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Published in: Brain Structure and Function 1/2017

01-01-2017 | Original Article

Anatomic characterization of prelemniscal radiations by probabilistic tractography: implications in Parkinson’s disease

Authors: María Guadalupe García-Gomar, Julian Soto-Abraham, Francisco Velasco-Campos, Luis Concha

Published in: Brain Structure and Function | Issue 1/2017

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Abstract

To characterize the anatomical connectivity of the prelemniscal radiations (Raprl), a white matter region within the posterior subthalamic area (PSA) that is an effective neurosurgical target for treating motor symptoms of Parkinson’s disease (PD). Diffusion-weighted images were acquired from twelve healthy subjects using a 3T scanner. Constrained spherical deconvolution, a method that allows the distinction of crossing fibers within a voxel, was used to compute track-density images with sufficient resolution to accurately delineate distinct PSA regions and probabilistic tractography of Raprl in both hemispheres. Raprl connectivity was reproducible across all subjects and showed fibers traversing through this region towards primary and supplementary motor cortices, the orbitofrontal cortex, ventrolateral thalamus, and the globus pallidus, cerebellum and dorsal brainstem. All brain regions reached by Raprl fibers are part of motor circuits involved in the pathophysiology of PD; while these fiber systems converge at the level of the PSA, they can be spatially segregated. Fibers of distinct and specific motor control networks are identified within Raprl. The description of this anatomical crossroad suggests that, in the future, tractography could allow deep brain stimulation or lesional therapies in white matter targets according to individual patient’s symptoms.
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Footnotes
1
Care must be taken when studying the available literature, as there are historical discrepancies between studies on the nomenclature of DBS and lesions of the subthalamic and posterior subthalamic areas, and on occasions there is insufficient data to prove that DBS is targeting either region exclusively.
 
Literature
go back to reference Andy OJ, Jurko MF (1965) Alteration in Parkinso tremor during electrode insertion. Confin Neurol 26:378–381PubMed Andy OJ, Jurko MF (1965) Alteration in Parkinso tremor during electrode insertion. Confin Neurol 26:378–381PubMed
go back to reference Andy OJ, Jurko MF, Sias FR (1963) Subthalamotomy in treatment of Parkinsonian tremor. J Neurosurg 20:260–270CrossRef Andy OJ, Jurko MF, Sias FR (1963) Subthalamotomy in treatment of Parkinsonian tremor. J Neurosurg 20:260–270CrossRef
go back to reference Basser PJ, Pierpaoli C (1996) Microstructural and physiological features of tissues elucidated by quantitative-diffusion-tensor MRI. J Magn Reson B 111:209–219CrossRefPubMed Basser PJ, Pierpaoli C (1996) Microstructural and physiological features of tissues elucidated by quantitative-diffusion-tensor MRI. J Magn Reson B 111:209–219CrossRefPubMed
go back to reference Behrens TEJ, Woolrich MW, Jenkinson M, Johansen-Berg H, Nunes RG, Clare S, Matthews PM, Brady JM, Smith SM (2003) Characterization and propagation of uncertainty in diffusion-weighted MR imaging. Magn Reson Med 50:1077–1088. doi:10.1002/mrm.10609 CrossRefPubMed Behrens TEJ, Woolrich MW, Jenkinson M, Johansen-Berg H, Nunes RG, Clare S, Matthews PM, Brady JM, Smith SM (2003) Characterization and propagation of uncertainty in diffusion-weighted MR imaging. Magn Reson Med 50:1077–1088. doi:10.​1002/​mrm.​10609 CrossRefPubMed
