Results 221 to 230 of about 381,065 (262)
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Central Nervous System Immunoglobulin Synthesis in Neurological Disease
1983The status of the central nervous system (CNS) as an immunological organ synthesizing immunoglobulin has been established convincingly in the past two decades. The first observations suggesting that such a process occurs were made in the early 1940s.
Michael J. Walsh +2 more
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Diseases of the nervous system: A text-book of neurology and psychiatry.
The Journal of Abnormal Psychology, 1918Reviews the book, Diseases of the nervous system: A text-book of neurology and psychiatry, Second Edition, Revised, Rewritten and Enlarged by Smith Ely Jelliffe and William A. White (1917). Improvements have been made in this, the second edition of this excellent text-book, in the chapters on the vegetative nervous system and the endocrinopathies, and ...
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Neuroscience Letters, 2009
microRNAs, small non-coding RNAs that regulate gene expression at the post-transcriptional level, are emerging as important regulatory molecules involved in the fine-tuning of gene expression during neuronal development and function. microRNAs have roles during neuronal stem cell commitment and early differentiation as well as in later stages of ...
Christensen, Mette, Schratt, Gerhard M
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microRNAs, small non-coding RNAs that regulate gene expression at the post-transcriptional level, are emerging as important regulatory molecules involved in the fine-tuning of gene expression during neuronal development and function. microRNAs have roles during neuronal stem cell commitment and early differentiation as well as in later stages of ...
Christensen, Mette, Schratt, Gerhard M
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Circulating autoantibodies against central nervous system (CNS) antigens in neurological diseases
The Italian Journal of Neurological Sciences, 1994A number of investigators have reported the detection of circulating autoantibodies directed against serum and cerebrospinal fluid (CSF) neuronal antigens in certain neurological clinical conditions. Using an immunohistochemical technique, we examined the sera and (when available) the CSF from 120 patients with several neurological disorders and 40 ...
GIOMETTO B +6 more
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Neuroscience
The Enteric Nervous System (ENS), often called the "second brain," is a complex network of neurons and glial cells within the gastrointestinal (GI) tract. It functions autonomously while maintaining close communication with the central nervous system (CNS) via the gut-brain axis (GBA).
Orabi Hajjeh +17 more
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The Enteric Nervous System (ENS), often called the "second brain," is a complex network of neurons and glial cells within the gastrointestinal (GI) tract. It functions autonomously while maintaining close communication with the central nervous system (CNS) via the gut-brain axis (GBA).
Orabi Hajjeh +17 more
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Central Nervous System Lymphatics and Impact on Neurologic Disease
World Neurosurgery, 2018Dominic, Nistal, J, Mocco
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Microarray Analysis of Human Nervous System Gene Expression in Neurological Disease
2004Publisher Summary This chapter focuses on the use of microarrays applied to human tissues for the study of neurological disease, the unique challenges relating to the isolation of RNA from individual cells by laser capture microdissection, and on issues relating to the experimental design and data analysis.
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Inflammatory and Autoimmune Central Nervous System Diseases and the Neurology of Sepsis
2016Headache is considered to be a nearly universal experience. Approximately 98% of the population will experience some form of headache in a lifetime. The number of migraineurs worldwide is approximately 1 billion, and nearly 1 in every 4 households in the United States has at least one family member who experiences migraine.
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Brain and other central nervous system tumor statistics, 2021
Ca-A Cancer Journal for Clinicians, 2021, Jill Barnholtz-Sloan, Carol Kruchko
exaly
The role of secretory phospholipase A₂ in the central nervous system and neurological diseases.
Molecular neurobiology, 2014Secretory phospholipase A2 (sPLA2s) are small secreted proteins (14-18 kDa) and require submillimolar levels of Ca(2+) for liberating arachidonic acid from cell membrane lipids. In addition to the enzymatic function, sPLA2 can exert various biological responses by binding to specific receptors.
Tatsurou, Yagami +2 more
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