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http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/82231完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 杜裕康(Yu-Kang Tu) | |
| dc.contributor.author | Chi-Feng Huang | en |
| dc.contributor.author | 黃琪峰 | zh_TW |
| dc.date.accessioned | 2022-11-25T06:34:04Z | - |
| dc.date.copyright | 2021-12-30 | |
| dc.date.issued | 2021 | |
| dc.date.submitted | 2021-11-30 | |
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Levey AS, Inker LA, Coresh J. “Should the definition of CKD be changed to include age-adapted GFR criteria?”: Con: the evaluation and management of CKD, not the definition, should be age-adapted. Kidney international. 2020;97(1): 37-40. 7. Levey AS, Coresh J, Greene T, Marsh J, Stevens LA, Kusek JW. Expressing the Modification of Diet in Renal Disease Study equation for estimating glomerular filtration rate with standardized serum creatinine values. Clinical chemistry. 2007;53(4): 766-772. 8. Levey AS, Stevens LA, Schmid CH, Zhang Y, Castro III AF, Feldman HI, Coresh J. A new equation to estimate glomerular filtration rate. Annals of internal medicine. 2009;150(9): 604-612. 9. Akchurin OM, Kaskel F. Update on Inflammation in Chronic Kidney Disease. Blood Purification. 2015;39(1-3): 84-92. 10. Cobo G, Lindholm B, Stenvinkel P. Chronic inflammation in end-stage renal disease and dialysis. 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Uremia: StatPearls Publishing; 2020. 17. Menon MK, Naimark DM, Bargman JM, Vas SI, Oreopoulos DG. Long‐term blood pressure control in a cohort of peritoneal dialysis patients and its association with residual renal function. Nephrology Dialysis Transplantation. 2001;16(11): 2207-2213. 18. Chaudhary K, Sangha H, Khanna R. Peritoneal Dialysis First: Rationale. Clinical Journal of the American Society of Nephrology. 2011;6(2): 447-456. 19. Jhamb M, Weisbord SD, Steel JL, Unruh M. Fatigue in patients receiving maintenance dialysis: a review of definitions, measures, and contributing factors. American Journal of kidney diseases. 2008;52(2): 353-365. 20. Peppelenbosch A, van Kuijk WHM, Bouvy ND, van der Sande FM, Tordoir JHM. Peritoneal dialysis catheter placement technique and complications. NDT plus. 2008;1(Suppl 4): iv23-iv28. 21. Elhassan E, Teitelbaum I. Time between peritoneal dialysis catheter insertion and use. Contrib Nephrol. 2012;178: 228-231. 22. Crabtree JH, Burchette RJ, Siddiqi RA. Embedded Catheters: Minimizing Excessive Embedment Time and Futile Placement while Maintaining Procedure Benefits. Perit Dial Int. 2015;35(5): 545-551. 23. Danielsson A, Blohmé L, Tranaeus A, Hylander B. A prospective randomized study of the effect of a subcutaneously 'buried' peritoneal dialysis catheter technique versus standard technique on the incidence of peritonitis and exit-site infection. Perit Dial Int. 2002;22(2): 211-219. 24. McCormick BB, Brown PA, Knoll G, Yelle JD, Page D, Biyani M, Lavoie S. Use of the embedded peritoneal dialysis catheter: experience and results from a North American Center. Kidney Int Suppl. 2006(103): S38-43. 