sm Neurobiological Mechanisms of the Placebo Effect By www.jneurosci.org Published On :: 2005-11-09 Fabrizio BenedettiNov 9, 2005; 25:10390-10402Symposia and Mini-Symposia Full Article
sm Interactions of Top-Down and Bottom-Up Mechanisms in Human Visual Cortex By www.jneurosci.org Published On :: 2011-01-12 Stephanie McMainsJan 12, 2011; 31:587-597BehavioralSystemsCognitive Full Article
sm Neural Mechanisms of Visual Working Memory in Prefrontal Cortex of the Macaque By www.jneurosci.org Published On :: 1996-08-15 Earl K. MillerAug 15, 1996; 16:5154-5167Articles Full Article
sm Cortical Hubs Revealed by Intrinsic Functional Connectivity: Mapping, Assessment of Stability, and Relation to Alzheimer's Disease By www.jneurosci.org Published On :: 2009-02-11 Randy L. BucknerFeb 11, 2009; 29:1860-1873Neurobiology of Disease Full Article
sm Calcium Influx via the NMDA Receptor Induces Immediate Early Gene Transcription by a MAP Kinase/ERK-Dependent Mechanism By www.jneurosci.org Published On :: 1996-09-01 Zhengui XiaSep 1, 1996; 16:5425-5436Articles Full Article
sm Informe Trimestral del BPI, marzo de 2018: La volatilidad vuelve a cobrar protagonismo tras un episodio de inestabilidad en los mercados bursátiles By www.bis.org Published On :: 2018-03-11T17:00:00Z Spanish translation of the BIS press release about the BIS Quarterly Review, March 2018 Full Article
sm Wintrust Financial Corporation to Make Loans to Approximately 8,900 Small Businesses Through the Paycheck Protection Program By www.snl.com Published On :: Fri, 17 Apr 2020 22:27:00 GMT To view more press releases, please visit http://www.snl.com/irweblinkx/news.aspx?iid=1024452. Full Article
sm Rapid Release of Ca2+ from Endoplasmic Reticulum Mediated by Na+/Ca2+ Exchange By www.jneurosci.org Published On :: 2020-04-15T09:30:18-07:00 Phototransduction in Drosophila is mediated by phospholipase C (PLC) and Ca2+-permeable TRP channels, but the function of endoplasmic reticulum (ER) Ca2+ stores in this important model for Ca2+ signaling remains obscure. We therefore expressed a low affinity Ca2+ indicator (ER-GCaMP6-150) in the ER, and measured its fluorescence both in dissociated ommatidia and in vivo from intact flies of both sexes. Blue excitation light induced a rapid (tau ~0.8 s), PLC-dependent decrease in fluorescence, representing depletion of ER Ca2+ stores, followed by a slower decay, typically reaching ~50% of initial dark-adapted levels, with significant depletion occurring under natural levels of illumination. The ER stores refilled in the dark within 100–200 s. Both rapid and slow store depletion were largely unaffected in InsP3 receptor mutants, but were much reduced in trp mutants. Strikingly, rapid (but not slow) depletion of ER stores was blocked by removing external Na+ and in mutants of the Na+/Ca2+ exchanger, CalX, which we immuno-localized to ER membranes in addition to its established localization in the plasma membrane. Conversely, overexpression of calx greatly enhanced rapid depletion. These results indicate that rapid store depletion is mediated by Na+/Ca2+ exchange across the ER membrane induced by Na+ influx via the light-sensitive channels. Although too slow to be involved in channel activation, this Na+/Ca2+ exchange-dependent release explains the decades-old observation of a light-induced rise in cytosolic Ca2+ in photoreceptors exposed to Ca2+-free solutions. SIGNIFICANCE STATEMENT Phototransduction in Drosophila is mediated by phospholipase C, which activates TRP cation channels by an unknown mechanism. Despite much speculation, it is unknown whether endoplasmic reticulum (ER) Ca2+ stores play any role. We therefore engineered flies expressing a genetically encoded Ca2+ indicator in the photoreceptor ER. Although NCX Na+/Ca2+ exchangers are classically believed to operate only at the plasma membrane, we demonstrate a rapid light-induced depletion of ER Ca2+ stores mediated by Na+/Ca2+ exchange across the ER membrane. This NCX-dependent release was too slow to be involved in channel activation, but explains the decades-old observation of a light-induced rise in cytosolic Ca2+ in photoreceptors bathed in Ca2+-free solutions. Full Article
