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אפריל 27, 2017
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Date:03חמישיאוקטובר 2019הרצאה
Special Guest Seminar with Anat Zimmer
More information שעה 14:00 - 15:00כותרת "Analyzing PD3 clouds using PAReto Task Inference".מיקום בניין ארתור ורושל בלפר למחקר ביורפואימרצה Anat Zimmer
Postdoctoral fellow, at the Hood-Price lab The institute for systems biology (ISB), Seattle, WAמארגן מכון עזריאלי למערכות ביולוגיותצרו קשר תקציר Show full text abstract about It is a challenge to answer questions like: why some people ...» It is a challenge to answer questions like: why some people develop a disease, react to a specific treatment and/or develop severe side-effects while others don’t. In order to explain these occurrences, one has to take a holistic approach and study the body physiology from a systems level perspective. Longitudinal multi-omics measurements together with genetics, on a large population, can serve such a purpose and help in predicting, reasoning, and preventing diseases.
In partnership with Arivale Inc., we have developed infrastructure to collect longitudinal Personalized Dense Dynamic Data clouds (PD3 clouds) on thousands of individuals, which include genetics and longitudinal measurements of clinical labs, microbiome, metabolome, proteome, and self-reported data.
The value of these extremely high-dimensional data clouds is clear; however, it also comprises a challenge in data analysis and interpretation.
One way to reduce data dimensionality is called Pareto Task Inference (PARTI, Hart et al. 2015). We used this method to analyze the clinical labs and found that the data falls on a significant tetrahedron. The 4 vertices are archetypes that specialize in a certain task. Using all other datatypes, we identified enriched traits next to every archetype and revealed the underline tradeoffs that shape the data.
This distinctive analysis uncovers unexpected relationships between datasets such as metabolomics, proteomics and clinical labs, and helps in interconnecting the different datatypes to characterize different states of human health.
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Date:06ראשוןאוקטובר 2019כנסים
The 2nd Adelis Systems Neuroscience meeting: a Weizmann-Technion co-effort to understand the brain
More information שעה 08:00 - 08:00מיקום מרכז כנסים על-שם דויד לופאטייושב ראש Michal Rivlin -
Date:06ראשוןאוקטובר 2019הרצאה
Thesis defense presentation by Amir Giladi (Amit Lab)
More information שעה 15:00 - 15:00מיקום בניין וולפסון למחקר ביולוגימרצה Amir Giladi מארגן המחלקה לאימונולוגיה מערכתיתצרו קשר -
Date:07שניאוקטובר 2019הרצאה
Imm Special Guest Seminar: Prof Eystein Husebye, will lecture on "Autoimmune polyendocrine syndrome type 1 - Lessons from man and mouse"
More information שעה 13:00 - 14:00מארגן המחלקה לאימונולוגיה מערכתיתצרו קשר -
Date:10חמישיאוקטובר 2019הרצאה
Neural and emotional states under social interactions
More information שעה 12:00 - 12:00מיקום בניין לחקר המוח על-שם נלה וליאון בנוזיומרצה Raviv Pryluk (PhD Thesis Defense)
Rony Paz Lab, Dept of Neurobiology, WISמארגן המחלקה למדעי המוחצרו קשר תקציר Show full text abstract about Primates live in large and complex social groups. It has bee...» Primates live in large and complex social groups. It has been argued that this has led to evolutionary pressure on the brain and that there are networks that have been evolved to play an important role in social cognition and behaviors. Social deficits are widely known in many brain disorders such as autism and anxiety. Here we focused on two brain areas that were shown to play a crucial role in social interactions – the amygdala and the anterior-cingulate-cortex (ACC). Our goal was to understand the neural codes in these two regions and especially under social interactions:
