Category Archives: Neuroscience

Flow acquires Halo to further develop mental health treatments – Med-Tech Innovation

Flow Neuroscience, creator ofa medically approved brain stimulation device to treat depression at home,has acquired the assets of Halo Neuroscience, a US-based company developing brain stimulation technology to optimise performance and wellbeing.

The acquisition of Halos technology, R&D and patents aims to advance Flows research into treatment for depression and other mental health disorders.

Flow Neuroscience will build on the years of research that Halo has undertaken in conjunction with US universities, and will continue to build strong ties with the scientific community in the neuromodulation space. Applying this research, Flow Neuroscience intends to enhance its current medically certified tDCS headset for depression and will collaborate with clinicians toaddress otherpressing medical needs such as rehabilitation and motor impairment.

DanielMansson, CEO and co-founder of Flow Neuroscience, and clinical psychologist, said: Our aim is to dramatically improve the lives of people who struggle with their mental health. Halos technology and academic research complement that of Flows in an almost magical way and will help us to take a very important next step on this journey together with our community of users.

People diagnosed with depression have been found to have lower neural activity in the left frontal lobe, the area of the brain controlling cognitive skills and emotional expression. Flows headset uses tDCS to deliver a constant, low direct current via electrodes to stimulate neurons to that area. The headset is used in conjunction with Flowsdepression app, which is based on psychological research and neuroscience, guiding users through a series of personalised exercises informed by behavioural therapy.

Halos patented tDCS headset stimulates the motor cortex, an area in the brain involved in the planning, control, and execution of voluntary movements. Over the past two years, Halo has been working with leading researchers including theNeural Engineering Groupat The City College of New Yorkand theAir Force Research Laboratoryin Ohio to further develop its neuromodulation technology to improve not only movement, but cognitive performance and mental well-being.

By acquiring Halos technology, Flow aims to progress its tDCS capabilities to be able to expand treatment to include mental health issues that are commonly comorbid with depression.

Erik Rehn, CTO and co-founder of Flow Neuroscience and neuroscientist said: We are building on the technology Halo applied for the improvement of performance and well-being, which will revolutionise the application of tDCS for mental health disorders. By combining different neuromodulation techniques, we will be able to personalise treatments further to target brain regions with more precision. This will allow us to innovate treatments which are patient-specific and even more efficient and reliable. As we know mental health issues are as unique as the individual experiencing them, so further developing treatments that can target the precise areas a person is struggling with, will change the future of mental health treatment as we know it.

Brett Wingeier, CEO and co-founder of Halo, who will be an advisor to Flow, added: "Flow is the best possible successor and a great home for everything we built at Halo with the help of our team, our customers, and our collaborators.We're looking forward to seeing Flow's research and technology advance the state of the art in neuromodulation and make an enormous impact on mental health worldwide with efficient, patient-specific, precision treatment."

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Flow acquires Halo to further develop mental health treatments - Med-Tech Innovation

Study uncovers the effect of media professionalization on cognitive neurodynamics – News-Medical.Net

Professionalization in any field requires long-term experience and training. In the past decades, studies have demonstrated that the professionalization of athletes and artists create differences in the behavior of the brain while carrying out activities related to their area of expertise.

To detect the effects of media professionalization in the brain, a research team from the Universitat Autnoma de Barcelona, the Instituto Rdio Televisi Espanyola and the Universidad Pablo de Olavide in Seville conducted a study published in Frontiers in Systems Neuroscience in which audiovisual contents were presented to a group of media professionals and a control group, with the aims of registering and analyzing their brain activity. The study covers what happens to professionals in audiovisuals when they view media works, using a triple approach: eyeblink rate, electrical activity of the brain and functional connectivity.

Researchers observed that audiovisual cuts have a greater impact on media professionals, generating a decrease in their eyeblink rate, while non-professionals are not affected in the same manner when viewing these cuts. They also detected that the experience of media professionals has a greater effect on the brain's mu rhythm in the somatosensory area immediately after a cut. Non-media professionals, however, demonstrate a highly diverse Granger causality in terms of connectivity when compared to their media professional counterparts, whose connectivity is much more concise in the visual cortex, somatomotor and frontal areas.

