Skip navigation

DSpace

機構典藏 DSpace 系統致力於保存各式數位資料(如:文字、圖片、PDF)並使其易於取用。

點此認識 DSpace
DSpace logo
English
中文
  • 瀏覽論文
    • 校院系所
    • 出版年
    • 作者
    • 標題
    • 關鍵字
    • 指導教授
  • 搜尋 TDR
  • 授權 Q&A
    • 我的頁面
    • 接受 E-mail 通知
    • 編輯個人資料
  1. NTU Theses and Dissertations Repository
  2. 共同教育中心
  3. 統計碩士學位學程
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/103363
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor盧子彬zh_TW
dc.contributor.advisorTzu-Pin Luen
dc.contributor.author羅宗益zh_TW
dc.contributor.authorTsung I Loen
dc.date.accessioned2026-08-11T16:09:33Z-
dc.date.available2026-08-12-
dc.date.copyright2026-08-11-
dc.date.issued2026-
dc.date.submitted2026-07-30 00:00:00-
dc.identifier.citation1.Edinoff, A.N., et al., Zolpidem: Efficacy and Side Effects for Insomnia. Health Psychol Res, 2021. 9(1): p. 24927.
2.Langtry, H.D. and P. Benfield, Zolpidem. A review of its pharmacodynamic and pharmacokinetic properties and therapeutic potential. Drugs, 1990. 40(2): p. 291–313.
3.Agravat, A., ‘Z’‐hypnotics versus benzodiazepines for the treatment of insomnia. Progress in Neurology and Psychiatry, 2018. 22(2): p. 26–29.
4.衛生福利部中央健康保險署, 健保藥品申報量. 2025: 政府資料開放平臺.
5.Mainieri, G., et al., Diagnosis and Management of NREM Sleep Parasomnias in Children and Adults. Diagnostics (Basel), 2023. 13(7).
6.Harbourt, K., et al., Association of eszopiclone, zaleplon, or zolpidem with complex sleep behaviors resulting in serious injuries, including death. Pharmacoepidemiol Drug Saf, 2020. 29(6): p. 684–691.
7.Mendelson, W.B., Sleepwalking Associated With Zolpidem. Journal of Clinical Psychopharmacology, 1994. 14(2): p. 150.
8.Ben-Hamou, M., et al., Spontaneous adverse event reports associated with zolpidem in Australia 2001-2008. J Sleep Res, 2011. 20(4): p. 559–68.
9.Wong, C.K., et al., Spontaneous Adverse Event Reports Associated with Zolpidem in the United States 2003-2012. J Clin Sleep Med, 2017. 13(2): p. 223–234.
10.Stump, E., FDA Requests Stronger Label Warnings on Sleep Drugs. NeurologyToday, 2007. 7(7): p. 28–29.
11.USFDA, FDA adds Boxed Warning for risk of serious injuries caused by sleepwalking with certain prescription insomnia medicines. 2019: FDA Drug Safety Communication.
12.台灣衛福部食藥署, 公告含eszopiclone、zaleplon、zolpidem及zopiclone成分藥品之臨床效益與風險再評估結果相關事宜. 2020.
13.Mittal, N., R. Mittal, and M.C. Gupta, Zolpidem for Insomnia: A Double-Edged Sword. A Systematic Literature Review on Zolpidem-Induced Complex Sleep Behaviors. Indian J Psychol Med, 2021. 43(5): p. 373–381.
14.Tsai, J.H., et al., Zolpidem-induced amnesia and somnambulism: rare occurrences? Eur Neuropsychopharmacol, 2009. 19(1): p. 74–6.
15.Hwang, T.-J., et al., Risk Predictors for Hypnosedative-Related Complex Sleep Behaviors. The Journal of Clinical Psychiatry, 2010. 71(10): p. 1331–1335.
16.Chen, L.F., et al., A comparison of complex sleep behaviors with two short-acting Z-hypnosedative drugs in nonpsychotic patients. Neuropsychiatr Dis Treat, 2013. 9: p. 1159–62.