1. Computational techniques that allow the comparison of on-going neural activity across these brain regions and species based on information theory measures was developed. We found that human neurons better utilize information capacity (efficient coding) than macaque neurons in both regions, and that ACC neurons are more efficient than amygdala neurons, in both species. In contrast, we found more overlap in the neural vocabulary and more synchronized activity (robustness coding) in monkeys in both regions, and in the amygdala of both species. Our findings demonstrate a tradeoff between robustness and efficiency across species and regions. We suggest that this tradeoff can contribute to the differential cognitive functions between species, and can underlie the complementary roles of the amygdala and the ACC. It can also contribute to the fragility underlying human psychopathologies. For more, see https://www.sciencedirect.com/science/article/pii/S0092867418316465
2. A novel electrophysiology experiment that induced real and live social interactions between humans and primates was conducted. In each daily session, we recorded neural responses in monkeys to the eye-gaze, direct or averted, of human intruders, and compared it with the responses to valence conditioning, aversive and appetitive. We found that the primate amygdala, but not the ACC, encodes eye-gaze; this coding is shared with valence coding through two mechanisms – “shared-activity” at the expectation epoch (conditioned stimulus, CS) and “shared-intensity” after the outcome (unconditioned stimulus, US). These shared mechanisms can open an indirect window for future therapy. For more, see https://www.biorxiv.org/content/10.1101/736462v1
3. We developed behavioral methods and algorithms to evaluate primates’ emotional states, using the analysis of facial expressions and a number of physiological parameters such as heart rate and respiratory rate. The primates’ emotional state evaluation will be the substrate for future studies that will investigate the neural correlates of these states.
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Date:22שלישיאוקטובר 2019הרצאה
Sensing and Recognition using Molecules and Nanomaterials: From toxic elements to Biomarkers
More information שעה 11:00 - 11:30מיקום בניין הלן ומילטון קימלמןמרצה Prof. Carlos Lodeiro
FCT University NOVA of Lisbon – PORTUGALמארגן המחלקה לכימיה מולקולרית ולמדע חומריםצרו קשר תקציר Show full text abstract about We, humans and animals, feel the outside world thanks to our...» We, humans and animals, feel the outside world thanks to our 5 senses. We hear, we see, we smell, we touch, and we taste. The success of our lives often depends on how sharp our senses are. In a scientific environment, sensing and feeling is also important. In chemistry, in biology, in medicine, in forensics, as in other areas, feeling, recognising, is crucial. In the present seminar, I will show some examples of the use of chromophores such as porphyrins, emissive peptides, rhodamines, liquid crystals-based metal complexes, fluorescein and others, free or supported in polymers, paper, and gold, silver, platinum nanoparticles, or messoporous structured nanomaterials for hunting and capture of molecules, ions and biomarkers for Proteomics Applications.
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Date:22שלישיאוקטובר 2019הרצאה
Towards Mass Spectrometry-Based Quantitative Clinical Proteomics
More information שעה 11:30 - 12:00מיקום בניין הלן ומילטון קימלמןמרצה Prof. Jose Luis Capelo Martinez
FCT University NOVA of Lisbon – PORTUGALמארגן המחלקה לכימיה מולקולרית ולמדע חומריםצרו קשר תקציר Show full text abstract about The use of proteomics in the clinical arena has been traditi...» The use of proteomics in the clinical arena has been traditionally hampered by low sample throughput and by difficulties in quantifying proteins in complex proteomes in an absolute manner. The use of ultrasonic energy to speed complex proteomics workflows for protein quantification along with thea advent of High Resolution Mass Spectrometry have made possible to treat and to analyze tens of samples a day, thus making mass spectrometry-based clinical proteomics a modern practical tool to be explored.