go back to reference Benabid AL, Pollak P, Gervason C, Hoffmann D, Gao DM, Hommel M, Perret JE, de Rougemont J (1991) Long-term suppression of tremor by chronic stimulation of the ventral intermediate thalamic nucleus. Lancet 337:403–406CrossRefPubMed Benabid AL, Pollak P, Gervason C, Hoffmann D, Gao DM, Hommel M, Perret JE, de Rougemont J (1991) Long-term suppression of tremor by chronic stimulation of the ventral intermediate thalamic nucleus. Lancet 337:403–406CrossRefPubMed
go back to reference Bertrand C, Hardy J, Molina-Negro P, Martínez N (1969) Optimum physiological target for the arrest of tremor. In: Third Symposium on Parkinson’s Disease Edinb Livingstone ES 251–259 Bertrand C, Hardy J, Molina-Negro P, Martínez N (1969) Optimum physiological target for the arrest of tremor. In: Third Symposium on Parkinson’s Disease Edinb Livingstone ES 251–259
go back to reference Blomstedt P, Sandvik U, Linder J, Fredricks A, Forsgren L, Hariz MI (2011) Deep brain stimulation of the subthalamic nucleus versus the zona incerta in the treatment of essential tremor. Acta Neurochir (Wien) 153:2329–2335. doi:10.1007/s00701-011-1157-4 CrossRef Blomstedt P, Sandvik U, Linder J, Fredricks A, Forsgren L, Hariz MI (2011) Deep brain stimulation of the subthalamic nucleus versus the zona incerta in the treatment of essential tremor. Acta Neurochir (Wien) 153:2329–2335. doi:10.​1007/​s00701-011-1157-4 CrossRef
go back to reference Carrillo-Ruiz JD, Velasco F, Jimènez F, Castro G, Velasco AL, Hernández JA, Ceballos J, Velasco M (2008) Bilateral electrical stimulation of prelemniscal radiations in the treatment of advanced Parkinson’s disease. Neurosurgery 62:347–357. doi:10.1227/01.neu.0000316001.03765.e8 (discussion 357–359) CrossRefPubMed Carrillo-Ruiz JD, Velasco F, Jimènez F, Castro G, Velasco AL, Hernández JA, Ceballos J, Velasco M (2008) Bilateral electrical stimulation of prelemniscal radiations in the treatment of advanced Parkinson’s disease. Neurosurgery 62:347–357. doi:10.​1227/​01.​neu.​0000316001.​03765.​e8 (discussion 357–359) CrossRefPubMed
go back to reference Castro G, Carrillo-Ruiz JD, Salcido V, Soto J, García-Gomar MG, Velasco AL, Velasco F (2015) Optimizing prelemniscal radiations as a target for motor symptoms in Parkinson’s disease treatment. Stereotact Funct Neurosurg 93:282–291CrossRefPubMed Castro G, Carrillo-Ruiz JD, Salcido V, Soto J, García-Gomar MG, Velasco AL, Velasco F (2015) Optimizing prelemniscal radiations as a target for motor symptoms in Parkinson’s disease treatment. Stereotact Funct Neurosurg 93:282–291CrossRefPubMed
go back to reference Coenen VA, Allert N, Mädler B (2011a) 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. Acta Neurochir (Wien) 153:1579–1585. doi:10.1007/s00701-011-1036-z (discussion 1585) CrossRef Coenen VA, Allert N, Mädler B (2011a) 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. Acta Neurochir (Wien) 153:1579–1585. doi:10.​1007/​s00701-011-1036-z (discussion 1585) CrossRef
go back to reference Coenen VA, Mädler B, Schiffbauer H, Urbach H, Allert N (2011b) Individual fiber anatomy of the subthalamic region revealed with diffusion tensor imaging: a concept to identify the deep brain stimulation target for tremor suppression. Neurosurgery 68:1069–1075. doi:10.1227/NEU.0b013e31820a1a20 (discussion 1075–1076) PubMed Coenen VA, Mädler B, Schiffbauer H, Urbach H, Allert N (2011b) Individual fiber anatomy of the subthalamic region revealed with diffusion tensor imaging: a concept to identify the deep brain stimulation target for tremor suppression. Neurosurgery 68:1069–1075. doi:10.​1227/​NEU.​0b013e31820a1a20​ (discussion 1075–1076) PubMed