Videos and other audiovisual contents are filled with cuts that artificially segment narrative content. Films can contain dozens or hundreds of cuts and viewers are nevertheless not conscious of them. Previous studies conducted by the same team of researchers demonstrated that scene cuts have an impact on the management of viewer's attention. In this study, researchers aimed to discover how this impact differs among media professionals. The experience acquired through years of producing and working with media contents causes a long-term impact on how professionals process these contents. Given that society produces and consumes more and more of these types of contents, there is an interest in discovering the effects the visual perception of these contents have on brain activity.

Doctor Celia Andreu-Snchez, head researcher of this study and member of the Neuro-Com Group at the Universitat Autnoma de Barcelona, considers that the results can be of interest for neuroscience, given that "knowing that spending many hours with media works as a professional not only affects visual perception, but also the brain rhythms such as the mu rhythm, is without a doubt of great interest to science. These results present neuroscience with a highly important work tool: audiovisuals. We know that working and consuming these contents professionally affect the brain's behavior, therefore, it seems plausible that the design of consumption strategies for videos may be relevant in several areas of neuroscience research".

Doctor Miguel ngel Martn-Pascual, from the Instituto Radio Televisin Espaola and the Universitat Autnoma de Barcelona, also author of this research published in Frontiers in Systems Neuroscience, believes that these results are of utmost importance in the professional audiovisual production field.

Knowing the impact audiovisual professionalization has on its professionals is of vital importance for the development of long-term strategies related to the occupational health of this group".

Miguel ngel Martn-Pascual, Instituto Radio Televisin Espaola and Universitat Autnoma de Barcelona

Jos Mara Delgado, researcher at the Neuroscience Division of the Universidad Pablo de Olavide, highlights that "this study and other similar ones conducted by our two groups points out the enormous amount of unconscious processing taking place in the brain (particularly in the non-media professional group) during the viewing of videos and films, especially when the material is edited to contain very short scenes. However, in some way this unconscious processing can have an effect, for example, on our emotional state: although we do not fully perceive all the shots in the video as displaying aggressive interactions, we are able to detect them from an emotional point of view".

This study was developed by the Neuro-Com Research Group of the Universitat Autnoma de Barcelona, the Instituto Radio Televisin Espaola and the Neuroscience Division of the Universidad Pablo de Olavide in Seville. It was conducted under the framework of public grants from the Spanish Ministry for Economics and Competitiveness and from the Regional Government of Andalusia.

Source:

Journal reference:

Andreu-Snchez, C., et al. (2021) The Effect of Media Professionalization on Cognitive Neurodynamics During Audiovisual Cuts. Frontiers in Systems Neuroscience. doi.org/10.3389/fnsys.2021.598383.

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Study uncovers the effect of media professionalization on cognitive neurodynamics - News-Medical.Net

Global Neuroscience Antibodies & Assays Market : Industry Analysis and Forecast (2020-2027) By Product, Technology, Application, End User,and…

Global Neuroscience Antibodies & Assays Market 2019 TO 2027:

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Consumableso Reagents Media & Sera Stains & Dyes Fixatives Buffers Solvents Probes Enzymes, Proteins, & Peptides Other Reagentso Antibodies Primary antibodies Secondary Antibodieso Assay Kits Instrumentso Microplate Readerso Immunoassay Analyzerso Other InstrumentsGlobal Neuroscience Antibodies & Assays Market, By Technology

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Global Neuroscience Market Industry Analysis and Forecast Till 2028 – The Courier

Neuroscience Market report presents the market analysis on the basis of several factors. Report gives the in-depth analysis on the major countries of key regions where the market is growing. In addition, report describes the wide-ranging knowledge about the major companies in this industry and the key strategies accepted by them to survive and rise in the studied industry.

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The key insights of the report:

The report includes profiles of leading companies in the Neuroscience market. Some of the key players profiled include:

Neuroscience: Product Segment Analysis

Neuroscience: Application Segment Analysis

Neuroscience Market Regional analysis includes:

The report firstly introduced the Neuroscience Market basics: definitions, classifications, applications and market Overview; product specifications; manufacturing processes; cost structures, raw materials and so on. At that point it analyzed the worlds primary locale showcase conditions, counting the item cost, benefit, capacity, generation, supply, and request and advertise development rate and estimate etc. Within the conclusion, the report presented unused extend SWOT examination, speculation possibility examination, and speculation return examination.

