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Identification and Characterization of a Sleep-Active Cell Group in the Rostral Medullary Brainstem

Christelle Anaclet
Dec 12, 2012; 32:17970-17976
BehavioralSystemsCognitive




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Beyond the 5-HT2A Receptor: Classic and Nonclassic Targets in Psychedelic Drug Action

Lindsay P. Cameron
Nov 8, 2023; 43:7472-7482
Symposium and Mini-Symposium




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Loss of Dopamine Transporters in Methamphetamine Abusers Recovers with Protracted Abstinence

Nora D. Volkow
Dec 1, 2001; 21:9414-9418
Behavioral




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100 years of organised Aboriginal activism

Centenary Forum for the Australian Aboriginal Progressive Association 1924–2024.




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Molecular, Structural, and Functional Characterization of Alzheimer's Disease: Evidence for a Relationship between Default Activity, Amyloid, and Memory

Randy L. Buckner
Aug 24, 2005; 25:7709-7717
Neurobiology of Disease




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Genomic Analysis of Reactive Astrogliosis

Jennifer L. Zamanian
May 2, 2012; 32:6391-6410
Neurobiology of Disease




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Targeting Cre Recombinase to Specific Neuron Populations with Bacterial Artificial Chromosome Constructs

Shiaoching Gong
Sep 12, 2007; 27:9817-9823
Toolbox




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Intraneuronal beta-Amyloid Aggregates, Neurodegeneration, and Neuron Loss in Transgenic Mice with Five Familial Alzheimer's Disease Mutations: Potential Factors in Amyloid Plaque Formation

Holly Oakley
Oct 4, 2006; 26:10129-10140
Neurobiology of Disease




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Cardiac-Sympathetic Contractility and Neural Alpha-Band Power: Cross-Modal Collaboration during Approach-Avoidance Conflict

As evidence mounts that the cardiac-sympathetic nervous system reacts to challenging cognitive settings, we ask if these responses are epiphenomenal companions or if there is evidence suggesting a more intertwined role of this system with cognitive function. Healthy male and female human participants performed an approach-avoidance paradigm, trading off monetary reward for painful electric shock, while we recorded simultaneous electroencephalographic and cardiac-sympathetic signals. Participants were reward sensitive but also experienced approach-avoidance "conflict" when the subjective appeal of the reward was near equivalent to the revulsion of the cost. Drift-diffusion model parameters suggested that participants managed conflict in part by integrating larger volumes of evidence into choices (wider decision boundaries). Late alpha-band (neural) dynamics were consistent with widening decision boundaries serving to combat reward sensitivity and spread attention more fairly to all dimensions of available information. Independently, wider boundaries were also associated with cardiac "contractility" (an index of sympathetically mediated positive inotropy). We also saw evidence of conflict-specific "collaboration" between the neural and cardiac-sympathetic signals. In states of high conflict, the alignment (i.e., product) of alpha dynamics and contractility were associated with a further widening of the boundary, independent of either signal's singular association. Cross-trial coherence analyses provided additional evidence that the autonomic systems controlling cardiac-sympathetics might influence the assessment of information streams during conflict by disrupting or overriding reward processing. We conclude that cardiac-sympathetic control might play a critical role, in collaboration with cognitive processes, during the approach-avoidance conflict in humans.




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A Systematic Structure-Function Characterization of a Human Mutation in Neurexin-3{alpha} Reveals an Extracellular Modulatory Sequence That Stabilizes Neuroligin-1 Binding to Enhance the Postsynaptic Properties of Excitatory Synapses

α-Neurexins are essential and highly expressed presynaptic cell-adhesion molecules that are frequently linked to neuropsychiatric and neurodevelopmental disorders. Despite their importance, how the elaborate extracellular sequences of α-neurexins contribute to synapse function is poorly understood. We recently characterized the presynaptic gain-of-function phenotype caused by a missense mutation in an evolutionarily conserved extracellular sequence of neurexin-3α (A687T) that we identified in a patient diagnosed with profound intellectual disability and epilepsy. The striking A687T gain-of-function mutation on neurexin-3α prompted us to systematically test using mutants whether the presynaptic gain-of-function phenotype is a consequence of the addition of side-chain bulk (i.e., A687V) or polar/hydrophilic properties (i.e., A687S). We used multidisciplinary approaches in mixed-sex primary hippocampal cultures to assess the impact of the neurexin-3αA687 residue on synapse morphology, function and ligand binding. Unexpectedly, neither A687V nor A687S recapitulated the neurexin-3α A687T phenotype. Instead, distinct from A687T, molecular replacement with A687S significantly enhanced postsynaptic properties exclusively at excitatory synapses and selectively increased binding to neuroligin-1 and neuroligin-3 without changing binding to neuroligin-2 or LRRTM2. Importantly, we provide the first experimental evidence supporting the notion that the position A687 of neurexin-3α and the N-terminal sequences of neuroligins may contribute to the stability of α-neurexin–neuroligin-1 trans-synaptic interactions and that these interactions may specifically regulate the postsynaptic strength of excitatory synapses.




