| Literature DB >> 27199677 |
Abstract
Deep brain stimulation (DBS) is believed to exert its therapeutic effects through modulation of brain circuitry, yet conventional preoperative planning does not allow direct targeting or visualization of white matter pathways. Diffusion MRI tractography (DT) is virtually the only non-invasive method of visualizing structural connectivity in the brain, leading many to suggest its use to guide DBS targeting. DT-guided DBS not only has the potential to allow direct white matter targeting for established applications [e.g., Parkinson's disease (PD), essential tremor (ET), dystonia], but may also aid in the discovery of new therapeutic targets for a variety of other neurologic and psychiatric diseases. Despite these exciting opportunities, DT lacks standardization and rigorous anatomic validation, raising significant concern for the use of such data in stereotactic brain surgery. This review covers the technical details, proposed methods, and initial clinical data for the use of DT in DBS surgery. Rather than focusing on specific disease applications, this review focuses on methods that can be applied to virtually any DBS target.Entities:
Keywords: deep brain stimulation; diffusion tensor imaging; diffusion tractography; magnetic resonance imaging; neuroanatomy; tractography
Year: 2016 PMID: 27199677 PMCID: PMC4852260 DOI: 10.3389/fnana.2016.00045
Source DB: PubMed Journal: Front Neuroanat ISSN: 1662-5129 Impact factor: 3.856
Figure 1Adapted from Calabrese et al. ( Directionally colored diffusion MRI tractography (DT) of the dentatorubrothalamic tract (DRT), which connects the dentate nucleus of the cerebellum, red nucleus, ventral intermediate thalamus, and motor cortex. Note the absence of a midline crossing in the midbrain, which is a limitation of the diffusion tensor imaging (DTI) technique. (B) Tract proximity analysis (TPA). Distances between the DRT (blue) and the deep brain stimulation (DBS) electrode (red) are compared with treatment outcomes. (C) Tract activation modeling. Fiber tracts (yellow) are generated from a region of interest surrounding the DBS contacts (red). (D) Direct tract targeting (DTT). The DT model of the DRT (red) is used for preoperative DBS electrode targeting.
List of abbreviations used in this review.
| Abbreviation | Definition |
|---|---|
| CSD | Constrained spherical deconvolution |
| DBS | Deep brain stimulation |
| DRT | Dentatorubrothalamic tract |
| DSI | Diffusion spectrum imaging |
| DT | Diffusion tractography |
| DTI | Diffusion tensor imaging |
| DTT | Direct tract targeting |
| ET | Essential tremor |
| HARDI | High angular resolution diffusion imaging |
| MRI | Magnetic resonance imaging |
| PD | Parkinson’s disease |
| SNR | Signal-to-noise ratio |
| TPA | Tract proximity analysis |
| TSM | Tract stimulation modeling |
List of articles on DT/DBS discussed in this review.
| Reference | Title | Patients | Disease |
|---|---|---|---|
| Anthofer et al. ( | DTI-based deterministic fiber tracking of the medial forebrain bundle | 10 | ET |
| Anthofer et al. ( | The variability of atlas-based targets in relation to surrounding major fiber tracts in thalamic deep brain stimulation | 11 | Depression |
| Barkhoudarian et al. ( | A role of diffusion tensor imaging in movement disorder surgery | 3 | PD, ET, Dystonia |
| Bhatia et al. ( | Diffusion tensor imaging to Aid subgenual cingulum target selection for deep brain stimulation in depression | 59 | Depression |
| Butson et al. ( | Predicting the effects of deep brain stimulation with diffusion tensor based electric field models | 1 | PD |
| Butson et al. ( | Patient-specific analysis of the volume of tissue activated during deep brain stimulation | 1 | PD |
| Calabrese et al. ( | Postmortem diffusion MRI of the human brainstem and thalamus for deep brain stimulator electrode localization | 1 | ET |
| Choi et al. ( | Mapping the “Depression switch” during intraoperative testing of subcallosal cingulate deep brain stimulation | 9 | Depression |
| Clelland et al. ( | Common cerebral networks associated with distinct deep brain stimulation targets for cluster headache | 7 | Cluster headace |
