Sacral Neuromodulation Without an Implanted Battery

Stewart WF, Van Rooyen JB, Cundiff GW, Abrams P, Herzog AR, Corey R, Hunt TL, Wein AJ. Prevalence and burden of overactive bladder in the United States. World J Urol. 2003;20:327–36.

Article  CAS  PubMed  Google Scholar 

Coyne KS, Sexton CC, Thompson CL, Milsom I, Irwin D, Kopp ZS, Chapple CR, Kaplan S, Tubaro A, Aiyer LP, et al. The prevalence of lower urinary tract symptoms (LUTS) in the USA, the UK and sweden: results from the epidemiology of LUTS (EpiLUTS) study. BJU Int. 2009;104:352–60.

Article  PubMed  Google Scholar 

Reynolds WS, Fowke J, Dmochowski R. The burden of overactive bladder on us public health. Curr Bladder Dysfunct Rep. 2016;11:8–13.

Article  PubMed  PubMed Central  Google Scholar 

Coyne KS, Wein A, Nicholson S, Kvasz M, Chen CI, Milsom I. Comorbidities and personal burden of urgency urinary incontinence: a systematic review. Int J Clin Pract. 2013;67:1015–33.

Article  CAS  PubMed  Google Scholar 

Dmochowski RR, Thai S, Iglay K, Enemchukwu E, Tee S, Varano S, Girman C, Radican L, Mudd PN Jr, Poole C. Increased risk of incident dementia following use of anticholinergic agents: A systematic literature review and meta-analysis. Neurourol Urodyn. 2021;40:28–37.

Article  PubMed  Google Scholar 

Cameron AP, Chung DE, Dielubanza EJ, Et al. The AUA/SUFU guideline on the diagnosis and treatment of idiopathic overactive bladder. J Urol. 2024:212(1):11–20. https://doi.org/10.1097/JU.0000000000003985.

Schmidt RA, Jonas U, Oleson KA, Janknegt RA, Hassouna MM, Siegel SW, van Kerrebroeck PE. Sacral nerve stimulation for treatment of refractory urinary urge incontinence. Sacral Nerve Stimulation Study Group. J Urol. 1999;162:352–7.

Article  CAS  PubMed  Google Scholar 

Siegel SW, Catanzaro F, Dijkema HE, Elhilali MM, Fowler CJ, Gajewski JB, Hassouna MM, Janknegt RA, Jonas U, van Kerrebroeck PE, et al. Long-term results of a multicenter study on sacral nerve stimulation for treatment of urinary urge incontinence, urgency-frequency, and retention. Urology. 2000;56:87–91.

Article  CAS  PubMed  Google Scholar 

Gormley EA, Lightner DJ, Burgio KL, Chai TC, Clemens JQ, Culkin DJ, Das AK, Foster HE Jr, Scarpero HM, Tessier CD, et al. Diagnosis and treatment of overactive bladder (non-neurogenic) in adults: AUA/SUFU guideline. J Urol. 2012;188:2455–63.

Article  PubMed  Google Scholar 

Everaert K, Kerckhaert W, Caluwaerts H, Audenaert M, Vereecke H, De Cuypere G, Boelaert A, Van den Hombergh U, Oosterlinck W. A prospective randomized trial comparing the 1-stage with the 2-stage implantation of a pulse generator in patients with pelvic floor dysfunction selected for sacral nerve stimulation. Eur Urol. 2004;45:649–54.

Article  CAS  PubMed  Google Scholar 

Scheepens WA, Weil EH, van Koeveringe GA, Rohrmann D, Hedlund HE, Schurch B, Ostardo E, Pastorello M, Ratto C, Nordling J, et al. Buttock placement of the implantable pulse generator: a new implantation technique for sacral neuromodulation–a multicenter study. Eur Urol. 2001;40:434–8.

Article  CAS  PubMed  Google Scholar 

Amundsen CL, Komesu YM, Chermansky C, Gregory WT, Myers DL, Honeycutt EF, Vasavada SP, Nguyen JN, Wilson TS, Harvie HS, et al. Two-year outcomes of sacral neuromodulation versus onabotulinumtoxina for refractory urgency urinary incontinence: a randomized trial. Eur Urol. 2018;74:66–73.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Barbruni GL, Ros PM, Demarchi D, Carrara S, Ghezzi D. Miniaturised wireless power transfer systems for neurostimulation: a review. IEEE Trans Biomed Circuits Syst. 2020;14:1160–78.

Article  PubMed  Google Scholar 

Khalifa A, Liu Y, Karimi Y, Wang Q, Eisape A, Stanacevic M, Thakor N, Bao Z, Etienne-Cummings R. The microbead: A 0.009 mm(3) implantable wireless neural stimulator. IEEE Trans Biomed Circuits Syst. 2019;13:971–85.

Article  PubMed  Google Scholar 

Ho JS, Yeh AJ, Neofytou E, Kim S, Tanabe Y, Patlolla B, Beygui RE, Poon AS. Wireless power transfer to deep-tissue microimplants. Proc Natl Acad Sci U S A. 2014;111:7974–9.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Ahn D, Ghovanloo M. Optimal design of wireless power transmission links for millimeter-sized biomedical implants. IEEE Trans Biomed Circuits Syst. 2016;10:125–37.

Article  PubMed  Google Scholar 

Li Y, Chen Z, Liu Y, Liu Z, Wu T, Zhang Y, Peng L, Huang X, Huang S, Lin X, et al. Ultra-low frequency magnetic energy focusing for highly effective wireless powering of deep-tissue implantable electronic devices. Natl Sci Rev. 2024;11:nwae062.

