J R, ZIMMER J A, EVANS C D, et al. Donanemab in early symptomatic alzheimer disease: The TRAILBLAZER-ALZ 2 randomized clinical trial[J]. JAMA, 2023, 330(6):512-527. |
| [7] | KOEDAM E L G E, LAUFFER V, VAN DER VLIES A E, et al. Early-versus late-onset Alzheimer’s disease: More than age alone[J]. J Alzheimers Dis, 2010, 19(4):1401-1408. |
| [8] | KVELLO-ALME M, BR?THEN G, WHITE L R, et al. The prevalence and subtypes of young onset dementia in central Norway: A population-based study[J]. J Alzhei-mers Dis, 2019, 69(2):479-487. |
| [9] | SNOWDEN J S, STOPFORD C L, JULIEN C L, et al. Cognitive phenotypes in Alzheimer’s disease and genetic risk[J]. Cortex, 2007, 43(7):835-845. |
| [10] | VAN DER FLIER W M, AL PIJNENBURG Y, FOX N C, et al. Early-onset versus late-onset Alzheimer’s disease: The case of the missing APOE ?4 allele[J]. Lancet Neurol, 2011, 10(3):280-288. |
| [11] | BALASA M, GELPI E, ANTONELL A, et al. Clinical features and APOE gene type of pathologically proven early-onset Alzheimer disease[J]. Neurology, 2011, 76(20):1720-1725. |
| [12] | MCKHANN G, DRACHMAN D, FOLSTEIN M, et al. Clinical diagnosis of Alzheimer’s disease: Report of the NINCDS: ADRDA Work Group under the auspices of Department of Health and Human Services Task Force on Alzheimer’s Disease[J]. Neurology, 2011, 77(4):333. |
| [13] | DUBOIS B, FELDMAN H H, JACOVA C, et al. Research criteria for the diagnosis of Alzheimer’s disease: Revi-sing the NINCDS-ADRDA criteria[J]. Lancet Neurol, 2007, 6(8):734-746. |
| [14] | DUBOIS B, FELDMAN H H, JACOVA C, et al. Advan-cing research diagnostic criteria for Alzheimer’s disease: The IWG-2 criteria[J]. Lancet Neurol, 2014, 13(6):614-629. |
| [15] | DUBOIS B, VILLAIN N, FRISONI G B, et al. Clinical diagnosis of Alzheimer’s disease: Recommendations of the International Working Group[J]. Lancet Neurol, 2021, 20(6):484-496. |
| [16] | MCKHANN G M, KNOPMAN D S, CHERTKOW H, et al. The diagnosis of dementia due to Alzheimer’s disease: Recommendations from the National Institute on Aging-Alzheimer’s Association Workgroups on diagnostic guidelines for Alzheimer’s disease[J]. Alzheimers Dement, 2011, 7(3):263-269. |
| [17] | JACK C R JR, BENNETT D A, BLENNOW K, et al. NIA-AA Research Framework: Toward a biological definition of Alzheimer’s disease[J]. Alzheimers Dement, 2018, 14(4):535-562. |
| [18] | JACK C R JR, ANDREWS J S, BEACH T G, et al. Revised criteria for diagnosis and staging of Alzheimer’s disease: Alzheimer’s Association Workgroup[J]. Alzheimers Dement, 2024, 20(8):5143-5169. |
| [19] | 田金洲, 解恒革, 王鲁宁, 等. 中国阿尔茨海默病痴呆诊疗指南(2020年版)[J]. 中华老年医学杂志, 2021, 40(3):269-283. |
| TIAN J Z, XIE H G, WANG L N, et al. Chinese guideline for the diagnosis and treatment of Alzheimer's disease dementia(2020)[J]. Chin J Geriatr, 2021, 40(3):269-283. | |
| [20] | CRUTCH S J, LEHMANN M, SCHOTT J M, et al. Posterior cortical atrophy[J]. Lancet Neurol, 2012, 11(2):170-178. |
| [21] | TANG-WAI D F, GRAFF-RADFORD N R, BOEVE B F, et al. Clinical, genetic, and neuropathologic characteristics of posterior cortical atrophy[J]. Neurology, 2004, 63(7):1168-1174. |
| [22] | SCHOTT J M, CRUTCH S J. Posterior cortical atrophy[J]. Continuum, 2019, 25(1):52-75. |
