Books on the topic 'Neurodegenerative disease'

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1

W, Langston J., and Young Anne B. 1947-, eds. Neurotoxins and neurodegenerative disease. New York, N.Y: New York Academy of Sciences, 1992.

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2

Avila, Jesus, Jose J. Lucas, and Felix Hernandez, eds. Animal Models for Neurodegenerative Disease. Cambridge: Royal Society of Chemistry, 2011. http://dx.doi.org/10.1039/9781849732758.

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3

Saghir, Atif N. Free radicals in neurodegenerative disease. Birmingham: University of Birmingham, 1996.

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4

1952-, Marwah J., and Teitelbaum Herman, eds. Advances in neurodegenerative disorders. Scottsdale, Ariz: Prominent Press, 1998.

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5

Board, National Radiological Protection, ed. ELF electromagnetic fields and neurodegenerative disease. Didcot: NRPB, 2001.

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6

Singh, Sarika, and Neeraj Joshi, eds. Pathology, Prevention and Therapeutics of Neurodegenerative Disease. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-0944-1.

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7

Mauro, Fasano, ed. The proteomic approach in neurodegenerative disease research. Trivandrum, Kerala, India: Research Signpost, 2007.

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8

Mauro, Fasano, ed. The proteomic approach in neurodegenerative disease research. Trivandrum, Kerala, India: Research Signpost, 2007.

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9

Selkoe, Dennis J., and Yves Christen, eds. Immunization Against Alzheimer’s Disease and Other Neurodegenerative Disorders. Berlin, Heidelberg: Springer Berlin Heidelberg, 2003. http://dx.doi.org/10.1007/978-3-642-59332-1.

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10

von, Bernhardi Rommy, and Inestrosa Nibaldo C, eds. Neurodegenerative diseases: From molecular concepts to therapeutic targets. New York: Nova Biomedical Books, 2008.

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11

Amritpal, Mudher, and Newman Tracey, eds. Drosophila: A toolbox for the study of neurodegenerative disease. New York: Taylor & Francis Group, 2008.

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12

Amritpal, Mudher, and Newman Tracey, eds. Drosophila: A toolbox for the study of neurodegenerative disease. New York: Taylor & Francis Group, 2008.

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13

Amritpal, Mudher, and Newman Tracey, eds. Drosophila: A toolbox for the study of neurodegenerative disease. New York: Taylor & Francis Group, 2008.

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14

I, Tröster Alexander, ed. Memory in neurodegenerative disease: Biological, cognitive, and clinical perspectives. Cambridge, UK: Cambridge University Press, 1998.

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15

Chadwick, Derek J., and Jamie A. Goode, eds. Neural Transplantation in Neurodegenerative Disease: Current Status and New Directions. Chichester, UK: John Wiley & Sons, Ltd, 2000. http://dx.doi.org/10.1002/0470870834.

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16

Möller, Thomas. Huntington Disease, Parkinson Disease, and Other Neurodegenerative Diseases. Oxford University Press, 2013. http://dx.doi.org/10.1093/med/9780199794591.003.0065.

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This is a digitally enhanced text. Readers can also see the coverage of this topic area in the second edition of Neuroglia. The second edition of Neuroglia was first published digitally in Oxford Scholarship Online and the bibliographic details provided, if cited, will direct people to that version of the text. Readers can also see the coverage of this topic area in the ...
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17

Prasad, Kedar N. Neurodegenerative Disease and Micronutrients. CRC Press, 2014. http://dx.doi.org/10.1201/b17497.

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18

Metal Related Neurodegenerative Disease. Elsevier, 2013. http://dx.doi.org/10.1016/c2012-0-03090-6.

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19

Tröster, Alexander I., ed. Memory in Neurodegenerative Disease. Cambridge University Press, 1998. http://dx.doi.org/10.1017/cbo9780511544378.

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20

Metabolomics in Neurodegenerative Disease. MDPI, 2020. http://dx.doi.org/10.3390/books978-3-03928-041-4.