| Coenen et al. ( | Medial forebrain bundle stimulation as a pathophysiological mechanism for hypomania in subthalamic nucleus deep brain stimulation for Parkinson’s disease | 6 | PD |
| Coenen et al. ( | A role of diffusion tensor imaging fiber tracking in deep brain stimulation surgery: DBS of the dentato-rubro-thalamic tract (drt) for the treatment of therapy-refractory tremor | 1 | Dystonia |
| Coenen et al. ( | Individual fiber anatomy of the subthalamic region revealed with DTI—A concept to identify the DBS target for tremor suppression | 1 | PD |
| Coenen et al. ( | Diffusion tensor imaging and neuromodulation: DTI as key technology for deep brain stimulation | N/A | N/A |
| Coenen et al. ( | Modulation of the cerebello-thalamo-cortical network in thalamic deep brain stimulation for tremor | 11 | PD, ET, Dystonia |
| Copeland et al. ( | Deep brain stimulation of the internal globus pallidus for generalized dystonia associated with spinocerebellar ataxia type 1: a case report | 1 | Dystonia |
| Henderson ( | “Connectomic surgery”: diffusion tensor imaging (DTI) tractography as a targeting modality for surgical modulation of neural networks | N/A | N/A |
| Hunsche et al. ( | Tractography-guided stimulation of somatosensory fibers for thalamic pain relief | 4 | Chronic pain |
| Johansen-Berg et al. ( | Anatomical connectivity of the subgenual cingulate region targeted with deep brain stimulation for treatment-resistant depression | 9 | Depression |
| Klein et al. ( | The tremor network targeted by successful VIM deep brain stimulation in humans | 12 | PD |
| Kovanlikaya et al. ( | Treatment of chronic pain: diffusion tensor imaging identification of the ventroposterolateral nucleus confirmed with successful deep brain stimulation | 1 | Chronic pain |
| Lujan et al. ( | Axonal pathways linked to therapeutic and nontherapeutic outcomes during psychiatric deep brain stimulation | 7 | Depression |
| Lujan et al. ( | Tractography-activation models applied to subcallosal cingulate deep brain stimulation | 1 | Depression |
| McIntyre et al. ( | Uncovering the mechanism(s) of action of deep brain stimulation: activation, inhibition, or both | N/A | N/A |
| McNab et al. ( | Reduced limbic connections may contraindicate subgenual cingulate deep brain stimulation for intractable depression | 1 | Depression |
| Owen et al. ( | Preoperative DTI and probabilistic tractography in an amputee with deep brain stimulation for lower limb stump pain | 1 | Chronic pain |
| Owen et al. ( | Pre-operative DTI and probabilisitic tractography in four patients with deep brain stimulation for chronic pain | 4 | Chronic pain |
| Pouratian et al. ( | Multi-institutional evaluation of deep brain stimulation targeting using probabilistic connectivity-based thalamic segmentation | 10 | ET |
| Riva-Posse et al. ( | Defining critical white matter pathways mediating successful subcallosal cingulate deep brain stimulation for treatment-resistant depression | 16 | Depression |
| Rozanski et al. ( | Connectivity patterns of pallidal DBS electrodes in focal dystonia: a diffusion tensor tractography study | 8 | Dystonia |
| Said et al. ( | Correlation of diffusion tensor tractography and intraoperative macrostimulation during deep brain stimulation for Parkinson disease | 17 | PD |
| Schlaepfer et al. ( | Rapid effects of deep brain stimulation for treatment-resistant major depression | 7 | Depression |
| Schweder et al. ( | Chronic pedunculopontine nucleus stimulation restores functional connectivity | 1 | PD |
| Sedrak et al. ( | The role of modern imaging modalities on deep brain stimulation targeting for mental illness | 15 | PD, ET, Dystonia |
| Sudhyadhom et al. ( | Delineation of motor and somatosensory thalamic subregions utilizing probabilistic diffusion tractography and electrophysiology | 5 | ET |
| Sweet et al. ( | Fiber tractography of the axonal pathways linking the basal ganglia and cerebellum in Parkinson disease: implications for targeting in deep brain stimulation | 14 | PD |
| Torres et al. ( | Integrating diffusion tensor imaging-based tractography into deep brain stimulation surgery: a review of the literature | N/A | N/A |