sm Nitric Oxide Signaling Strengthens Inhibitory Synapses of Cerebellar Molecular Layer Interneurons through a GABARAP-Dependent Mechanism By www.jneurosci.org Published On :: 2020-04-22T09:29:41-07:00 Nitric oxide (NO) is an important signaling molecule that fulfills diverse functional roles as a neurotransmitter or diffusible second messenger in the developing and adult CNS. Although the impact of NO on different behaviors such as movement, sleep, learning, and memory has been well documented, the identity of its molecular and cellular targets is still an area of ongoing investigation. Here, we identify a novel role for NO in strengthening inhibitory GABAA receptor-mediated transmission in molecular layer interneurons of the mouse cerebellum. NO levels are elevated by the activity of neuronal NO synthase (nNOS) following Ca2+ entry through extrasynaptic NMDA-type ionotropic glutamate receptors (NMDARs). NO activates protein kinase G with the subsequent production of cGMP, which prompts the stimulation of NADPH oxidase and protein kinase C (PKC). The activation of PKC promotes the selective strengthening of α3-containing GABAARs synapses through a GABA receptor-associated protein-dependent mechanism. Given the widespread but cell type-specific expression of the NMDAR/nNOS complex in the mammalian brain, our data suggest that NMDARs may uniquely strengthen inhibitory GABAergic transmission in these cells through a novel NO-mediated pathway. SIGNIFICANCE STATEMENT Long-term changes in the efficacy of GABAergic transmission is mediated by multiple presynaptic and postsynaptic mechanisms. A prominent pathway involves crosstalk between excitatory and inhibitory synapses whereby Ca2+-entering through postsynaptic NMDARs promotes the recruitment and strengthening of GABAA receptor synapses via Ca2+/calmodulin-dependent protein kinase II. Although Ca2+ transport by NMDARs is also tightly coupled to nNOS activity and NO production, it has yet to be determined whether this pathway affects inhibitory synapses. Here, we show that activation of NMDARs trigger a NO-dependent pathway that strengthens inhibitory GABAergic synapses of cerebellar molecular layer interneurons. Given the widespread expression of NMDARs and nNOS in the mammalian brain, we speculate that NO control of GABAergic synapse efficacy may be more widespread than has been appreciated. Full Article
sm The Neural Mechanism of the Social Framing Effect: Evidence from fMRI and tDCS Studies By www.jneurosci.org Published On :: 2020-04-29T09:30:19-07:00 As an important cognitive bias, the framing effect shows that our decision preferences are sensitive to the verbal description (i.e., frame) of options. This study focuses on the neural underpinnings of the social framing effect, which is based on decision-making regarding other people. A novel paradigm was used in which participants made a trade-off between economic benefits and the feelings of others. This decision was described as either a "harm" to, or "not helping," other persons in two conditions (Harm frame vs Help frame). Both human males and females were recruited. Participants behaved more prosocially for Harm frame compared with Help frame, resulting in a significant social framing effect. Using functional magnetic resonance imaging, Experiment 1 showed that the social framing effect was associated with stronger activation in the temporoparietal junction (TPJ), especially its right part. The functional connectivity between the right TPJ (rTPJ) and medial prefrontal cortex predicted the social framing effect on the group level. In Experiment 2, we used transcranial direct current stimulation to modulate the activity of the rTPJ and found that the social framing effect became more prominent under anodal (excitatory) stimulation, while the nonsocial framing effect elicited by the economic gain/loss gambling frame remained unaffected. The rTPJ results might be associated with moral conflicts modulated by the social consequences of an action or different levels of mentalizing with others under different frame conditions, but alternative interpretations are also worth noting. These findings could help elucidate the psychological mechanisms of the social framing effect. SIGNIFICANCE STATEMENT Previous studies have suggested that the framing effect is generated