Tianjin Medical Journal ›› 2024, Vol. 52 ›› Issue (6): 619-624.doi: 10.11958/20231238
• Clinical Research • Previous Articles Next Articles
QIAN Hongchun1(), ZHANG Pingshu2, YUAN Xiaodong3, YUAN Jianxin1,△(
), CAO Lingyun1, DUAN Liqin2
Received:
2023-08-15
Revised:
2023-09-21
Published:
2024-06-15
Online:
2024-06-06
Contact:
△E-mail: QIAN Hongchun, ZHANG Pingshu, YUAN Xiaodong, YUAN Jianxin, CAO Lingyun, DUAN Liqin. Relationship between cognitive impairment and sleep parameters in stroke patients with obstructive sleep apnea[J]. Tianjin Medical Journal, 2024, 52(6): 619-624.
CLC Number:
组别 | n | 年龄/岁 | 男性 | 受教育年限/年 | BMI/(kg/m2) | 吸烟史 | 饮酒史 | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
无认知功能损害组 | 224 | 64.50(57.25,71.00) | 163(72.77) | 8.00(8.00,8.00) | 25.67(23.81,27.38) | 110(49.11) | 92(41.07) | ||||||||||
认知功能损害组 | 119 | 68.00(62.00,72.00) | 89(74.79) | 8.00(5.00,8.00) | 25.71(23.44,27.34) | 57(47.90) | 54(45.38) | ||||||||||
χ2或Z | 2.873** | 0.163 | 4.034** | 0.193 | 0.045 | 0.590 | |||||||||||
组别 | 高血压 | NIHSS评分/分 | 糖尿病 | 心房颤动 | 高脂血症 | HHcy | |||||||||||
无认知功能损害组 | 198(88.39) | 4.00(2.00,5.00) | 62(27.68) | 46(20.54) | 109(48.66) | 31(13.84) | |||||||||||
认知功能损害组 | 109(91.60) | 4.00(2.00,7.00) | 48(40.34) | 21(17.65) | 49(41.18) | 29(24.37) | |||||||||||
χ2或Z | 0.849 | 1.887 | 5.715* | 0.413 | 1.752 | 5.971* | |||||||||||
组别 | TOAST病因分型 | ||||||||||||||||
大动脉粥样硬化型 | 心源性栓塞型 | 小动脉闭塞型 | 其他病因或病因不明确型 | ||||||||||||||
无认知功能损害组 | 99(44.20) | 54(24.11) | 36(16.07) | 35(15.63) | |||||||||||||
认知功能损害组 | 61(51.26) | 25(21.01) | 19(15.97) | 14(11.76) | |||||||||||||
χ2 | 1.967 |
Tab.1 Comparison of clinical data between two groups of patients
组别 | n | 年龄/岁 | 男性 | 受教育年限/年 | BMI/(kg/m2) | 吸烟史 | 饮酒史 | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
无认知功能损害组 | 224 | 64.50(57.25,71.00) | 163(72.77) | 8.00(8.00,8.00) | 25.67(23.81,27.38) | 110(49.11) | 92(41.07) | ||||||||||
认知功能损害组 | 119 | 68.00(62.00,72.00) | 89(74.79) | 8.00(5.00,8.00) | 25.71(23.44,27.34) | 57(47.90) | 54(45.38) | ||||||||||
χ2或Z | 2.873** | 0.163 | 4.034** | 0.193 | 0.045 | 0.590 | |||||||||||
组别 | 高血压 | NIHSS评分/分 | 糖尿病 | 心房颤动 | 高脂血症 | HHcy | |||||||||||
无认知功能损害组 | 198(88.39) | 4.00(2.00,5.00) | 62(27.68) | 46(20.54) | 109(48.66) | 31(13.84) | |||||||||||
认知功能损害组 | 109(91.60) | 4.00(2.00,7.00) | 48(40.34) | 21(17.65) | 49(41.18) | 29(24.37) | |||||||||||
χ2或Z | 0.849 | 1.887 | 5.715* | 0.413 | 1.752 | 5.971* | |||||||||||
组别 | TOAST病因分型 | ||||||||||||||||
大动脉粥样硬化型 | 心源性栓塞型 | 小动脉闭塞型 | 其他病因或病因不明确型 | ||||||||||||||
无认知功能损害组 | 99(44.20) | 54(24.11) | 36(16.07) | 35(15.63) | |||||||||||||
认知功能损害组 | 61(51.26) | 25(21.01) | 19(15.97) | 14(11.76) | |||||||||||||
χ2 | 1.967 |