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Recent Visual Experience Reshapes V4 Neuronal Activity and Improves Perceptual Performance

Recent visual experience heavily influences our visual perception, but how neuronal activity is reshaped to alter and improve perceptual discrimination remains unknown. We recorded from populations of neurons in visual cortical area V4 while two male rhesus macaque monkeys performed a natural image change detection task under different experience conditions. We found that maximizing the recent experience with a particular image led to an improvement in the ability to detect a change in that image. This improvement was associated with decreased neural responses to the image, consistent with neuronal changes previously seen in studies of adaptation and expectation. We found that the magnitude of behavioral improvement was correlated with the magnitude of response suppression. Furthermore, this suppression of activity led to an increase in signal separation, providing evidence that a reduction in activity can improve stimulus encoding. Within populations of neurons, greater recent experience was associated with decreased trial-to-trial shared variability, indicating that a reduction in variability is a key means by which experience influences perception. Taken together, the results of our study contribute to an understanding of how recent visual experience can shape our perception and behavior through modulating activity patterns in the mid-level visual cortex.




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Coupling of Slow Oscillations in the Prefrontal and Motor Cortex Predicts Onset of Spindle Trains and Persistent Memory Reactivations

Sleep is known to drive the consolidation of motor memories. During nonrapid eye movement (NREM) sleep, the close temporal proximity between slow oscillations (SOs) and spindles ("nesting" of SO-spindles) is known to be essential for consolidation, likely because it is closely associated with the reactivation of awake task activity. Interestingly, recent work has found that spindles can occur in temporal clusters or "trains." However, it remains unclear how spindle trains are related to the nesting phenomenon. Here, we hypothesized that spindle trains are more likely when SOs co-occur in the prefrontal and motor cortex. We conducted simultaneous neural recordings in the medial prefrontal cortex (mPFC) and primary motor cortex (M1) of male rats training on the reach-to-grasp motor task. We found that intracortically recorded M1 spindles are organized into distinct temporal clusters. Notably, the occurrence of temporally precise SOs between mPFC and M1 was a strong predictor of spindle trains. Moreover, reactivation of awake task patterns is much more persistent during spindle trains in comparison with that during isolated spindles. Together, our work suggests that the precise coupling of SOs across mPFC and M1 may be a potential driver of spindle trains and persistent reactivation of motor memory during NREM sleep.




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Sequential Activation of Lateral Hypothalamic Neuronal Populations during Feeding and Their Assembly by Gamma Oscillations

Neural circuits supporting innate behaviors, such as feeding, exploration, and social interaction, intermingle in the lateral hypothalamus (LH). Although previous studies have shown that individual LH neurons change their firing relative to the baseline during one or more behaviors, the firing rate dynamics of LH populations within behavioral episodes and the coordination of behavior-related LH populations remain largely unknown. Here, using unsupervised graph-based clustering of LH neurons firing rate dynamics in freely behaving male mice, we identified distinct populations of cells whose activity corresponds to feeding, specific times during feeding bouts, or other innate behaviors—social interaction and novel object exploration. Feeding-related cells fired together with a higher probability during slow and fast gamma oscillations (30–60 and 60–90 Hz) than during nonrhythmic epochs. In contrast, the cofiring of neurons signaling other behaviors than feeding was overall similar between slow gamma and nonrhythmic epochs but increased during fast gamma oscillations. These results reveal a neural organization of ethological hierarchies in the LH and point to behavior-specific motivational systems, the dysfunction of which may contribute to mental disorders.




