Results for ' hypothalamic stimulation'

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  1.  16
    Avoidance learning motivated by hypothalamic stimulation.Bertram D. Cohen, George W. Brown & Marjorie L. Brown - 1957 - Journal of Experimental Psychology 53 (4):228.
  2.  10
    Daily l-Δ9-tetrahydrocannabinol and pressing for hypothalamic stimulation.Bruce M. Becker & Larry D. Reid - 1977 - Bulletin of the Psychonomic Society 10 (4):325-327.
  3.  14
    Addictive agents and intracranial stimulation: Daily amphetamine and hypothalamic self-stimulation.M. Ann Miller, Mary Ann F. Bush & Larry D. Reid - 1976 - Bulletin of the Psychonomic Society 8 (4):333-335.
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  4.  20
    Addictive agents and intracranial stimulation:Daily amphetamine and hypothalamic self-stimulation.Ricardo De Obaldia, Debra J. Magnuson & Larry D. Reid - 1977 - Bulletin of the Psychonomic Society 9 (5):377-379.
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  5.  25
    Electrophysiology and Structural Connectivity of the Posterior Hypothalamic Region: Much to Learn From a Rare Indication of Deep Brain Stimulation.Bina Kakusa, Sabir Saluja, David Y. A. Dadey, Daniel A. N. Barbosa, Sandra Gattas, Kai J. Miller, Robert P. Cowan, Zepure Kouyoumdjian, Nader Pouratian & Casey H. Halpern - 2020 - Frontiers in Human Neuroscience 14.
  6.  22
    Sensory Stimulation of Oxytocin Release Is Associated With Stress Management and Maternal Care.Toku Takahashi - 2021 - Frontiers in Psychology 11.
    It has been shown that various types of stress initiate different physiological and neuroendocrine disorders. Oxytocin is mainly produced in the supraoptic nucleus and paraventricular nucleus of the hypothalamus. Hypothalamic OT has antistress effects and attenuates the hypothalamic–pituitary–adrenal axis. One mechanism behind the antistress effects of OT is mediated through the inhibition from GABAA receptors on corticotropin-releasing factor expression at the PVN. Various manual therapies such as acupuncture, transcutaneous electrical nerve stimulation, and massage initiate the stimulation (...)
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  7.  13
    Leptin leads hypothalamic feeding circuits in a new direction.Joanne A. Harrold - 2004 - Bioessays 26 (10):1043-1045.
    A decade ago, leptin (from the greek lepto meaning ‘thin’) was identified as the product of the ob gene.1 This adipocyte‐derived hormone was found to suppress feeding and stimulate thermogenesis, and was thus proposed as a mediator in a negative feedback loop that controls body adiposity. This discovery led to a rapid revolution in the understanding of neurobiological mechanisms regulating obesity. However, while leptin's first life was as an adipostat, it is now known to have a wide range of additional (...)
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  8.  8
    A Comparison of Non-verbal Maternal Care of Male and Female Infants in India and the United Kingdom: The Parent-Infant Caregiving Touch Scale in Two Cultures.John Hodsoll, Andrew Pickles, Laura Bozicevic, Thirumalai Ananthanpillai Supraja, Jonathan Hill, Prabha S. Chandra & Helen Sharp - 2022 - Frontiers in Psychology 13.
    Differences in infant caregiving behavior between cultures have long been noted, although the quantified comparison of touch-based caregiving using uniform standardized methodology has been much more limited. The Parent-Infant Caregiving Touch scale was developed for this purpose and programming effects of early parental tactile stimulation on infant hypothalamic-pituitary adrenal -axis functioning, cardiovascular regulation and behavioral outcomes, similar to that reported in animals, have now been demonstrated. In order to inform future studies examining such programming effects in India, we (...)
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  9.  43
    Hunger and Satiety Signaling: Modeling Two Hypothalamomedullary Pathways for Energy Homeostasis.Kazuhiro Nakamura & Yoshiko Nakamura - 2018 - Bioessays 40 (8):1700252.
    The recent discovery of the medullary circuit driving “hunger responses” – reduced thermogenesis and promoted feeding – has greatly expanded our knowledge on the central neural networks for energy homeostasis. However, how hypothalamic hunger and satiety signals generated under fasted and fed conditions, respectively, control the medullary autonomic and somatic motor mechanisms remains unknown. Here, in reviewing this field, we propose two hypothalamomedullary neural pathways for hunger and satiety signaling. To trigger hunger signaling, neuropeptide Y activates a group of (...)
