貫通線維路
- 関
- perforant path
WordNet
- a trodden path (同)footpath
PrepTutorEJDIC
- 道,小道(path)
Wikipedia preview
出典(authority):フリー百科事典『ウィキペディア(Wikipedia)』「2015/07/01 13:54:51」(JST)
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Perforant path |
Diagram of hippocampal regions. DG: Dentate gyrus. Perforant path not labeled, but would arise from the right.
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Details |
Latin |
Tractus perforans |
Identifiers |
NeuroNames |
hier-2686 |
Dorlands
/Elsevier |
p_09/12620687 |
Anatomical terms of neuroanatomy |
In the brain, the perforant path or perforant pathway, provides a connectional route from the entorhinal cortex[1] to all fields of the hippocampal formation, including the dentate gyrus, all CA fields (including CA1),[2] and the subiculum.
Though it arises mainly from entorhinal layers II and III, the perforant path comprises a smaller component that originates in deep layers V and VI. There is a major dichotomy with respect to the laminar origin and related terminal distribution: neurons in layer II (and possibly layer VI) project to the dentate gyrus and CA3, whereas layer III (and possibly layer V) cells project to CA1 and the subiculum via the temporoammonic pathway.[3]
In addition to playing a role in spatial memory learning generally, the temporoammonic branch (TA-CA1) of the perforant path mediates spatial memory consolidation.[4] The temporoammonic pathway has also been implicated in stress-based animal models of depression.[5]
It may also play a role in temporal lobe seizures.[6]
Contents
- 1 In rats
- 2 In mice
- 3 References
- 4 External links
In rats
In rats, pyramidal and stellate cells in layer II of entorhinal cortex project through the subiculum of the hippocampus, giving rise to the name "perforant pathway". These glutamatergic fibers form a laminar pattern and terminate in the dentate gyrus and cornu ammonis 3 (CA3) region of the hippocampus. Fibers arising in the lateral portions of the entorhinal cortex show enkephalin immunoreactivity, whereas medial portions appear to contain cholecystokinin. Additionally, pyramidal cells in layer III of the entorhinal cortex send topographic projections along the perforant pathway which branch into the subiculum and CA1.[citation needed]
In mice
In mice, the projection to CA1, and the subiculum all come primarily from EC layer III.[citation needed]
According to Suh et al. (2011 Science 334:1415) the projection to CA3 and dentate gyrus in mice is primarily from layer II of entorhinal cortex, and forms a trisynaptic path with hippocampus (dentate gyrus to CA3 to CA1), distinguished from the direct (monosynaptic) perforant path from Layer III of entorhinal cortex to CA1 and subiculum.[citation needed]
References
- ^ Witter, Menno P.; Naber, Pieterke A.; Van Haeften, Theo; Machielsen, Willem C.M.; Rombouts, Serge A.R.B.; Barkhof, Frederik; Scheltens, Philip; Lopes Da Silva, Fernando H. (2000). "Cortico-hippocampal communication by way of parallel parahippocampal-subicular pathways". Hippocampus 10 (4): 398. doi:10.1002/1098-1063(2000)10:4<398::AID-HIPO6>3.0.CO;2-K. PMID 10985279.
- ^ Vago, David R.; Kesner, Raymond P. (2008). "Disruption of the direct perforant path input to the CA1 subregion of the dorsal hippocampus interferes with spatial working memory and novelty detection". Behavioural Brain Research 189 (2): 273. doi:10.1016/j.bbr.2008.01.002. PMID 18313770.
- ^ Witter, Menno P.; Naber, Pieterke A.; Van Haeften, Theo; Machielsen, Willem C.M.; Rombouts, Serge A.R.B.; Barkhof, Frederik; Scheltens, Philip; Lopes Da Silva, Fernando H. (2000). "Cortico-hippocampal communication by way of parallel parahippocampal-subicular pathways". Hippocampus 10 (4): 398. doi:10.1002/1098-1063(2000)10:4<398::AID-HIPO6>3.0.CO;2-K. PMID 10985279.