| [23] | GRAFF-RADFORD J, YONG K X X, APOSTOLOVA L G, et al. New insights into atypical Alzheimer’s disease in the era of biomarkers[J]. Lancet Neurol, 2021, 20(3):222-234. |
| [24] | YONG K X X, RAJDEV K, SHAKESPEARE T J, et al. Facilitating text reading in posterior cortical atrophy[J]. Neurology, 2015, 85(4):339-348. |
| [25] | CRUTCH S J, SCHOTT J M, RABINOVICI G D, et al. Consensus classification of posterior cortical atrophy[J]. Alzheimers Dement, 2017, 13(8):870-884. |
| [26] | RYAN N S, SHAKESPEARE T J, LEHMANN M, et al. Motor features in posterior cortical atrophy and their imaging correlates[J]. Neurobiol Aging, 2014, 35(12):2845-2857. |
| [27] | BERGERON D, GORNO-TEMPINI M L, RABINOVICI G D, et al. Prevalence of amyloid-β pathology in distinct variants of primary progressive aphasia[J]. Ann Neurol, 2018, 84(5):729-740. |
| [28] | MONTEMBEAULT M, BRAMBATI S M, GORNO-TEMPINI M L, et al. Clinical, anatomical, and pathological features in the three variants of primary progressive aphasia: A review[J]. Front Neurol, 2018,9:692. |
| [29] | HARRIS J M, SAXON J A, JONES M, et al. Neuropsychological differentiation of progressive aphasic disorders[J]. J Neuropsychol, 2019, 13(2):214-239. |
| [30] | GORNO-TEMPINI M L, HILLIS A E, WEINTRAUB S, et al. Classification of primary progressive aphasia and its variants[J]. Neurology, 2011, 76(11):1006-1014. |
| [31] | JOSEPHS K A, MARTIN P R, BOTHA H, et al. 18F] AV-1451 tau-PET and primary progressive aphasia[J]. Ann Neurol, 2018, 83(3):599-611. |
| [32] | MESULAM M M. Primary progressive aphasia and the left hemisphere language network[J]. Dement Neurocognitive Disord, 2016, 15(4):93. |
| [33] | MESULAM M M. Primary progressive aphasia[J]. Ann Neurol, 2001, 49(4):425-432. |
| [34] | OSSENKOPPELE R, PIJNENBURG Y A L, PERRY D C, et al. The behavioural/dysexecutive variant of Alzheimer’s disease: Clinical, neuroimaging and pathological features[J]. Brain, 2015, 138(9):2732-2749. |
| [35] | TOWNLEY R A, GRAFF-RADFORD J, MANTYH W G, et al. Progressive dysexecutive syndrome due to Alzheimer’s disease: A description of 55 cases and comparison to other phenotypes[J]. Brain Commun, 2020,2:fcaa068. |
| [36] | OSSENKOPPELE R, SINGLETON E H, GROOT C, et al. Research criteria for the behavioral variant of Alzheimer disease: A systematic review and meta-analysis[J]. JAMA Neurol, 2022, 79(1):48. |
| [37] | PERRY D C, BROWN J A, POSSIN K L, et al. Clinicopathological correlations in behavioural variant frontotemporal dementia[J]. Brain, 2017, 140(12):3329-3345. |
| [38] | MATHEW R, BAK T H, HODGES J R. Diagnostic criteria for corticobasal syndrome: A comparative study[J]. J Neurol Neurosurg Psychiatry, 2012, 83(4):405-410. |
| [39] | DI STEFANO F, KAS A, HABERT M O, et al. The phenotypical core of Alzheimer’s disease-related and nonrelated variants of the corticobasal syndrome: A systematic clinical, neuropsychological, imaging, and biomarker study[J]. Alzheimers Dement, 2016, 12(7):786-795. |
| [40] | ARMSTRONG M J, LITVAN I, LANG A E, et al. Criteria for the diagnosis of corticobasal degeneration[J]. Neuro-logy, 2013, 80(5):496-503. |
| [41] | WHITWELL J L, JACK C R JR, BOEVE B F, et al. Ima-ging correlates of pathology in corticobasal syndrome[J]. Neurology, 2010, 75(21):1879-1887. |