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  10.  19
    Transcranial direct current stimulation and power spectral parameters: a tDCS/EEG co-registration study.Anna L. Mangia, Marco Pirini & Angelo Cappello - 2014 - Frontiers in Human Neuroscience 8.
  11.  35
    Contribution of transcranial oscillatory stimulation to research on neural networks: an emphasis on hippocampo-neocortical rhythms.Lisa Marshall & Sonja Binder - 2013 - Frontiers in Human Neuroscience 7.
  12.  11
    Transcranial Random Noise Stimulation Does Not Improve Behavioral and Neurophysiological Measures in Patients with Subacute Vegetative-Unresponsive Wakefulness State.Mauro Mancuso, Laura Abbruzzese, Stefania Canova, Giulia Landi, Simone Rossi & Emiliano Santarnecchi - 2017 - Frontiers in Human Neuroscience 11.
  13.  14
    A Systematic Review on the Effect of Transcranial Direct Current and Magnetic Stimulation on Fear Memory and Extinction.Vuk Marković, Carmelo M. Vicario, Fatemeh Yavari, Mohammad A. Salehinejad & Michael A. Nitsche - 2021 - Frontiers in Human Neuroscience 15.
    Anxiety disorders are among the most prevalent mental disorders. Present treatments such as cognitive behavior therapy and pharmacological treatments show only moderate success, which emphasizes the importance for the development of new treatment protocols. Non-invasive brain stimulation methods such as repetitive transcranial magnetic stimulation and transcranial direct current stimulation have been probed as therapeutic option for anxiety disorders in recent years. Mechanistic information about their mode of action, and most efficient protocols is however limited. Here the fear (...)
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  14.  17
    Hypothalamic fatty acid metabolism: A housekeeping pathway that regulates food intake.Miguel López, Christopher J. Lelliott & Antonio Vidal-Puig - 2007 - Bioessays 29 (3):248-261.
    The hypothalamus is a specialized area in the brain that integrates the control of energy homeostasis. More than 70 years ago, it was proposed that the central nervous system sensed circulating levels of metabolites such as glucose, lipids and amino acids and modified feeding according to the levels of those molecules. This led to the formulation of the Glucostatic, Lipostatic and Aminostatic Hypotheses. It has taken almost that much time to demonstrate that circulating long‐chain fatty acids act as signals of (...)
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  15.  58
    Reactions toward the source of stimulation.J. Richard Simon - 1969 - Journal of Experimental Psychology 81 (1):174.
  16.  14
    Conditioning of eye movements with auditory stimulation.John N. Marr, Dewey J. Bayer & Peter L. Borchelt - 1969 - Journal of Experimental Psychology 81 (2):370.
  17.  29
    Researcher Perspectives on Ethical Considerations in Adaptive Deep Brain Stimulation Trials.Katrina A. Muñoz, Kristin Kostick, Clarissa Sanchez, Lavina Kalwani, Laura Torgerson, Rebecca Hsu, Demetrio Sierra-Mercado, Jill O. Robinson, Simon Outram, Barbara A. Koenig, Stacey Pereira, Amy McGuire, Peter Zuk & Gabriel Lázaro-Muñoz - 2020 - Frontiers in Human Neuroscience 14.
  18.  51
    Reliability of cortical activity during natural stimulation.Uri Hasson, Rafael Malach & David J. Heeger - 2010 - Trends in Cognitive Sciences 14 (1):40-48.
  19.  19
    Exploring Layers of Meaning with Deep Brain Stimulation Patients.Daniel R. Morrison & Mark J. Bliton - 2011 - American Journal of Bioethics Neuroscience 2 (1):26-28.
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  20.  53
    Hope and Patients’ Expectations in Deep Brain Stimulation: Healthcare Providers’ Perspectives and Approaches.Emily Bell, Bruce Maxwell, Mary Pat McAndrews, Abbas Sadikot & Eric Racine - 2010 - Journal of Clinical Ethics 21 (2):112-124.
    In this article we report relevant data that shed light on the topic of hope and patients’ expectations in the use of DBS, for standard, approved, and established indications, based on a broader qualitative study on the ethical and social challenges that healthcare providers face in the field of DBS.