Article  PubMed  PubMed Central  Google Scholar 

Song SH, Kim A, Ziaie B. Omnidirectional ultrasonic powering for millimeter-scale implantable devices. IEEE Trans Biomed Eng. 2015;62:2717–23.

Article  CAS  PubMed  Google Scholar 

Chang TC, Weber MJ, Charthad J, Baltsavias S, Arbabian A. End-to-end design of efficient ultrasonic power links for scaling towards submillimeter implantable receivers. IEEE Trans Biomed Circuits Syst. 2018;12:1100–11.

Article  PubMed  PubMed Central  Google Scholar 

Kim A, Powell CR, Ziaie B. An implantable pressure sensing system with electromechanical interrogation scheme. IEEE Trans Biomed Eng. 2014;61:2209–17.

Article  PubMed  Google Scholar 

Han M, Yildiz E, Bozuyuk U, Aydin A, Yu Y, Bhargava A, Karaz S, Sitti M. Janus microparticles-based targeted and spatially-controlled piezoelectric neural stimulation via low-intensity focused ultrasound. Nat Commun. 2013;2024:15.

Google Scholar 

Nag S, Koruprolu A, Saikh SM, Erfani R, Mohseni P. Autoresonant tuning for capacitive power and data telemetry using flexible patches. IEEE Trans Circuits Syst II Exp Briefs. 2020;67:1804–8.

Google Scholar 

Karatum O, Gwak MJ, Hyun J, Onal A, Koirala GR, Kim TI, Nizamoglu S. Optical neuromodulation at all scales: from nanomaterials to wireless optoelectronics and integrated systems. Chem Soc Rev. 2023;52:3326–52.

Article  CAS  PubMed  Google Scholar 

Karatum O, Kaleli HN, Eren GO, Sahin A, Nizamoglu S. Electrical stimulation of neurons with quantum dots via near-infrared light. ACS Nano. 2022;16:8233–43.

Article  CAS  PubMed  PubMed Central  Google Scholar 

 GIlleran J, Alpert S. Adult and pediatric neuromodulation. In: Gilleran J, Alpert S, editors. Springer international publishing AG, part of Springer Nature. 2018;1. https://doi.org/10.1007/978-3-319-73266-4.

Neuspera’s implantable sacral nerve stimulation system in patients with symptoms of urinary urgency incontinence (UUI). Washington DC: ClinicalTrials.gov; 2023. https://www.prnewswire.com/news-releases/neuspera-medical-announces-landmark-six-month-clinical-trial-results-for-the-first-battery-free-percutaneous-sacral-neuromodulation-psnm-system-for-urgency-urinary-incontinence-management-302385607.html.

Padron O, Hanson C, McCrery R, Wachter S, et al. PD66-01 Treatment of urinary urgency incontinence (UUI) with an ultra-miniaturized sacral nerve modulation (snm) system: preliminary outcomes of the sans-uui study. J Urol. 2021;206. https://doi.org/10.1097/JU.0000000000002110.01.

Peters KM, Carrico DJ, MacDiarmid SA, Wooldridge LS, Khan AU, McCoy CE, Franco N, Bennett JB. Sustained therapeutic effects of percutaneous tibial nerve stimulation: 24-month results of the STEP study. Neurourol Urodyn. 2013;32:24–9.

Article  PubMed  Google Scholar 

Peters KM, Carrico DJ, Perez-Marrero RA, Khan AU, Wooldridge LS, Davis GL, Macdiarmid SA. Randomized trial of percutaneous tibial nerve stimulation versus Sham efficacy in the treatment of overactive bladder syndrome: results from the SUmiT trial. J Urol. 2010;183:1438–43.

Article  PubMed  Google Scholar 

Sirls LT, Schonhoff A, Waldvogel A, Peters KM. Development of an implant technique and early experience using a novel implantable pulse generator with a quadripolar electrode array at the tibial nerve for refractory overactive bladder. Neurourol Urodyn. 2023;42:427–35.

Article  CAS  PubMed  Google Scholar 

DA Heesakkers J, Sutherland S, Padron O, Amundsen C, McCrery R, et al. LBA01-05 pivotal study of a novel wirelessly powered, patient tailored programmed, tibial neurostimulator for the treatment of patients with overactive bladder. J Urol. 2023;209:e1178.

Article  Google Scholar 

Dorsthorst MJT, Digesu GA, Tailor V, Gore M, van Kerrebroeck PE, van Breda HMK, Elneil S, Heesakkers J. 3-year followup of a new implantable tibial nerve stimulator for the treatment of overactive bladder syndrome. J Urol. 2020;204:545–50.

Article  PubMed  Google Scholar 

Goudelocke C, Dhir R, Shapiro E, Cline K, Poulos DE, Hedges P. A Multicenter Prospective Sham-controlled Trial Evaluating a Physiologic Closed-loop Wearable Tibial Neuromodulation System for Overactive Bladder. Urology 2024.

Kreydin E, Zhong H, Latack K, Ye S, Edgerton VR, Gad P. Transcutaneous electrical spinal cord neuromodulator (tescon) improves symptoms of overactive bladder. Front Syst Neurosci. 2020;14:1.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Salazar BH, Hoffman KA, Lincoln JA, Karmonik C, Rajab H, Helekar SA, Khavari R. Evaluating noninvasive brain stimulation to treat overactive bladder in individuals with multiple sclerosis: a randomized controlled trial protocol. BMC Urol. 2024;24:20.

Article 

Comments (0)

No login
gif