from an interaction between the amygdala and anterior cingulate cortex. This opinion, however, is based on findings from nonsocial framing tasks. Recent research has highlighted the importance of distinguishing between the social and nonsocial framing effects. The current study focuses on the social framing effect and finds out that the temporoparietal junction and its functional connectivity with the medial prefrontal cortex play a significant role. Additionally, modulating the activity of this region leads to changes in social (but not nonsocial) framing effect. Broadly speaking, these findings help understand the difference in neural mechanisms between social and nonsocial decision-making. Meanwhile, they might be illuminating to promote helping behavior in society. Full Article
sm Reward-Based Improvements in Motor Control Are Driven by Multiple Error-Reducing Mechanisms By www.jneurosci.org Published On :: 2020-04-29T09:30:19-07:00 Reward has a remarkable ability to invigorate motor behavior, enabling individuals to select and execute actions with greater precision and speed. However, if reward is to be exploited in applied settings, such as rehabilitation, a thorough understanding of its underlying mechanisms is required. In a series of experiments, we first demonstrate that reward simultaneously improves the selection and execution components of a reaching movement. Specifically, reward promoted the selection of the correct action in the presence of distractors, while also improving execution through increased speed and maintenance of accuracy. These results led to a shift in the speed-accuracy functions for both selection and execution. In addition, punishment had a similar impact on action selection and execution, although it enhanced execution performance across all trials within a block, that is, its impact was noncontingent to trial value. Although the reward-driven enhancement of movement execution has been proposed to occur through enhanced feedback control, an untested possibility is that it is also driven by increased arm stiffness, an energy-consuming process that enhances limb stability. Computational analysis revealed that reward led to both an increase in feedback correction in the middle of the movement and a reduction in motor noise near the target. In line with our hypothesis, we provide novel evidence that this noise reduction is driven by a reward-dependent increase in arm stiffness. Therefore, reward drives multiple error-reduction mechanisms which enable individuals to invigorate motor performance without compromising accuracy. SIGNIFICANCE STATEMENT While reward is well-known for enhancing motor performance, how the nervous system generates these improvements is unclear. Despite recent work indicating that reward leads to enhanced feedback control, an untested possibility is that it also increases arm stiffness. We demonstrate that reward simultaneously improves the selection and execution components of a reaching movement. Furthermore, we show that punishment has a similar positive impact on performance. Importantly, by combining computational and biomechanical approaches, we show that reward leads to both improved feedback correction and an increase in stiffness. Therefore, reward drives multiple error-reduction mechanisms which enable individuals to invigorate performance without compromising accuracy. This work suggests that stiffness control plays a vital, and underappreciated, role in the reward-based imporvemenets in motor control. Full Article
sm The Frog Motor Nerve Terminal Has Very Brief Action Potentials and Three Electrical Regions Predicted to Differentially Control Transmitter Release By www.jneurosci.org Published On :: 2020-04-29T09:30:19-07:00 The action potential (AP) waveform controls the opening of voltage-gated calcium channels and contributes to the driving force for calcium ion flux that triggers neurotransmission at presynaptic nerve terminals. Although the frog neuromuscular junction (NMJ) has long been a model synapse for the study of neurotransmission, its presynaptic AP waveform has never been directly studied, and thus the AP waveform shape and propagation through this long presynaptic nerve terminal are unknown. Using a fast