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A report by HIM REPORTS Research studies the global Neuroscience marketing details and offers a granular analysis of the different factors promoting or hindering the markets growth. It leverages market-leading explanatory instruments to gage the openings anticipating players. It moreover profiles the driving companies working in that and captures information on their incomes. Their item offerings are figured in to decide the advertise division.

Neuroscience Market Report Summary

The report covers a wide run of ranges for way better experiences of the worldwide market and Market trends and forecasts. The report covers market patterns based on product types, application regions and key vendors. Market affecting variables such as drivers, controls and venture openings has been carefully detailed in this report. The examination of the market patterns, examination and figure has been done both at the large scale and micro level viewpoint. It further gives a total thought of the strategies received by major competitors within the business. Other significant variables, which works at the regional and worldwide level to affect the market trends has been included. These impacting variables are socio-political situation, environmental conditions, demography, legal organizations, and competitive environment of the region.

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The Neuroscience Market report includes overview, which deciphers value chain structure, industrial environment, regional examination, applications, market size, and forecast. Usually a most recent report, covering the current COVID-19 effect on the market. The pandemic of Coronavirus (COVID-19) has influenced each viewpoint of life all inclusive.

This has brought along a few changes in market conditions. The quickly changing market situation and initial and future evaluation of the affect is secured within the report. The report gives an overall analysis of the market based on types, applications, regions, and for the forecast period from 2021 to 2028. It moreover offers investment opportunities and likely threats within the market based on an brilliantly investigation.

Table of Contents

1 Study Coverage

2 Executive Summary

3 Breakdown Data by Manufacturers

4 Breakdown Data by Type

4.1 Global Neuroscience Market Sales by Type

4.2 Global Neuroscience Market Revenue by Type

4.3Neuroscience Market Price by Type

5 Breakdown Data by Application

5.1 Overview

5.2 Global Neuroscience Market Breakdown Data by Application

6 North America

7 Europe

8 Asia Pacific

9 Central & South America

10 Middle East and Africa

11 Company Profiles

12 Future Forecast

13 Market Opportunities, Challenges, Risks and Influences Factors Analysis

14 Value Chain and Sales Channels Analysis

15 Research Findings and Conclusion

16 Appendix

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Global Neuroscience Market Industry Analysis and Forecast Till 2028 - The Courier

Is the Mind Really Just What the Brain Does? – Walter Bradley Center for Natural and Artificial Intelligence

Over the past century there have been several paradigms or patterns of explanation by which philosophers and neuroscientists have tried to understand the mind.

Behaviorism was the view that the input to and output from the nervous system was all that mattered. The mind was deemed irrelevant to science. Behaviorism was eclipsed by realityit was more or less demolished in the 1960s by Noam Chomsky (1928), who pointed out that language could not be understood in behaviorist terms. The study of the mind is indispensable to linguistics, neuroscience and philosophy. That this needed to be said is a scandal in itself.

Identity theory the view that mental states are identical to brain states was the rage for several decades, until it was acknowledged that in order to be identical, mind states would have to be the same as brain states, which they arent.

Eliminative materialism the belief that the mind does not exist has had a run for a couple of decades as well. Materialists acknowledged that they had no material explanation for the mind. But rather than jettison materialism, they jettisoned the mind. I predict that eliminative materialism will have a short shelf life, as more effective psychiatric care becomes available.

The theory that survived all of this debate seems to be functionalism. Functionalism is the view that what makes something a mental state is the role it plays its function in a cognitive system. Functionalism is often explained colloquially as the mind is what the brain does.

Functionalism bears a superficial resemblance to the Aristotelian understanding of the soul, which is one of its strengths. Aristotle said the soul is the active principlethe powers, so to speakof a human being. Colloquially, we might say the Aristotelian view is that the mind is the spectrum of cognitive abilities of a human being. Aristotelian psychology* makes sense and corresponds well with the results of modern neuroscience. I think it is the best understanding we have of the mind.