25. Shepherd A, Benaragama S, Lindsey B, Fernando B, Veitch PS. Embedded peritoneal dialysis catheters: Results from a single centre experience. Transplantation. 2012;94: 906. 26. Kubota M, Kanazawa M, Takahashi Y, Io H, Ishiguro N, Tomino Y. Implantation of presternal catheter using Moncrief technique: aiming for fewer catheter-related complications. Perit Dial Int. 2001;21 Suppl 3: S205-208. 27. Glavinovic T, Kashani M, Al-Sahlawi M, Anderson E, Freeman M, Dacouris N, Peri J. A Peritoneal Dialysis Access Quality Improvement Initiative: A Single-Center Experience. Perit Dial Int. 2019;39(5): 437-446. 28. Tan R, Weng W, Raymond WD, Sieunarine K. Outcomes in buried versus non-buried peritoneal dialysis catheters: A retrospective cohort study. J Vasc Access. 2020: 1129729820937111. 29. Ounissi M, Sfaxi M, Fayala H, Abderrahim E, Abdallah T B, Chebil M, Kheder A. Bladder perforation in a peritoneal dialysis patient. Saudi Journal of Kidney Diseases and Transplantation. 2012;23(3): 552-555. 30. Leblanc M, Ouimet D, Pichette V. Dialysate leaks in peritoneal dialysis. Semin Dial. 2001;14(1): 50-54. 31. Prischl FC, Wallner M, Kalchmair H, Povacz F, Kramar R. Initial subcutaneous embedding of the peritoneal dialysis catheter--a critical appraisal of this new implantation technique. Nephrol Dial Transplant. 1997;12(8): 1661-1667. 32. Keskar V, Biyani M, Blew B, Warren J, McCormick BB. Characteristics and Outcomes of Exit Sites of Buried Peritoneal Dialysis Catheters: A Cohort Study. Perit Dial Int. 2018;38(5): 387-389. 33. Gupta A, Lavoie S, Blew B, Biyani M, McCormick BB. Successful Initiation of Dialysis with a 20-Year-Old Buried Peritoneal Dialysis Catheter: Case Report and Literature Review. Case Rep Nephrol. 2019;2019: 5678026. 34. Sinha S, Fok M, Davenport A, Banga N, Lindsey B, Fernando B, Forman CJ. Use of the embedded peritoneal dialysis catheter. Ann R Coll Surg Engl. 2018;100(7): 534-544. 35. Yamakawa T, Kawaguchi T, Kadomura M, Tsuchiya Y, Nagata M, Watanabe M, Imasawa T. The effect of a subcutaneously embedded catherter technique on patient outcomes in peritoneal dialysis. Nephrology Dialysis Transplantation. 2016;31: i244. 36. Elhassan E, McNair B, Quinn M, Teitelbaum I. Prolonged duration of peritoneal dialysis catheter embedment does not lower the catheter success rate. Perit Dial Int. 2011;31(5): 558-564. 37. Brum S, Rodrigues A, Rocha S, Carvalho M J, Nogueira C, Magalhaes C, Cabrita A. Moncrief–Popovich technique is an advantageous method of peritoneal dialysis catheter implantation. Nephrology Dialysis Transplantation. 2010;25(9): 3070-3075. 38. Marshall MR. A systematic review of peritoneal dialysis-related peritonitis rates over time from national or regional population-based registries and databases. Peritoneal Dialysis International. 2021: 0896860821996096. 39. Page MJ, McKenzie JE, Bossuyt PM, Boutron I, Hoffmann T C, Mulrow C D, Moher D. The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. Systematic Reviews. 2021;10(1): 89. 40. Team RC. R: A Language and Environment for Statistical Computing2019. 