- ^ Remondes, Miguel; Schuman, Erin M. (2004). "Role for a cortical input to hippocampal area CA1 in the consolidation of a long-term memory". Nature 431 (7009): 699. Bibcode:2004Natur.431..699R. doi:10.1038/nature02965. PMID 15470431.
- ^ Kallarackal, A. J.; Kvarta, M. D.; Cammarata, E.; Jaberi, L.; Cai, X.; Bailey, A. M.; Thompson, S. M. (2013). "Chronic Stress Induces a Selective Decrease in AMPA Receptor-Mediated Synaptic Excitation at Hippocampal Temporoammonic-CA1 Synapses". Journal of Neuroscience 33 (40): 15669. doi:10.1523/JNEUROSCI.2588-13.2013. PMID 24089474.
- ^ Scimemi, A.; Schorge, S; Kullmann, D. M.; Walker, M. C. (2005). "Epileptogenesis is Associated with Enhanced Glutamatergic Transmission in the Perforant Path". Journal of Neurophysiology 95 (2): 1213–20. doi:10.1152/jn.00680.2005. PMID 16282203.
- Shepherd, GM. The Synaptic Organization of the Brain. New York: Oxford University Press. 1998.[page needed]
External links
- http://thebrain.mcgill.ca/flash/a/a_07/a_07_cl/a_07_cl_tra/a_07_cl_tra.html[full citation needed]
Rostral Basal ganglia of the human brain and associated structures
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Basal ganglia |
Grey matter |
Corpus striatum |
- lentiform nucleus: Putamen
- Globus pallidus
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Ventral striatum |
- Nucleus accumbens
- Olfactory tubercle
- Islands of Calleja
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Other |
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White matter |
- Internal capsule
- Anterior limb
- Genu
- Posterior limb
- Optic radiation
- External capsule
- Extreme capsule
- Pallidothalamic tracts: Thalamic fasciculus
- Ansa lenticularis
- Lenticular fasciculus
- Subthalamic fasciculus
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Rhinencephalon |
Grey matter |
- Anterior olfactory nucleus
- Anterior perforated substance
- Olfactory bulb
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White matter |
- Olfactory tract
- Medial olfactory stria
- Lateral olfactory stria
- Olfactory trigone
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Other basal forebrain |
Grey matter |
- Substantia innominata
- Basal optic nucleus of Meynert
- Nucleus of diagonal band
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White matter |
- Diagonal band of Broca
- Stria terminalis
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Archicortex:
Hippocampal formation/
Hippocampus anatomy |
Grey matter |
- Hippocampus proper
- Dentate gyrus
- Subiculum
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White matter |
- Alveus
- Fimbria
- Perforant path
- Schaffer collateral
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Index of the central nervous system
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Description |
- Anatomy
- meninges
- cortex
- association fibers
- commissural fibers
- lateral ventricles
- basal ganglia
- diencephalon
- mesencephalon
- pons
- cerebellum
- medulla
- spinal cord
- Physiology
- Development
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Disease |
- Cerebral palsy
- Meningitis
- Demyelinating diseases
- Seizures and epilepsy
- Headache
- Stroke
- Sleep
- Congenital
- Injury
- Neoplasms and cancer
- Other
- Symptoms and signs
- head and neck
- eponymous
- lesions
- Tests
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Treatment |
- Procedures
- Drugs
- general anesthetics
- analgesics
- addiction
- epilepsy
- cholinergics
- migraine
- Parkinson's
- vertigo
- other
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Papez circuit pathway
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Diencephalon |
- Mammillary body → Mammillothalamic tract → Anterior nuclei of thalamus →
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Telencephalon |
- Anterior limb of internal capsule → Cingulate gyrus → Cingulum → Parahippocampal gyrus → Entorhinal cortex → Perforant path → Hippocampus/Hippocampal formation (CA3 → CA1 → Subiculum) → Fornix →
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Index of the central nervous system
|
|
Description |
- Anatomy
- meninges
- cortex
- association fibers
- commissural fibers
- lateral ventricles
- basal ganglia
- diencephalon
- mesencephalon
- pons
- cerebellum
- medulla
- spinal cord
- Physiology
- Development
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Disease |
- Cerebral palsy
- Meningitis
- Demyelinating diseases
- Seizures and epilepsy
- Headache
- Stroke
- Sleep
- Congenital
- Injury
- Neoplasms and cancer
- Other
- Symptoms and signs
- head and neck
- eponymous
- lesions
- Tests
|
|
Treatment |
- Procedures
- Drugs
- general anesthetics
- analgesics
- addiction
- epilepsy
- cholinergics
- migraine
- Parkinson's
- vertigo
- other
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UpToDate Contents
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English Journal
- Pathological changes in hippocampal neuronal circuits underlie age-associated neurodegeneration and memory loss: Positive clue toward SAD.