Functionalism differs, however, from Aristotelian psychology and the differences are fatal for the functionalist understanding of the mind. There are two major reasons functionalism fails.

1.Functionalist theories generally describe mental states as functions of brain states, rather then as functions of human beings as a whole. This is the mereological fallacythe erroneous attribution of powers of the whole to its parts. Only human beings see, hear, remember, understand, and will. Brains do brain thingsgenerate action potentials, secrete neurotransmitters, metabolize glucose, etc.

It simply makes no sense to say that brains think, so the assertion that the mind is what the brain does is not merely wrong. It is, literally, nonsense, analogous to saying that feet run (ignoring the rest of the body) or that the ability to smell is a square root. Its gibberish.

2.The most common version of functionalism is computer functionalism. Computer functionalism is the assertion that the brain and mind are a form of computation such that the brain and the mind bear the relation of hardware to software. This is also nonsense the brain is not a computer and the mind is not a computation. The brain can be studied using computational models, but to call the brain a computer is just nonsense. Voting patterns can be studied using computational models but that doesnt mean that voters are computers.

The most egregious error in computer functionalism (as if being nonsensical were not egregious enough) is the assertion that the mind is a kind of computation. Computation is the algorithmic matching of an input to an output. The hallmark of computation is that it is blind to meaning that is, it matches signal to signal, regardless of the semantic content of the signal. A word processing program works just as well for an essay expressing a yea opinion as it does for an essay expressing a nay opinion. Computation is blind to meaning.

Mental states, on the other hand, always have meaning. That is, thoughts always point to an object to a tree perceived, or to a person loved, to a concept understood or a goal pursued.

Not only is it untrue to say that the mind is computation but the mind is the opposite of computation. Computation always lacks meaning and the mind always has meaning. The computer functionalist couldnt be more wrong.

As I noted, I have some sympathy for functionalism because, although it is deeply flawed, it is an effort to explain the mind as abilities, which is a good start toward genuine insight. But theres no reason to embrace functionalism when there is a much more acceptable and profound theory of mind Aristotles clear and cogent view that mental states are the cognitive powers of a human being is on tap.

You may also enjoy this article by Michael Egnor: A reader asks: Does neuroscience disprove free will? Materialists sometimes misrepresent the evidence for free will, especially Benjamin Libets work. We most certainly do have free will. We can see this from three perspectives: scientific, philosophical and logical.

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Is the Mind Really Just What the Brain Does? - Walter Bradley Center for Natural and Artificial Intelligence

Neuroscience Market Worldwide Survey On Product Need 2029 The Bisouv Network – The Bisouv Network

Global Neuroscience Market Overview

The brain mapping research along with the investigation projects, as well as the technological developments in tools and algorithms that are being implemented in neuroscience space are among the primary factors contributing to the progress of the global neuroscience market. The neuroscience-based initiatives by government bodies are further driving product adoption in the global market. Various organizations and institutes such as Max Planck Florida Institute, the University of Pennsylvania, Ontario Brain Institute, NIH, University of Utah, and NeuroScience Canada are playing a vital role in developing the neuroscience-based research and development to increase the efficiency of patient outcomes in those suffering from neurological disorders.

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The global neuroscience market features a fragmented landscape owing to the strong presence of several key players in the market. These leading companies in the global market are constantly focusing on manufacturing technologically advanced products that will enhance efficiency and patient compliance. Naturally, the competition on the basis of pricing in the market quite high and is working in favor of the development of the global market. The existing market players are deploying various strategies and advanced techniques to develop novel processes to improve the outcomes of patients suffering from neurological disorders.

Some of the leading companies in the global neuroscience market include names such as GE Healthcare, Kendall Research Systems LLC, Med Associates Inc, Multi-Channel Systems MCS GmbH, Blackrock Microsystems, NeuroNexus, Sutter Instrument Company, and Prairie Technologies (Bruker Corporation) among others.