组别 | n | 额叶 | 颞叶 | 顶叶 | 枕叶 | 丘脑 | ||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
无认知功能损害组 | 224 | 52(23.21) | 17(7.59) | 17(7.59) | 16(7.14) | 55(24.55) | ||||||
认知功能损害组 | 119 | 43(36.13) | 21(17.65) | 20(16.81) | 25(21.01) | 58(48.74) | ||||||
χ2 | 6.478* | 7.980** | 6.861* | 14.196** | 20.578** | |||||||
组别 | 基底节 | 脑干 | 小脑 | 半卵圆中心 | 岛叶 | 侧脑室旁 | ||||||
无认知功能损害组 | 187(83.48) | 72(32.14) | 30(13.39) | 168(75.00) | 5(2.23) | 144(64.29) | ||||||
认知功能损害组 | 113(94.96) | 55(46.22) | 24(20.17) | 102(85.71) | 5(4.20) | 75(63.03) | ||||||
χ2 | 9.334** | 6.603* | 2.689 | 5.325* | 0.483 | 0.053 |
Tab.2 Comparison of the distribution of infarct brain regions between the two groups
组别 | n | 额叶 | 颞叶 | 顶叶 | 枕叶 | 丘脑 | ||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
无认知功能损害组 | 224 | 52(23.21) | 17(7.59) | 17(7.59) | 16(7.14) | 55(24.55) | ||||||
认知功能损害组 | 119 | 43(36.13) | 21(17.65) | 20(16.81) | 25(21.01) | 58(48.74) | ||||||
χ2 | 6.478* | 7.980** | 6.861* | 14.196** | 20.578** | |||||||
组别 | 基底节 | 脑干 | 小脑 | 半卵圆中心 | 岛叶 | 侧脑室旁 | ||||||
无认知功能损害组 | 187(83.48) | 72(32.14) | 30(13.39) | 168(75.00) | 5(2.23) | 144(64.29) | ||||||
认知功能损害组 | 113(94.96) | 55(46.22) | 24(20.17) | 102(85.71) | 5(4.20) | 75(63.03) | ||||||
χ2 | 9.334** | 6.603* | 2.689 | 5.325* | 0.483 | 0.053 |
组别 | n | 夜间总睡眠时间/min | 睡眠潜伏期/min | 入睡后清醒时间/min | 清醒次数/次 | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
无认知功能损害组 | 224 | 492.50(428.50,553.50) | 18.00(4.00,35.75) | 84.23±24.00 | 22.75±7.36 | ||||||||||
认知功能损害组 | 119 | 491.00(419.00,554.00) | 22.00(4.00,37.00) | 89.28±22.86 | 24.45±6.56 | ||||||||||
t或Z | 0.577 | 1.112 | 1.885 | 2.102* | |||||||||||
组别 | 夜间睡眠效率/% | 浅睡眠期/min | 浅睡眠占比/% | 深睡眠期/min | 深睡眠占比/% | ||||||||||
无认知功能损害组 | 83.08(78.30,86.51) | 329.14±68.00 | 67.54±8.11 | 60.00(37.25,80.75) | 12.12(7.85,16.80) | ||||||||||
认知功能损害组 | 81.64(77.04,84.97) | 329.09±70.74 | 69.73±8.09 | 43.00(29.00,76.00) | 10.19(6.45,14.64) | ||||||||||
t或Z | 2.437* | 0.006 | 2.388* | 2.646** | 2.563* | ||||||||||
组别 | REM期/min | REM占比/% | NREM期/min | NREM占比/% | AHI/(次/h) | ||||||||||
无认知功能损害组 | 97.40±34.96 | 19.71±5.40 | 396.00(349.00,443.50) | 80.29±5.40 | 17.50(12.00,27.00) | ||||||||||
认知功能损害组 | 92.74±33.85 | 19.08±4.86 | 397.00(333.00,442.00) | 80.92±4.86 | 26.00(19.00,38.00) | ||||||||||
t或Z | 1.189 | 1.062 | 0.607 | 1.062 | 6.384** |
Tab.3 Comparison of objective sleep parameters between the two groups
组别 | n | 夜间总睡眠时间/min | 睡眠潜伏期/min | 入睡后清醒时间/min | 清醒次数/次 | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
无认知功能损害组 | 224 | 492.50(428.50,553.50) | 18.00(4.00,35.75) | 84.23±24.00 | 22.75±7.36 | ||||||||||
认知功能损害组 | 119 | 491.00(419.00,554.00) | 22.00(4.00,37.00) | 89.28±22.86 | 24.45±6.56 | ||||||||||
t或Z | 0.577 | 1.112 | 1.885 | 2.102* | |||||||||||