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Anterior Olfactory Cortices Differentially Transform Bottom-Up Odor Signals to Produce Inverse Top-Down Outputs

Odor information arrives first in the main olfactory bulb and is then broadcasted to the olfactory cortices and striatum. Downstream regions have unique cellular and connectivity architectures that may generate different coding patterns to the same odors. To reveal region-specific response features, tuning and decoding of single-unit populations, we recorded responses to the same odors under the same conditions across regions, namely, the main olfactory bulb (MOB), the anterior olfactory nucleus (AON), the anterior piriform cortex (aPC), and the olfactory tubercle of the ventral striatum (OT), of awake male mice. We focused on chemically closely related aldehydes that still create distinct percepts. The MOB had the highest decoding accuracy for aldehydes and was the only region encoding chemical similarity. The MOB had the highest fraction of inhibited responses and narrowly tuned odor-excited responses in terms of timing and odor selectivity. Downstream, the interconnected AON and aPC differed in their response patterns to the same stimuli. While odor-excited responses dominated the AON, the aPC had a comparably high fraction of odor-inhibited responses. Both cortices share a main output target that is the MOB. This prompted us to test if the two regions convey also different net outputs. Aldehydes activated AON terminals in the MOB as a bulk signal but inhibited those from the aPC. The differential cortical projection responses generalized to complex odors. In summary, olfactory regions reveal specialized features in their encoding with AON and aPC differing in their local computations, thereby generating inverse net centrifugal and intercortical outputs.




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Neurons Underlying Aggression-Like Actions That Are Shared by Both Males and Females in Drosophila

Aggression involves both sexually monomorphic and dimorphic actions. How the brain implements these two types of actions is poorly understood. We found that in Drosophila melanogaster, a set of neurons, which we call CL062, previously shown to mediate male aggression also mediate female aggression. These neurons elicit aggression acutely and without the presence of a target. Although the same set of actions is elicited in males and females, the overall behavior is sexually dimorphic. The CL062 neurons do not express fruitless, a gene required for sexual dimorphism in flies, and expressed by most other neurons important for controlling fly aggression. Connectomic analysis in a female electron microscopy dataset suggests that these neurons have limited connections with fruitless expressing neurons that have been shown to be important for aggression and signal to different descending neurons. Thus, CL062 is part of a monomorphic circuit for aggression that functions parallel to the known dimorphic circuits.




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The Effect of Congruent versus Incongruent Distractor Positioning on Electrophysiological Signals during Perceptual Decision-Making

Key event-related potentials (ERPs) of perceptual decision-making such as centroparietal positivity (CPP) elucidate how evidence is accumulated toward a given choice. Furthermore, this accumulation can be impacted by visual target selection signals such as the N2 contralateral (N2c). How these underlying neural mechanisms of perceptual decision-making are influenced by the spatial congruence of distractors relative to target stimuli remains unclear. Here, we used electroencephalography (EEG) in humans of both sexes to investigate the effect of distractor spatial congruency (same vs different hemifield relative to targets) on perceptual decision-making. We confirmed that responses for perceptual decisions were slower for spatially incongruent versus congruent distractors of high salience. Similarly, markers of target selection (N2c peak amplitude) and evidence accumulation (CPP slope) were found to be lower when distractors were spatially incongruent versus congruent. To evaluate the effects of congruency further, we applied drift diffusion modeling to participant responses, which showed that larger amplitudes of both ERPs were correlated with shorter nondecision times when considering the effect of congruency. The modeling also suggested that congruency's effect on behavior occurred prior to and during evidence accumulation when considering the effects of the N2c peak and CPP slope. These findings point to spatially incongruent distractors, relative to congruent distractors, influencing decisions as early as the initial sensory processing phase and then continuing to exert an effect as evidence is accumulated throughout the decision-making process. Overall, our findings highlight how key electrophysiological signals of perceptual decision-making are influenced by the spatial congruence of target and distractor.




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Erratum: McCosh et al., "Norepinephrine Neurons in the Nucleus of the Solitary Tract Suppress Luteinizing Hormone Secretion in Female Mice"




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The Hippocampus Preorders Movements for Skilled Action Sequences