17.Chen, C.S., et al., Clinical correlates of zolpidem-associated complex sleep-related behaviors: age effect. J Clin Psychiatry, 2014. 75(11): p. e1314–8.
18.Sattar, S.P., et al., Somnambulism due to probable interaction of valproic acid and zolpidem. Ann Pharmacother, 2003. 37(10): p. 1429–33.
19.Juszczak, G.R., Desensitization of GABAergic receptors as a mechanism of zolpidem-induced somnambulism. Med Hypotheses, 2011. 77(2): p. 230–3.
20.Sharma, A. and V.K. Dewan, A Case Report of Zolpidem-Induced Somnambulism. Prim Care Companion J Clin Psychiatry, 2005. 7(2): p. 74.
21.Stallman, H.M. and M. Kohler, Prevalence of Sleepwalking: A Systematic Review and Meta-Analysis. PLoS One, 2016. 11(11): p. e0164769.
22.台灣衛福部食藥署, 藥品仿單查詢平台.
23.Page, M.J., et al., The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. BMJ, 2021. 372: p. n71.
24.Thomas J, K.D., McKenzie JE, Brennan SE, Bhaumik S., Determining the scope of the review and the questions it will address in Cochrane Handbook for Systematic Reviews of Interventions version 6.5., T.J. Higgins JP, Chandler J, Cumpston M, Li T, Page MJ, et al, Editor. 2023.
25.Higgins JP, S.J., Page MJ, Elbers RG, Sterne JAC., Assessing risk of bias in a randomized trial, in Cochrane Handbook for Systematic Reviews of Interventions version 6.5. Cochrane, 2024. 2019.
26.GA Wells, B.S., D O'Connell, J Peterson, V Welch, M Losos, P Tugwell. The Newcastle-Ottawa Scale (NOS) for assessing the quality of nonrandomised studies in meta-analyses. Available from: https://ohri.ca/en/who-we-are/core-facilities-and-platforms/ottawa-methods-centre/newcastle-ottawa-scale.
27.Carra, M.C., P. Romandini, and M. Romandini, Risk of Bias Evaluation of Cross-Sectional Studies: Adaptation of the Newcastle-Ottawa Scale. J Periodontal Res, 2025.
28.Wickham, H., et al., Welcome to the Tidyverse. Journal of Open Source Software, 2019. 4(43).
29.Balduzzi, S., G. Rucker, and G. Schwarzer, How to perform a meta-analysis with R: a practical tutorial. Evid Based Ment Health, 2019. 22(4): p. 153–160.
30.Harrer, M., Cuijpers, P., Furukawa, T.A., & Ebert, D.D., Doing Meta-Analysis with R: A Hands-On Guide. 2021: Chapman & Hall/CRC.
31.Michael Borens t ein, L.V.H., J. P. T. Higgins and H. R. Rothstein, Introduction to Meta‐Analysis. 2009: John Wiley & Sons, Ltd.
32.Barker, T.H., et al., Conducting proportional meta-analysis in different types of systematic reviews: a guide for synthesisers of evidence. BMC Med Res Methodol, 2021. 21(1): p. 189.
33.Barendregt, J.J., et al., Meta-analysis of prevalence. J Epidemiol Community Health, 2013. 67(11): p. 974–8.
34.Schwarzer, G., et al., Seriously misleading results using inverse of Freeman-Tukey double arcsine transformation in meta-analysis of single proportions. Res Synth Methods, 2019. 10(3): p. 476–483.
35.Lin, L. and H. Chu, Meta-analysis of Proportions Using Generalized Linear Mixed Models. Epidemiology, 2020. 31(5): p. 713–717.
36.Stijnen, T., T.H. Hamza, and P. Ozdemir, Random effects meta-analysis of event outcome in the framework of the generalized linear mixed model with applications in sparse data. Stat Med, 2010. 29(29): p. 3046–67.
37.Bakbergenuly, I. and E. Kulinskaya, Meta-analysis of binary outcomes via generalized linear mixed models: a simulation study. BMC Med Res Methodol, 2018. 18(1): p. 70.