Some of the notable developments in the global neuroscience market are given below:

The extensive use of microscopy instruments, optogenetics instruments, MRI instruments, and electrophysiology instruments in the diagnosis of several neuroscience disorders is propelling the rise in the penetration of the global neuroscience market. Imaging techniques are being employed in a wide range of applications in neuroscience-based research which are attributing to the substantial share of whole-brain imaging and include identification of neural networks involved in understanding disease pathways, early disease diagnosis, as well as cognitive processes. It is facilitating the study of disease progression at a molecular level and enabling better usage by researchers to improve novel medicines and treatment strategies for nervous disorders. The increased precision of imaging provided and neuron simulation from optogenetics are boosting the advancement of the global neuroscience market.

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The global neuroscience market has five main regions that provide the reader with the intricate details of the working dynamics of the regional landscape. These regions are North America, Europe, Asia Pacific, Middle East and Africa, and Latin America. Of these, currently, the global neuroscience market is being dominated by the regional segment of North America. Multiple factors such as the availability of well-developed healthcare systems, increasing prevalence of neurological disorders, a significant number of neuroscience-based research entities, and funding by government, as well as other organizations are contributing to the regional segment of North America growing at a remarkable pace in the global neuroscience market. The Asia Pacific region is also progressing at a remarkable pace owing to the presence of the substantial target population along with a developing healthcare system in the region.

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Neuroscience Market Worldwide Survey On Product Need 2029 The Bisouv Network - The Bisouv Network

Comets Honor MLK’s Legacy with Help for Hungry, Heartfelt Words on Day of Service – University of Texas at Dallas

Handwritten greetings were among the 200 cards that UT Dallas students, faculty and staff made for health care workers and isolated seniors in North Texas during the Universitys day of service.

Volunteers delivered food and supplies for the Comet Cupboard and made cards for health care workers and isolated older adults as part of The University of Texas at Dallas annual day of service to honor Dr. Martin Luther King Jr.

During the Jan. 29 project, donors dropped off 361 food and personal care items for the campus food pantry, while virtual volunteers created 200 cards to say thank you to Parkland Health & Hospital System workers and to provide encouragement to seniors at various locations throughout the Dallas-Fort Worth area.

From left: Carolina Parra, marketing and global business freshman; Yosef Awad, neuroscience freshman; Daemion McKellar, arts, technology and emerging communication senior; Dominica Dzakah, biology senior; and Raneem Albosstani, neuroscience senior, stocked the Comet Cupboard.

The Comet Cupboard provides weekly distributions of food and personal care items to enrolled UTDallas students in need. Many volunteers who were not able to deliver items for the food pantry were grateful to be able to contribute by making cards at home, said Anne Hart, program coordinator in the Office of Student Volunteerism.

Through our cards, we hope to express our support and gratitude to our local health care workers who are working around-the-clock to take care of our community, Hart said. Ultimately, our cards will help to foster Dr. Martin Luther King Jr.s vision of a beloved community and allow us to connect with each other during a time when connection seems quite fragmented.

The event, which was adjusted this year to accommodate volunteers in person and virtually, was sponsored by the Multicultural Center in the Office of Diversity, Equity and Inclusion and the Office of Student Volunteerism. The MLK Day of Service was created in 2018 to fulfill Kings challenge for people to help their communities.

See the 2021 Dr. Martin Luther King Jr. Celebration Breakfast, featuring keynote speaker Dr. Froswa Booker-Drew and a message from UTDallas President Richard C. Benson, on the Multicultural Centers YouTube channel.

We have Comets who are dealing with and surviving through food insecurity, Arthur Gregg, director of the Multicultural Center and assistant vice president for multicultural affairs, said at the Dr. Martin Luther King Celebration Breakfast, which was a virtual event. What better way to be that [beloved] community that we talked about than to help our Comet family by supporting our community.

With the theme of Moving from Injustice to Justice, this years Dream Week events also included a session of Comets Cultural Conversations. The event featured guest speaker Priscilla Escobedo, special collections archivist at UTArlington and a board member of the Dallas Mexican American Historical League. The celebration breakfast, sponsored by the Multicultural Center and the Student Union & Activities Advisory Board, featured speaker Dr. Froswa Booker-Drew, founder and CEO of Soulstice Consultancy and vice president of community affairs & strategic alliances for the State Fair of Texas.

