| Literature DB >> 31839744 |
Xiaonan Zheng1, Xin Han2, Dehong Cao1, Yaping Wang2, Hang Xu2, Lu Yang1, Qiang Wei1, Jianzhong Ai1.
Abstract
Background: Previous meta-analysis evaluated a limited number of parameters regarding the comparison of BTPV and TURP for BPH. Method: PubMed, Embase and Cochrane Library were searched for literature comparing BTPV with TURP. Data of efficacy (IPSS, Qmax, PVR and QoL) and safety were extracted and evaluated using either SMD or OR with 95% CI. All analyses were performed by RevMan 5.3.Entities:
Keywords: benign prostatic hyperplasia (BPH); button-type bipolar plasma vaporization (BTPV); lower urinary tract symptoms (LUTS); transurethral resection (TURP)
Mesh:
Year: 2019 PMID: 31839744 PMCID: PMC6909815 DOI: 10.7150/ijms.38618
Source DB: PubMed Journal: Int J Med Sci ISSN: 1449-1907 Impact factor: 3.738
Characteristics of included studies.
| Study | Design | Equipment | Cohort Size | TURP | BTPV | Age (year) | Follow-Up (month) | Prostate Volume (ml) | IPSS | Qmax (mL/s) | QoL | PVR (ml) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Geavlete 2010* | Randomized Controlled | Standard monopolar (26-F Storz resectoscope) and BTPV (Olympus SurgMaster UES-40) | 155 | 80 | 75 | 66 | 6 | 55.99 | 24.3 | 6.3 | 4.3 | 85.1 |
| Geavlete 2011 | Randomized Controlled | Standard monopolar (26-F Storz resectoscope) and BTVP (Olympus SurgMaster UES-40) | 510 | 340 | 170 | 67 | 18 | 54.2 | 24.2 | 6.4 | 4.4 | 91.7 |
| Geavlete 2013 | Randomized Controlled | Standard monopolar (26-F Storz resectoscope) and BTPV (Olympus Surg Master UES-40 and Olympus ESG-400; Olympus Winter & iBE GMBH, Kuehnstraße, Hamburg, Germany) | 180 | 60 | 120 | 68.8 | 6 | 51.7 | 24 | 6.6 | 4.1 | 104.7 |
| Nuhoglu 2011 | Randomized Controlled | Standard monopolar (26-F Storz resectoscope) and BTPV (Olympus SurgMaster UES-40) | 90 | 47 | 43 | 65.03 | 12 | 52.42 | 21.1 | 5.4 | N | 96.4 |
| Yip 2011 | Randomized Controlled | Standard bipolar (Olympus SurgMaster) and BTPV (Olympus SurgMaster UES-40) | 86 | 40 | 46 | 69.27 | 12 | 61.2 | 22.3 | 7.9 | N | N |
| Zhang 2012 | Randomized Controlled | Standard monopolar (26-F resectoscope) and BTPV (Olympus SurgMaster UES-40) | 30 | 15 | 15 | 70.6 | 6 | 64.55 | 25.8 | 4.9 | 5.1 | N |
| Falahatkar 2014 | Randomized Controlled | Standard bipolar and BTPV (Olympus SurgMaster UES-40) | 88 | 49 | 39 | 73.9 | 3 | 47.04 | 26.2 | 8.3 | N | N |
| Aboutaleb 2015 | Retrospective | Standard monopolar (24-F Storz resectoscope) and BTPV (Olympus SurgMaster UES-40) | 152 | 100 | 52 | 64.2 | 3 | 44 | 20.3 | 4.3 | 11.5 | 170 |
| Geavlete 2015 | Randomized Controlled | Standard bipolar (26F OES-Pro resectoscope) and BTPV (Olympus SurgMaster UES-40) | 160 | 80 | 80 | 68.5 | 12 | 124.3 | 24.8 | 6.7 | 4.4 | 154.9 |
| Elsakka 2016 | Randomized Controlled | Standard monopolar (26-F resectoscope) and BTPV (Olympus SurgMaster UES-40) | 82 | 40 | 42 | 56.3 | 6 | 48.32 | 24.25 | 6.91 | N | 208.71 |
| Kranzbühler 2017 | Prospective Non-randomized | Standard monopolar (26-F Wolf resectoscope) and BTPV (Olympus SurgMaster UES-40) | 157 | 89 | 68 | 65.4 | 12 | 44.6 | 17.7 | 9.6 | 4.6 | 74.6 |
*Geavlete 2010 is included in Geavlete 2011; N = Data not applicable.