| Literature DB >> 35323314 |
Ankit Sinha1, Alexander West1, John Hayes1, Jeremy Teoh2, Karel Decaestecker3, Nikhil Vasdev1,4.
Abstract
INTRODUCTION: Detection of lymph node status in bladder cancer significantly impacts clinical decisions regarding its management. There is a wide range of detection modalities for this task, including lymphoscintigraphy, computed tomography, magnetic resonance imaging, single-photon emission computed tomography, positron emission tomography, and fluoroscopy. We aimed to study the pre- and intraoperative detection modalities of sentinel lymph nodes in urinary bladder cancer.Entities:
Keywords: PLND; bladder cancer; detection; imaging; sentinel lymph nodes
Mesh:
Year: 2022 PMID: 35323314 PMCID: PMC8947662 DOI: 10.3390/curroncol29030114
Source DB: PubMed Journal: Curr Oncol ISSN: 1198-0052 Impact factor: 3.677
Table showing the inclusion and exclusion criteria for data collection.
| Inclusion | Exclusion |
|---|---|
| Articles analysing the effectiveness and outcomes of SLN mapping in bladder cancer | Studies that were not in English language |
| Any date published | Duplicated articles |
| Animal and human studies | Irrelevant content |
Figure 1Flow chart of the study selection process. Exclusion criteria for reports included non-English language, books, theses, conference papers, comments, duplicates, and irrelevant content.
This table summarises the studies included in this review.
| No. | Author | Year | Study Type | Reference | Imaging Modalities | Number of Patients |
|---|---|---|---|---|---|---|
| 1 | Zarifmahmoudi et al. | 2019 | Systematic Review and Meta-Analysis | [ | Lymphoscintigraphy, CT, SPECT, Fluoroscopy | 336 |
| 2 | Polom et al. | 2017 | Prospective | [ | Lymphoscintigraphy, Fluoroscopy | 50 |
| 3 | Lusuardi et al. | 2013 | Review | [ | CT, MRI, PET | 522 |
| 4 | Salminen et al. | 2016 | Review | [ | CT, MRI, PET | 370 |
| 5 | Liss et al. | 2015 | Systematic Review and Meta-Analysis | [ | Lymphoscintigraphy, CT, SPECT, Fluoroscopy | 156 |
| 6 | Nissenkorn et al. | 1986 | Prospective | [ | Lymphoscintigraphy, CT | 26 |
| 7 | Aljabery et al. | 2015 | Retrospective | [ | PET, CT | 54 |
| 8 | Liedberg et al. | 2006 | Prospective | [ | Lymphoscintigraphy | 75 |
| 9 | Marits et al. | 2006 | Prospective | [ | Lymphoscintigraphy | 14 |
| 10 | Zarifmahmoudi et al. | 2020 | Prospective | [ | Lymphoscintigraphy | 41 |
| 11 | Aljabery et al. | 2017 | Prospective | [ | Lymphoscintigraphy | 103 |
| 12 | Sherif et al. | 2001 | Prospective | [ | Lymphoscintigraphy | 13 |
| 13 | Połom et al. | 2016 | Prospective | [ | CT | 38 |
| 14 | Sherif et al. | 2006 | Prospective | [ | CT, SPECT | 6 |
| 15 | Salo et al. | 1986 | Prospective | [ | CT | 51 |
| 16 | Lerman et al. | 2006 | Prospective | [ | CT, SPECT | 157 |
| 17 | Paik et al. | 2000 | Retrospective | [ | CT | 82 |
| 18 | Patel et al. | 2016 | Review | [ | Fluoroscopy | N/A |
| 19 | Aoun et al. | 2018 | Systematic Review and Meta-Analysis | [ | Fluoroscopy | 271 |
| 20 | Schaafsma et al. | 2014 | Prospective | [ | Fluoroscopy | 21 |
| 21 | Manny et al. | 2014 | Prospective | [ | Fluoroscopy | 10 |
| 22 | Knapp et al. | 2007 | Prospective | [ | Fluoroscopy | N/A |
| 23 | Papalia et al. | 2012 | Prospective | [ | MRI | 36 |
| 24 | Thoeny et al. | 2009 | Prospective | [ | MRI | 21 |
| 25 | Triantafyllou et al. | 2013 | Prospective | [ | MRI | 75 |
| 26 | Birkhäuser et al. | 2013 | Prospective | [ | MRI | 75 |
| 27 | Dason et al. | 2020 | Retrospective | [ | CT, PET | 185 |
| 28 | Abrahamsson et al. | 2017 | Prospective | [ | PET | 88 |
| 29 | Powles et al. | 2007 | Review | [ | CT, PET | N/A |
| 30 | Schöder et al. | 2004 | Review | [ | PET | N/A |
| 31 | Nayak et al. | 2013 | Prospective | [ | PET | 25 |