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Date:22שלישיאוקטובר 2019הרצאה
On the surface but not superficial: Towards a deeper understanding of membrane remodeling
More information שעה 14:00 - 15:00מיקום בניין הלן ומילטון קימלמןמרצה Prof. Ori Avinoam
Department of Biomolecular Sciences WISמארגן המחלקה לביולוגיה מבנית וכימיתצרו קשר -
Date:23רביעיאוקטובר 201924חמישיאוקטובר 2019כנסים
Contemporary Crystal Engineering and Solid-State Chemistry: Symposium commemorating G. M. J. Schmidt's 100th birthday anniversary
More information שעה 08:00 - 18:00מיקום מרכז כנסים על-שם דויד לופאטייושב ראש Rafal Klajn and Omer Yaffeדף בית -
Date:24חמישיאוקטובר 2019הרצאה
What limits the performance of halide perovskite solar cells
More information שעה 14:00 - 15:00מיקום בניין פרלמן למדעי הכימיהמרצה Arava Zohar מארגן המחלקה לכימיה מולקולרית ולמדע חומריםצרו קשר תקציר Show full text abstract about Halide Perovskites, HaPs, make up a group of semiconducting ...» Halide Perovskites, HaPs, make up a group of semiconducting materials with excellent light absorption and good electrical charge transport properties, which is remarkable given their low-temperature solution preparation. In my Ph.D. research, I investigated fundamental optoelectronic properties of HaP semiconductors to elucidate dominant charge transport mechanisms, with emphasis on providing design tools for high-efficiency solar cells to help transform the renewable, solar energy landscape.
I will show how I characterized Fermi level positions and studied the self-doping mechanism of different HaP materials by using a suite of in situ measurements. My main conclusion was that halide vacancy defects (surface, interface, or bulk) and electron sharing between oxygen and the HaP surface, drive Fermi level changes. The former had been postulated but not experimentally shown, until my work. By elucidating the electric field distribution and photovoltage losses I could show that Br-based HaP device efficiency is limited mainly by a (relatively) high defect density at the anode/semiconductor interface.
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Date:27ראשוןאוקטובר 201931חמישיאוקטובר 2019כנסים
PerICo - Training course and management meeting
More information שעה 08:00 - 08:00מיקום מרכז כנסים על-שם דויד לופאטייושב ראש Einat Zalckvar -
Date:27ראשוןאוקטובר 2019הרצאה
Special Guest Seminar
More information שעה 12:00 - 12:00כותרת “Non-genetic adaptation to proteotoxic stress.”מיקום בניין ארתור ורושל בלפר למחקר ביורפואימרצה Dr. Peter Tsvetkov מארגן המחלקה לגנטיקה מולקולריתצרו קשר -
Date:28שניאוקטובר 201931חמישיאוקטובר 2019כנסים
Advanced Practical Workshop in Drug Discovery
More information שעה 08:00 - 08:00מיקום המרכז הישראלי הלאומי לרפואה מותאמת אישית על-שם ננסי וסטיבן גרנדיושב ראש Haim Michael Barrמארגן המרכז הישראלי הלאומי לרפואה מותאמת אישית עש ננסי וסטיבן גרנד -
Date:28שניאוקטובר 2019הרצאה
Life Science Colloquium- Prof. Daniel Douek
More information שעה 11:00 - 12:00כותרת Host genetic factors that affect HIV acquisition and vaccine efficacyמיקום בניין לביוכימיה על שם נלה וליאון בנוזיומרצה Prof. Daniel Douek צרו קשר -
Date:28שניאוקטובר 2019סימפוזיונים
Molecular Electron Microscopy for Studies on Mechanism of Molecular Motions and Reactions
More information שעה 11:00 - 12:15מיקום אולם הרצאות ע"ש גרהרד שמידטמרצה Prof. Eiichi Nakamura
University of Tokyoמארגן הפקולטה לכימיהצרו קשר -
Date:29שלישיאוקטובר 2019כנסים
Yosef Shaul 70th birthday - From Viruses to Proteostasis
More information שעה 08:30 - 17:30מיקום מרכז כנסים על-שם דויד לופאטייושב ראש Rivka Dikstein -
Date:29שלישיאוקטובר 2019הרצאה
'Stem Cells, Regeneration and Aging Breakfast Seminar with Prof. Steffen Jung
More information שעה 09:00 - 10:00כותרת Stem Cells, Regeneration and Aging Breakfast Seminarמיקום בניין ע"ש מקס ולילאן קנדיוטימארגן המחלקה לאימונולוגיה ורגנרציה ביולוגיתצרו קשר -
Date:29שלישיאוקטובר 2019הרצאה
"New Directions for Electricity and Fuels from Sunlight
More information שעה 11:00 - 12:30כותרת Prof.Israel Rubinstein Memorial Lectureמיקום אולם הרצאות ע"ש גרהרד שמידטמרצה Prof. Harry Atwater