Plasticity in the subcortical motor basal ganglia–thalamo–cerebellar network plays a key role in the acquisition and control of long-term memory for new procedural skills, from the formation of population trajectories controlling trained motor skills in the striatum to the adaptation of sensorimotor maps in the cerebellum. However, recent findings demonstrate the involvement of a wider cortical and subcortical brain network in the consolidation and control of well-trained actions, including a brain region traditionally associated with declarative memory—the hippocampus. Here, we probe which role these subcortical areas play in skilled motor sequence control, from sequence feature selection during planning to their integration during sequence execution. An fMRI dataset (N = 24; 14 females) collected after participants learnt to produce four finger press sequences entirely from memory with high movement and timing accuracy over several days was examined for both changes in BOLD activity and their informational content in subcortical regions of interest. Although there was a widespread activity increase in effector-related striatal, thalamic, and cerebellar regions, in particular during sequence execution, the associated activity did not contain information on the motor sequence identity. In contrast, hippocampal activity increased during planning and predicted the order of the upcoming sequence of movements. Our findings suggest that the hippocampus preorders movements for skilled action sequences, thus contributing to the higher-order control of skilled movements that require flexible retrieval. These findings challenge the traditional taxonomy of episodic and procedural memory and carry implications for the rehabilitation of individuals with neurodegenerative disorders.




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Pre- and Postsynaptic MEF2C Promotes Experience-Dependent, Input-Specific Development of Cortical Layer 4 to Layer 2/3 Excitatory Synapses and Regulates Activity-Dependent Expression of Synaptic Cell Adhesion Molecules

Experience- and activity-dependent transcription is a candidate mechanism to mediate development and refinement of specific cortical circuits. Here, we demonstrate that the activity-dependent transcription factor myocyte enhancer factor 2C (MEF2C) is required in both presynaptic layer (L) 4 and postsynaptic L2/3 mouse (male and female) somatosensory (S1) cortical neurons for development of this specific synaptic connection. While postsynaptic deletion of Mef2c weakens L4 synaptic inputs, it has no effect on inputs from local L2/3, contralateral S1, or the ipsilateral frontal/motor cortex. Similarly, homozygous or heterozygous deletion of Mef2c in presynaptic L4 neurons weakens L4 to L2/3 excitatory synaptic inputs by decreasing presynaptic release probability. Postsynaptic MEF2C is specifically required during an early postnatal, experience-dependent, period for L4 to L2/3 synapse function, and expression of transcriptionally active MEF2C (MEF2C-VP16) rescues weak L4 to L2/3 synaptic strength in sensory-deprived mice. Together, these results suggest that experience- and/or activity-dependent transcriptional activation of MEF2C promotes development of L4 to L2/3 synapses. Additionally, MEF2C regulates the expression of many pre- and postsynaptic genes in postnatal cortical neurons. Interestingly, MEF2C was necessary for activity-dependent expression of many presynaptic genes, including those that function in transsynaptic adhesion and neurotransmitter release. This work provides mechanistic insight into the experience-dependent development of specific cortical circuits.




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Rome Based Agencies making an impact in Burkina Faso

FAO, IFAD and WFP/Burkina [...]




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Launch of a series of Activity Books for young people

The Food and Agriculture Organization of the United Nations (FAO) has the pleasure to inform the Permanent Representatives of the launch of a series of Activity Books for young people. [...]




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Two new reports demonstrate the impact of FAO's partnerships with Belgium and Sweden

Today, FAO launched two new reports in time for the 160th session of the Council:

-          FAO + Belgium: Inclusive approaches to end hunger and promote [...]




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An action-oriented guide for decision makers

A valuable tool has been produced for decision makers responsible for integrating the Sustainable Development Goals into national policies and programmes. This publication, Transforming food and agriculture to achieve [...]




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Invitation for the launch event: The impact of disasters and crises on agriculture and food security, 2021

Understanding and managing disaster risks in global agriculture: Better data for ambitious action



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AMR Multi-Stakeholder Partnership Platform - Creating a movement for change through engaging multiple actors and voices

The Tripartite organizations (FAO, OIE, WHO) invite partners to join public discussion on the establishment of the AMR Multi-Stakeholder Partnership Platform.





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World Food Day calls for action to 'Leave no one behind'

Although we have made progress towards building a better world, too many people have been left behind. People who are unable to benefit from human development, innovation or economic growth.

In [...]




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Transforming agrifood systems: from strategy to action

The Committee on Agriculture (COAG) is one of FAO’s Governing Bodies providing overall policy and regulatory guidance on issues relating to agriculture, livestock, food safety, nutrition, rural development and [...]




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FAO in review: Building and deploying professional and practical expertise

Read the seriesFull Article



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FAO GLOBEFISH Celebrates 40 years of impact on global fisheries and aquaculture trade

For the past four decades, FAO GLOBEFISH has been a cornerstone of global fisheries and aquaculture market analysis. Since its inception in 1984, the project has provided [...]




