Table of Contents Table of Contents
Previous Page  616 656 Next Page
Information
Show Menu
Previous Page 616 656 Next Page
Page Background

Obtaining funding:

None.

Administrative, technical, or material support:

None.

Supervision:

Correia-Pinto.

Other:

None.

Financial disclosures:

Estevao Lima certifies that all conflicts of interest,

including specific financial interests and relationships and affiliations

relevant to the subject matter or materials discussed in the manuscript

(eg, employment/affiliation, grants or funding, consultancies, honoraria,

stock ownership or options, expert testimony, royalties, or patents filed,

received, or pending), are the following: None.

Funding/Support and role of the sponsor:

None.

Appendix A. Supplementary data

Supplementary data associated with this article can be

found, in the online version, at

http://dx.doi.org/10.1016/j. eururo.2017.03.011 .

References

[1]

Fernstrom I, Johansson B. Percutaneous pyelolithotomy. A new extraction technique. Scand J Urol Nephrol 1976;10:257–9.

[2]

Patel SR, Nakada SY. The modern history and evolution of percuta- neous nephrolithotomy. J Endourol 2015;29:153–7.

[3]

Tu¨ rk C, Petrˇı´k A, Sarica K, et al. EAU guidelines on interventional treatment for urolithiasis. Eur Urol 2016;69:475–82.

[4]

Assimos D, Krambeck A, Miller NL, et al. Surgical management of stones: American Urological Association/Endourological Society guideline, part I. J Urol 2016;196:1153–60.

[5]

Ghani KR, Andonian S, Bultitude M, et al. Percutaneous nephro- lithotomy: update, trends, and future directions. Eur Urol 2016;70:382–96.

[6]

de la Rosette JJ, Laguna MP, Rassweiler JJ, et al. Training in percuta- neous nephrolithotomy. Eur Urol 2008;54:994–1001.

[7]

Kalogeropoulou C, Kallidonis P, Liatsikos EN. Imaging in percuta- neous nephrolithotomy. J Endourol 2009;23:1571–7.

[8]

Seitz C, Desai M, Ha¨cker A, et al. Incidence, prevention, and man- agement of complications following percutaneous nephrolithola- paxy. Eur Urol 2012;61:146–58.

[9]

Chen TT, Preminger GM, Lipkin ME. Minimizing radiation exposure during percutaneous nephrolithotomy. Minerva Urol Nefrol 2015;67:347–54.

[10]

Rodrigues PL, Vilac¸ a JL, Oliveira C, et al. Collecting system percuta- neous access using real-time tracking sensors: first pig model in vivo experience. J Urol 2013;190:1932–7

.

[11]

Dahm P, Sedrakyan A, McCulloch P. Application of the IDEAL framework to robotic urologic surgery. Eur Urol 2014;65:849–51

.

[12]

Thomas K, Smith NC, Hegarty N, Glass JM. The Guy’s stone score— grading the complexity of percutaneous nephrolithotomy proce- dures. Urology 2011;78:277–81

.

[13]

Scoffone CM, Cracco CM, Cossu M, et al. Endoscopic combined intrarenal surgery in Galdakao-modified supine Valdivia position: a new standard for percutaneous nephrolithotomy? Eur Urol 2008;54:1393–403.

[14]

Grasso M, Lang G, Taylor FC. Flexible ureteroscopically assisted percutaneous renal access. Tech Urol 1995;1:39–43

.

[15]

Alsyouf M, Arenas JL, Smith JC, et al. Direct endoscopic visualization combined with ultrasound guided access during percutaneous neohrolithotomy: a feasibility study and comparison to a conven- tional cohort. J Urol 2016;196:227–33.

[16]

Bader MJ, Gratzke C, Seitz M, et al. The ‘‘all-seeing needle’’: optical puncture system confirming access in percutaneous nephrolithot- omy. Eur Urol 2011;59:1054–9

.

[17]

Rassweiler JJ, Mu¨ ller M, Fangerau M, et al. iPad-assisted percuta- neous access to the kidney using marker-based navigation: initial clinical experience. Eur Urol 2012;61:628–31

.

[18]

Rassweiler J, Rassweiler MC, Mu¨ ller M, et al. Surgical navigation in urology: European perspective. Curr Opin Urol 2014;24:81–97

.

[19]

Ritter M, Rassweiler MC, Michel MS. The Uro Dyna-CT enables three-dimensional planned laser-guided complex punctures. Eur Urol 2015;68:880–4

.

[20]

Li R, Li T, Qian X, et al. Real-time ultrasonography-guided percuta- neous nephrolithotomy using SonixGPS navigation: clinical expe- rience and practice in a single center in China. J Endourol 2015;29:158–61

.

[21]

Chau HL, Chan HC, Li TB, Cheung MH, Lam KM, So HS. An innovative free-hand puncture technique to reduce radiation in percutaneous nephrolithotomy using ultrasound with navigation system under magnetic field: a single-center experience in Hong Kong. J Endourol 2016;30:160–4

.

[22]

Mahesh M. Fluoroscopy: patient radiation exposure issues. Radio- graphics 2001;21:1033

.

[23]

Kovacic P, Somanathan R. Electromagnetic fields: mechanism, cell signaling, other bioprocesses, toxicity, radicals, antioxidants and beneficial effects. J Recept Signal Transduct Res 2010;30:214–26

.

E U R O P E A N U R O L O G Y 7 2 ( 2 0 1 7 ) 6 1 0 – 6 1 6

616