go back to reference Coenen VA, Allert N, Paus S, Kronenbürger M, Urbach H, Mädler B (2014) Modulation of the cerebello-thalamo-cortical network in thalamic deep brain stimulation for tremor: a diffusion tensor imaging study. Neurosurgery 75:657–669. doi:10.1227/NEU.0000000000000540 (discussion 669–670) CrossRefPubMed Coenen VA, Allert N, Paus S, Kronenbürger M, Urbach H, Mädler B (2014) Modulation of the cerebello-thalamo-cortical network in thalamic deep brain stimulation for tremor: a diffusion tensor imaging study. Neurosurgery 75:657–669. doi:10.​1227/​NEU.​0000000000000540​ (discussion 669–670) CrossRefPubMed
go back to reference Derogatis LR, Rickels K, Rock AF (1976) The SCL-90 and the MMPI: a step in the validation of a new self-report scale. Br J Psychiatry J Ment Sci 128:280–289CrossRef Derogatis LR, Rickels K, Rock AF (1976) The SCL-90 and the MMPI: a step in the validation of a new self-report scale. Br J Psychiatry J Ment Sci 128:280–289CrossRef
go back to reference Dirnberger G, Jahanshahi M (2013) Executive dysfunction in Parkinson’s disease: a review. J Neuropsychol 7:193–224CrossRefPubMed Dirnberger G, Jahanshahi M (2013) Executive dysfunction in Parkinson’s disease: a review. J Neuropsychol 7:193–224CrossRefPubMed
go back to reference Fukuda M, Mentis MJ, Ma Y, Dhawan V, Antonini A, Lang AE, Lozano AM, Hammerstad J, Lyons K, Koller WC, Moeller JR, Eidelberg D (2001) Networks mediating the clinical effects of pallidal brain stimulation for Parkinson’s disease: a PET study of resting-state glucose metabolism. Brain 124:1601–1609CrossRefPubMed Fukuda M, Mentis MJ, Ma Y, Dhawan V, Antonini A, Lang AE, Lozano AM, Hammerstad J, Lyons K, Koller WC, Moeller JR, Eidelberg D (2001) Networks mediating the clinical effects of pallidal brain stimulation for Parkinson’s disease: a PET study of resting-state glucose metabolism. Brain 124:1601–1609CrossRefPubMed
go back to reference García-Gomar MG, Concha L, Alcauter S, Soto Abraham J, Carrillo-Ruiz JD, Castro Farfan G, Velasco CF (2013) Probabilistic tractography of the posterior subthalamic area in Parkinson´s disease patients. J Biomed Sci Eng 6:381–390. doi:10.4236/jbise.2013.63A048 CrossRef García-Gomar MG, Concha L, Alcauter S, Soto Abraham J, Carrillo-Ruiz JD, Castro Farfan G, Velasco CF (2013) Probabilistic tractography of the posterior subthalamic area in Parkinson´s disease patients. J Biomed Sci Eng 6:381–390. doi:10.​4236/​jbise.​2013.​63A048 CrossRef
go back to reference Hamel W, Fietzek U, Morsnowski A, Schrader B, Herzog J, Weinert D, Pfister G, Müller D, Volkmann J, Deuschl G, Mehdorn HM (2003) Deep brain stimulation of the subthalamic nucleus in Parkinson’s disease: evaluation of active electrode contacts. J Neurol Neurosurg Psychiatry 74:1036–1046CrossRefPubMedPubMedCentral Hamel W, Fietzek U, Morsnowski A, Schrader B, Herzog J, Weinert D, Pfister G, Müller D, Volkmann J, Deuschl G, Mehdorn HM (2003) Deep brain stimulation of the subthalamic nucleus in Parkinson’s disease: evaluation of active electrode contacts. J Neurol Neurosurg Psychiatry 74:1036–1046CrossRefPubMedPubMedCentral