组别 | 夜间睡眠效率/% | 浅睡眠期/min | 浅睡眠占比/% | 深睡眠期/min | 深睡眠占比/% | ||||||||||
无认知功能损害组 | 83.08(78.30,86.51) | 329.14±68.00 | 67.54±8.11 | 60.00(37.25,80.75) | 12.12(7.85,16.80) | ||||||||||
认知功能损害组 | 81.64(77.04,84.97) | 329.09±70.74 | 69.73±8.09 | 43.00(29.00,76.00) | 10.19(6.45,14.64) | ||||||||||
t或Z | 2.437* | 0.006 | 2.388* | 2.646** | 2.563* | ||||||||||
组别 | REM期/min | REM占比/% | NREM期/min | NREM占比/% | AHI/(次/h) | ||||||||||
无认知功能损害组 | 97.40±34.96 | 19.71±5.40 | 396.00(349.00,443.50) | 80.29±5.40 | 17.50(12.00,27.00) | ||||||||||
认知功能损害组 | 92.74±33.85 | 19.08±4.86 | 397.00(333.00,442.00) | 80.92±4.86 | 26.00(19.00,38.00) | ||||||||||
t或Z | 1.189 | 1.062 | 0.607 | 1.062 | 6.384** |
变量 | β | SE | Wald χ2 | P | OR(95%CI) |
---|---|---|---|---|---|
受教育年限 | -0.186 | 0.074 | 6.400 | 0.011 | 0.830(0.718~0.959) |
年龄 | 0.022 | 0.015 | 2.080 | 0.149 | 1.022(0.992~1.052) |
糖尿病史 | 0.615 | 0.285 | 4.644 | 0.031 | 1.850(1.057~3.236) |
HHcy病史 | 0.538 | 0.348 | 2.396 | 0.122 | 1.713(0.866~3.386) |
额叶梗死灶 | 0.492 | 0.302 | 2.656 | 0.103 | 1.636(0.905~2.958) |
颞叶梗死灶 | 0.767 | 0.415 | 3.418 | 0.064 | 2.153(0.955~4.852) |
丘脑梗死灶 | 0.739 | 0.286 | 6.671 | 0.010 | 2.093(1.195~3.665) |
夜间睡眠效率 | -0.076 | 0.022 | 11.614 | <0.001 | 0.927(0.888~0.968) |
清醒次数 | 0.037 | 0.020 | 3.283 | 0.070 | 1.037(0.997~1.080) |
浅睡眠占比 | 0.030 | 0.017 | 2.854 | 0.091 | 1.030(0.995~1.066) |
AHI | 0.067 | 0.013 | 27.229 | <0.001 | 1.069(1.043~1.096) |
常数项 | 0.204 | 2.303 | 0.008 | 0.929 | 1.126 |
Tab.4 Multivariate Logistic stepwise regression analysis of the relationship between cognitive impairment and sleep parameters associated with OSA in acute ischemic stroke
变量 | β | SE | Wald χ2 | P | OR(95%CI) |
---|---|---|---|---|---|
受教育年限 | -0.186 | 0.074 | 6.400 | 0.011 | 0.830(0.718~0.959) |
年龄 | 0.022 | 0.015 | 2.080 | 0.149 | 1.022(0.992~1.052) |
糖尿病史 | 0.615 | 0.285 | 4.644 | 0.031 | 1.850(1.057~3.236) |
HHcy病史 | 0.538 | 0.348 | 2.396 | 0.122 | 1.713(0.866~3.386) |
额叶梗死灶 | 0.492 | 0.302 | 2.656 | 0.103 | 1.636(0.905~2.958) |
颞叶梗死灶 | 0.767 | 0.415 | 3.418 | 0.064 | 2.153(0.955~4.852) |
丘脑梗死灶 | 0.739 | 0.286 | 6.671 | 0.010 | 2.093(1.195~3.665) |
夜间睡眠效率 | -0.076 | 0.022 | 11.614 | <0.001 | 0.927(0.888~0.968) |
清醒次数 | 0.037 | 0.020 | 3.283 | 0.070 | 1.037(0.997~1.080) |
浅睡眠占比 | 0.030 | 0.017 | 2.854 | 0.091 | 1.030(0.995~1.066) |
AHI | 0.067 | 0.013 | 27.229 | <0.001 | 1.069(1.043~1.096) |
常数项 | 0.204 | 2.303 | 0.008 | 0.929 | 1.126 |
[1] | 北京神经内科学会睡眠障碍专业委员会, 北京神经内科学会神经精神医学与临床心理专业委员会, 中国老年学老年医学学会睡眠科学分会, 等. 卒中相关睡眠障碍评估与管理中国专家共识[J]. 中华内科杂志, 2019, 58(1):17-26. |
