Skip to main content
Top
Published in: Acta Neurochirurgica 7/2021

Open Access 01-07-2021 | Deep Brain Stimulation | Technical Note - Functional Neurosurgery - Other

Frameless x-ray-based lead re-implantation after partial hardware removal of deep brain stimulation system with preservation of intracerebral trajectories

Authors: Vesna Malinova, Dariusz J. Jaskólski, Rafal Wójcik, Dorothee Mielke, Veit Rohde

Published in: Acta Neurochirurgica | Issue 7/2021

Login to get access

Abstract

Background

Deep brain stimulation (DBS) is an established treatment for patients with medical refractory movement disorders with continuously increasing use also in other neurological and psychiatric diseases. Early and late complications can lead to revision surgeries with partial or complete DBS-system removal. In this study, we aimed to report on our experience with a frameless x-ray-based lead re-implantation technique after partial hardware removal or dysfunction of DBS-system, allowing the preservation of intracerebral trajectories.

Methods

We describe a surgical procedure with complete implant removal due to infection except for the intracranial part of the electrode and with non-stereotactic electrode re-implantation. A retrospective analysis of a patient series treated using this technique was performed and the surgical outcome was evaluated including radiological and clinical parameters.

Results

A total of 8 DBS-patients with lead re-implantation using the frameless x-ray-based method were enrolled in the study. A revision of 14 leads was performed, whereof a successful lead re-implantation could be achieved without any problems in 10 leads (71%). In two patients (one patient with dystonia and one patient with tremor), the procedure was not successful, so we placed both leads frame-based stereotactically.