go back to reference Hamel W, Herzog J, Kopper F, Pinsker M, Weinert D, Müller D, Krack P, Deuschl G, Mehdorn HM (2007) Deep brain stimulation in the subthalamic area is more effective than nucleus ventralis intermedius stimulation for bilateral intention tremor. Acta Neurochir. (Wien) 149:749–758. doi:10.1007/s00701-007-1230-1 (discussion 758) CrossRef Hamel W, Herzog J, Kopper F, Pinsker M, Weinert D, Müller D, Krack P, Deuschl G, Mehdorn HM (2007) Deep brain stimulation in the subthalamic area is more effective than nucleus ventralis intermedius stimulation for bilateral intention tremor. Acta Neurochir. (Wien) 149:749–758. doi:10.​1007/​s00701-007-1230-1 (discussion 758) CrossRef
go back to reference Herzog J, Fietzek U, Hamel W, Morsnowski A, Steigerwald F, Schrader B, Weinert D, Pfister G, Müller D, Mehdorn HM, Deuschl G, Volkmann J (2004) Most effective stimulation site in subthalamic deep brain stimulation for Parkinson’s disease. Mov Disord 19:1050–1054. doi:10.1002/mds.20056 CrossRefPubMed Herzog J, Fietzek U, Hamel W, Morsnowski A, Steigerwald F, Schrader B, Weinert D, Pfister G, Müller D, Mehdorn HM, Deuschl G, Volkmann J (2004) Most effective stimulation site in subthalamic deep brain stimulation for Parkinson’s disease. Mov Disord 19:1050–1054. doi:10.​1002/​mds.​20056 CrossRefPubMed
go back to reference Herzog J, Hamel W, Wenzelburger R, Pötter M, Pinsker MO, Bartussek J, Morsnowski A, Steigerwald F, Deuschl G, Volkmann J (2007) Kinematic analysis of thalamic versus subthalamic neurostimulation in postural and intention tremor. Brain 130:1608–1625. doi:10.1093/brain/awm077 CrossRefPubMed Herzog J, Hamel W, Wenzelburger R, Pötter M, Pinsker MO, Bartussek J, Morsnowski A, Steigerwald F, Deuschl G, Volkmann J (2007) Kinematic analysis of thalamic versus subthalamic neurostimulation in postural and intention tremor. Brain 130:1608–1625. doi:10.​1093/​brain/​awm077 CrossRefPubMed
go back to reference Ito Z (1975) Stimulation and destruction of the prelemniscal radiation or its adjacent area in various extrapyramidal disorders. Confin Neurol 37:41–48CrossRefPubMed Ito Z (1975) Stimulation and destruction of the prelemniscal radiation or its adjacent area in various extrapyramidal disorders. Confin Neurol 37:41–48CrossRefPubMed
go back to reference Jeurissen B, Leemans A, Tournier J-D, Jones DK, Sijbers J (2013) Investigating the prevalence of complex fiber configurations in white matter tissue with diffusion magnetic resonance imaging. Hum Brain Map 34:2747–2766. doi:10.1002/hbm.22099 CrossRef Jeurissen B, Leemans A, Tournier J-D, Jones DK, Sijbers J (2013) Investigating the prevalence of complex fiber configurations in white matter tissue with diffusion magnetic resonance imaging. Hum Brain Map 34:2747–2766. doi:10.​1002/​hbm.​22099 CrossRef
go back to reference Jiménez F, Velasco F, Velasco M, Brito F, Morel C, Márquez I, Pérez ML (2000) Subthalamic prelemniscal radiation stimulation for the treatment of Parkinson’s disease: electrophysiological characterization of the area. Arch Med Res 31:270–281CrossRefPubMed Jiménez F, Velasco F, Velasco M, Brito F, Morel C, Márquez I, Pérez ML (2000) Subthalamic prelemniscal radiation stimulation for the treatment of Parkinson’s disease: electrophysiological characterization of the area. Arch Med Res 31:270–281CrossRefPubMed
