scholarly article | Q13442814 |
meta-analysis | Q815382 |
P2093 | author name string | Ting Xu | |
Bin Yu | |||
Qin Zou | |||
Xiao Li | |||
Zhiqiang Qin | |||
Hongzhou Cai | |||
Zicheng Xu | |||
Jingyuan Wang | |||
Chuanjie Zhang | |||
Jianxin Xue | |||
Weizhang Xu | |||
P2860 | cites work | Overcoming the limitations of current meta-analysis of randomised controlled trials | Q52900034 |
Transperineal versus transrectal prostate biopsy for predicting the final laterality of prostate cancer: are they reliable enough to select patients for focal therapy? Results from a multicenter international study. | Q53093296 | ||
Fluoroquinolone-resistant E. coli in intestinal flora of patients undergoing transrectal ultrasound-guided prostate biopsy-should we reassess our practices for antibiotic prophylaxis? | Q54351950 | ||
Trial sequential analysis has the potential to improve the reliability of conclusions in meta-analysis | Q57389493 | ||
Systematic 5 region prostate biopsy is superior to sextant method for diagnosing carcinoma of the prostate | Q71927028 | ||
Best approach for prostate cancer detection: a prospective study on transperineal versus transrectal six-core prostate biopsy | Q73366415 | ||
Absence of evidence is not evidence of absence | Q76385402 | ||
Commentary on "identification of 23 new prostate cancer susceptibility loci using the iCOGS custom genotyping array." Eeles RA, Olama AA, Benlloch S, Saunders EJ, Leongamornlert DA, Tymrakiewicz M, Ghoussaini M, Luccarini C, Dennis J, Jugurnauth-Lit | Q87132951 | ||
Trial sequential analysis may establish when firm evidence is reached in cumulative meta-analysis | Q24289436 | ||
Bias in meta-analysis detected by a simple, graphical test | Q24685585 | ||
The results of transperineal versus transrectal prostate biopsy: a systematic review and meta-analysis | Q26858924 | ||
Cancer statistics, 2016 | Q29547383 | ||
Screening and prostate-cancer mortality in a randomized European study | Q29617485 | ||
Apparently conclusive meta-analyses may be inconclusive--Trial sequential analysis adjustment of random error risk due to repetitive testing of accumulating data in apparently conclusive neonatal meta-analyses | Q33372680 | ||
Estimating required information size by quantifying diversity in random-effects model meta-analyses. | Q33521365 | ||
Complications of transrectal versus transperineal prostate biopsy | Q36058996 | ||
How strong is the evidence for the use of perioperative beta blockers in non-cardiac surgery? Systematic review and meta-analysis of randomised controlled trials | Q36183773 | ||
Bias in clinical intervention research. | Q36380552 | ||
The impact of study size on meta-analyses: examination of underpowered studies in Cochrane reviews | Q36721160 | ||
Trial sequential analysis reveals insufficient information size and potentially false positive results in many meta-analyses | Q37138228 | ||
Meta-analysis of genetic association studies: methodologies, between-study heterogeneity and winner's curse | Q37620160 | ||
Association between DAZL polymorphisms and susceptibility to male infertility: systematic review with meta-analysis and trial sequential analysis | Q37737173 | ||
American Urological Association (AUA) Guideline on prostate cancer detection: process and rationale | Q38127277 | ||
Transperineal biopsy of the prostate--is this the future? | Q38141791 | ||
EAU guidelines on prostate cancer. part 1: screening, diagnosis, and local treatment with curative intent-update 2013. | Q38160994 | ||
Random biopsy: when, how many and where to take the cores? | Q38218443 | ||
Random systematic versus directed ultrasound guided transrectal core biopsies of the prostate. | Q39278530 | ||
The optimal systematic prostate biopsy scheme should include 8 rather than 6 biopsies: results of a prospective clinical trial | Q39525026 | ||
Extensive biopsy protocol improves the detection rate of prostate cancer | Q39541662 | ||
Transperineal 12-core systematic biopsy in the detection of prostate cancer | Q39569610 | ||
Spatial distribution of prostate cancers undetected on initial needle biopsies | Q39574154 | ||
Extensive biopsy using a combined transperineal and transrectal approach to improve prostate cancer detection | Q39739287 | ||
Direct comparison between transrectal and transperineal extended prostate biopsy for the detection of cancer | Q39807568 | ||
Trans-rectal versus trans-perineal saturation rebiopsy of the prostate: is there a difference in cancer detection rate? | Q39961504 | ||
Making the most out of six systematic sextant biopsies | Q40566921 | ||
Comparison of ultrasound-guided transrectal and transperineal prostate biopsies in clinical application | Q41551354 | ||
Comparison between Ultrasound Guided Transperineal and Transrectal Prostate Biopsy: A Prospective, Randomized, and Controlled Trial | Q41827740 | ||
Cumulating evidence from randomized trials: Utilizing sequential monitoring boundaries for cumulative meta-analysis | Q43471039 | ||
Can trial sequential monitoring boundaries reduce spurious inferences from meta-analyses? | Q43707230 | ||
Location and pathological characteristics of cancers in radical prostatectomy specimens identified by transperineal biopsy compared to transrectal biopsy. | Q45769213 | ||
Optimal approach for prostate cancer detection as initial biopsy: prospective randomized study comparing transperineal versus transrectal systematic 12-core biopsy | Q46727612 | ||
Does transrectal ultrasound guided eight-core prostate biopsy improve cancer detection rates in patients with prostate-specific antigen levels of 4.1-10 ng/mL? | Q47444620 | ||
A prospective randomized comparison of diagnostic efficacy between transperineal and transrectal 12-core prostate biopsy | Q48594302 | ||
Transrectal versus transperineal 14-core prostate biopsy in detection of prostate cancer: a comparative evaluation at the same institution | Q51012680 | ||
P433 | issue | 14 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | biopsy | Q179991 |
prostate cancer | Q181257 | ||
P304 | page(s) | 23322-23336 | |
P577 | publication date | 2017-02-03 | |
P1433 | published in | Oncotarget | Q1573155 |
P1476 | title | Comparison between transrectal and transperineal prostate biopsy for detection of prostate cancer: a meta-analysis and trial sequential analysis | |
P478 | volume | 8 |
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Q92380807 | Feasibility of freehand MRI/US cognitive fusion transperineal biopsy of the prostate in local anaesthesia as in-office procedure-experience with 400 patients |
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Q64320006 | New oral anti-coagulation drugs and prostate biopsy: a call for guidelines |
Q55265515 | Patient experience after transperineal template prostate biopsy compared to prior transrectal ultrasound guided prostate biopsy. |
Q91767268 | Prostate MRI and transperineal TRUS/MRI fusion biopsy for prostate cancer detection: clinical practice updates |
Q90274615 | Prostate biopsy techniques and pre-biopsy prophylactic measures: variation in current practice patterns in the Netherlands |
Q58759208 | Short interval of biopsy to robotic-assisted laparoscopic radical prostatectomy does not render any adverse effects on the perioperative outcomes |
Q41708780 | Statins and the risk of cirrhosis in hepatitis B or C patients: a systematic review and dose-response meta-analysis of observational studies |
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