Conclusions

The described x-ray-based technique allows a reliable frameless electrode re-implantation after infection and electrode dysfunction and might represent an efficient alternative to frame-based procedures for lead revision making the preservation of intracerebral trajectories possible.
Literature
1.
go back to reference Bjerknes S, Skogseid IM, Saehle T, Dietrichs E, Toft M (2014) Surgical site infections after deep brain stimulation surgery: frequency, characteristics and management in a 10-year period. PLoS One 9:e105288CrossRef Bjerknes S, Skogseid IM, Saehle T, Dietrichs E, Toft M (2014) Surgical site infections after deep brain stimulation surgery: frequency, characteristics and management in a 10-year period. PLoS One 9:e105288CrossRef
2.
go back to reference Blomstedt P, Bjartmarz H (2012) Intracerebral infections as a complication of deep brain stimulation. Stereotact Funct Neurosurg 90:92–96CrossRef Blomstedt P, Bjartmarz H (2012) Intracerebral infections as a complication of deep brain stimulation. Stereotact Funct Neurosurg 90:92–96CrossRef
3.
go back to reference Boviatsis EJ, Stavrinou LC, Themistocleous M, Kouyialis AT, Sakas DE (2010) Surgical and hardware complications of deep brain stimulation. A seven-year experience and review of the literature. Acta Neurochir 152:2053–2062CrossRef Boviatsis EJ, Stavrinou LC, Themistocleous M, Kouyialis AT, Sakas DE (2010) Surgical and hardware complications of deep brain stimulation. A seven-year experience and review of the literature. Acta Neurochir 152:2053–2062CrossRef
4.
go back to reference Budman E, Deeb W, Martinez-Ramirez D, Pilitsis JG, Peng-Chen Z, Okun MS, Ramirez-Zamora A (2018) Potential indications for deep brain stimulation in neurological disorders: an evolving field. Eur J Neurol 25:434–e30CrossRef Budman E, Deeb W, Martinez-Ramirez D, Pilitsis JG, Peng-Chen Z, Okun MS, Ramirez-Zamora A (2018) Potential indications for deep brain stimulation in neurological disorders: an evolving field. Eur J Neurol 25:434–e30CrossRef
5.
go back to reference Carlson JD, McLeod KE, McLeod PS, Mark JB (2017) Stereotactic accuracy and surgical utility of the O-Arm in deep brain stimulation surgery. Open Neurosurg 13:96–107 Carlson JD, McLeod KE, McLeod PS, Mark JB (2017) Stereotactic accuracy and surgical utility of the O-Arm in deep brain stimulation surgery. Open Neurosurg 13:96–107
6.
go back to reference Cheng CY, Hsing MT, Chen YH, Wu SL, Sy HN, Chen CM, Yang YJ, Lee MC (2014) Deep brain stimulation for Parkinson’s disease using frameless technology. Br J Neurosurg 28:383–386CrossRef Cheng CY, Hsing MT, Chen YH, Wu SL, Sy HN, Chen CM, Yang YJ, Lee MC (2014) Deep brain stimulation for Parkinson’s disease using frameless technology. Br J Neurosurg 28:383–386CrossRef
7.
go back to reference DiLorenzo DJ, Jankovic J, Simpson RK, Takei H, Powell SZ (2014) Neurohistopathologocal findings at the electrode-tissue interface in long-term deep brain stimulation: systematic literature review, case reports, and assessment of stimulation threshold safety. Neuromodulation 17:405–418CrossRef DiLorenzo DJ, Jankovic J, Simpson RK, Takei H, Powell SZ (2014) Neurohistopathologocal findings at the electrode-tissue interface in long-term deep brain stimulation: systematic literature review, case reports, and assessment of stimulation threshold safety. Neuromodulation 17:405–418CrossRef
8.
go back to reference Fasano A, Lozano AM (2015) Deep brain stimulation for movement disorders: 2015 and beyond. Curr Opin Neurol 28:423–436CrossRef Fasano A, Lozano AM (2015) Deep brain stimulation for movement disorders: 2015 and beyond. Curr Opin Neurol 28:423–436CrossRef
9.
go back to reference Fenoy AJ, Simpson RK (2014) Risks of common complications in deep brain stimulation surgery: management and avoidance. J Neurosurg 120:132–139CrossRef Fenoy AJ, Simpson RK (2014) Risks of common complications in deep brain stimulation surgery: management and avoidance. J Neurosurg 120:132–139CrossRef
10.
go back to reference Frizon LA, Nagel SJ, May FJ, Shao J, Maldonado-Naranjo AL, Fernandez HH, Machado AG (2018) Outcomes following deep brain stimulation lead revision or reimplantation for Parkinson’s disease. J Neurosurg 22:1–6 Frizon LA, Nagel SJ, May FJ, Shao J, Maldonado-Naranjo AL, Fernandez HH, Machado AG (2018) Outcomes following deep brain stimulation lead revision or reimplantation for Parkinson’s disease. J Neurosurg 22:1–6
11.
go back to reference Frizon LA, Shao J, Maldonado-Naranjo AL, Lobel DA, Nagel SJ, Fernandez HH, Machado AG (2018) The safety and efficacy of using the O-Arm intraoperative imaging system for deep brain stimulation lead implantation. Neuromodulation 21:588–592CrossRef Frizon LA, Shao J, Maldonado-Naranjo AL, Lobel DA, Nagel SJ, Fernandez HH, Machado AG (2018) The safety and efficacy of using the O-Arm intraoperative imaging system for deep brain stimulation lead implantation. Neuromodulation 21:588–592CrossRef
12.
go back to reference Furlanetti L, Hasegawa H, Oviedova A, Raslan A, Samuel M, Selway R, Ashkan K (2020) O-Arm stereotactic imaging in deep brain stimulation surgery workflow: a utility and cost-effectiveness analysis. Stereotact Funct Neurosurg 1:1–14 Furlanetti L, Hasegawa H, Oviedova A, Raslan A, Samuel M, Selway R, Ashkan K (2020) O-Arm stereotactic imaging in deep brain stimulation surgery workflow: a utility and cost-effectiveness analysis. Stereotact Funct Neurosurg 1:1–14
13.