go back to reference Jiménez F, Velasco F, Carrillo-Ruiz JD, García L, Madrigal A, Velasco AL, Márquez I (2006) Comparative evaluation of the effects of unilateral lesion versus electrical stimulation of the globus pallidus internus in advanced Parkinson’s disease. Stereotact Funct Neurosurg 84:64–71. doi:10.1159/000094034 CrossRefPubMed Jiménez F, Velasco F, Carrillo-Ruiz JD, García L, Madrigal A, Velasco AL, Márquez I (2006) Comparative evaluation of the effects of unilateral lesion versus electrical stimulation of the globus pallidus internus in advanced Parkinson’s disease. Stereotact Funct Neurosurg 84:64–71. doi:10.​1159/​000094034 CrossRefPubMed
go back to reference Karimi M, Golchin N, Tabbal SD, Hershey T, Videen TO, Wu J, Usche JWM, Revilla FJ, Hartlein JM, Wernle AR, Mink JW, Perlmutter JS (2008) Subthalamic nucleus stimulation-induced regional blood flow responses correlate with improvement of motor signs in Parkinson disease. Brain 131:2710–2719. doi:10.1093/brain/awn179 CrossRefPubMedPubMedCentral Karimi M, Golchin N, Tabbal SD, Hershey T, Videen TO, Wu J, Usche JWM, Revilla FJ, Hartlein JM, Wernle AR, Mink JW, Perlmutter JS (2008) Subthalamic nucleus stimulation-induced regional blood flow responses correlate with improvement of motor signs in Parkinson disease. Brain 131:2710–2719. doi:10.​1093/​brain/​awn179 CrossRefPubMedPubMedCentral
go back to reference Kitagawa M, Murata J, Uesugi H, Kikuchi S, Saito H, Tashiro K, Sawamura Y (2005) Two-year follow-up of chronic stimulation of the posterior subthalamic white matter for tremor-dominant Parkinson’s disease. Neurosurgery 56:281–289 (discussion 281–289) CrossRefPubMed Kitagawa M, Murata J, Uesugi H, Kikuchi S, Saito H, Tashiro K, Sawamura Y (2005) Two-year follow-up of chronic stimulation of the posterior subthalamic white matter for tremor-dominant Parkinson’s disease. Neurosurgery 56:281–289 (discussion 281–289) CrossRefPubMed
go back to reference Kitajima M, Korogi Y, Kakeda S, Moriya J, Ohnari N, Sato T, Hayashida Y, Hirai T, Okuda T, Yamashita Y (2008) Human subthalamic nucleus: evaluation with high-resolution MR imaging at 3.0 T. Neuroradiology 50:675–681. doi:10.1007/s00234-008-0388-4 CrossRefPubMed Kitajima M, Korogi Y, Kakeda S, Moriya J, Ohnari N, Sato T, Hayashida Y, Hirai T, Okuda T, Yamashita Y (2008) Human subthalamic nucleus: evaluation with high-resolution MR imaging at 3.0 T. Neuroradiology 50:675–681. doi:10.​1007/​s00234-008-0388-4 CrossRefPubMed
go back to reference Lindsley DF, Ranf SK, Barton RJ (1972) Corticofugal influences on reticular formation evoked activity in cats. Exp Neurol 34:511–521CrossRefPubMed Lindsley DF, Ranf SK, Barton RJ (1972) Corticofugal influences on reticular formation evoked activity in cats. Exp Neurol 34:511–521CrossRefPubMed
go back to reference Massey LA, Miranda MA, Zrinzo L, Al-Helli O, Parkes HG, Thornton JS, So P-W, White MJ, Mancini L, Strand C, Holton JL, Hariz MI, Lees AJ, Revesz T, Yousry TA (2012) High resolution MR anatomy of the subthalamic nucleus: imaging at 9.4 T with histological validation. NeuroImage 59:2035–2044. doi:10.1016/j.neuroimage.2011.10.016 CrossRefPubMed Massey LA, Miranda MA, Zrinzo L, Al-Helli O, Parkes HG, Thornton JS, So P-W, White MJ, Mancini L, Strand C, Holton JL, Hariz MI, Lees AJ, Revesz T, Yousry TA (2012) High resolution MR anatomy of the subthalamic nucleus: imaging at 9.4 T with histological validation. NeuroImage 59:2035–2044. doi:10.​1016/​j.​neuroimage.​2011.​10.​016 CrossRefPubMed
go back to reference Milardi D, Gaeta M, Marino S, Arrigo A, Vaccarino G, Mormina E, Rizzo G, Milazzo C, Finocchio G, Baglieri A, Anastasi G, Quartarone A (2014) Basal ganglia network by constrained spherical deconvolution: a possible cortico-pallidal pathway?. Disord Off J Mov Disord Soc, Mov. doi:10.1002/mds.25995 Milardi D, Gaeta M, Marino S, Arrigo A, Vaccarino G, Mormina E, Rizzo G, Milazzo C, Finocchio G, Baglieri A, Anastasi G, Quartarone A (2014) Basal ganglia network by constrained spherical deconvolution: a possible cortico-pallidal pathway?. Disord Off J Mov Disord Soc, Mov. doi:10.​1002/​mds.​25995