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  21.  12
    Dignity of Risk, Reemergent Agency, and the Central Thalamic Stimulation Trial for Moderate to Severe Brain Injury.Joseph J. Fins & Megan S. Wright - 2022 - Perspectives in Biology and Medicine 65 (2):307-315.
  22.  12
    Publication of Study Exit Procedures in Clinical Trials of Deep Brain Stimulation: A Focused Literature Review.Lauren R. Sankary, Akila M. Nallapan, Olivia Hogue, Andre G. Machado & Paul J. Ford - 2020 - Frontiers in Human Neuroscience 14.
  23.  31
    A hypothalamic digoxin-mediated model for conscious and subliminal perception.Ravi K. Kurup & Parameswara A. Kurup - 2003 - International Journal of Neuroscience 113 (6):815-820.
  24. Individual Differences and State-Dependent Responses in Transcranial Direct Current Stimulation.Tzu-Yu Hsu, Chi-Hung Juan & Philip Tseng - 2016 - Frontiers in Human Neuroscience 10.
  25.  16
    Problems of measurement and interpretation with reinforcing brain stimulation.Elliot S. Valenstein - 1964 - Psychological Review 71 (6):415-437.
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  26.  11
    Increase in short-term memory capacity induced by down-regulating individual theta frequency via transcranial alternating current stimulation.Johannes Vosskuhl, René J. Huster & Christoph S. Herrmann - 2015 - Frontiers in Human Neuroscience 9.
  27.  9
    A framework for categorizing electrode montages in transcranial direct current stimulation.Padideh Nasseri, Michael A. Nitsche & Hamed Ekhtiari - 2015 - Frontiers in Human Neuroscience 9.
  28.  43
    Reliability of cortical activity during natural stimulation.David J. Heeger Uri Hasson, Rafael Malach - 2010 - Trends in Cognitive Sciences 14 (1):40.
  29.  18
    Why You Should Report Bayes Factors in Your Transcranial Brain Stimulation Studies.Anna Lena Biel & Elisabeth V. C. Friedrich - 2018 - Frontiers in Psychology 9.
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  30.  7
    Effects of Transcranial Direct Current Stimulation of Primary Motor Cortex on Reaction Time and Tapping Performance: A Comparison Between Athletes and Non-athletes.Oliver Seidel & Patrick Ragert - 2019 - Frontiers in Human Neuroscience 13.
  31.  18
    Modulation of spontaneous alpha brain rhythms using low-intensity transcranial direct-current stimulation.Grazia F. Spitoni, Rocco L. Cimmino, Chiara Bozzacchi, Luigi Pizzamiglio & Francesco Di Russo - 2013 - Frontiers in Human Neuroscience 7.
  32.  16
    Effects of Transcutaneous Vagus Nerve Stimulation on the P300 and Alpha-Amylase Level: A Pilot Study.Carlos Ventura-Bort, Janine Wirkner, Hannah Genheimer, Julia Wendt, Alfons O. Hamm & Mathias Weymar - 2018 - Frontiers in Human Neuroscience 12.
  33.  36
    A Prospective Study of the Impact of Transcranial Alternating Current Stimulation on EEG Correlates of Somatosensory Perception.Danielle D. Sliva, Christopher J. Black, Paul Bowary, Uday Agrawal, Juan F. Santoyo, Noah S. Philip, Benjamin D. Greenberg, Christopher I. Moore & Stephanie R. Jones - 2018 - Frontiers in Psychology 9.
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  34.  80
    Wheelchair Control in a Virtual Environment by Healthy Participants Using a P300-BCI Based on Tactile Stimulation: Training Effects and Usability.Matthias Eidel & Andrea Kübler - 2020 - Frontiers in Human Neuroscience 14.
  35.  6
    Effects of Multi-Muscle Electrical Stimulation and Stand Training on Stepping for an Individual With SCI.Kamyar Momeni, Arvind Ramanujam, Manikandan Ravi, Erica Garbarini & Gail F. Forrest - 2020 - Frontiers in Human Neuroscience 14.
  36.  24
    Adverse Psychological Effects to Deep Brain Stimulation: Overturning the Question.Sofia Moratti & Dennis Patterson - 2014 - American Journal of Bioethics Neuroscience 5 (4):62-64.