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Comets Honor MLK's Legacy with Help for Hungry, Heartfelt Words on Day of Service - University of Texas at Dallas

Neuroscience Antibody or Research Reagents Market Research Insights 2021 Global Industry Outlook Shared in Detailed Report, Forecast to 2030 Jumbo…

A new business intelligence report released by ResearchMoz with title Neuroscience Antibody or Research Reagents Market Insights, Forecast to 2025 provides latest updates and strategic steps taken by competition along with growth estimates of market size. The Neuroscience Antibody or Research Reagents Market report gives clear visions how the research and estimates are derived through primary and secondary sources considering expert opinion, patent analysis, latest market development activity and other influencing factors.

The market report envelopes an all-in information of the global Neuroscience Antibody or Research Reagents market and the nature of the market growth over the foreseeable period. The report provides a comprehensive elaboration of the positives and negatives of the global Neuroscience Antibody or Research Reagents market with DROT and Porters Five Forces analysis. With SWOT analysis, the report offers detailed insights about different players operating within the Neuroscience Antibody or Research Reagents market. In addition, the analysts of the report have served the qualitative and quantitative scrutinizing of different micro- and macro-economic factors influencing the global Neuroscience Antibody or Research Reagents market.

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Market Overview of Neuroscience Antibody or Research Reagents

If you are involved in the Neuroscience Antibody or Research Reagents industry or aim to be, then this study will provide you inclusive point of view. Its vital you keep your market knowledge up to date segmented by major players. If you have a different set of players/manufacturers according to geography or needs regional or country segmented reports we can provide customization according to your requirement.

Key players in the global Neuroscience Antibody or Research Reagents market covered in Chapter 12:GenscriptThermo Fisher ScientificWuhan Fine Biotech Co., Ltd.NEOBIOSCIENCE

This study mainly helps understand which market segments or Region or Country they should focus in coming years to channelize their efforts, understanding current investments cycle and impact of COVID-19 and slowdown. The report presents the market competitive landscape and in depth analysis of the major vendor/key players in the market along with their strategies to overcome production cycle issue and supply chain management to make process efficient.

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Key segments covered in the global Neuroscience Antibody or Research Reagents market report by product type include

The Neuroscience Antibody or Research Reagents market report examines the consumption patter of each segment and the factors affecting the pattern. In addition, the report focuses on the production footprint of each segment in various industries and regions across the globe.

The Neuroscience Antibody or Research Reagents market report helps the readers grasp the changing trend in the industry supply chain, manufacturing techniques and expenses, and current scenario of the end uses in the global Neuroscience Antibody or Research Reagents market.

In Chapter 4 and 14.1, on the basis of types, the Neuroscience Antibody or Research Reagents market from 2015 to 2025 is primarily split into:AntibodyResearch Reagents

In Chapter 5 and 14.2, on the basis of applications, the Neuroscience Antibody or Research Reagents market from 2015 to 2025 covers:Anti-ParkinsonAlzheimerPsychoticEpilepticOthers

Furthermore, the years considered for the study are as follows:

Historical year 2014-2019

Base year 2019

Forecast period** 2020 to 2025 [** unless otherwise stated]

**Moreover, it will also include the opportunities available in micro markets for stakeholders to invest, detailed analysis of competitive landscape and product services of key players.

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Important Features that are under offering & key highlights of the Neuroscience Antibody or Research Reagents market report:

Major Highlights of TOC:

Chapter One: Market Overview

1.1. Introduction

1.2. Scope/Objective of the Study

Chapter Two: Executive Summary

2.1. Introduction

Chapter Three: Market Dynamics

3.1. Introduction

3.2. Market Drivers, Trends, Challenges, Opportunities

Chapter Four: Market Factor Analysis

4.1. Porters Five Forces

4.2. Supply/Value Chain

4.3. PESTEL analysis

4.4. Market Entropy

4.5. Impact Analysis Post COVID-19

Chapter Nine: Methodology and Data Source

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Neuroscience Antibody or Research Reagents Market Research Insights 2021 Global Industry Outlook Shared in Detailed Report, Forecast to 2030 Jumbo...