Sleep Disorders Committee of Beijing Neurology Association(BNA),Committee of Neuropsychiatry and Clinical Psychology,BNA,Chinese Association of Geriatric Sleep Science, et al. Consensus of Chinese experts on assessment and management of stroke-related sleep disorders[J]. Chinese Journal of Internal Medicine, 2019, 58(1):17-26. doi:10.3760/cma.j.issn.0578-1426.2019.01.004. | |
[2] | BRUNETTI V, ROLLO E, BROCCOLINI A, et al. Sleep and stroke:Opening our eyes to current knowledge of a key relationship[J]. Curr Neurol Neurosci Rep, 2022, 22(11):767-779. doi:10.1007/s11910-022-01234-2. |
[3] | MCKEE Z, AUCKLEY D H. A sleeping beast:Obstructive sleep apnea and stroke[J]. Cleve Clin J Med, 2019, 86(6):407-415. doi:0.3949/ccjm.86a.18033. |
[4] | ZHU R L, OUYANG C, MA R L, et al. Obstructive sleep apnea is associated with cognitive impairment in minor ischemic stroke[J]. Sleep Breath, 2022, 26(4):1907-1914. doi:10.1007/s11325-022-02575-5. |
[5] | MENG Y Y, YU Y C, NIE B, et al. Longitudinal cognitive dysfunction in patients with obstructive sleep apnea syndrome after transient ischemic attack[J]. Chin Med J(Engl), 2021, 134(13):1622-1623. doi:10.1097/CM9.0000000000001428. |
[6] | ZHANG Y, WANG W, CAI S, et al. Obstructive sleep apnea exaggerates cognitive dysfunction in stroke patients[J]. Sleep Med, 2017, 33:183-190. doi:10.1016/j.sleep.2016.11.028. |
[7] | 竺飞燕, 王云玲, 金鑫, 等. 老年中重度阻塞性睡眠呼吸暂停综合征患者的睡眠结构特征与认知障碍的关系研究[J]. 浙江医学, 2021, 43(22):2422-2425. |
ZHU F Y, WANG Y L, JIN X, et al. Relationship between sleep structure and cognitive impairment in elderly patients with moderate to severe obstructive sleep apnea syndrome[J]. Zhejiang Medical Journal, 2021, 43(22):2422-2425. doi:10.12056/j.issn.1006-2785.2021.43.22.2021-908. | |
[8] | 张驰, 薛健博, 董霄松. 可穿戴设备在睡眠医学领域的应用[J]. 中华医学杂志, 2021, 101(22):1705-1709. |
ZHANG C, XUE J B, DONG X S. Application of wearable devices in the field of sleep medicine[J]. Natl Med J Chin, 2021, 101(22):1705-1709. doi:10.3760/cma.j.cn112137-20210202-00323. | |
[9] | 中华医学会神经病学分会,中华医学会神经病学分会脑血管病学组. 中国急性缺血性脑卒中诊治指南2018[J]. 中华神经科杂志, 2018, 51(9):666-682. |
Chinese Society of Neurology,Chinese Stroke Society. Chinese guidelines for diagnosis and treatment of acute ischemic stroke 2018[J]. Chinese Journal of Nerurology, 2018, 51(9):666-682. doi:10.3760/cma.j.issn.1006-7876.2018.09.004. | |
[10] | KHAN M, AHMAD S, GHAFOOR B, et al. Inpatient assessment of the neurological outcome of acute stroke patients based on the National Institute of Health Stroke Scale(NIHSS)[J]. Ann Med Surg(Lond), 2022, 82:104770. doi:10.1016/j.amsu.2022.104770. |
[11] | American Psychiatric Association. Diagnostic and statistical manual of mental disorders fifth edition[M]. Arlington VA: American,Psychiatric Association, 2013. |
[12] | 王少石, 周新雨, 朱春燕. 卒中后抑郁临床实践的中国专家共识[J]. 中国卒中杂志, 2016, 11(8):685-693. |