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  37.  5
    The Planning of Difficulty Curves in an Exergame for Inhibitory Control Stimulation in a School Intervention Program: A Pilot Study.João B. Mossmann, Bernardo B. Cerqueira, Débora N. F. Barbosa, Rochele P. Fonseca & Eliseo B. Reategui - 2019 - Frontiers in Psychology 10.
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  38.  14
    Hypothalamic neurohumors as neurohormones and neurotransmitters.J. J. Dreifuss & M. C. Harris - 1979 - Behavioral and Brain Sciences 2 (3):421-422.
  39.  11
    The hypothalamic 14C differential and feeding behavior.Jaak Panksepp & Dwight M. Nance - 1974 - Bulletin of the Psychonomic Society 3 (5):325-327.
  40.  29
    Depression of corticomotor excitability after muscle fatigue induced by electrical stimulation and voluntary contraction.Shinichi Kotan, Sho Kojima, Shota Miyaguchi, Kazuhiro Sugawara & Hideaki Onishi - 2015 - Frontiers in Human Neuroscience 9.
  41.  13
    Effect of Short-Term Transcutaneous Vagus Nerve Stimulation (tVNS) on Brain Processing of Food Cues: An Electrophysiological Study.Martina A. Obst, Marcus Heldmann, Helena Alicart, Marc Tittgemeyer & Thomas F. Münte - 2020 - Frontiers in Human Neuroscience 14.
  42.  22
    Modulating functional and dysfunctional mentalizing by transcranial magnetic stimulation.Tobias Schuwerk, Berthold Langguth & Monika Sommer - 2014 - Frontiers in Psychology 5.
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  43.  12
    Ethical and Regulatory Concerns About Direct-to-Consumer Brain Stimulation for Athletic Enhancement.Robert Martone & John Shook - 2019 - American Journal of Bioethics Neuroscience 10 (4):191-193.
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  44.  10
    Rebound or Entrainment? The Influence of Alternating Current Stimulation on Individual Alpha.Linus Haberbosch, Sein Schmidt, Andreas Jooss, Arvid Köhn, Leonard Kozarzewski, Maria Rönnefarth, Michael Scholz & Stephan A. Brandt - 2019 - Frontiers in Human Neuroscience 13.
  45.  34
    How can we act morally in a merger process? A stimulation based on implicit contracts.Olaf Karitzki & Alexander Brink - 2003 - Journal of Business Ethics 43 (1-2):137 - 152.
    The intention of the article is to offer stakeholders affected by mergers a criterion from which moral arguments may be generated for the organization of each individual case. The criterion: "Any operation causing legitimate interests to suffer vital infringement should be avoided in a merger process." A vital infringement of these interests is assumed when the merger undermines unique positive opportunities or considerable impairment in the future, impossible to overcome for the person affected without an unacceptable level of difficulty. Therefore, (...)
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  46.  21
    Patients’ Weighing of the Long-Term Risks and Consequences Associated With Deep Brain Stimulation in Treatment-Resistant Depression.Cassandra Thomson, Rebecca Segrave, John Gardner & Adrian Carter - 2018 - American Journal of Bioethics Neuroscience 9 (4):243-245.
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  47.  6
    Maturation of Corticospinal Tracts in Children With Hemiplegic Cerebral Palsy Assessed by Diffusion Tensor Imaging and Transcranial Magnetic Stimulation.Christos Papadelis, Harper Kaye, Benjamin Shore, Brian Snyder, Patricia Ellen Grant & Alexander Rotenberg - 2019 - Frontiers in Human Neuroscience 13.
  48.  34
    Would you be willing to zap your child's brain? Public perspectives on parental responsibilities and the ethics of enhancing children with transcranial direct current stimulation.Katy Wagner, Hannah Maslen, Justin Oakley & Julian Savulescu - 2018 - AJOB Empirical Bioethics 9 (1):29-38.
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  49.  13
    Frontal Alpha Asymmetry, a Potential Biomarker for the Effect of Neuromodulation on Brain’s Affective Circuitry—Preliminary Evidence from a Deep Brain Stimulation Study.Sun Lihua, Peräkylä Jari & M. Hartikainen Kaisa - 2017 - Frontiers in Human Neuroscience 11.
  50.  6
    Suppression of 60-Hz induced convulsive behavior by 3-Hz brain stimulation.John Gaito - 1979 - Bulletin of the Psychonomic Society 13 (4):223-226.
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