Neuroscience institute renovating building The Daily Evergreen – The Daily Evergreen

Building located in Spokane; resources provided from the institute available to students on all WSU campuses

COURTESY OF WASHINGTON STATE UNIVERSITY HEALTH SCIENCES

The building will be outfitted with specific technology to help people with neurodegenerative diseases. The institute will start accepting patients at the end of the summer.

The Steve Gleason Institute for Neuroscience is renovating a building on the WSU Spokane campus.

Avista Development owns the building, which is located south of WSU Health Sciences, at 325 E. Sprague Ave. Avista leases it to the institute for a nominal fee, according to the WSU Health Sciences Spokane website.

The pandemic has slowed the renovation progress, but the building is nearing completion. Renovations started last summer, and should be finished in three to four months, said Andrea Lazarus, executive director of the Steve Gleason Institute for Neuroscience.

Upon completion, the building will be outfitted with specific technology to help people with neurodegenerative diseases. The institute will start accepting patients at the end of the summer, Lazarus said.

A lot of patients with ALS get diagnosed and may not see their physician again right away, Lazarus said. They dont know where to go. We are a resource where they can come and find out more information about their condition.

Avista and the Health Sciences and Services Authority of Spokane County helped fund the renovation, said Daryll B. DeWald, vice president and chancellor of WSU Health Sciences.

Although the physical building is located in Spokane, resources provided from the institute will be available to students on all WSU campuses, Lazarus said.

The institute plans on hosting a number of informative seminars, she said. They will also bring together WSU neuroscience students across all campuses to collaborate on various research projects.

There is a lot of ongoing neuroscience research at WSU, but it hasnt been all brought together under one umbrella, Lazarus said, And that is what we are hoping to do.

The institute has a tripartite mission, DeWald said. This means they will focus on clinical services, research and student engagement with technology.

The three focuses set the institute apart from others like it because many have a combination of clinical and research experience, but lack innovative and adaptive technology, Lazarus said.

The institute uses technology like eye trackers to help people with ALS communicate, De Wald said.

I am motivated, personally, to serve, to build and to try to address these diseases and understand how they work, he said.

Lazarus said the institute partnered and is co-branding with St. Lukes Rehabilitation Institute. St. Lukes treats patients with neurodegenerative diseases, like ALS.

The institute collaborates with St. Lukes to outfit patients with technology that will help them manage their specific diseases, she said.

Lazarus said if the building is a success, they hope to build a second building later on to expand research opportunities and increase the number of patients they can serve.

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Studying What She Loves Japanese and Neuroscience – News – Hamilton College News

Back when she was college hunting, Maya Taliaferro 21 thought Hamilton and its open curriculum looked like a perfect fit for pursuing her disparate interests of Japanese and neuroscience. Now a senior, Taliaferro is convinced she made the right choice.

She was able to major in neuroscience, minor in Japanese and balance her science major with a semester of off-campus study in Kyoto, Japan. The timing of the program she attended proved to be lucky it started a bit early, which meant she squeezed in most of the experience before it was short by the COVID-19 pandemic.

Major: Neuroscience

Minor: Japanese

Hometown:Ambler, Pa.

High School:Wissahickon High School

Studying in Japan was a highlight of her college career. It's one of the things that really drew me towards Hamilton because I knew that they had a strong study abroad program and really good financial support for study abroad, said Taliaferro, who received a Benjamin A. Gilman International Scholarship.

While she was abroad she had an opportunity to work in a biology lab. So I was still able to keep up with some of the scientific stuff that I like to do, and do that in Japan and practice my Japanese. It was really the perfect mix. It was really awesome, she said.

After Taliaferro graduates from Hamilton, her plan is to get a research job for two years before she enters a neuroscience doctoral program in the U.S.

But I love Japan, and I love the experience I had there. And so I never want to lose my interaction with it. I have a couple of friends from Japan that I made when I was there that I want to continue to keep in contact with. But in terms of career, after grad school, I would definitely consider jobs in Japan as well as in the United States, she said.

At Hamilton students may major or minor in Japanese.

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Studying What She Loves Japanese and Neuroscience - News - Hamilton College News