- Moorthi P1, Premkumar P1, Priyanka R1, Jayachandran KS2, Anusuyadevi M3.
- Neuroscience.Neuroscience.2015 Aug 20;301:90-105. doi: 10.1016/j.neuroscience.2015.05.062. Epub 2015 Jun 1.
- Among vertebrates hippocampus forms the major component of the brain in consolidating information from short-term memory to long-term memory. Aging is considered as the major risk factor for memory impairment in sporadic Alzheimer's disease (SAD) like pathology. Present study thus aims at investigat
- PMID 26045180
- GABAB Receptor-mediated feed-forward circuit dysfunction in the mouse model of fragile X syndrome.
- Wahlstrom-Helgren S1, Klyachko VA1.
- The Journal of physiology.J Physiol.2015 Aug 18. doi: 10.1113/JP271190. [Epub ahead of print]
- Circuit hyperexcitability has been implicated in neuropathology of Fragile X syndrome, the most common inheritable cause of intellectual disability. Yet, how canonical unitary circuits are affected in this disorder remains poorly understood. Here, we examined this question in the context of the cano
- PMID 26282581
- Dendritic sodium spikes are required for long-term potentiation at distal synapses on hippocampal pyramidal neurons.
- Kim Y1, Hsu CL1, Cembrowski MS1, Mensh BD1, Spruston N1.
- eLife.Elife.2015 Aug 6;4. doi: 10.7554/eLife.06414. [Epub ahead of print]
- Dendritic integration of synaptic inputs mediates rapid neural computation as well as longer-lasting plasticity. Several channel types can mediate dendritically initiated spikes (dSpikes), which may impact information processing and storage across multiple timescales; however, the roles of different
- PMID 26247712
Japanese Journal
- 新規性検出機能をもつ系列学習モデルの数値実験(BCI/BMIとその周辺)
- 印南 雄太郎,岩井 俊哉
- 電子情報通信学会技術研究報告. NC, ニューロコンピューティング 109(280), 47-52, 2009-11-05
- … 嗅内皮質(EC)・CA1領域・CA3領域・trisynaptic pathwayおよびECからCA1領域への直接の貫通路からなる海馬の機能に関する仮定と実験事実を考慮して、次の機能を持つ系列学習モデルを提案する。 …
- NAID 110007521498
- (35)認知障害を伴う筋萎縮性側索硬化症における記憶障害と貫通線維変性 : 臨床病理学的研究
Related Links
- The hippocampal Network: The hippocampus forms a principally uni-directional network, with input from the Entorhinal Cortex (EC) tht forsms connections with the Dentate Gyrus (DG) and CA3 pyramidal neurons via the Perforant ...
- ResearchGate is a network dedicated to science and research. Connect, collaborate and discover scientific publications, jobs and conferences. All for free. ... To test pre- versus postsynaptic mechanism of drug action, I am using the ...
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