go back to reference Mundinger F (1965) Stereotactic interventions on the zona incerta for treatment of extrapyramidal motor disturbances. Confin Neurol 26:222–230PubMed Mundinger F (1965) Stereotactic interventions on the zona incerta for treatment of extrapyramidal motor disturbances. Confin Neurol 26:222–230PubMed
go back to reference Oldfield RC (1971) The assessment and analysis of handedness: the Edinburgh inventory. Neuropsychologia 9:97–113CrossRefPubMed Oldfield RC (1971) The assessment and analysis of handedness: the Edinburgh inventory. Neuropsychologia 9:97–113CrossRefPubMed
go back to reference Pelzer EA, Hintzen A, Goldau M, von Cramon DY, Timmermann L, Tittgemeyer M (2013) Cerebellar networks with basal ganglia: feasibility for tracking cerebello-pallidal and subthalamo-cerebellar projections in the human brain. Eur J Neurosci 38:3106–3114. doi:10.1111/ejn.12314 CrossRefPubMed Pelzer EA, Hintzen A, Goldau M, von Cramon DY, Timmermann L, Tittgemeyer M (2013) Cerebellar networks with basal ganglia: feasibility for tracking cerebello-pallidal and subthalamo-cerebellar projections in the human brain. Eur J Neurosci 38:3106–3114. doi:10.​1111/​ejn.​12314 CrossRefPubMed
go back to reference Riva-Posse P, Choi KS, Holtzheimer PE, McIntyre CC, Gross RE, Chaturvedi A, Crowell AL, Garlow SJ, Rajendra JK, Mayberg HS (2014) Defining critical white matter pathways mediating successful subcallosal cingulate deep brain stimulation for treatment-resistant depression. Biol Psychiatry 76:963–969. doi:10.1016/j.biopsych.2014.03.029 CrossRefPubMedPubMedCentral Riva-Posse P, Choi KS, Holtzheimer PE, McIntyre CC, Gross RE, Chaturvedi A, Crowell AL, Garlow SJ, Rajendra JK, Mayberg HS (2014) Defining critical white matter pathways mediating successful subcallosal cingulate deep brain stimulation for treatment-resistant depression. Biol Psychiatry 76:963–969. doi:10.​1016/​j.​biopsych.​2014.​03.​029 CrossRefPubMedPubMedCentral
go back to reference Schaltenbrand G, Wahren W (1977) Atlas for stereotaxy of the human brain, 2nd edn. Stuttgart, Thieme Schaltenbrand G, Wahren W (1977) Atlas for stereotaxy of the human brain, 2nd edn. Stuttgart, Thieme
go back to reference Skinner JE, Lindsley DB (1973) The non-specific mediothalamic-frontocortical sys- tem: its influence in electrocortical activity and behavior. In: Pribram KH, Luria AR (eds) Psychophysiology of frontal lobes. Academic Press, New York, pp 185–236CrossRef Skinner JE, Lindsley DB (1973) The non-specific mediothalamic-frontocortical sys- tem: its influence in electrocortical activity and behavior. In: Pribram KH, Luria AR (eds) Psychophysiology of frontal lobes. Academic Press, New York, pp 185–236CrossRef
go back to reference Spiegel EA, Wycis HT, Szekely EG, Baird HW, Adams J, Flanagan M (1962) Campotomy. Trans Am Neurol Assoc 87:240–242PubMed Spiegel EA, Wycis HT, Szekely EG, Baird HW, Adams J, Flanagan M (1962) Campotomy. Trans Am Neurol Assoc 87:240–242PubMed
go back to reference Velasco F, Velasco M (1979) A reticulothalamic system mediating proprioceptive attention and tremor in man. Neurosurgery 4:30–36CrossRefPubMed Velasco F, Velasco M (1979) A reticulothalamic system mediating proprioceptive attention and tremor in man. Neurosurgery 4:30–36CrossRefPubMed