38.Cutroneo, P.M., et al., Conducting and interpreting disproportionality analyses derived from spontaneous reporting systems. Front Drug Saf Regul, 2023. 3: p. 1323057.
39.Ganzoni, E., et al., Zolpidem in insomnia: a 3-year post-marketing surveillance study in Switzerland. J Int Med Res, 1995. 23(1): p. 61–73.
40.Lam, S.P., et al., Parasomnia among psychiatric outpatients: a clinical, epidemiologic, cross-sectional study. J Clin Psychiatry, 2008. 69(9): p. 1374–82.
41.Schuelter-Trevisol, F., et al., Incidence of Adverse Effects and Misuse of Zolpidem. J Pharm Technol, 2025. 41(3): p. 103–107.
42.Hanif, U., et al., Associations between self-reported parasomnias and psychiatric illness in 370,000 patients with sleep disorders. Psychiatry Clin Neurosci, 2024. 78(11): p. 667–677.
43.Takaesu, Y., et al., Prevalence of and Factors Associated With Sleep-Related Eating Disorder in Psychiatric Outpatients Taking Hypnotics. J Clin Psychiatry, 2016. 77(7): p. e892–8.
44.Tse, K.Y.K., et al., Sleep and circadian health in the UK Biobank: Report on the 2023 sleep questionnaire enhancement. 2025: medRxiv.
45.Bosch, P., et al., The Munich Parasomnia Screening in psychiatry. Somnologie - Schlafforschung und Schlafmedizin, 2012. 16(4): p. 257–262.
46.Winkelman, J.W., D.B. Herzog, and M. Fava, The prevalence of sleep-related eating disorder in psychiatric and non-psychiatric populations. Psychol Med, 1999. 29(6): p. 1461–6.
47.Shimoda, K., et al., Sleep-Related Eating Disorder among Japanese Psychiatric Outpatients Receiving Ultra-Short-Acting Benzodiazepine Receptor Agonists: A Cross-Sectional Pilot Study. J Nippon Med Sch, 2026. 93(2): p. 153–160.
48.Hwang, T., Lo, K.W., Chiu, M., Chen, T. and Fuh, J., POTENTIAL RISK PREDICTORS OF COMPLEX SLEEP BEHAVIORS FOR PATIENTS WITH DEMENTIA OR MILD COGNITIVE IMPAIRMENT., in Alzheimer's Association International Conference. 2018. p. P1363–P1363.
49.Maroo, N., A. Hazra, and T. Das, Efficacy and safety of a polyherbal sedative-hypnotic formulation NSF-3 in primary insomnia in comparison to zolpidem: a randomized controlled trial. Indian J Pharmacol, 2013. 45(1): p. 34–9.
50.Viechtbauer, W. and M.W. Cheung, Outlier and influence diagnostics for meta-analysis. Res Synth Methods, 2010. 1(2): p. 112–25.
51.Sterne, J.A., et al., Recommendations for examining and interpreting funnel plot asymmetry in meta-analyses of randomised controlled trials. BMJ, 2011. 343: p. d4002.
52.Page MJ, H.J., Sterne JAC., Assessing risk of bias due to missing evidence in a meta-analysis, in Cochrane Handbook for Systematic Reviews of Interventions version 6.5. 2024, Cochrane.
53.Inagaki, T., et al., Adverse reactions to zolpidem: case reports and a review of the literature. Prim Care Companion J Clin Psychiatry, 2010. 12(6).
54.Maia, A.M.d.S., et al., Adverse effects resulting from the use of zolpidem hemitartrate: A literature review. Research, Society and Development, 2024. 13(10).
55.Stallman, H.M., M. Kohler, and J. White, Medication induced sleepwalking: A systematic review. Sleep Med Rev, 2018. 37: p. 105–113.
56.Dumont, S., et al., Parasomnias and sleep-related movement disorders induced by drugs in the adult population: a review about iatrogenic medication effects. J Sleep Res, 2025. 34(2): p. e14306.
57.Hojo, Y., et al., Drug interaction between St John's wort and zolpidem in healthy subjects. J Clin Pharm Ther, 2011. 36(6): p. 711–5.