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The Smithsonian Channel Commemorates the 50th Anniversary of the Wilderness Act

Aerial America: Wilderness premieres Sunday, Sept. 7 at 9PM ET/PT




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Did the Spanish Flu Impact America's Ability to Fight in WWI?

By late September 1918, in a bid to contain the spread of the flu, the U.S. had made the decision to cancel the draft. It was too little, too late—in October alone, over 200,000 Americans were killed by the disease.




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SmartNews: Making Gasoline from Bacteria

Researchers from South Korea have discovered a unconventional way to produce gasoline.




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The Ju/’Hoansi Tribe in Action

Over the course of 50 years, John Marshall filmed the African tribe, tracking how their nomadic culture slowly died out




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10 Fun Facts About Bioluminescence

Discover the incredible ways in which living organisms illuminate the darkness of the deep sea, lush forests, and even our own backyards. --- For more videos from Smithsonian Magazine: https://www.smithsonianmag.com/videos/ Digital Editorial Director: Brian Wolly Director of Programming: Nicki Marko Supervising Producer & Scriptwriter: Michelle Mehrtens Video Editor: Sierra Theobald




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10 Fascinating Facts About Owls

From their jaw-dropping hunting abilities to their unique physicality, owls are truly captivating creatures. Join us as we delve into the world of these mysterious birds of prey. --- For more videos from Smithsonian Magazine: https://www.smithsonianmag.com/videos/ Digital Editorial Director: Brian Wolly Supervising Producer & Scriptwriter: Michelle Mehrtens Producer: Nicki Marko Video Editor: Sierra Theobald




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Manufacturing of bitumen-lined water bottles

Manufacturing of bitumen-lined water bottles in the traditional method of Native Californian Indians. Credit: Nicholas Radtkey, UC Davis & Sabrina Sholts




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5 Surprising Facts About Rosa Parks

Largely recognized for her leading role in the bus boycott of 1955, Rosa Parks was an enduring activist for the Civil Rights Movement. Throughout her numerous decades of service, Parks left behind a legacy of hope, inspiration, and leadership for millions around the world. --- For more videos from Smithsonian Magazine: https://www.smithsonianmag.com/videos/ Digital Editorial Director: Brian Wolly Supervising Producer & Scriptwriter: Michelle Mehrtens Video Editor: Sierra Theobald




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The Cyrus Cylinder: An Artifact Ahead of Its Time

This relic from ancient Persia had a profound influence on the Founding Fathers. More on the Cyrus Cylinder: https://www.smithsonianmag.com/smithsonian-institution/the-cyrus-cylinder-goes-on-view-at-the-sackler-gallery-1334866/




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Watch the ScanEagle Drone in Action

This unmanned aerial vehicle can be launched from, and land on, a moving ship thanks to new technology Narrated by T.A. Frail Script by Brendan McCabe Video courtesy of Insitu




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Transporting a Live Elephant Is Exactly as Difficult as You Would Imagine

The team at the Ol Pejeta Conservancy needs to transport Kinani, a blind male elephant, to a 4,000-acre compound where he'll be able to roam freely without disturbing other wildlife. Weighing in at nearly eight tons, it'll take careful maneuvering and custom equipment to bring the animal to his new sanctuary.




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How to Separate Fact From Myth in the Extraordinary Story of Sojourner Truth

