Academic literature on the topic 'Degree Discipline: Genetics'

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Journal articles on the topic "Degree Discipline: Genetics"

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Li, Jia, Zhu Xianglei, and Xu Guoliang. "Research status and development trend of altruism in the biological field - knowledge graph analysis based on CiteSpace." Journal of Biology and Medicine 6, no. 1 (December 1, 2022): 042–47. http://dx.doi.org/10.17352/jbm.000034.

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Based on the visualization analysis of foreign literature on altruistic behavior in recent ten years (2012-2022) by CiteSpace, it is found that the research on altruistic behavior in the field of biology abroad has experienced the initial exploratory stage, the outbreak stage, and now enters the stable and deepening stage. The discipline distribution is mainly behavioral ecology, supplemented by evolutionary biology, biomathematics, and genetics. The author has three main cooperative groups, and a relatively tight cooperative network has been formed locally in related fields. From the perspective of cooperation degree, the cooperation density of major research institutions is high, and relevant research has been relatively mature. Judging from the period calculated in the software, altruism, cooperation, kin Selection, reciprocity, and inclusive fitness emerged earlier. In recent years, constitutive theory, density dependence, and Habitat construction have emerged, which may become a new direction for future research. Therefore, future research can expand the scope of disciplines, strengthen the cooperation between authors and units, and explore other research hotspots.
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Córdova-Martínez, Alfredo, Alberto Caballero-García, Hugo J. Bello, Daniel Perez-Valdecantos, and Enrique Roche. "Effects of Eccentric vs. Concentric Sports on Blood Muscular Damage Markers in Male Professional Players." Biology 11, no. 3 (February 22, 2022): 343. http://dx.doi.org/10.3390/biology11030343.

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Background: Repetitive eccentric contractions can lead to higher degree of damage compared to repetitive concentric contractions. However, this type of exercise does not reproduce the real situations during the season in competitive sport disciplines. Methods: We analyzed the pattern of muscle damage blood markers in male professionals from three disciplines: cycling (n = 18), mainly concentric, vs. basketball (n = 12) and volleyball (n = 14), both mainly eccentric. Circulating muscle markers were analyzed in two moments of the regular season: after a 20-day training (no competition) period (T1) and after a 20-day period of high demanding competition (T2). Results: Blood levels of creatine kinase and myoglobin (muscle markers) increased in all groups at T2 compared to T1 as a result of competition intensity. The lower increases were noticed in cyclists at the end of both periods. Testosterone levels decreased at T2 compared to T1 in all disciplines, with lower levels found in cyclists. However, cortisol plasma levels decreased in basketball and volleyball players at T2, but increased significantly in cyclists, suggesting a limited adaptation to the effort. Conclusions: The pattern of circulating muscle markers is different depending of the demanding efforts (training vs. competition) of each particular discipline.
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Nerio, Ron, Althea Webber, Effie MacLachlan, David Lopatto, and Avrom J. Caplan. "One-Year Research Experience for Associate’s Degree Students Impacts Graduation, STEM Retention, and Transfer Patterns." CBE—Life Sciences Education 18, no. 2 (June 2019): ar25. http://dx.doi.org/10.1187/cbe.19-02-0042.

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The CUNY Research Scholars Program (CRSP) provides a yearlong faculty-mentored research experience to associate’s degree students. The program takes place at all 10 associate’s degree–granting colleges within the City University of New York system. We report on a mixed-methods study of 500 students who participated in the program during its initial 3 years. Quantitative longitudinal assessments revealed that students who engaged in CRSP were more likely to be retained in a science, technology, engineering, and mathematics (STEM) discipline or to graduate with a STEM degree than their counterparts in a matched comparison group. Furthermore, students who participated in CRSP demonstrated an increased likelihood of transferring to the more research-intensive 4-year schools within the CUNY system and to R1 universities outside the CUNY system. CRSP students reported an increased sense of belonging in college based on survey data, and focus groups with their mentors provided insight into the factors that led to the gains listed above. These combined results—of student data analysis, student surveys, and mentor focus groups—provide evidence that early research experiences for associate’s degree students contribute to their academic success.
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Dyer, Michael G. "Toward Synthesizing Artificial Neural Networks that Exhibit Cooperative Intelligent Behavior: Some Open Issues in Artificial Life." Artificial Life 1, no. 1_2 (October 1993): 111–34. http://dx.doi.org/10.1162/artl.1993.1.1_2.111.