go back to reference Kronenbuerger M, Nolte KW, Coenen VA, Burgunder JM, Krauss JK, Weis J (2015) Brain alterations with deep brain stimulation: new insight from a neuropathological case series. Mov Disord 30:1125–1130CrossRef Kronenbuerger M, Nolte KW, Coenen VA, Burgunder JM, Krauss JK, Weis J (2015) Brain alterations with deep brain stimulation: new insight from a neuropathological case series. Mov Disord 30:1125–1130CrossRef
14.
go back to reference Lalys F, Haegelen C, D’Albis T, Jannin P (2014) Analysis of electrode deformations in deep brain stimulation surgery. Int J Comput Assist Radiol Surg 9:107–117CrossRef Lalys F, Haegelen C, D’Albis T, Jannin P (2014) Analysis of electrode deformations in deep brain stimulation surgery. Int J Comput Assist Radiol Surg 9:107–117CrossRef
15.
go back to reference Li MCH, Cook MJ (2017) Deep brain stimulation for drug-resistant epilepsy. Epilepsia 59:273–290CrossRef Li MCH, Cook MJ (2017) Deep brain stimulation for drug-resistant epilepsy. Epilepsia 59:273–290CrossRef
16.
go back to reference Morishita T, Hilliard JD, Okun MS, Neal D, Nestor KA, Peace D, Hozouri AA, Davidson MR, Bova FJ, Sporrer JM, Oyama G, Foote KD (2017) Postoperative lead migration in deep brain stimulation surgery: incidence, risk factors, and clinical impact. PLoS One 12:e0183711CrossRef Morishita T, Hilliard JD, Okun MS, Neal D, Nestor KA, Peace D, Hozouri AA, Davidson MR, Bova FJ, Sporrer JM, Oyama G, Foote KD (2017) Postoperative lead migration in deep brain stimulation surgery: incidence, risk factors, and clinical impact. PLoS One 12:e0183711CrossRef
17.
go back to reference Okun MS (2012) Deep brain stimulation for Parkinson’s Disease. N Engl J Med 367:1529–1538CrossRef Okun MS (2012) Deep brain stimulation for Parkinson’s Disease. N Engl J Med 367:1529–1538CrossRef
18.
go back to reference Piacentino M, Pilleri M, Bartolomei L (2011) Hardware-related infections after deep brain stimulation surgery: review of incidence, severity and management in 212 single-center procedures in the first year after implantation. Acta Neurochir 153:2337–2341CrossRef Piacentino M, Pilleri M, Bartolomei L (2011) Hardware-related infections after deep brain stimulation surgery: review of incidence, severity and management in 212 single-center procedures in the first year after implantation. Acta Neurochir 153:2337–2341CrossRef
19.
go back to reference Roth A, Buttrick SS, Cajigas I, Jagid JR, Ivan ME (2018) Accuracy of frame-based and frameless systems for deep brain stimulation: a meta-analysis. J Clin Neurosci 57:1–5CrossRef Roth A, Buttrick SS, Cajigas I, Jagid JR, Ivan ME (2018) Accuracy of frame-based and frameless systems for deep brain stimulation: a meta-analysis. J Clin Neurosci 57:1–5CrossRef
20.
go back to reference Sillay KA, Larson PS, Starr PA (2008) Deep brain stimulator hardware-related infections: incidence and management in a large series. Neurosurgery 62:360–366CrossRef Sillay KA, Larson PS, Starr PA (2008) Deep brain stimulator hardware-related infections: incidence and management in a large series. Neurosurgery 62:360–366CrossRef
21.
go back to reference Smith AP, Bakay RAE (2011) Frameless deep brain stimulation using intraoperative O-arm technology. J Neurosurg 115:301–309CrossRef Smith AP, Bakay RAE (2011) Frameless deep brain stimulation using intraoperative O-arm technology. J Neurosurg 115:301–309CrossRef
22.
go back to reference Vedam-Mai V, Rodgers C, Gureck A, Vincent M, Ippolito G, Elkouzi A, Yachnis AT, Foote KD, Okun MS (2018) Deep brain stimulation associated gliosis: a post-mortem study. Parkinsonism Relat Disord 54:51–55CrossRef Vedam-Mai V, Rodgers C, Gureck A, Vincent M, Ippolito G, Elkouzi A, Yachnis AT, Foote KD, Okun MS (2018) Deep brain stimulation associated gliosis: a post-mortem study. Parkinsonism Relat Disord 54:51–55CrossRef
23.
go back to reference Voges J, Waerzeggers Y, Maarouf M, Lehrke R, Koulousakis A, Lenartz D, Sturm V (2006) Deep-brain stimulation: long-term analysis of complications caused by hardware and surgery-experiences from a single centre. J Neurol Neurosurg Psychaitry 77:868–872CrossRef Voges J, Waerzeggers Y, Maarouf M, Lehrke R, Koulousakis A, Lenartz D, Sturm V (2006) Deep-brain stimulation: long-term analysis of complications caused by hardware and surgery-experiences from a single centre. J Neurol Neurosurg Psychaitry 77:868–872CrossRef
24.
go back to reference Volkmann J (2004) Deep brain stimulation for the treatment of Parkinson’s disease. J Clin Neurophysiol 21:6–17CrossRef Volkmann J (2004) Deep brain stimulation for the treatment of Parkinson’s disease. J Clin Neurophysiol 21:6–17CrossRef
25.
go back to reference Zangiabadi N, Ladino LD, Sina F, Orozco-Hernandez JP, Carter A, Tellez-Zenteno JF (2019) Deep brain stimulation and drug-resistant epilepsy: a review of the literature. Front Neurol 10:601CrossRef Zangiabadi N, Ladino LD, Sina F, Orozco-Hernandez JP, Carter A, Tellez-Zenteno JF (2019) Deep brain stimulation and drug-resistant epilepsy: a review of the literature. Front Neurol 10:601CrossRef
Metadata
Title
Frameless x-ray-based lead re-implantation after partial hardware removal of deep brain stimulation system with preservation of intracerebral trajectories
Authors
Vesna Malinova
Dariusz J. Jaskólski
Rafal Wójcik
Dorothee Mielke
Veit Rohde
Publication date
01-07-2021
Publisher
Springer Vienna
Published in
Acta Neurochirurgica / Issue 7/2021
Print ISSN: 0001-6268
Electronic ISSN: 0942-0940
DOI
https://doi.org/10.1007/s00701-021-04807-1

Other articles of this Issue 7/2021

Acta Neurochirurgica 7/2021 Go to the issue