WANG S S, ZHOU X Y, ZHU C Y. Chinese expert consensus on clinical practice of post-stroke depression[J]. Chin J Stroke, 2016, 11(8):685-693. doi:10.3969/j.issn.1673-5765.2016.08.015. | |
[13] | 中国卒中学会血管性认知障碍分会. 卒中后认知障碍管理专家共识2021[J]. 中国卒中杂志, 2021, 16(4):376-389. |
Chinese Society of Vascular Cognitive Impairment. Experts consensus on post-stroke cognitive impairment management 2021[J]. Chinese Journal of Stroke, 2021, 16(4):376-389. doi:10.3969/j.issn.1673-5765.2021.04.011. | |
[14] | 张萍淑, 徐斌, 马倩, 等. 睡眠健康云平台智能监测分析系统的构建与评价[J]. 中国健康心理学杂志, 2022, 30(10):1481-1488. |
ZHANG P S, XU B, MA Q, et al. Evaluation and construction of intelligent monitoring and analysis system for sleep health cloud platform[J]. China Journal of Health Psychology, 2022, 30(10):1481-1488. doi:10.13342/j.cnki.cjhp.2022.10.008. | |
[15] | 韩博. 基于心率和体动的非接触式睡眠分期算法的研究[D]. 北京: 北京工业大学, 2018. |
HAN B. Research on non-contact sleep staging algorithm based on heart rate and body movement[D]. Beijing: Beijing University of Technology, 2018. | |
[16] | 中华医学会,中华医学会杂志社,中华医学会全科医学分会, 等. 成人阻塞性睡眠呼吸暂停基层诊疗指南(实践版·2018)[J]. 中华全科医师杂志, 2019, 18(1):30-35. |
Chinese Medical Association,Chinese Medical Journals Publishing House,Chinese Society of General Practice, et al. Guideline for primary care of adult obstructive sleep apnea:practice version(2018)[J]. Chinese Journal of General Practitioners, 2019, 18(1):30-35. doi:10.3760/cma.j.issn.1671-7368.2019.01.008. | |
[17] | SHIN M Y, SOHN M K, LEE J M, et al. Effect of cognitive reserve on risk of cognitive impairment and recovery after stroke:The KOSCO study[J]. Stroke, 2020, 51(1):99-107. doi:10.1161/STROKEAHA.119.026829. |
[18] | EHTEWISH H, ARREDOUANI A, EL-AGNAF O. Diagnostic,prognostic,and mechanistic biomarkers of diabetes mellitus-associated cognitive decline[J]. Int J Mol Sci, 2022, 23(11):6144. doi:10.3390/ijms23116144. |
[19] | 孙为生, 石郁喜, 朱秀引. 急性脑梗死患者认知功能及睡眠异常的分析——不同梗死病变部位比较[J]. 江西医药, 2023, 58(5):604-607. |
SUN W S, SHI Y X, ZHU X Y. Analysis of cognitive function and sleep abnormalities in patients with acute cerebral infarction: comparison of different infarct lesions[J]. Jiangxi Medical Journal, 2023, 58(5):604-607. doi:10.3969/j.issn.1006-2238.2023.05.026. | |
[20] | GUGGISBERG A G, KOCH P J, HUMMEL F C, et al. Brain networks and their relevance for stroke rehabilitation[J]. Clinical Neurophysiology, 2019, 130(7):1098-1124. doi:10.1016/j.clinph.2019.04.004. |
[21] | HWANG K, SHINE J M, BRUSS J, et al. Neuropsychological evidence of multi-domain network hubs in the human thalamus[J]. Elife, 2021, 10:e69480. doi:10.7554/eLife.69480. |
[22] | ALOMRI R M, KENNEDY G A, WALI S O, et al. Differential associations of hypoxia,sleep fragmentation,and depressive symptoms with cognitive dysfunction in obstructive sleep apnea[J]. Sleep, 2021, 44(4):zsaa213. doi:10.1093/sleep/zsaa213. |