58.Paradis, C.M., L.A. Siegel, and S.B. Kleinman, Two cases of zolpidem-associated homicide. Prim Care Companion CNS Disord, 2012. 14(4).
59.Bounds CG, P.P. Benzodiazepines. 2024; Available from: https://www.ncbi.nlm.nih.gov/books/NBK470159/.
60.衛生福利部食品藥物管理署, 失眠症治療之國際指引彙編, 王志中、張志誠、陳志金、蘇慧真, Editor. 2025, 衛生福利部食品藥物管理署.
61.Ann Aschengrau, G.R.S.I., Essentials of epidemiology in public health. 4th ed. 2020: Jones & Bartlett Learning.
-
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/103363-
dc.description.abstract背景:Zolpidem為目前全球使用量最大的安眠藥之一,雖因藥效快速、半衰期短且副作用相對較少而廣受臨床採用,但上市後一直有複雜性睡眠行為的相關案例,嚴重者甚至造成傷亡。藥廠仿單標示的發生率多為不常見(< 1%),然而現有文獻均僅止於文獻回顧,尚無統合分析研究整合各研究之盛行率數據。
目的:本研究旨在透過統合分析方法,估計成年zolpidem使用者的複雜性睡眠行為盛行率,並探討可能影響盛行率的相關因素,以提升臨床用藥安全。
方法:搜尋PubMed、Embase、Cochrane Library等多個中英文資料庫及預印本平台,搜尋截止時間為2026年3月。蒐集以夢遊或睡眠相關進食障礙為結果、且有數值可計算比值的臨床試驗及觀察性研究。統計分析採廣義線性混合模型,估計統合盛行率及95%信賴區間;並以敏感性分析以及次群體分析探討可能的異質性來源。
結果:共納入15篇研究,包含10篇zolpidem使用者研究(共4027人)及5篇身心科患者研究(共384651人)。Zolpidem使用者的複雜性睡眠行為盛行率為10.52%(95% CI:3.67–26.62%),顯著高於藥廠仿單的1%(p = 0.0008)。排除可能為離群值的單一研究後,盛行率提升至12.15%(95% CI:4.77–27.63%),且與身心科患者基線盛行率(3.85%)達到統計顯著差異(p = 0.037)。次群體分析顯示,排除離群研究後,有排除苯二氮平類藥物併用者的研究盛行率為3.58%(95% CI:1.97–6.41%),顯著低於未排除者的24.17%(95% CI:20.05–28.82%,p < 0.0001),顯示苯二氮平類藥物的併用可能是複雜性睡眠行為的相關因子。
結論:Zolpidem引起複雜性睡眠行為的盛行率可能高於仿單所標示的數字,而與苯二氮平類藥物的併用可能進一步提高發生風險。醫療人員面對多重用藥患者時,應積極評估並告知相關風險,以保障病患安全。
zh_TW
dc.description.abstractBackground: Zolpidem, a non-benzodiazepine hypnotic (Z-drug), has become one of the most widely prescribed sedative-hypnotics worldwide due to its rapid onset, short half-life, and relatively favorable side-effect profile. However, cases of complex sleep behaviors (CSB), including sleepwalking and sleep-related eating disorders, have been reported since its introduction. Despite serious safety concerns—including injuries and deaths—the prevalence reported in manufacturer prescribing information remain below 1%, and no meta-analysis has yet synthesized available prevalence data.
Objectives: This study aimed to estimate the prevalence of zolpidem-induced complex sleep behaviors in adult users through meta-analysis, and to identify factors potentially associated with their occurrence.
Methods: Multiple databases—including PubMed, Embase, and Cochrane Library—as well as preprint servers were searched through March 2026. Eligible studies were clinical trials or observational studies reporting the number of sleepwalking or sleep-related eating disorder events in adult zolpidem users or psychiatric outpatients, with sufficient data for proportion calculation. A generalized linear mixed model (GLMM) was used to estimate pooled prevalence with 95% confidence intervals. Sensitivity analysis was conducted using leave-one-out approach and other indicators, also subgroup analyses were performed to explore sources of heterogeneity.