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21

Crish, Samuel D., Robert W. Burgess, Denise M. Inman, Christine M. Dengler-Crish, Jason R. Richardson, and Brett Schofield, eds. Axonopathy in Neurodegenerative Disease. Frontiers Media SA, 2019. http://dx.doi.org/10.3389/978-2-88945-680-2.

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22

Trojanowski, J. O. PENN Neurodegenerative Disease Research. S Karger Pub, 2008.

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23

Bhatia, Kailash P., and Susanne Schneider. Metal Related Neurodegenerative Disease. Elsevier Science & Technology Books, 2013.

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24

Books, Gregg. Prions and Neurodegenerative Disease. Independently Published, 2020.

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25

Metal Related Neurodegenerative Disease. Elsevier Science & Technology Books, 2013.

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26

Metabolic and Bioenergetic Drivers of Neurodegenerative Disease: Neurodegenerative Disease Research and Commonalities with Metabolic Diseases. Elsevier, 2020. http://dx.doi.org/10.1016/s0074-7742(20)x0006-7.

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27

Mattson, Mark P., Jan Oscarsson, Grazyna Soderbom, and Russell Esterline. Metabolic and Bioenergetic Drivers of Neurodegenerative Disease: Neurodegenerative Disease Research and Commonalities with Metabolic Diseases. Elsevier Science & Technology Books, 2020.

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28

Metabolic and Bioenergetic Drivers of Neurodegenerative Disease: Treating neurodegenerative diseases as metabolic diseases. Elsevier, 2020. http://dx.doi.org/10.1016/s0074-7742(20)x0007-9.

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29

Animal Models for Neurodegenerative Disease. Royal Society of Chemistry, The, 2011.

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30

Animal Models for Neurodegenerative Disease. Royal Society of Chemistry, The, 2011.

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31

Novartis, Foundation. Neural Transplantation in Neurodegenerative Disease. Wiley & Sons, Incorporated, John, 2003.

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32

Zhou, Yongxia. Multiparametric Imaging in Neurodegenerative Disease. Nova Science Publishers, Incorporated, 2020.

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33

Zhou, Yongxia. Multiparametric Imaging in Neurodegenerative Disease. Nova Science Publishers, Incorporated, 2020.

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34

Lewis, Patrick A., and Jennifer E. Spillane. Molecular Pathology of Neurodegenerative Disease. Elsevier Science & Technology Books, 2018.

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35

Omic Studies of Neurodegenerative Disease. Elsevier Science & Technology Books, 2015.

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36

Animal Models of Neurological Disease, I: Neurodegenerative Diseases. Humana Press, 1992.

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37

(Editor), C. Haass, and G. Multhaup (Editor), eds. Cellular Mechanisms of Alzheimer's Disease: Neurodegenerative Diseases 2006. S Karger Pub, 2006.

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38

Boulton, Alan A., Glen B. Baker, and Roger F. Butterworth. Animal Models of Neurological Disease, I: Neurodegenerative Diseases. Humana Press, 2013.

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39

Cummings, Jeffrey L., and Jagan A. Pillai, eds. Neurodegenerative Diseases. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780190233563.001.0001.

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With an increasingly aging population, neurodegenerative diseases-such as Alzheimer’s disease, Lewy body dementia, frontotemporal dementia, and Parkinson’s disease-are becoming more prevalent in the world. This is an area of rapidly growing high-impact research as these neurodegenerative diseases are a huge burden for individuals, families, and societies both in quality of life and in healthcare costs. Finding novel therapeutic targets for neurodegenerative diseases is the premier medical challenge for this century. Classically each of these diseases has been viewed as a distinct entity with well-delineated clinical and pathological features. Recent research findings have revealed multiple commonalities across them; proteomic, genetic, cellular, and network mechanisms across neurodegenerative diseases. This conceptual revolution in our understanding of these neurodegenerative diseases as sharing unifying features is underpinned by underlying protein misfolding dysfunction and its consequences over time. As we search for new therapies and management of these neurodegenerative diseases, this book provides an effective source book of insights from experts that have played key roles in this conceptual revolution. Our goal is to enable better care of patients and to help build collaboration across research in multiple specializations that could help advance future insights and facilitate novel therapeutics.
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40

Cummings, Jeffrey L., and Jagan A. Pillai. Neurodegenerative Diseases. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780190233563.003.0001.