[23] | BENKIRANE O, DELWICHE B, MAIRESSE O, et al. Impact of sleep fragmentation on cognition and fatigue[J]. Int J Environ Res Public Health, 2022, 19(23):15485. doi:10.3390/ijerph192315485. |
[24] | FALUP-PECURARIU C, DIACONU S, TÎNT D, et al. Neurobiology of sleep(Review)[J]. Exp Ther Med, 2021, 21(3):272. doi:10.3892/etm.2021.9703. |
[25] | VANINI G, TORTEROLO P. Sleep-wake neurobiology[J]. Adv Exp Med Biol, 2021,1297:65-82. doi:10.1007/978-3-030-61663-2_5. |
[26] | 汪克为, 吴珊, 王杨. 睡眠呼吸暂停低通气综合征与脑梗死及认知功能障碍的相关性研究[J]. 中风与神经疾病杂志, 2020, 37(7):663-666. |
WANG K W, WU S, WANG Y, et al. A study on the association between sleep apnea-hypopnea syndrome and cerebral infarction and cognitive dysfunction[J]. J Apoplexy and Nervous Diseases, 2020, 37(7):663-666. doi:10.19845/j.cnki.zfysjjbzz.2020.0421. | |
[27] | 许磊, 许轶明, 沈宏华, 等. 阻塞性睡眠呼吸暂停合并卒中对睡眠及神经认知功能的影响[J]. 内科理论与实践, 2021, 16(2):97-102. |
XU L, XU Y M, SHEN H H, et al. The impact of comorbidity of stroke and obstructive sleep-hypopnea apnea on sleep, cognition and nerve function[J]. J Intern Med Concepts Pract, 2021, 16(2):97-102. doi:10.16138/j.1673-6087.2021.02.007. | |
[28] | SLONKOVA J, BAR M, NILIUS P, et al. Spontaneous improvement in both obstructive sleep apnea and cognitive impairment after stroke[J]. Sleep Med, 2017, 32:137-142. doi:10.1016/j.sleep.2016.11.024. |
[29] | NAISMITH S L, DUFFY S L, CROSS N, et al. Nocturnal hypoxemia is associated with altered parahippocampal functional brain connectivity in older adults at risk for dementia[J]. J Alzheimers Dis, 2020, 73(2):571-584. doi:10.3233/JAD-190747. |
[30] | JU Y S, OOMS S J, SUTPHEN C, et al. Slow wave sleep disruption increases cerebrospinal fluid amyloid-β levels[J]. Brain, 2017, 140(8):2104-2111. doi:10.1093/brain/awx148. |
[1] | ZHENG Jiqing, LONG Yaobin, XU Jin. Efficacy of capsaicin combined with repetitive transcranial magnetic stimulation in patients with dysphagia after stroke [J]. Tianjin Medical Journal, 2024, 52(9): 950-953. |
[2] | JIAO Aiju, REN Baolong, ZHANG Chunhua, LI Wenrui, ZHAO Weijing. The predictive value of NIHSS score combined with serum BDNF and IL-6 for post-stroke depression [J]. Tianjin Medical Journal, 2024, 52(9): 963-966. |
[3] | XUE Jing, YUAN Xiaodong, XING Aijun, WANG Lianhui, MA Qian, FU Yongshan, ZHANG Pingshu. Relationship between sleep-wake biorhythm and prognosis in patients with acute ischemic stroke [J]. Tianjin Medical Journal, 2024, 52(6): 614-619. |
[4] | HAN Qin, HAN Xiuli, CHEN Weiran. Analysis of factors affecting depressive disorders after rehabilitation therapy in elderly stroke patients [J]. Tianjin Medical Journal, 2024, 52(6): 639-642. |