voltage-sensitive dye, we have imaged the AP waveform from the presynaptic terminal of male and female frog NMJs and shown that the AP is very brief in duration and actively propagated along the entire length of the terminal. Furthermore, based on measured AP waveforms at different regions along the length of the nerve terminal, we show that the terminal is divided into three distinct electrical regions: A beginning region immediately after the last node of Ranvier where the AP is broadest, a middle region with a relatively consistent AP duration, and an end region near the tip of nerve terminal branches where the AP is briefer. We hypothesize that these measured changes in the AP waveform along the length of the motor nerve terminal may explain the proximal-distal gradient in transmitter release previously reported at the frog NMJ. SIGNIFICANCE STATEMENT The AP waveform plays an essential role in determining the behavior of neurotransmission at the presynaptic terminal. Although the frog NMJ is a model synapse for the study of synaptic transmission, there are many unknowns centered around the shape and propagation of its presynaptic AP waveform. Here, we demonstrate that the presynaptic terminal of the frog NMJ has a very brief AP waveform and that the motor nerve terminal contains three distinct electrical regions. We propose that the changes in the AP waveform as it propagates along the terminal can explain the proximal-distal gradient in transmitter release seen in electrophysiological studies. Full Article
sm Uncharacteristic Task-Evoked Pupillary Responses Implicate Atypical Locus Ceruleus Activity in Autism By www.jneurosci.org Published On :: 2020-05-06T09:30:22-07:00 Autism spectrum disorder (ASD) is characterized partly by atypical attentional engagement, reflected in exaggerated and variable responses to sensory stimuli. Attentional engagement is known to be regulated by the locus ceruleus (LC). Moderate baseline LC activity globally dampens neural responsivity and is associated with adaptive deployment and narrowing of attention to task-relevant stimuli. In contrast, increased baseline LC activity enhances neural responsivity across cortex and widening of attention to environmental stimuli regardless of their task relevance. Given attentional atypicalities in ASD, this study is the first to evaluate whether, under different attentional task demands, individuals with ASD exhibit a different profile of LC activity compared with typically developing controls. Males and females with ASD and age- and gender-matched controls participated in a one-back letter detection test while task-evoked pupillary responses, an established correlate for LC activity, were recorded. Participants completed this task in two conditions, either in the absence or presence of distractor auditory tones. Compared with controls, individuals with ASD evinced atypical pupillary responses in the presence versus absence of distractors. Notably, this atypical pupillary profile was evident despite the fact that both groups exhibited equivalent task performance. Moreover, between-group differences in pupillary responses were observed specifically in response to task-relevant events, providing confirmation that the group differences most likely were specifically associated with distinctions in LC activity. These findings suggest that individuals with ASD show atypical modulation of LC activity with changes in attentional demands, offering a possible mechanistic and neurobiological account for attentional atypicalities in ASD. SIGNIFICANCE STATEMENT Individuals with autism spectrum disorder (ASD) exhibit atypical attentional behaviors, including altered sensory responses and atypical fixedness, but the neural mechanism underlying these behaviors remains elusive. One candidate mechanism is atypical locus ceruleus (LC) activity, as the LC plays a critical role in attentional modulation. Specifically, LC activity is involved in regulating the trade-off between environmental exploration and focused attention. This study shows that, under tightly controlled conditions, task-evoked pupil responses, an LC activity proxy, are lower in individuals with ASD than in controls, but only in the presence of task-irrelevant stimuli. This suggests that individuals with ASD evince atypical modulation of LC activity in accordance with changes in attentional demands, offering a mechanistic account for attentional atypicalities in ASD. Full Article
sm MECP2 Duplication Causes Aberrant GABA Pathways, Circuits and Behaviors in Transgenic Monkeys: Neural Mappings to Patients with Autism By www.jneurosci.org Published On :: 2020-05-06T09:30:22-07:00 MECP2 gain-of-function and loss-of-function in genetically engineered monkeys recapitulates typical phenotypes in patients with autism, yet where MECP2 mutation affects the monkey brain and whether/how it relates to autism pathology remain unknown. Here we report a combination of gene–circuit–behavior analyses including MECP2 coexpression network, locomotive and cognitive behaviors, and EEG and fMRI findings in 5 MECP2 overexpressed monkeys (Macaca fascicularis; 3 females) and 20 wild-type monkeys (Macaca fascicularis; 11 females). Whole-genome expression analysis revealed MECP2 coexpressed genes significantly enriched in GABA-related signaling pathways, whereby reduced β-synchronization within fronto-parieto-occipital networks was associated with abnormal locomotive behaviors. Meanwhile, MECP2-induced hyperconnectivity in prefrontal and cingulate networks accounted for regressive deficits in reversal learning tasks. Furthermore, we stratified a cohort of 49 patients with autism and 72 healthy controls of 1112 subjects using functional connectivity patterns, and identified dysconnectivity profiles similar to those in monkeys. By establishing a circuit-based construct link between genetically defined models and stratified patients, these results pave new avenues to deconstruct clinical heterogeneity and advance accurate diagnosis in psychiatric disorders. SIGNIFICANCE STATEMENT Autism spectrum disorder (ASD) is a complex disorder with co-occurring symptoms caused by multiple genetic variations and brain circuit abnormalities. To dissect the gene–circuit–behavior causal chain underlying ASD, animal models are established by manipulating causative genes such as MECP2. However, it is unknown whether such models have captured any circuit-level pathology in ASD patients, as demonstrated by human brain imaging studies. Here, we use transgenic macaques to examine the causal effect of MECP2 overexpression on gene coexpression, brain circuits, and behaviors. For the first time, we demonstrate that the circuit abnormalities linked to MECP2 and autism-like traits in the monkeys can be mapped to a homogeneous ASD subgroup, thereby offering a new strategy to deconstruct clinical heterogeneity in ASD. Full Article
sm Molecular Mechanisms of Non-ionotropic NMDA Receptor Signaling in Dendritic Spine Shrinkage By www.jneurosci.org Published On :: 2020-05-06T09:30:22-07:00 Structural plasticity of dendritic spines is a key component of the refinement of synaptic connections during learning. Recent studies highlight a novel role for the NMDA receptor (NMDAR), independent of ion flow, in driving spine shrinkage and LTD. Yet little is known about the molecular mechanisms that link conformational changes in the NMDAR to changes in spine size and synaptic strength. Here, using two-photon glutamate uncaging to induce plasticity at individual dendritic spines on hippocampal CA1 neurons from mice and rats of both sexes, we demonstrate that p38 MAPK is generally required downstream of non-ionotropic NMDAR signaling to drive both spine shrinkage and LTD. In a series of pharmacological and molecular genetic experiments, we identify key components of the non-ionotropic NMDAR signaling pathway driving dendritic spine shrinkage, including the interaction between NOS1AP (nitric oxide synthase 1 adaptor protein) and neuronal nitric oxide synthase (nNOS), nNOS enzymatic activity, activation of MK2 (MAPK-activated protein kinase 2) and cofilin, and signaling through CaMKII. Our results represent a large step forward in delineating the molecular mechanisms of non-ionotropic NMDAR signaling that can drive shrinkage and elimination of dendritic spines during synaptic plasticity. SIGNIFICANCE STATEMENT Signaling through the NMDA receptor (NMDAR) is vitally important for the synaptic plasticity that underlies learning. Recent studies highlight a novel role for the NMDAR, independent of ion flow, in driving synaptic weakening and dendritic spine shrinkage during synaptic plasticity. Here, we delineate several key components of the molecular pathway that links conformational signaling through the NMDAR to dendritic spine shrinkage during synaptic plasticity. Full Article
sm How much do you know about small island nations? By www.fao.org Published On :: Thu, 30 Mar 2017 00:00:00 GMT Over the past years, we have often been reminded that we must leave no one behind as we strive to cement our plans for a sustainable future. Most recent data indicate that many of the Small Island Developing States (SIDS) have achieved undernourishment levels of less than 5 percent. Good governance is perhaps the most essential factor in increasing food [...] Full Article
sm Why our #MountainsMatter By www.fao.org Published On :: Mon, 11 Dec 2017 00:00:00 GMT In some countries, mountains are considered deities. In others, mountains are peaks to climb. In others still, mountains, like volcanoes, are spirits that can be angered. In countries around the world though, mountains provide life-sustaining water, energy and food for over half the world’s population. Full Article
sm Great hopes for climate-smart farming By www.fao.org Published On :: Thu, 25 Jan 2018 00:00:00 GMT Last year, Ashmita Thapa’s husband left their hometown in southern Nepal to find work in Saudi Arabia. He had been working as a farmer and used to be able to grow enough food for the family. But now, Ashmita explains, the yields are poorer and poorer. “This is a part of climate change,” she adds. “There isn’t as much rain as [...] Full Article
sm A Brief History of Smokey Bear, the Forest Service's Legendary Mascot By www.smithsonianmag.com Published On :: Wed, 10 Jul 2019 13:00:00 +0000 How the beloved figure has become a lightning rod in a heated environmental debate Full Article
sm If You Want to See Thousands of Fireflies Light Up at Once, Head to the Great Smoky Mountains By www.smithsonianmag.com Published On :: Fri, 22 Apr 2016 17:04:10 +0000 A firefly mating ritual turns into a synchronized light show Full Article
sm http://digg.com/submit?url=http://www.edge.org/conversation/this-will-make-you-smarter By digg.com Published On :: Full Article
sm http://digg.com/submit?url=http://www.edge.org/conversation/-quotthe-man-who-runs-the-world-39s-smartest-website-quot-in-the-observer By digg.com Published On :: Full Article
sm Where Predators Are Scarce, Mongooses May Transmit More Disease By www.smithsonianmag.com Published On :: Tue, 17 Mar 2020 21:44:01 +0000 New research hints at how different environments impact animal behavior and the spread of infection Full Article
sm Japan's Experiment to Calculate an Asteroid's Age Was a Smashing Success By www.smithsonianmag.com Published On :: Fri, 27 Mar 2020 14:33:53 +0000 The spacecraft Hayabusa2 hurled a four-pound copper ball toward the asteroid's surface at about 4,500 miles an hour to create an artificial crater Full Article
sm Why Scientists Created a 'Smart Toilet' That Recognizes Your Butt By www.smithsonianmag.com Published On :: Thu, 09 Apr 2020 20:25:40 +0000 The bidet-like suite of devices detects abnormalities in feces that could flag signs of certain cancers Full Article
sm Norway Lobsters Crush Ocean Plastic Into Even Smaller Pieces—and That's Bad By www.smithsonianmag.com Published On :: Wed, 22 Apr 2020 15:17:05 +0000 The crustaceans' guts pulverize plastics into tiny bits that can be consumed by even smaller creatures at the base of the ocean food chain Full Article
sm What Does Your Sourdough Starter Smell Like? Science Wants to Know By www.smithsonianmag.com Published On :: Tue, 28 Apr 2020 15:52:05 +0000 A citizen science project aims to chart the microbial diversity present in starters all over the world Full Article
sm Explore World-Class Museums From Home With Smartify's Free Audio Tours By www.smithsonianmag.com Published On :: Mon, 30 Mar 2020 15:48:20 +0000 The app features a database of some two million artworks housed at more than 120 venues Full Article
sm Explore Washington, D.C. From Home With This Free, Smithsonian Scholar-Led Tour By www.smithsonianmag.com Published On :: Mon, 20 Apr 2020 20:35:16 +0000 Narrated by Smithsonian Distinguished Scholar Richard Kurin, the 24-part video series blends history with modern mainstays Full Article
sm Join a Smithsonian Entomologist and the Monterey Bay Aquarium for This Beetle-Centric 'Animal Crossing' Livestream By www.smithsonianmag.com Published On :: Mon, 04 May 2020 18:28:06 +0000 Airing on the aquarium's Twitch channel at 4 p.m. EST today, the two-hour session will focus on the video game's diverse insect population Full Article
sm All Smithsonian Museums and National Zoo Remain Open Through Friday; Events Canceled By www.smithsonianmag.com Published On :: Thu, 12 Mar 2020 16:02:52 +0000 With Washington, D.C. COVID-19 state of emergency, Smithsonian officials say museums to close Saturday, March 14; events canceled through May 3 Full Article
sm Smithsonian Museums to Close Amid Coronavirus Outbreak By www.smithsonianmag.com Published On :: Thu, 12 Mar 2020 22:24:00 +0000 In an official statement, the Institution announced temporary closures beginning Saturday, March 14 Full Article
sm These Photos From the First Decade of Smithsonian Magazine Show Where Art and Science Meet By www.smithsonianmag.com Published On :: Mon, 23 Mar 2020 12:00:00 +0000 How do you select one image to represent half a century of photography and art? You don’t Full Article
sm Smithsonian Magazine Turns 50 By www.smithsonianmag.com Published On :: Mon, 23 Mar 2020 13:00:00 +0000 When this publication first appeared five decades ago, it was happy to join the fray Full Article
sm Smithsonian Channel Has Released 68 Free ‘Aerial America’ Episodes for Your Quarantine Viewing By www.smithsonianmag.com Published On :: Fri, 27 Mar 2020 17:52:26 +0000 Do some armchair traveling and see the breathtaking vistas of all 50 states while learning about their histories Full Article
sm These Are the Winning Photos of Smithsonian Magazine's 17th Annual Photo Contest By www.smithsonianmag.com Published On :: Fri, 10 Apr 2020 13:00:00 +0000 From Vietnam to Antarctica, this year's winners bring you amazing glimpses of a changing world—and the indefatigable human spirit Full Article
sm Smithsonian Scientists Discover Six New Coronaviruses in Bats in Myanmar By www.smithsonianmag.com Published On :: Mon, 13 Apr 2020 13:00:00 +0000 The new viruses are not harmful to humans or closely related to SARS-CoV-2, the coronavirus that causes COVID-19 Full Article
sm Play the Smithsonian Magazine Weekly Crossword: May 4, 2020 By www.smithsonianmag.com Published On :: Mon, 04 May 2020 14:22:01 +0000 Test your mettle with this puzzle created exclusively for our readers Full Article
sm Play the Smithsonian Magazine Weekly Word Search: State Capitals By www.smithsonianmag.com Published On :: Wed, 06 May 2020 13:00:00 +0000 Find the capital cities, working from a list of state names Full Article
sm Celebrate Mother's Day With These Artworks From the Smithsonian Collections By www.smithsonianmag.com Published On :: Fri, 08 May 2020 15:49:17 +0000 These paintings, sculptures and illustrations honor the bonds of motherhood Full Article
sm smile By www.smithsonianmag.com Published On :: Sun, 03 May 2020 04:00:00 +0000 Saree Drying in Kolkata Transit camp Full Article
sm How to Virtually Explore the Smithsonian From Your Living Room By www.smithsonianmag.com Published On :: Wed, 18 Mar 2020 13:24:05 +0000 Tour a gallery of presidential portraits, print a 3-D model of a fossil or volunteer to transcribe historical documents Full Article
sm The Charming Story of George Harrison’s Vacation in Small-Town America By www.smithsonianmag.com Published On :: Wed, 15 Apr 2020 11:00:00 +0000 The Beatles guitarist visited his sister in southern Illinois just months before he'd become world famous Full Article
sm How Smithsonian Curators Are Rising to the Challenge of COVID-19 By www.smithsonianmag.com Published On :: Wed, 15 Apr 2020 15:30:14 +0000 In a nation under quarantine, chronicling a crisis demands careful strategy Full Article
sm How Smithsonian Researchers Are Studying Elephant Behavior By www.smithsonianmag.com Published On :: Tue, 17 Mar 2020 00:00:00 -0000 See how researchers at Smithsonian's National Zoo are trying to glean insight into elephant foraging behavior and more. Full Article