| [42] | PARDINI M, HUEY E D, SPINA S, et al. FDG-PET patterns associated with underlying pathology in corticobasal syndrome[J]. Neurology, 2019, 92(10): e1121-e1135. |
| [43] | SMITH R, SCH?LL M, WIDNER H, et al. In vivo retention of 18 in corticobasal syndrome[J]. Neurology, 2017, 89(8):845-853. |
| [44] | SHIR D, LEE N, MCCARTER S J, et al. Longitudinal evolution of posterior cortical atrophy: Diagnostic delays, overlapping phenotypes, and clinical outcomes[J]. Neuro-logy, 2025, 104(9):e213559. |
| [45] | BORRUAT F X. Posterior cortical atrophy: Review of the recent literature[J]. Curr Neurol Neurosci Rep, 2013, 13(12):406. |
| [46] | WHITWELL J L, GRAFF-RADFORD J, SINGH T D, et al. 18F-FDG PET in posterior cortical atrophy and dementia with lewy bodies[J]. J Nucl Med, 2017, 58(4):632-638. |
| [47] | GROSSMAN M, IRWIN D J. Primary progressive aphasia and stroke aphasia[J]. Continuum, 2018, 24(3):745-767. |
| [48] | ASH S, EVANS E, O’SHEA J, et al. Differentiating primary progressive aphasias in a brief sample of connected speech[J]. Neurology, 2013, 81(4):329-336. |
| [49] | O’BRIEN JT, ERKINJUNTTI T, REISBERG B, et al. Vascular cognitive impairment[J]. Lancet Neurol, 2003, 2(2):89-98. |
| [50] | MENDEZ M F, JOSHI A, TASSNIYOM K, et al. Clinicopathologic differences among patients with behavioral variant frontotemporal dementia[J]. Neurology, 2013, 80(6):561-568. |
| [51] | RASCOVSKY K, HODGES J R, KNOPMAN D, et al. Reply: Considering the frontomedian cortex in revised criteria for behavioural variant frontotemporal dementia[J]. Brain, 2012, 135(4):e214. |
| [52] | SHA S J, GHOSH P M, LEE S E, et al. Predicting amyloid status in corticobasal syndrome using modified clinical criteria, magnetic resonance imaging and fluorodeoxyglucose positron emission tomography[J]. Alzheimers Res Ther, 2015, 7(1):8. |
| [53] | LEE S E, RABINOVICI G D, MAYO M C, et al. Clinicopathological correlations in corticobasal degeneration[J]. Ann Neurol, 2011, 70(2):327-340. |
| [54] | KOGA S, JOSEPHS K A, AIBA I, et al. Neuropathology and emerging biomarkers in corticobasal syndrome[J]. J Neurol Neurosurg Psychiatry, 2022, 93(9):919-929. |
| [55] | 岳玲, 江叶昊. 阿尔茨海默病诊断和分期新标准:生物标志物引领的精准医疗时代[J]. 神经病学与神经康复学杂志, 2025, 21(1):1-5. |
| YUE L, JIANG Y H. New diagnostic and staging criteria for Alzheimer's disease: the era of precision medicine led by biomarkers[J]. J Neurol Neurorehabil, 2025, 21(1):1-5. | |
| [56] | WATTMO C, WALLIN ? K. Early- versus late-onset Alzheimer’s disease in clinical practice: Cognitive and global outcomes over 3years[J]. Alzheimers Res Ther, 2017, 9(1):70. |
| [57] | MILLER A, DESAI A, ROLEY L T, et al. The role of ethnicity, biological sex, and psychotropic agents in early and late onset Alzheimer’s disease[J]. Front Aging Neurosci, 2022,14:1052330. |
| [58] | 常燕. 重视β-淀粉样蛋白PET在新时代阿尔茨海默病诊疗中的价值[J]. 神经病学与神经康复学杂志, 2025, 21(1):12-16. |
| CHANG Y. Attach importance to the value of β-amyloid-PET in the diagnosis and treatment of Alzheimer's di-sease in the new era[J]. J Neurol Neurorehabil, 2025, 21(1):12-16. | |
| [59] | 马瑾瑾, 肖卫忠. 阿尔茨海默病早期诊断方法[J]. 中国临床研究, 2024, 37(7):1113-1119. |
| MA J J, XIAO W Z. Early diagnosis of Alzheimer's di-sease[J]. Chin J Clin Res, 2024, 37(7):1113-1119. |
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