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ינואר 01, 2016

  • Date:10שנייולי 2017

    Special Chemical Physics Seminar

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    שעה
    14:00 - 14:00
    כותרת
    The Dirac electron: spin, size, mass, charge, and universal constants‎
    מיקום
    בניין פרלמן למדעי הכימיה
    מרצהProf. Jean Maruani
    CNRS & UPMC‎
    מארגן
    המחלקה לפיזיקה כימית וביולוגית
    צרו קשר
    הרצאה
  • Date:11שלישייולי 2017

    Simple integration of asymmetric inputs computes directional selectivity in Drosophila

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    שעה
    12:30 - 12:30
    מיקום
    בניין לחקר המוח על-שם נלה וליאון בנוזיו
    מרצהEyal Gruntman
    Postdoc, Reiser Lab, HHMI, Janelia Research Campus
    מארגן
    המחלקה למדעי המוח
    צרו קשר
    תקצירShow full text abstract about The detection of visual motion is a fundamental neuronal com...»
    The detection of visual motion is a fundamental neuronal computation that serves many critical behavioral roles, such as encoding of self-motion or figure-ground discrimination. For a neuron to extract directionally selective (DS) motion information from inputs that are not motion selective it is essential to integrate across multiple spatially distinct inputs. This integration step has been studied for decades in both vertebrate and invertebrate visual systems and given rise to several competing computational models. Recent studies in Drosophila have identified the 4th-order neurons, T4 and T5, as the first neurons to show directional selectivity. Due to the small size of these neurons, recordings have been restricted to the use of calcium imaging, limiting timescale and direct measurement of inhibition. These limitations may prevent a clear demonstration of the neuronal computation underlying DS, since it may depend on millisecond-timescale interactions and the integration of excitatory and inhibitory signals. In this study, we use whole cell in-vivo recordings and customized visual stimuli to examine the emergence of DS in T4 cells. We record responses both to a moving bar stimulus and to its components: single position bar flashes. Our results show that T4 cells receive both excitatory and inhibitory inputs, as predicted by a classic circuit model for motion detection. Furthermore, we show that by implementing a passive compartment model of a T4 cell, we can account not only for the DS response of the cell, but also for its dynamics.
    הרצאה
  • Date:11שלישייולי 2017

    AMO Special Seminar

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    שעה
    13:15 - 13:15
    כותרת
    The temporal structure of ultra-fast rogue waves
    מיקום
    בניין הפיזיקה ע"ש עדנה וק.ב. וייסמן
    מרצהDr. Moti Fridman
    מארגן
    המחלקה לפיזיקה של מערכות מורכבות
    צרו קשר
    תקצירShow full text abstract about Extreme waves suddenly appearing from noisy background and d...»
    Extreme waves suddenly appearing from noisy background and disappearing immediately after. Ancient tales from sailors on such waves were told but considered as a pure myth. We investigate the dynamics of optical rogue waves in a record high resolution and focused on their power dependence and vectorial nature. We demonstrated three types of rogue waves and claim that all known mechanisms can not explain our findings, and therefore, a new mechanism must be considered.
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  • Date:11שלישייולי 2017

    “The Power of Small Molecules to Explain How We See and How We Think”

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    שעה
    14:00 - 15:00
    כותרת
    Joint Seminar- Organic Chemistry & Structural Biology
    מיקום
    בניין הלן ומילטון קימלמן
    מרצהProf. Nasri Nesnas, Miri Nakar
    Department of Chemistry Florida Institute of Technology
    מארגן
    המחלקה לכימיה מולקולרית ולמדע חומרים , המחלקה לביולוגיה מבנית וכימית
    צרו קשר
    תקצירShow full text abstract about Vision is inarguably the most dependable of the five senses....»
    Vision is inarguably the most dependable of the five senses. The retina contains light sensing protein receptors (rhodopsins) that incorporate a small polyene molecule derivative of vitamin A, known as 11-cis-retinal. Major clues on understanding the visual cycle have been established through the design of variations of the vitamin A light absorbing molecule, some of which will be presented. A detailed understanding of the inner workings of rhodopsin is not only critical from the stand point of solving mysteries of visual diseases, like Age-related Macular Degeneration (the leading cause of blindness), but also serves as a well established model for elucidating the mechanism of other G-protein coupled receptors (GPCRs). Furthermore, we show that the value of light absorbing molecules expands beyond vision and can be used to trigger neurons thereby aiding the delineation of complex neural networks.
    הרצאה
  • Date:12רביעייולי 2017

