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rTMS Improves Cognitive Function and Brain Network Connectivity in Patients With Alzheimer’s Disease
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作者 XU Gui-Zhi LIU Lin +4 位作者 GUO Miao-Miao WANG Tian GAO Jiao-Jiao JI Yong WANG Pan 《生物化学与生物物理进展》 北大核心 2025年第8期2131-2145,共15页
Objective Repetitive transcranial magnetic stimulation(rTMS)has demonstrated efficacy in enhancing neurocognitive performance in Alzheimer’s disease(AD),but the neurobiological mechanisms linking synaptic pathology,n... Objective Repetitive transcranial magnetic stimulation(rTMS)has demonstrated efficacy in enhancing neurocognitive performance in Alzheimer’s disease(AD),but the neurobiological mechanisms linking synaptic pathology,neural oscillatory dynamics,and brain network reorganization remain unclear.This investigation seeks to systematically evaluate the therapeutic potential of rTMS as a non-invasive neuromodulatory intervention through a multimodal framework integrating clinical assessments,molecular profiling,and neurophysiological monitoring.Methods In this prospective double-blind trial,12 AD patients underwent a 14-day protocol of 20 Hz rTMS,with comprehensive multimodal assessments performed pre-and postintervention.Cognitive functioning was quantified using the mini-mental state examination(MMSE)and Montreal cognitive assessment(MOCA),while daily living capacities and neuropsychiatric profiles were respectively evaluated through the activities of daily living(ADL)scale and combined neuropsychiatric inventory(NPI)-Hamilton depression rating scale(HAMD).Peripheral blood biomarkers,specifically Aβ1-40 and phosphorylated tau(p-tau181),were analyzed to investigate the effects of rTMS on molecular metabolism.Spectral power analysis was employed to investigate rTMS-induced modulations of neural rhythms in AD patients,while brain network analyses incorporating topological properties were conducted to examine stimulus-driven network reorganization.Furthermore,systematic assessment of correlations between cognitive scale scores,blood biomarkers,and network characteristics was performed to elucidate cross-modal therapeutic associations.Results Clinically,MMSE and MOCA scores improved significantly(P<0.05).Biomarker showed that Aβ1-40 level increased(P<0.05),contrasting with p-tau181 reduction.Moreover,the levels of Aβ1-40 were positively correlated with MMSE and MOCA scores.Post-intervention analyses revealed significant modulations in oscillatory power,characterized by pronounced reductions in delta(P<0.05)and theta bands(P<0.05),while concurrent enhancements were observed in alpha,beta,and gamma band activities(all P<0.05).Network analysis revealed frequency-specific reorganization:clustering coefficients were significantly decreased in delta,theta,and alpha bands(P<0.05),while global efficiency improvement was exclusively detected in the delta band(P<0.05).The alpha band demonstrated concurrent increases in average nodal degree(P<0.05)and characteristic path length reduction(P<0.05).Further research findings indicate that the changes in the clinical scale HAMD scores before and after rTMS