go back to reference Velasco M, Velasco F, Maldonado H, Machado JP (1975) Differential effect of thalamic and subthalamic lesions on early and late components of the somatic evoked potentials in man. Electroencephalogr Clin Neurophysiol 39:163–171CrossRefPubMed Velasco M, Velasco F, Maldonado H, Machado JP (1975) Differential effect of thalamic and subthalamic lesions on early and late components of the somatic evoked potentials in man. Electroencephalogr Clin Neurophysiol 39:163–171CrossRefPubMed
go back to reference Velasco F, Velasco M, Ogarrio C, Olvera A (1986) Neglect induced by thalamotomy in humans: a quantitative appraisal of the sensory and motor deficits. Neurosurgery 19:744–751CrossRefPubMed Velasco F, Velasco M, Ogarrio C, Olvera A (1986) Neglect induced by thalamotomy in humans: a quantitative appraisal of the sensory and motor deficits. Neurosurgery 19:744–751CrossRefPubMed
go back to reference Velasco F, Jiménez F, Pérez ML, Carrillo-Ruiz JD, Velasco AL, Ceballos J, Velasco M (2001) Electrical stimulation of the prelemniscal radiation in the treatment of Parkinson’s disease: an old target revised with new techniques. Neurosurgery 49:293–306 (discussion 306–308) PubMed Velasco F, Jiménez F, Pérez ML, Carrillo-Ruiz JD, Velasco AL, Ceballos J, Velasco M (2001) Electrical stimulation of the prelemniscal radiation in the treatment of Parkinson’s disease: an old target revised with new techniques. Neurosurgery 49:293–306 (discussion 306–308) PubMed
go back to reference Velasco F, Velasco M, Jiménez F, Velasco AL, Salin-Pascual R (2005) Neurobiological background for performing surgical intervention in the inferior thalamic peduncle for treatment of major depression disorders. Neurosurgery 57:439–448 (discussion 439–448) CrossRefPubMed Velasco F, Velasco M, Jiménez F, Velasco AL, Salin-Pascual R (2005) Neurobiological background for performing surgical intervention in the inferior thalamic peduncle for treatment of major depression disorders. Neurosurgery 57:439–448 (discussion 439–448) CrossRefPubMed
go back to reference Voges J, Volkmann J, Allert N, Lehrke R, Koulousakis A, Freund H-J, Sturm V (2002) Bilateral high-frequency stimulation in the subthalamic nucleus for the treatment of Parkinson disease: correlation of therapeutic effect with anatomical electrode position. J Neurosurg 96:269–279. doi:10.3171/jns.2002.96.2.0269 CrossRefPubMed Voges J, Volkmann J, Allert N, Lehrke R, Koulousakis A, Freund H-J, Sturm V (2002) Bilateral high-frequency stimulation in the subthalamic nucleus for the treatment of Parkinson disease: correlation of therapeutic effect with anatomical electrode position. J Neurosurg 96:269–279. doi:10.​3171/​jns.​2002.​96.​2.​0269 CrossRefPubMed
go back to reference Volkmann J (2004) Deep brain stimulation for the treatment of Parkinson’s disease. J Clin Neurophysiol 21:6–17CrossRefPubMed Volkmann J (2004) Deep brain stimulation for the treatment of Parkinson’s disease. J Clin Neurophysiol 21:6–17CrossRefPubMed
Metadata
Title
Anatomic characterization of prelemniscal radiations by probabilistic tractography: implications in Parkinson’s disease
Authors
María Guadalupe García-Gomar
Julian Soto-Abraham
Francisco Velasco-Campos
Luis Concha
Publication date
01-01-2017
Publisher
Springer Berlin Heidelberg
Published in
Brain Structure and Function / Issue 1/2017
Print ISSN: 1863-2653
Electronic ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-016-1201-5

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