Howard Hughes Professor and Professor of Applied Physics and Materials Science Director, Joint Center for Artificial Photosynthesis California Institute of Technologyמארגן המחלקה לכימיה מולקולרית ולמדע חומריםצרו קשר תקציר Show full text abstract about The recent rapid, global growth of photovoltaics has moved s...» The recent rapid, global growth of photovoltaics has moved scientific research frontiers for solar energy conversion towards new opportunities including i) ultrahigh efficiency photovoltaics (η > 30%) and ii) direct synthesis of energy-dense chemical fuels from sunlight, including hydrogen and products from reduction of carbon dioxide. I will illustrate several examples of how design of materials for light harvesting, charge transport and catalytic selectivity can enable advances in electricity and fuel synthesis. Photonic design has opened new directions for high efficiency photovoltaics and luminescent solar concentrators. Semiconductors coupled to water oxidation and reduction catalysts have enabled approaches to photoelectrochemical solar-to-hydrogen generation with >19% efficiency using artificial photosynthetic structures. Solar-driven reduction of carbon dioxide presents both an enormous opportunity and challenge because of the need for selectivity in generating useful multi-carbon products by multiple electron and multi-proton transfer steps. Present work and future directions in selective photocatalytic and photo-electrocatalytic materials for artificial photosynthesis aimed at catalytic reduction of carbon dioxide will be discussed.
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Date:29שלישיאוקטובר 2019הרצאה
Mass spectrometry reveals the chemistry of formaldehyde cross-linking in structured proteins
More information שעה 14:00 - 15:00מיקום בניין הלן ומילטון קימלמןמרצה Dr. Nir Kalisman
Dept. of Biological Chemistry The Hebrew Universityמארגן המחלקה לביולוגיה מבנית וכימיתצרו קשר -
Date:29שלישיאוקטובר 2019הרצאה
"Sporadic Alzheimer's disease – does it start with altered ubiquitin signaling?”
More information שעה 14:00 - 14:00מיקום אולם הרצאות ע"ש גרהרד שמידטמרצה Prof. Michael H. Glickman
Department of Biology, Technion, Haifaמארגן המחלקה למדעי המוחצרו קשר תקציר Show full text abstract about With our rapidly aging population, Alzheimer’s disease (AD) ...» With our rapidly aging population, Alzheimer’s disease (AD) is often considered the plague of the 21st century. While much is known regarding the direct genetic mutations that trigger the rare familial form of the disease (FAD), molecular mechanisms driving the emergence of late-onset sporadic AD (SAD) remain elusive. A distinctively human predicament, AD is a protein-based disease characterized by toxic protein build up in the brain. The principal mechanisms for protein turnover or removal are dependent on ubiquitin. We will describe evidence that interference with ubiquitin signalling in a 3-dimentional human neuronal culture is sufficient to cause the two pathological hallmarks of AD (A plaques and neurofibrillary tangles), even in the absence of any familial mutations. By utilizing this platform, we specifically demonstrate that attenuated ubiquitin-dependent turnover leads to elevated levels of the Amyloid Precursor Protein (APP), enhanced secretion of the toxic amyloid-β42 peptide, and extra-cellular amyloid plaque build-up. Furthermore, we demonstrate that impaired ubiquitin signalling is a common feature of different human and murine models of AD, whereas overcoming this impairment is sufficient to decrease formation of A plaques and neurofibrillary tangles in an experimental model of FAD. To summarise, our work uncovers a role for ubiquitin during the early “cellular phase” of neurodegeneration that underlies emergence and progression of AD, providing hope that tweaking components of the ubiquitin-proteasome system has the potential to decrease risk for developing AD pathology, opening up new therapeutic approaches.