    Developmental Club Series 2016-2017

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    שעה
    10:00 - 11:00
    כותרת
    Towards anatomical and transcriptional profiling of intact organs with tissue clearing and custom microscopy
    מיקום
    בניין ארתור ורושל בלפר למחקר ביורפואי
    מרצהAlon Greenbaum
    California Institute of Technology. Division of Biology and Biological Engineering
    מארגן
    המחלקה לגנטיקה מולקולרית
    צרו קשר
    הרצאה
  • Date:13חמישייולי 2017

    Imm Student Seminar by Dr. Assaf Weiner

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    שעה
    כל היום
    מיקום
    בניין וולפסון למחקר ביולוגי
    מארגן
    המחלקה לאימונולוגיה מערכתית
    צרו קשר
    הרצאה
  • Date:13חמישייולי 2017

    Virology Club speacial guest seminar

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    שעה
    12:15 - 12:15
    כותרת
    “Probing the Skin Microbiome in Primary Immunodeficiency Using Shotgun Metagenomics”
    מיקום
    בניין ארתור ורושל בלפר למחקר ביורפואי
    מרצהDr. Osnat Tirosh
    National Human Genome Research Institute National Institutes of Health, Bethesda, MD
    מארגן
    המחלקה לגנטיקה מולקולרית
    צרו קשר
    הרצאה
  • Date:16ראשוןיולי 201718שלישייולי 2017

    Algebraic Modes of Representations - The Canicular Days

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    שעה
    08:00 - 18:00
    מיקום
    בניין יעקב זיסקינד
    יושב ראש
    Maria Gorelik
    דף בית
    כנסים
  • Date:16ראשוןיולי 201718שלישייולי 2017

    Algebraic Modes of Representations ? The Canicular Days

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    שעה
    08:00 - 08:00
    כותרת
    Algebraic Modes of Representations ? The Canicular Days
    מיקום
    בניין יעקב זיסקינד
    יושב ראש
    Maria Gorelik
    דף בית
    צרו קשר
    כנסים
  • Date:17שנייולי 2017

    IVS-MRS Student Conference

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    שעה
    08:00 - 08:00
    מיקום
    מרכז כנסים על-שם דויד לופאטי
    יושב ראש
    Michael Kulbak
    דף בית
    כנסים
  • Date:17שנייולי 2017

    The Host Pathogen Interactions Club

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    שעה
    10:00 - 11:00
    כותרת
    Mapping and modeling of microbial cellular networks
    מיקום
    בניין ע"ש מקס ולילאן קנדיוטי
    מרצהProf. James Galagan
    Boston University
    מארגן
    המחלקה לאימונולוגיה ורגנרציה ביולוגית
    צרו קשר
    הרצאה
  • Date:18שלישייולי 2017

    New Horizons in Immune Dynamics

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    שעה
    08:00 - 18:00
    מיקום
    מרכז כנסים על-שם דויד לופאטי
    יושב ראש
    Avital Barak
    דף בית
    כנסים
  • Date:18שלישייולי 2017

    AMO Special Seminar

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    שעה
    13:15 - 13:15
    כותרת
    Towards high precision frequency comb spectroscopy in the extreme ultraviolet
    מיקום
    בניין הפיזיקה ע"ש עדנה וק.ב. וייסמן
    מרצהDr. Gil Porat
    JILA & University of Colorado, Boulder
    מארגן
    המחלקה לפיזיקה של מערכות מורכבות
    צרו קשר
    תקצירShow full text abstract about High precision spectroscopy of few-electron atoms and ions i...»
    High precision spectroscopy of few-electron atoms and ions is strongly motivated by the need to test fundamental theory (e.g., quantum electrodynamics) in simple systems, amenable to precise calculation for comparison with experimental measurement. Additionally, transitions from the ground state are most susceptible to both QED and nuclear structure effects, making them appealing as tools for testing nuclear structure theory. The frequencies of transitions from the ground state in many such systems reside in the extreme ultraviolet range of the electromagnetic spectrum (XUV, wavelengths of 10-120 nm). However, spectroscopic resolution in the XUV is severely limited by the availability of appropriate sources of XUV radiation. In this talk I will discuss our experimental method of generating an XUV frequency comb laser, and our progress in scaling up the power of this laser in order to enable the highest spectroscopic precision in the XUV to date.
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  • Date:19רביעייולי 201728שישייולי 2017

    SRitp workshop Hammers and Nails - Machine Learning and HEP

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    שעה
    08:00 - 08:00
    מיקום
    ספרית הפיסיקה על שם נלה וליאון בנוזיו
    יושב ראש
    Eilam Gross
    מארגן
    המחלקה לפיזיקה של חלקיקים ואסטרופיזיקה
    דף בית
    כנסים
  • Date:19רביעייולי 2017

    Polyanionic Cathode Materials for High Energy-density Li-ion Batteries

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    שעה
    11:00 - 12:00
    מיקום
    בניין פרלמן למדעי הכימיה
    מרצהDr. Prabeer Barpanda
    Indian Institute of Science, Bangalore
    מארגן
    המחלקה לכימיה מולקולרית ולמדע חומרים
    צרו קשר
    הרצאה
  • Date:20חמישייולי 2017

    קופיקו - הצגת ילדים

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    שעה
    17:30 - 17:30
    מיקום
    אודיטוריום מיכאל סלע
    צרו קשר
    אירועי תרבות
  • Date:23ראשוןיולי 2017

    AMO Special Seminar

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    שעה
    11:00 - 11:00
    כותרת
    Dipolar quantum droplets and stripes in dysprosium Bose-Einstein condensates
    מיקום
    בניין הפיזיקה ע"ש עדנה וק.ב. וייסמן
    מרצהDr. Igor Ferrier-Barbut
    5. Physikalisches Institut, Universität Stuttgart and IQST
    מארגן
    המחלקה לפיזיקה של מערכות מורכבות
    צרו קשר
    תקצירShow full text abstract about I will present experimental results on magnetic quantum flui...»
    I will present experimental results on magnetic quantum fluids. These consist of a dilute Bose-Einstein condensate of dysprosium atoms, the most magnetic stable element. They allow to study the many-body consequences of the anisotropic and long-range dipole-dipole interaction, benefitting from the control tools of ultracold atomic physics.
    First, we have observed in this system an unanticipated phase-transition between a gas and a liquid, characterized by the formation of self-bound droplets [1-3]. It forms in a parameter region where the existing theory, based on the mean-field approximation, predicted a mechanical collapse of the gas. We showed that the repulsive beyond meanfield corrections prevent the collapse and are responsible for the stabilization of the liquid [2]. These corrections arise from quantum fluctuations (zero-point motion) of the collective modes (Bogolyubov sound modes) in the quantum fluid.
    In recent work we show that in constrained geometries, the ground-state is selforganized (left image). Studying these geometries experimentally, we indeed observe stable self-organized ‘stripe’ phases (right image), likely in metastable excited states. I will discuss the prospects for a strange kind of supersolidity in this system. In other experiments we study the effect of a rotating magnetic field on a quantum droplet, as a tool for the study of the different low-lying collective modes of the system.

    [1] Observing the Rosensweig instability of a quantum ferrofluid, H. Kadau, M. Schmitt, M. Wenzel, C. Wink, T. Maier, I. Ferrier-Barbut, and T. Pfau, Nature 530, 194 (2016).
    [2] Observation of quantum droplets in a strongly dipolar Bose gas, I. Ferrier-Barbut, H. Kadau, M. Schmitt, M. Wenzel, and T. Pfau, Phys. Rev. Lett. 116, 215301 (2016).
    [3] Self-bound droplets of a dilute magnetic quantum liquid, M. Schmitt, M. Wenzel, F. Böttcher, I. Ferrier-Barbut and T. Pfau, Nature 539, 259 (2016).
    הרצאה
  • Date:24שנייולי 2017

    New Leica DMi8 S

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    שעה
    10:00 - 11:00
    כותרת
    Live-­‐Cell Imaging and Photo-­‐Manipulation
    מיקום
    בניין ע"ש מקס ולילאן קנדיוטי
    מרצהDr.Jens Peter Gabriel
    Application Manager for Widefield Microscopy Leica Microsystems
    מארגן
    המחלקה לתשתיות מחקר מדעי החיים
    צרו קשר
    הרצאה
  • Date:26רביעייולי 2017

    G-INCPM Special Seminar - Prof. Abraham Shanzer, The Dept. of Organic Chemistry, Weizmann Institute - "Biomimetic Chemistry: Mimicking Biological Diversity & Addressing Technological Challenges"

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    שעה
    11:00 - 12:30
    מיקום
    המרכז הישראלי הלאומי לרפואה מותאמת אישית על-שם ננסי וסטיבן גרנד
    מרצהProf. Abraham Shanzer
    The Dept. of Organic Chemistry, Weizmann Institute
    מארגן
    המחלקה למדעים ביומולקולריים
    צרו קשר
    תקצירShow full text abstract about ‘Biomimetic Chemistry’ presents a conceptual approach to the...»
    ‘Biomimetic Chemistry’ presents a conceptual approach to the art of model building attempting to imitate the activity of a biological system by emphasis on the function of a substrate rather than on its detailed molecular structure.
    In the talk today I will center on the approach, governing the fundamental phenomenon of molecular recognition. The end goal is to formulate a set of rules essential to the design of molecules matching a specific biological system. Microbial iron-carriers, Siderophores, provide a useful platform for studying these principles. Several series of ferrichrome biomimetic analogs varying in length and polarity of the chains separating between the tripodal scaffold and the pendent FeIII chelating hydroxamic acid groups were prepared and studied. Microbial growth promotion was conducted on bacteria (E. coli, and P. putida) and fungi (U. maydis). These studies show a wide range of siderophore activity: from a rare case of species-specific growth promotor in P. putida to an analog with broad-spectrum activity matching ferrichrome in cross-phylum activity and uptake pathway. A fluorescent conjugate, to the broad-rang analog, provide clear images of the iron-free siderophore final destination in bacteria (periplasmic space) vs fungi (cytosol) mapping distinctly new therapeutic targets. Quantum Dots (QD) decorated with the most potent ferrichrome (FC) analog provided a tool for immobilization of FC-recognizing bacteria. Bacterial clusters formed around QDs, provide a platform for their selection and concentration.
    The fascinating field of lanthanide-clusters will be introduces and their unique properties describe, possible future opportunities and application will be discussed.
    הרצאה
  • Date:30ראשוןיולי 2017

    Joint Chemical Physics and Materials and Interfaces Seminar

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    שעה
    11:00 - 11:00
    כותרת
    Label-free protein electronic detection with an electrolyte-gated organic field-effect transistor-based immunosensor
    מיקום
    בניין פרלמן למדעי הכימיה
    מרצהProf. Luisa Torsi
    University of Bari, Italy
    מארגן
    המחלקה לפיזיקה כימית וביולוגית
    צרו קשר
    תקצירShow full text abstract about Organic bio-electronics represents one of the most exciting ...»
    Organic bio-electronics represents one of the most exciting directions in printable electronics, promising to deliver new technologies for healthcare and human well‐being. Among the others, organic field-effect transistors have been proven to work as highly performing sensors. Selectivity is achieved by integrating a layer of functional biological recognition elements, directly coupled with an electronic interface. The devices were shown to reach detection limits down to the picomolar (10-12 M) range with highly repeatable responses (within few percentage of standard deviation) even for hundreds of reiterated measurements.
    In this lecture recent developments in the field of organic and printable electronics implemented to probe biological interfaces will be discussed highlighting the importance of the interplay among disciplines such as organic electronics, analytical chemistry and biochemistry to reach a comprehensive understanding of the underpinning phenomena. It will also be shown that applications can lead to label-free electronic biosensors with unprecedented detection limits and selectivity. Notably, the extremely good sensing performance level can be rationalized by quantifying electrostatic and capacitance contributions characterizing the surface confined biological recognition elements interacting with their affinity ligands. Examples of the detection of clinical relevant biomarkers will be provided too.
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