Results: Fifteen studies were included: 10 involving zolpidem users (n = 4027) and 5 involving general psychiatric patients (n = 384651). The pooled CSB prevalence in zolpidem users was 10.52% (95% CI: 3.67–26.62%), significantly exceeding the 1% threshold stated in prescribing information (p = 0.0008). After excluding a potential outlier study, the prevalence increased to 14.81% (95% CI: 6.85–29.13%), which was significantly higher than the baseline prevalence in psychiatric patients (3.85%; p = 0.037). Subgroup analysis revealed that studies excluding concomitant use of other benzodiazepine hypnotics had a substantially lower prevalence of 3.58% (95% CI: 1.97–6.41%) compared to 24.17% (95% CI: 20.05–28.82%) in studies that did not exclude such co-use (p < 0.0001), suggesting concomitant benzodiazepine use may be a contributing factor to CSB occurrence.
Conclusions: This meta-analysis indicates that the prevalence of zolpidem-induced complex sleep behaviors may be substantially higher than manufacturer-reported estimates, and that concomitant use of benzodiazepines may further increase the risk. Clinicians should proactively assess polypharmacy risks and counsel patients accordingly to enhance medication safety.
en
dc.description.provenanceSubmitted by admin ntu (admin@lib.ntu.edu.tw) on 2026-08-11T16:09:33Z
No. of bitstreams: 0
en
dc.description.provenanceMade available in DSpace on 2026-08-11T16:09:33Z (GMT). No. of bitstreams: 0en
dc.description.tableofcontents目 次
口試委員會審定書 i
誌謝 ii
中文摘要 iii
英文摘要 iv
目次 v
圖次 vii
表次 viii
第一章 序論 1
第二章 研究方法 4
1.搜尋策略 4
2.研究篩選標準 6
3.資料萃取與研究評估 6
4.統計分析方法 6
第三章 結果 11
1.文獻篩選及受試者群體 11
2.複雜性睡眠行為的盛行率 11
3.敏感性分析 14
4.排除E. Ganzoni(1995)後,複雜性睡眠行為的盛行率 18
5.偏誤風險評估 19
第四章 討論 20
1.主要發現總結 20
2.與過去文獻之比較 20
3.臨床實務上之意義 21
4.研究限制 22
第五章 結論 23
參考文獻 24
附錄 28
-
dc.language.isozh_TW-
dc.subjectZolpidem-
dc.subject苯二氮平類藥物-
dc.subject複雜性睡眠行為-
dc.subject盛行率-
dc.subject失眠-
dc.subjectZolpidem-
dc.subjectBenzodiazepine-
dc.subjectComplex Sleep Behaviors-
dc.subjectPrevalence-
dc.subjectInsomnia-
dc.titleZolpidem引起之複雜性睡眠行為盛行率之統合分析zh_TW
dc.titlePrevalence of zolpidem-induced complex sleep behaviors: a meta-analysisen
dc.typeThesis-
dc.date.schoolyear114-2-
dc.description.degree碩士-
dc.contributor.oralexamcommittee郭柏秀;蔡政安;陳佩君zh_TW
dc.contributor.oralexamcommitteePo-Hsiu Kuo;Chen-An Tsai;Pei-Chun Chenen
dc.subject.keywordZolpidem; 苯二氮平類藥物; 複雜性睡眠行為; 盛行率; 失眠zh_TW
dc.subject.keywordZolpidem; Benzodiazepine; Complex Sleep Behaviors; Prevalence; Insomniaen
dc.relation.page31-
dc.identifier.doi10.6342/NTU202602679-
dc.rights.note同意授權(全球公開)-
dc.date.accepted2026-07-31-
dc.contributor.author-college共同教育中心-
dc.contributor.author-dept統計碩士學位學程-
dc.date.embargo-lift2026-08-12-
顯示於系所單位:統計碩士學位學程

文件中的檔案:
檔案 大小格式 
ntu-114-2.pdf2.52 MBAdobe PDF檢視/開啟
顯示文件簡單紀錄


系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved