Skip to main content
Erschienen in: Brain Structure and Function 3/2014

01.05.2014 | Original Article

Projections from the lateral vestibular nucleus to the spinal cord in the mouse

verfasst von: Huazheng Liang, Timea Bácskai, Charles Watson, George Paxinos

Erschienen in: Brain Structure and Function | Ausgabe 3/2014

Einloggen, um Zugang zu erhalten

Abstract

The present study investigated the projections from the lateral vestibular nucleus (LVe) to the spinal cord using retrograde and anterograde tracers. Retrogradely labeled neurons were found after fluoro-gold injections into both the cervical and lumbar cord, with a smaller number of labeled neurons seen after lumbar cord injections. Labeled neurons in the LVe were found in clusters at caudal levels of the nucleus, and a small gap separated these clusters from labeled neurons in the spinal vestibular nucleus (SpVe). In the anterograde study, BDA-labeled fiber tracts were found in both the ventral and ventrolateral funiculi on the ipsilateral side. These fibers terminated in laminae 6–9. Some fibers were continuous with boutons in contact with motor neurons in both the medial and lateral motor neuron columns. In the lumbar and sacral segments, some collaterals from the ipsilateral vestibulospinal tracts were found on the contralateral side, and these fibers mainly terminated in laminae 6–8. The present study reveals for the first time the fiber terminations of the lateral vestibular nucleus in the mouse spinal cord and therefore enhances future functional studies of the vestibulospinal system.
Literatur
Zurück zum Zitat Abercrombie M (1946) Estimation of nuclear population from microtome sections. Anat Rec 94:239–247PubMedCrossRef Abercrombie M (1946) Estimation of nuclear population from microtome sections. Anat Rec 94:239–247PubMedCrossRef
Zurück zum Zitat Abzug C, Maeda M, Peterson BW, Wilson VJ (1974) Cervical branching of lumbar vestibulospinal axons. J Physiol 243:499–522PubMedCentralPubMed Abzug C, Maeda M, Peterson BW, Wilson VJ (1974) Cervical branching of lumbar vestibulospinal axons. J Physiol 243:499–522PubMedCentralPubMed
Zurück zum Zitat Auclair F, Belanger MC, Marchand R (1993) Ontogenetic study of early brain stem projections to the spinal cord in the rat. Brain Res Bull 30:281–289PubMedCrossRef Auclair F, Belanger MC, Marchand R (1993) Ontogenetic study of early brain stem projections to the spinal cord in the rat. Brain Res Bull 30:281–289PubMedCrossRef
Zurück zum Zitat Bácskai T, Székely G, Matesz C (2002) Ascending and descending projections of the lateral vestibular nucleus in the rat. Acta Biol Hung 53:7–21PubMedCrossRef Bácskai T, Székely G, Matesz C (2002) Ascending and descending projections of the lateral vestibular nucleus in the rat. Acta Biol Hung 53:7–21PubMedCrossRef
Zurück zum Zitat Boyle R (2000) Morphology of lumbar-projecting lateral vestibulospinal neurons in the brainstem and cervical spinal cord in the squirrel monkey. Arch Ital Biol 138:107–122PubMed Boyle R (2000) Morphology of lumbar-projecting lateral vestibulospinal neurons in the brainstem and cervical spinal cord in the squirrel monkey. Arch Ital Biol 138:107–122PubMed
Zurück zum Zitat Bracci E, Ballerini L, Nistri A (1996) Localization of rhythmogenic networks responsible for spontaneous bursts induced by strychnine and bicuculline in the rat isolated spinal cord. J Neurosci 16:7063–7076PubMed Bracci E, Ballerini L, Nistri A (1996) Localization of rhythmogenic networks responsible for spontaneous bursts induced by strychnine and bicuculline in the rat isolated spinal cord. J Neurosci 16:7063–7076PubMed
Zurück zum Zitat Brink EE, Hirai N, Wilson VJ (1980) Influence of neck afferents on vestibulospinal neurons. Exp Brain Res 38:285–292PubMedCrossRef Brink EE, Hirai N, Wilson VJ (1980) Influence of neck afferents on vestibulospinal neurons. Exp Brain Res 38:285–292PubMedCrossRef
Zurück zum Zitat Cina C, Hochman S (2000) Diffuse distribution of sulforhodamine labeled neurons during serotonin-evoked locomotion in the neonatal rat thoracolumbar spinal cord. J Comp Neurol 423:590–602PubMedCrossRef Cina C, Hochman S (2000) Diffuse distribution of sulforhodamine labeled neurons during serotonin-evoked locomotion in the neonatal rat thoracolumbar spinal cord. J Comp Neurol 423:590–602PubMedCrossRef
Zurück zum Zitat Dai X, Noga BR, Douglas JR, Jordan LM (2005) Localization of spinal neurons activated during locomotion using the c-fos immunohistochemical method. J Neurophysiol 93:3442–3452PubMedCrossRef Dai X, Noga BR, Douglas JR, Jordan LM (2005) Localization of spinal neurons activated during locomotion using the c-fos immunohistochemical method. J Neurophysiol 93:3442–3452PubMedCrossRef
Zurück zum Zitat de Boer-van Huizen RT, ten Donkelaar HJ (1999) Early development of descending supraspinal pathways: a tracing study in fixed and isolated rat embryos. Anat Embryol 199:539–547PubMedCrossRef de Boer-van Huizen RT, ten Donkelaar HJ (1999) Early development of descending supraspinal pathways: a tracing study in fixed and isolated rat embryos. Anat Embryol 199:539–547PubMedCrossRef
Zurück zum Zitat Du Beau A, Shakya Shrestha S, Bannatyne BA, Jalicy SM, Linnen S, Maxwell DJ (2012) Neurotransmitter phenotypes of descending systems in the rat lumbar spinal cord. Neuroscience 227:67–79PubMedCrossRef Du Beau A, Shakya Shrestha S, Bannatyne BA, Jalicy SM, Linnen S, Maxwell DJ (2012) Neurotransmitter phenotypes of descending systems in the rat lumbar spinal cord. Neuroscience 227:67–79PubMedCrossRef
Zurück zum Zitat Franklin KBJ, Paxinos G (2008) The mouse brain in stereotaxic coordinates, 3rd edn. Elsevier Academic Press, San Diego Franklin KBJ, Paxinos G (2008) The mouse brain in stereotaxic coordinates, 3rd edn. Elsevier Academic Press, San Diego
Zurück zum Zitat Grillner S, Hongo T, Lund S (1970) The vestibulospinal tract. Effects on alpha-motoneurones in the lumbosacral spinal cord in the cat. Exp Brain Res 10:94–120PubMedCrossRef Grillner S, Hongo T, Lund S (1970) The vestibulospinal tract. Effects on alpha-motoneurones in the lumbosacral spinal cord in the cat. Exp Brain Res 10:94–120PubMedCrossRef
Zurück zum Zitat Hayes NL, Rustioni A (1981) Descending projections from brainstem and sensorimotor cortex to spinal enlargements in the cat. Single and double retrograde tracer studies. Exp Brain Res 41:89–107PubMedCrossRef Hayes NL, Rustioni A (1981) Descending projections from brainstem and sensorimotor cortex to spinal enlargements in the cat. Single and double retrograde tracer studies. Exp Brain Res 41:89–107PubMedCrossRef
Zurück zum Zitat Huisman AM, Ververs B, Cavada C, Kuypers HG (1984) Collateralization of brainstem pathways in the spinal ventral horn in rat as demonstrated with the retrograde fluorescent double-labeling technique. Brain Res 300:362–367PubMedCrossRef Huisman AM, Ververs B, Cavada C, Kuypers HG (1984) Collateralization of brainstem pathways in the spinal ventral horn in rat as demonstrated with the retrograde fluorescent double-labeling technique. Brain Res 300:362–367PubMedCrossRef
Zurück zum Zitat Isu N, Uchino Y, Nakashima H, Satoh S, Ichikawa T, Watanabe S (1988) Axonal trajectories of posterior canal-activated secondary vestibular neurons and their coactivation of extraocular and neck flexor motoneurons in the cat. Exp Brain Res 70:181–191PubMed Isu N, Uchino Y, Nakashima H, Satoh S, Ichikawa T, Watanabe S (1988) Axonal trajectories of posterior canal-activated secondary vestibular neurons and their coactivation of extraocular and neck flexor motoneurons in the cat. Exp Brain Res 70:181–191PubMed
Zurück zum Zitat Kasumacic N, Glover JC, Perreault MC (2010) Segmental patterns of vestibular-mediated synaptic inputs to axial and limb motoneurons in the neonatal mouse assessed by optical recording. J Physiol 588:4905–4925PubMedCentralPubMedCrossRef Kasumacic N, Glover JC, Perreault MC (2010) Segmental patterns of vestibular-mediated synaptic inputs to axial and limb motoneurons in the neonatal mouse assessed by optical recording. J Physiol 588:4905–4925PubMedCentralPubMedCrossRef
Zurück zum Zitat Kjaerulff O, Barajon I, Kiehn O (1994) Sulphorhodamine-labeled cells in the neonatal rat spinal cord following chemically induced locomotor activity in vitro. J Physiol 478:265–273PubMedCentralPubMed Kjaerulff O, Barajon I, Kiehn O (1994) Sulphorhodamine-labeled cells in the neonatal rat spinal cord following chemically induced locomotor activity in vitro. J Physiol 478:265–273PubMedCentralPubMed
Zurück zum Zitat Kudo N, Furukawa F, Okado N (1993) Development of descending fibers to the rat embryonic spinalcord. Neurosci Res 16:131–141PubMedCrossRef Kudo N, Furukawa F, Okado N (1993) Development of descending fibers to the rat embryonic spinalcord. Neurosci Res 16:131–141PubMedCrossRef
Zurück zum Zitat Kuze B, Matsuyama K, Matsui T, Miyata H, Mori S (1999) Segment-specific branching patterns of single vestibulospinal tract axons arising from the lateral vestibular nucleus in the cat: a PHA-L tracing study. J Comp Neurol. 414:80–96PubMedCrossRef Kuze B, Matsuyama K, Matsui T, Miyata H, Mori S (1999) Segment-specific branching patterns of single vestibulospinal tract axons arising from the lateral vestibular nucleus in the cat: a PHA-L tracing study. J Comp Neurol. 414:80–96PubMedCrossRef
Zurück zum Zitat Leong SK, Shieh JY, Wong WC (1984) Localizing spinal-cord—projecting neurons in adult albino rats. J Comp Neurol 228:1–17PubMedCrossRef Leong SK, Shieh JY, Wong WC (1984) Localizing spinal-cord—projecting neurons in adult albino rats. J Comp Neurol 228:1–17PubMedCrossRef
Zurück zum Zitat Liang H, Paxinos G, Watson C (2011) Projections from the brain to the spinal cord in the mouse. Brain Struct Funct 215:159–186PubMedCrossRef Liang H, Paxinos G, Watson C (2011) Projections from the brain to the spinal cord in the mouse. Brain Struct Funct 215:159–186PubMedCrossRef
Zurück zum Zitat Masson RL, Sparkes ML, Ritz LA (1991) Descending projections to the rat sacrocaudal spinal cord. J Comp Neurol 302:120–130CrossRef Masson RL, Sparkes ML, Ritz LA (1991) Descending projections to the rat sacrocaudal spinal cord. J Comp Neurol 302:120–130CrossRef
Zurück zum Zitat Matesz C, Bácskai T, Nagy E, Halasi G, Kulik A (2002) Efferent connections of the vestibular nuclei in the rat: a neuromorphological study using PHA-L. Brain Res Bull 57:313–315PubMedCrossRef Matesz C, Bácskai T, Nagy E, Halasi G, Kulik A (2002) Efferent connections of the vestibular nuclei in the rat: a neuromorphological study using PHA-L. Brain Res Bull 57:313–315PubMedCrossRef
Zurück zum Zitat Paxinos G, Franklin KBJ (2013) The Mouse brain in stereotaxic coordinates, 4th edn. Elsevier Academic Press, San Diego Paxinos G, Franklin KBJ (2013) The Mouse brain in stereotaxic coordinates, 4th edn. Elsevier Academic Press, San Diego
Zurück zum Zitat Paxinos G, Watson C (1982) The Rat brain in stereotaxic coordinates. Academic Press, Sydney Paxinos G, Watson C (1982) The Rat brain in stereotaxic coordinates. Academic Press, Sydney
Zurück zum Zitat Pompeiano O (1972) Vestibulospinal relations: vestibular influences on gamma motoneurons and primary afferents. Prog Brain Res 37:263–296PubMedCrossRef Pompeiano O (1972) Vestibulospinal relations: vestibular influences on gamma motoneurons and primary afferents. Prog Brain Res 37:263–296PubMedCrossRef
Zurück zum Zitat Rice CD, Weber SA, Waggoner AL, Jessell ME, Yates BJ (2010) Mapping of neural pathways that influence diaphragm activity and project to the lumbar spinal cord in cats. Exp Brain Res 203:205–211PubMedCentralPubMedCrossRef Rice CD, Weber SA, Waggoner AL, Jessell ME, Yates BJ (2010) Mapping of neural pathways that influence diaphragm activity and project to the lumbar spinal cord in cats. Exp Brain Res 203:205–211PubMedCentralPubMedCrossRef
Zurück zum Zitat Rose PK, Wainwright K, Neuber-Hess M (1992) Connections from the lateral vestibular nucleus to the upper cervical spinal cord of the cat: a study with the anterograde tracer PHA-L. J Comp Neurol 321:312–324PubMedCrossRef Rose PK, Wainwright K, Neuber-Hess M (1992) Connections from the lateral vestibular nucleus to the upper cervical spinal cord of the cat: a study with the anterograde tracer PHA-L. J Comp Neurol 321:312–324PubMedCrossRef
Zurück zum Zitat Rose PK, Ely S, Norkum V, Neuber-Hess M (1999) Projections from the lateral vestibular nucleus to the upper cervical spinal cord of the cat: a correlative light and electron microscopic study of axon terminals stained with PHA-L. J Comp Neurol 410:571–585PubMedCrossRef Rose PK, Ely S, Norkum V, Neuber-Hess M (1999) Projections from the lateral vestibular nucleus to the upper cervical spinal cord of the cat: a correlative light and electron microscopic study of axon terminals stained with PHA-L. J Comp Neurol 410:571–585PubMedCrossRef
Zurück zum Zitat Shen P, Arnold AP, Micevych PE (1990) Supraspinal projections to the ventromedial lumbar spinal cord in adult male rats. J Comp Neurol 300:263–272PubMedCrossRef Shen P, Arnold AP, Micevych PE (1990) Supraspinal projections to the ventromedial lumbar spinal cord in adult male rats. J Comp Neurol 300:263–272PubMedCrossRef
Zurück zum Zitat Shinoda Y, Ohgaki T, Sugiuchi Y, Futami T (1989) Comparison of the branching patterns of lateral and medial vestibulospinal tract axons in the cervical spinal cord. Prog Brain Res 80:137–147PubMedCrossRef Shinoda Y, Ohgaki T, Sugiuchi Y, Futami T (1989) Comparison of the branching patterns of lateral and medial vestibulospinal tract axons in the cervical spinal cord. Prog Brain Res 80:137–147PubMedCrossRef
Zurück zum Zitat Tresch MC, Kiehn O (1999) Coding of locomotor phase in populations of neurons in rostral and caudal segments of the neonatal rat lumbar spinal cord. J Neurophysiol 82:3563–3574PubMed Tresch MC, Kiehn O (1999) Coding of locomotor phase in populations of neurons in rostral and caudal segments of the neonatal rat lumbar spinal cord. J Neurophysiol 82:3563–3574PubMed
Zurück zum Zitat Valla J, Delfini C, Diagne M, Pinganaud G, Buisseret P, Buisseret-Delmas C (2003) Vestibulotrigeminal and vestibulospinal projections in rats: retrograde tracing coupled to glutamic acid decarboxylase immunoreactivity. Neurosci Lett 340:225–228PubMedCrossRef Valla J, Delfini C, Diagne M, Pinganaud G, Buisseret P, Buisseret-Delmas C (2003) Vestibulotrigeminal and vestibulospinal projections in rats: retrograde tracing coupled to glutamic acid decarboxylase immunoreactivity. Neurosci Lett 340:225–228PubMedCrossRef
Zurück zum Zitat VanderHorst VG, Ulfhake B (2006) The organization of the brainstem and spinal cord of the mouse: relationships between monoaminergic, cholinergic, and spinal projection systems. J Chem Neuroanat 31:2–36PubMedCrossRef VanderHorst VG, Ulfhake B (2006) The organization of the brainstem and spinal cord of the mouse: relationships between monoaminergic, cholinergic, and spinal projection systems. J Chem Neuroanat 31:2–36PubMedCrossRef
Zurück zum Zitat Wada N, Sugita S, Jouzaki A, Tokuriki M (1993) Descending projections to coccygeal spinal segments in the cat. J Anat 182:259–265PubMedCentralPubMed Wada N, Sugita S, Jouzaki A, Tokuriki M (1993) Descending projections to coccygeal spinal segments in the cat. J Anat 182:259–265PubMedCentralPubMed
Zurück zum Zitat Watson C (2012) Hindbrain. In: Watson C, Paxinos G, Puelles L (eds) The Mouse Nervous System, chap. 12. Elsevier Academic Press, San Diego, pp 408–409 Watson C (2012) Hindbrain. In: Watson C, Paxinos G, Puelles L (eds) The Mouse Nervous System, chap. 12. Elsevier Academic Press, San Diego, pp 408–409
Zurück zum Zitat Watson C, Paxinos G (2010) Chemoarchitectonic Atlas of the Mouse Brain. Elsevier Academic Press, San Diego Watson C, Paxinos G (2010) Chemoarchitectonic Atlas of the Mouse Brain. Elsevier Academic Press, San Diego
Zurück zum Zitat Watson C, Paxinos G, Kayalioglu G, Heise C (2009) Atlas of the mouse spinal cord. In: Watson C, Paxinos G, Kayalioglu G (eds) The Spinal cord. Elsevier Academic Press, San Diego, pp 308–379CrossRef Watson C, Paxinos G, Kayalioglu G, Heise C (2009) Atlas of the mouse spinal cord. In: Watson C, Paxinos G, Kayalioglu G (eds) The Spinal cord. Elsevier Academic Press, San Diego, pp 308–379CrossRef
Zurück zum Zitat Wilson VJ, Yoshida M (1969) Comparison of effects of stimulation of Deiters’ nucleus and medial longitudinal fasciculus on neck, forelimb, and hindlimb motoneurons. J Neurophysiol 32:743–758PubMed Wilson VJ, Yoshida M (1969) Comparison of effects of stimulation of Deiters’ nucleus and medial longitudinal fasciculus on neck, forelimb, and hindlimb motoneurons. J Neurophysiol 32:743–758PubMed
Zurück zum Zitat Wilson VJ, Wylie RM, Marco LA (1967) Projection to the spinal cord from the medial and descending vestibular nuclei of the cat. Nature 215:429–430PubMedCrossRef Wilson VJ, Wylie RM, Marco LA (1967) Projection to the spinal cord from the medial and descending vestibular nuclei of the cat. Nature 215:429–430PubMedCrossRef
Zurück zum Zitat Wilson VJ, Yoshida M, Schor RH (1970) Supraspinal monosynaptic excitation and inhibition of thoracic back montoneurons. Exp Brain Res 11:282–295PubMedCrossRef Wilson VJ, Yoshida M, Schor RH (1970) Supraspinal monosynaptic excitation and inhibition of thoracic back montoneurons. Exp Brain Res 11:282–295PubMedCrossRef
Zurück zum Zitat Zemlan FP, Kow LM, Morrell JI, Pfaff DW (1979) Descending tracts of the lateral columns of the rat spinal cord: a study using the horseradish peroxidase and silver impregnation techniques. J Anat 128:489–512PubMedCentralPubMed Zemlan FP, Kow LM, Morrell JI, Pfaff DW (1979) Descending tracts of the lateral columns of the rat spinal cord: a study using the horseradish peroxidase and silver impregnation techniques. J Anat 128:489–512PubMedCentralPubMed
Metadaten
Titel
Projections from the lateral vestibular nucleus to the spinal cord in the mouse
verfasst von
Huazheng Liang
Timea Bácskai
Charles Watson
George Paxinos
Publikationsdatum
01.05.2014
Verlag
Springer Berlin Heidelberg
Erschienen in
Brain Structure and Function / Ausgabe 3/2014
Print ISSN: 1863-2653
Elektronische ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-013-0536-4

Weitere Artikel der Ausgabe 3/2014

Brain Structure and Function 3/2014 Zur Ausgabe

Leitlinien kompakt für die Neurologie

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Niedriger diastolischer Blutdruck erhöht Risiko für schwere kardiovaskuläre Komplikationen

25.04.2024 Hypotonie Nachrichten

Wenn unter einer medikamentösen Hochdrucktherapie der diastolische Blutdruck in den Keller geht, steigt das Risiko für schwere kardiovaskuläre Ereignisse: Darauf deutet eine Sekundäranalyse der SPRINT-Studie hin.

Frühe Alzheimertherapie lohnt sich

25.04.2024 AAN-Jahrestagung 2024 Nachrichten

Ist die Tau-Last noch gering, scheint der Vorteil von Lecanemab besonders groß zu sein. Und beginnen Erkrankte verzögert mit der Behandlung, erreichen sie nicht mehr die kognitive Leistung wie bei einem früheren Start. Darauf deuten neue Analysen der Phase-3-Studie Clarity AD.

Viel Bewegung in der Parkinsonforschung

25.04.2024 Parkinson-Krankheit Nachrichten

Neue arznei- und zellbasierte Ansätze, Frühdiagnose mit Bewegungssensoren, Rückenmarkstimulation gegen Gehblockaden – in der Parkinsonforschung tut sich einiges. Auf dem Deutschen Parkinsonkongress ging es auch viel um technische Innovationen.

Demenzkranke durch Antipsychotika vielfach gefährdet

23.04.2024 Demenz Nachrichten

Wenn Demenzkranke aufgrund von Symptomen wie Agitation oder Aggressivität mit Antipsychotika behandelt werden, sind damit offenbar noch mehr Risiken verbunden als bislang angenommen.

Update Neurologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.