[5] | ZHANG Lihong, LI Ruiqing, WANG Yiying, MEI Jinjin, SU Kaiqi, GU Changyu, HUANG Mengling. The mechanism of Du meridian electroacupuncture regulating cystine/glutamate reverse transporter to improve limb spasm after stroke [J]. Tianjin Medical Journal, 2024, 52(5): 463-468. |
[6] | HAN Zhengyi, LI Rui, CHEN Qi, WANG Jiayou, SHENG Kui, SONG Jie, ZHANG Ye. Effects of ultrasound-guided adductor canal block combined with general anesthesia on postoperative pain and cognitive function in elderly patients undergoing total knee arthroplasty [J]. Tianjin Medical Journal, 2024, 52(5): 523-527. |
[7] | WANG Yue, QUAN Xingmiao, WANG Yu, SONG Chunxia, SHAO Yue, XU Liwei. Influence of Yiqi Shengqing recipe on neuron pyroptosis in ischemic stroke rats by regulating HIF-1α/NLRP3 signal pathway [J]. Tianjin Medical Journal, 2024, 52(4): 350-355. |
[8] | XIAO Yuqian, SUN Kexin, WAN Jun, CHEN Shuying, CHEN Limin, WANG Yan, BAI Yanjie. Research progress of RNA m6A methylation in post-stroke cognitive impairment [J]. Tianjin Medical Journal, 2024, 52(3): 331-336. |
[9] | DING Bo, GONG Jieqin, SHEN Likui. Relationship between serum indexes, pathogenetic condition and prognosis in patients with acute ischemic stroke [J]. Tianjin Medical Journal, 2024, 52(2): 172-176. |
[10] | CHEN Huimin, JIA Hongfeng, JIANG Tingting, JIA Yaohui. Effects of intraoperative blood glucose fluctuation and postoperative insulin resistance on cognitive dyfunction in elderly patients after thoracoscopic radical resection of lung cancer under general anesthesia [J]. Tianjin Medical Journal, 2024, 52(2): 201-205. |
[11] | ZHOU Xiufen, LIU Hui, CHEN Hong, ZHAO Zongbo. Clinical significance of changes in GLI and peripheral blood indicators in SAP patients [J]. Tianjin Medical Journal, 2024, 52(12): 1286-1291. |
[12] | ZHANG Jingjing, ZHAO Wendong, ZHAO Yuan, ZHANG Qingxia, DU Jia, LIU Yanxia. Predictive value of CALLY index for depression after ischemic stroke [J]. Tianjin Medical Journal, 2024, 52(12): 1300-1304. |
[13] | LIAO Zhong, LIAO Weijian, LAI Guoli, WEN Yin, SU Zhiwei, ZENG Juhao, DING Hongguang. Study on the effect of fisetin on alleviating cognitive impairment after sepsis by inhibiting the activation of microglial NLPR3 inflammasome [J]. Tianjin Medical Journal, 2024, 52(10): 1025-1030. |
[14] | SUN Kexin, XIAO Yuqian, WAN Jun, CHEN Shuying, CHEN Limin, WANG Yan, BAI Yanjie. Research progress of cerebral organoid technology and its application in stroke treatment [J]. Tianjin Medical Journal, 2024, 52(1): 38-43. |
[15] | YANG Yang, HE Qiaoyu. Impact of salvianolic acid B on cognitive function and GSK-3β/β-Catenin signaling pathway in rats with post-traumatic stress disorder [J]. Tianjin Medical Journal, 2024, 52(1): 73-79. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||