41. Deeks JJ. Systematic reviews of evaluations of diagnostic and screening tests. BMJ. 2001;323(7305): 157-162. 42. Higgins JPT, Thompson SG, Deeks JJ, Altman DG. Measuring inconsistency in meta-analyses. BMJ. 2003;327(7414): 557-560. 43. Crabtree JH, Burchette RJ. Peritoneal dialysis catheter embedment: surgical considerations, expectations, and complications. Am J Surg. 2013;206(4): 464-471. 44. Maroz N, Simman R. Wound Healing in Patients With Impaired Kidney Function. J Am Coll Clin Wound Spec. 2014;5(1): 2-7. 45. Maroz N. Impact of Renal Failure on Wounds Healing. J Am Coll Clin Wound Spec. 2018;8(1-3): 12-13. 46. Sahlawi MA, Wilson G, Stallard B, Shrestha A, Boyes SA, Wilkie ME. Peritoneal dialysis-associated peritonitis outcomes reported in trials and observational studies: A systematic review. Peritoneal Dialysis International. 2020;40(2): 132-140. 47. Chow KM, Szeto CC, Kwan BC, Pang WF, Ma T, Leung CB, Law MC, Li PK. Randomized controlled study of icodextrin on the treatment of peritoneal dialysis patients during acute peritonitis. Nephrol Dial Transplant. 2014;29(7): 1438-1443. 48. Rodríguez-Carmona A, Pérez-Fontán M, López-Muñiz A, Ferreiro-Hermida T, García-Falcón T. Correlation between glycemic control and the incidence of peritoneal and catheter tunnel and exit-site infections in diabetic patients undergoing peritoneal dialysis. Peritoneal dialysis international : journal of the International Society for Peritoneal Dialysis. 2014;34(6): 618-626. 49. Shrestha BM, Shrestha D, Kumar A, Shrestha A, Boyes SA, Wilkie ME. Advanced Laparoscopic Peritoneal Dialysis Catheter Insertion: Systematic Review and Meta-Analysis. Peritoneal Dialysis International. 2018;38(3): 163-171. 50. Kopriva-Altfahrt G, König P, Mündle M, Panagoutsos S, Vargemezis V, Oreopoulos DG. Exit-site care in Austrian peritoneal dialysis centers - A nationwide survey. Peritoneal Dialysis International. 2009;29(3): 330-339. 51. Thodis E, Passadakis P, Ossareh S, Panagoutsos S, Vargemezis V, Oreopoulos DG. Peritoneal catheter exit-site infections: predisposing factors, prevention and treatment. Int J Artif Organs. 2003;26(8): 698-714. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/82231 | - |
| dc.description.abstract | "背景: 全世界慢性腎臟病人口正在逐年上升,末期腎臟疾病進入透析階段也日益增加,然而,台灣也不例外,台灣是全世界透析盛行率最高的國家,臨床上腎臟替代療法有三種,包括:血液透析、腹膜透析與腎臟移植,排除腎臟移植外,腹膜透析的生活品質較血液透析好。在2017年的健保資料中,血液透析治療人口占91.6%,腹膜透析人口占8.4%。腹膜透析與血液透析相比,腹膜透析可以保存殘餘腎功能、維持排尿量、血壓控制較穩定、降低心臟負荷。腹膜透析放置方式有兩種,一種採用傳統腹膜透析導管(CPD),另一種採腹膜透析預先植管(SIPD)。在一些大型的研究中發現,接受腹膜透析預先植管的病人可降低導管滲漏率、腹膜炎率、導管出口部位的感染率、導管耗損率與增加導管壽命等都優於傳統腹膜透析導管。腹膜透析導管滲漏時會引起腹部水腫,嚴重時會造成全身會水腫,腹膜炎及導管出口處感染會增加腹膜透析病人死亡的風險性及醫療成本的支出。因此,我們進行系統性文獻回顧和統合分析來比較末期腎病患者接受腹膜透析預先植管與傳統腹膜透析導管的效果。 方法: 根據Cochrane handbook for systematic review指南來搜尋文章,在系統性回顧中檢索了 PubMed、Embase 中的文章。我們使用以上資料庫搜尋文章到2020年9 月。主要搜尋的關鍵字是 “stepwise initiation of peritoneal dialysis”, “embedded peritoneal dialysis”, “buried peritoneal dialysis” 。文章搜尋的部份是由兩位 reviewers進行。使用紐卡斯爾-渥太華世代研究品質評估量表 (Newcastle-Ottawa Quality Assessment Form for Cohort Studies) 來評估。在研究中我們有收集性別、年齡、有糖尿病比率、腹膜炎發生率、導管出口處感染率、導管滲漏發生率、導管破損發生率,本研究以統計軟體R統計分析計算出發生率比 (Incidence rate ratio) 、森林圖和漏斗圖。 