The facts of Sojourner Truth’s life are inspiring: Born into slavery in the late 1790s, she became an influential abolitionist and Pentecostal preacher, transfixing audiences from the mid 1840s through the late 1870s with her candid and powerful voice, not to mention her singing. Tall and strong, Truth was physically formidable, too. No one was using the term “intersectionality” in the 19th century, but Truth embodied this idea, declaring that her Blackness and her womanhood were equally essential facets of her identity. But many people, both in Truth’s lifetime and in the approximately 140 years since her death, have found it useful to recast Truth as they wish to remember her instead of as she was. There’s no better example of this than “Ain’t I a woman?,” the hypothetical that Truth supposedly put to the audience when she addressed a women’s rights convention in 1851 in Akron, Ohio—the city where a public plaza will be dedicated in her honor this spring. There’s reason to doubt she said that, or at least that she said it in that way. In this episode, we speak with two historians who’ve dug into Truth’s complicated legacy and challenged much of what’s been written about this American icon. Cynthia Greenlee reported on recent efforts to honor Truth (https://www.smithsonianmag.com/history/remarkable-untold-story-sojourner-truth-180983691/) for the March 2024 issue of Smithsonian. Nell Irvin Painter wrote the groundbreaking 1996 biography Sojourner Truth: A Life, A Symbol, and she’s hard at work on a follow-up volume titled Sojourner Truth Was a New Yorker and She Didn’t Say That. Together, Greenlee and Painter help us understand us who Sojourner Truth really was, and why several generations of activists have claimed her as a symbol — at the expense of our understanding of her as a person. Read Cynthia Greenlee’s March 2024 Smithsonian story about Sojourner Truth here (https://www.smithsonianmag.com/history/remarkable-untold-story-sojourner-truth-180983691/) . You can learn more about Dr. Greenlee and her work at her site (https://www.cynthiagreenlee.com/) . You can learn more about Dr. Nell Irvin Painter’s work as an author, artist, and historian at her site (http://www.nellpainter.com/) . And read more here for the history of Mar-a-Lago (https://www.smithsonianmag.com/history/history-mar-a-lago-180965214/) mentioned in our dinner party fact. Find prior episodes of our show here (https://www.smithsonianmag.com/podcast/) . There’s More to That is a production of Smithsonian magazine and PRX Productions. From the magazine, our team is Chris Klimek, Debra Rosenberg and Brian Wolly. From PRX, our team is Jessica Miller, Adriana Rosas Rivera, Genevieve Sponsler, Rye Dorsey, and Edwin Ochoa. The Executive Producer of PRX Productions is Jocelyn Gonzales. Fact-checking by Stephanie Abramson. Episode artwork by Emily Lankiewicz. Music by APM Music.




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5 Unexpected Facts About George Washington

Explore the lesser-known details of the founder’s childhood, home life and career and gain a deeper understanding of his contributions to the United States. --- For more videos from Smithsonian Magazine: https://www.smithsonianmag.com/videos/ Digital Editorial Director: Brian Wolly Supervising Producer & Scriptwriter: Michelle Mehrtens Video Editor: Sierra Theobald




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10 Enchanting Butterfly Facts Revealed!

Discover astonishing butterfly facts and delight in learning about the superlatives of butterflies, from the largest to the smallest to the fastest. Whether you're a nature enthusiast, an avid butterfly lover, or simply someone looking to expand their knowledge, this video is sure to leave you spellbound. Subscribe to our channel for more exciting videos exploring the wonders of the natural world. Don't miss out on future uploads where we uncover the secrets and hidden beauty of various flora and fauna, aiming to instill a deeper appreciation for the enchanting world we live in. --- Digital Editorial Director: Brian Wolly Supervising Producer & Scriptwriter: Michelle Mehrtens Video Editor: Sierra Theobald




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Ask Smithsonian: What’s the Difference Between Bacteria and Viruses?

The answer…and why you should care




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This 1935 Florida Hurricane Had a Devastating Impact

On September 2, 1935, Florida was hit by the most intense hurricane ever recorded—a category 5. Despite early warnings by the weather authorities, a calamitous loss of life shocked the nation




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Ask Smithsonian: Five False ‘Facts’ About the Human Body

Think you know everything about your own body? Test your smarts against this one-minute video, where Ask Smithsonian host Eric Schulze uncovers the facts behind five popular myths about the human body.




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5 Surprising Facts About Pompeii

This immersive archaeological exploration of Pompeii, a once-thriving Roman city, will transport you back in time – before the catastrophic eruption of Mount Vesuvius in 79 AD. --- For more videos from Smithsonian Magazine: https://www.smithsonianmag.com/videos/ Digital Editorial Director: Brian Wolly Supervising Producer & Scriptwriter: Michelle Mehrtens Video Editor: Sierra Theobald




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A 3D Digital Interactive of Santa Elena's Fort San Marcos

At the Coastal Discovery Museum’s exhibition, visitors will be able to view a 3D digital interactive that reconstructs the original Fort San Marcos on Santa Elena. (Credit: Coastal Discovery Museum at Honey Horn)




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5 Surprising Facts About Lincoln

The 16th president is widely celebrated for his role in helping to abolish slavery and preserving the Union during the Civil War. But did you know these facts about this iconic figure in American History? --- For more videos from Smithsonian Magazine: https://www.smithsonianmag.com/videos/ Digital Editorial Director: Brian Wolly Supervising Producer & Scriptwriter: Michelle Mehrtens Video Editor: Sierra Theobald