stimulation are negatively correlated with the changes in the blood biomarkers Aβ1-40 and p-tau181.Additionally,the changes in the clinical scales MMSE and MoCA scores were negatively correlated with the changes in the node degree of the alpha frequency band and negatively correlated with the clustering coefficient of the delta frequency band.However,the changes in MMSE scores are positively correlated with the changes in global efficiency of both the delta and alpha frequency bands.Conclusion 20 Hz rTMS targeting dorsolateral prefrontal cortex(DLPFC)significantly improves cognitive function and enhances the metabolic clearance ofβ-amyloid and tau proteins in AD patients.This neurotherapeutic effect is mechanistically associated with rTMS-mediated frequency-selective neuromodulation,which enhances the connectivity of oscillatory networks through improved neuronal synchronization and optimized topological organization of functional brain networks.These findings not only support the efficacy of rTMS as an adjunctive therapy for AD but also underscore the importance of employing multiple assessment methods—including clinical scales,blood biomarkers,and EEG——in understanding and monitoring the progression of AD.This research provides a significant theoretical foundation and empirical evidence for further exploration of rTMS applications in AD treatment. 展开更多
关键词 transcranial magnetic stimulation Alzheimer’s disease power spectral density ELECTROENCEPHALOGRAM brain functional network
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内侧颞叶癫痫患者海马硬化的影像学研究 被引量:13
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作者 岳伟 张雅静 +3 位作者 管雅琳 相蕾 刘淑玲 纪勇 《中国神经精神疾病杂志》 CAS CSCD 北大核心 2014年第10期607-611,共5页
目的探讨内侧颞叶癫痫患者中海马硬化的比例及影像学特点。方法选择2012年2月到2013年12月期间本院收治的78例内侧颞叶癫痫患者,采取磁共振成像(magnetic resonance imaging,MRI)测量海马体积,结合目测法进行海马硬化的判定,采取磁共振... 目的探讨内侧颞叶癫痫患者中海马硬化的比例及影像学特点。方法选择2012年2月到2013年12月期间本院收治的78例内侧颞叶癫痫患者,采取磁共振成像(magnetic resonance imaging,MRI)测量海马体积,结合目测法进行海马硬化的判定,采取磁共振波谱(magnetic resonance spectroscopy,MRS)分析NAA(N-乙酰天门冬氨酸)浓度与(Cr±Cho)(肌酸±胆碱)的比值,与健康对照人群和非内侧颞叶癫痫患者进行比较。结果内侧颞叶癫痫组海马硬化的比例为58.97%,显著高于健康对照组和非颞叶内侧起源的癫痫组。内侧颞叶癫痫组的平均海马体积(2305.68±814.61 mm3、2456.71±743.60 mm3)同样较两组明显缩小。MRI上74.55%的内侧颞叶癫痫海马硬化表现为海马萎缩和T2WI信号增高。其海马硬化以左侧为多见(52.17%),有时可出现双侧海马硬化(19.57%)。MRS测定表明硬化的海马NAA(/Cr±Cho)显著降低(0.58±0.19)。结论海马硬化可能是内侧颞叶癫痫的主要影像学特点,其中海马萎缩和T2WI信号增高具有普遍性和特征性。 展开更多
关键词 海马硬化内侧颞叶癫痫 磁共振成像 磁共振波谱分析
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不同血压类型脑梗死患者动态血压参数与动脉硬化指数关系的研究 被引量:10
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作者 赵文娟 姜萍 安中平 《中华老年心脑血管病杂志》 CAS 北大核心 2012年第9期949-952,共4页
目的探讨不同血压类型脑梗死患者动态血压参数与动脉硬化指数的关系。方法选择住我院卒中单元病房治疗的265例急性缺血性脑卒中患者,将入选患者分为杓型组80例、非杓型组90例和反杓型组95例。应用美国国立卫生研究院卒中量表评分和Bart... 目的探讨不同血压类型脑梗死患者动态血压参数与动脉硬化指数的关系。方法选择住我院卒中单元病房治疗的265例急性缺血性脑卒中患者,将入选患者分为杓型组80例、非杓型组90例和反杓型组95例。应用美国国立卫生研究院卒中量表评分和Barthel指数评分,对各组入院时和随访3个月的患者行神经功能缺损程度和日常生活能力评估,并评价各组患者改善率、复发率和病死率的差异。结果 3组患者动态血压参数、动态动脉硬化指数(AASI)比较,差异有统计学意叉(P<0.05),反杓型组AASI高于杓型组和非杓型组(P<0.05),脑梗死患者部分动态血压参数与AASI呈正相关(P<0.05),AASI与高敏C反应蛋白呈正相关。随访3个月,反杓型组的改善率低,而病死率高于杓型组和非杓型组(P<0.05)。结论不同血压类型患者AASI不同,反杓型高血压患者动脉粥样硬化病变明显,预后不良。 展开更多
关键词 脑梗死 血压监测 便携式 高血压 动脉硬化
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