結果: 系統性回顧所搜尋收集的資料發現均為世代研究,納入回顧的文章有四篇加拿大、三篇美國、二篇日本,其餘各一篇有英國、澳大利亞、葡萄牙、瑞典、奧地利和台灣。經進行嚴格的評讀篩選後,僅有6篇文章進入統合分析。6篇研究總共2273位病人:病人的平均年齡為47.7-65.2歲,男性占53-67%,有糖尿病病人數占27-52.4%。腹膜透析預先植管滲漏發生率與傳統腹膜透析導管相比有顯著降低(發生率比0.14;95%信賴區間:0.06-0.32)。預先植管組的腹膜透析導管耗損率比傳統腹膜透析導管放置組少(發生率比0.73;95%信賴區間:0.52-1.03) ,雖然未達統計顯著。對於腹膜透析導管相關的腹膜炎,預先植管組也有比較少發生率(發生率比0.50;95%信賴區間0.27-0.92) 。 結論: 本研究結果顯示病人接受腹膜透析預先植管(SIPD)比傳統腹膜透析導管(CPD)有較低的導管滲漏、腹膜炎等發生情形,當末期腎臟病人選擇採取腹膜透析做為終身透析時,建議進行腹膜透析預先植管(SIPD)方法,以降低感染發生率及住院率,進而提高病人生活品質。" | zh_TW |
| dc.description.provenance | Made available in DSpace on 2022-11-25T06:34:04Z (GMT). No. of bitstreams: 1 U0001-2511202119390200.pdf: 2145792 bytes, checksum: 5bc5e833aaa6f9f2e977175142a9e131 (MD5) Previous issue date: 2021 | en |
| dc.description.tableofcontents | 誌 謝 i 中文摘要 ii Abstract iv Table of Contents vii List of Figures x List of Tables xii Chapter1. Introduction 1 Chapter2. Method 6 2.1 Literature search strategy 6 2.2 Study selection 7 2.3 Outcomes 8 2.4 Data extraction 8 2.5 Quality assessment 10 2.6 Data Analysis 10 Chapter3. Results 12 3.1 Patient characteristics 12 3.2 Summary of the outcomes of the included studies 13 3.3 Comparison of catheter leakage between SIPD group and CPD group 14 3.4 Comparison of catheter survival between SIPD group and CPD group 14 3.5 Comparison of PD catheter-related peritonitis between SIPD group and CPD group 15 3.6 Comparison of exit site infection between SIPD group and CPD group 16 3.7 Risk ratio of the hematoma after post-operation between SIPD group and CPD group 16 3.8 Risk ratio of catheter dysfunction after post-operation between SIPD group and CPD group 17 Chapter4. Discussion 18 Chapter5. Conclusion 23 Chapter6. Reference 24 Figures 29 Tables 42 Appendix 48 | |
| dc.language.iso | en | |
| dc.subject | 導管滲漏 | zh_TW |
| dc.subject | 腹膜透析預先植管方法 | zh_TW |
| dc.subject | 導管出口處感染 | zh_TW |
| dc.subject | 腹膜炎 | zh_TW |
| dc.subject | 傳統腹膜透析導管方法 | zh_TW |
| dc.subject | exit site infection | en |
| dc.subject | catheter leakage | en |
| dc.subject | Stepwise initiation of peritoneal dialysis | en |
| dc.subject | conventional peritoneal dialysis | en |
| dc.subject | peritonitis | en |
| dc.title | 使用統合分析比較末期腎病患者接受腹膜透析預先植管與傳統腹膜透析植管方法的效果 | zh_TW |
| dc.title | "Effects of stepwise initiation of peritoneal dialysis compared with conventional peritoneal dialysis, A Systematic review and Meta-analysis" | en |
| dc.date.schoolyear | 110-1 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 簡國龍(Hsin-Tsai Liu),吳泓彥(Chih-Yang Tseng) | |
| dc.subject.keyword | 腹膜透析預先植管方法,傳統腹膜透析導管方法,導管滲漏,腹膜炎,導管出口處感染, | zh_TW |
| dc.subject.keyword | Stepwise initiation of peritoneal dialysis,conventional peritoneal dialysis,catheter leakage,peritonitis,exit site infection, | en |
| dc.relation.page | 48 | |
| dc.identifier.doi | 10.6342/NTU202104493 | |
| dc.rights.note | 未授權 | |
| dc.date.accepted | 2021-11-30 | |
| dc.contributor.author-college | 公共衛生學院 | zh_TW |
| dc.contributor.author-dept | 流行病學與預防醫學研究所 | zh_TW |
| dc.date.embargo-lift | 2026-11-25 | - |
| 顯示於系所單位: | 流行病學與預防醫學研究所 | |
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