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Neurodegenerative diseases (NDDs) are growing in frequency and represent a major threat to public health. Advances in scientific progress have made it clear that NDDs share many underlying processes, including shared intracellular mechanisms such as protein misfolding and aggregation, cell-to-cell prion-like spread, growth factor signaling abnormalities, RNA and DNA disturbances, glial cell changes, and neuronal loss. Transmitter deficits are shared across many types of disorders. Means of studying NDDs with human iPS cells and transgenic models are similar. The progression of NDDs through asymptomatic, prodromal, and manifest stages is shared across disorders. Clinical features of NDDs, including cognitive impairment, disease progression, age-related effects, terminal stages, neuropsychiatric manifestations, and functional disorders and disability, have many common elements. Clinical trials, biomarkers, brain imaging, and regulatory aspects of NDD can share information across NDDs. Disease-modifying and transmitter-based therapeutic interventions, clinical trials, and regulatory approaches to treatments for NDDs are also similar.
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41

(Editor), Alan A. Boulton, Glen B. Baker (Editor), and Roger F. Butterworth (Editor), eds. Animal Models of Neurological Disease, I: Neurodegenerative Diseases (Neuromethods). Humana Press, 1992.

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42

Schiesser, William E. Computational Chemotaxis Models for Neurodegenerative Disease. WORLD SCIENTIFIC, 2017. http://dx.doi.org/10.1142/10377.

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43

Zhang, Ke, Chao Wang, Junliang Yuan, and Yu Deng, eds. Peripheral Immune System and Neurodegenerative Disease. Frontiers Media SA, 2022. http://dx.doi.org/10.3389/978-2-88976-975-9.

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44

Drouin-Ouellet, Janelle, and Roger A. Barker. Disease-Modifying Therapies in Neurodegenerative Disorders. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780190233563.003.0016.

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The recent identification of the genetic basis of many neurodegenerative disorders (NDDs), coupled with a greater understanding of their pathophysiology, has enabled better therapeutic strategies to be identified and tried. This includes approaches that target critical specific nodes in the disease pathways, for example, agents that modulate levels of mutant huntingtin in Huntington’s disease. In addition to these highly specific targeted therapies, there is also a growing realization that more generic lifestyle therapies influencing whole brain health may also have merit in treating these conditions-such as diet and exercise. This chapter explores the different approaches and agents used to try to modify the course of a range of NDDs, and highlights their progress relative to the clinic and the patients suffering with these currently incurable conditions.
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45

(Editor), M. A. Yenari, and Rona Greenberg Giffard (Editor), eds. Glia And Inflammation in Neurodegenerative Disease. Nova Science Publishers, 2006.

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46

Prasad, Kedar N. Neurodegenerative Disease and Micronutrients: Prevention and Treatment. Taylor & Francis Group, 2014.

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47

Omic Studies of Neurodegenerative Disease: Part A. Elsevier, 2015. http://dx.doi.org/10.1016/s0074-7742(15)x0003-1.

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48

Omic Studies of Neurodegenerative Disease: Part B. Elsevier, 2015. http://dx.doi.org/10.1016/s0074-7742(15)x0004-3.

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49

Hurley, Michael J. Omic Studies of Neurodegenerative Disease - Part A. Elsevier Science & Technology Books, 2015.

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50

Hurley, Michael J. Omic Studies of Neurodegenerative Disease - Part B. Elsevier Science & Technology Books, 2015.

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