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The tasks that animals perform require a high degree of intelligence. Animals forage for food, migrate, navigate, court mates, rear offspring, defend against predators, construct nests, and so on. These tasks commonly require social interaction/cooperation and are accomplished by animal nervous systems, which are the result of billions of years of evolution and complex developmental/learning processes. The Artificial Life (AL) approach to synthesizing intelligent behavior is guided by this biological perspective. In this article we examine some of the numerous open problems in synthesizing intelligent animal behavior (especially cooperative behavior involving communication) that face the field of AL, a discipline still in its infancy.
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Drinkwater, Michael J., Kelly E. Matthews, and Jacob Seiler. "How Is Science Being Taught? Measuring Evidence-Based Teaching Practices across Undergraduate Science Departments." CBE—Life Sciences Education 16, no. 1 (March 2017): ar18. http://dx.doi.org/10.1187/cbe.15-12-0261.

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While there is a wealth of research evidencing the benefits of active-learning approaches, the extent to which these teaching practices are adopted in the sciences is not well known. The aim of this study is to establish an evidential baseline of teaching practices across a bachelor of science degree program at a large research-intensive Australian university. Our purpose is to contribute to knowledge on the adoption levels of evidence-based teaching practices by faculty within a science degree program and inform our science curriculum review in practical terms. We used the Teaching Practices Inventory (TPI) to measure the use of evidence-based teaching approaches in 129 courses (units of study) across 13 departments. We compared the results with those from a Canadian institution to identify areas in need of improvement at our institution. We applied a regression analysis to the data and found that the adoption of evidence-based teaching practices differs by discipline and is higher in first-year classes at our institution. The study demonstrates that the TPI can be used in different institutional contexts and provides data that can inform practice and policy.
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Mercer, Kristin L. "Towards evolutionary agroecology." INTERdisciplina 6, no. 14 (February 12, 2018): 51. http://dx.doi.org/10.22201/ceiich.24485705e.2018.14.63380.

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Agroecology derives much of its strength from interactions between disciplines that produce a holistic perspective on agricultural systems and issues. Although ongoing integration of social dynamics into agroecology has strengthened the field, evolution and genetics have not been embraced to the same degree, despite the fact that they have been are discussed in some common agroecology texts. I argue that the field of agroecology could extend its reach and depth by embracing the evolutionary study of agroecosystems. Areas of evolutionary inquiry with relevance to agriculture focus on long or short term processes, encompass a range of scales, incorporate molecular or quantitative genetic analyses, and explore ecological processes to differing degrees.
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Rose, Steven. "Précis of Lifelines: Biology, freedom, determinism." Behavioral and Brain Sciences 22, no. 5 (October 1999): 871–85. http://dx.doi.org/10.1017/s0140525x99002204.

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There are many ways of describing and explaining the properties of living systems; causal, functional, and reductive accounts are necessary but no one account has primacy. The history of biology as a discipline has given excessive authority to reductionism, which collapses higher level accounts, such as social or behavioural ones, into molecular ones. Such reductionism becomes crudely ideological when applied to the human condition, with its claims for genes “for” everything from sexual orientation to compulsive shopping. The current enthusiasm for genetics and ultra-Darwinist accounts, with their selfish-gene metaphors for living processes, misunderstand both the phenomena of development and the interactive role that DNA and the fluid genome play in the cellular orchestra. DNA is not a blueprint, and the four dimensions of life (three of space, one of time) cannot be read off from its one-dimensional strand. Both developmental and evolutionary processes are more than merely instructive or selective; the organism constructs itself, a process known as autopoiesis, through a lifeline trajectory. Because organisms are thermodynamically open systems, living processes are homeodynamic, not homeostatic. The self-organising membrane-bound and energy-utilising metabolic web of the cell must have evolved prior to so-called naked replicators. Evolution is constrained by physics, chemistry, and structure; not all change is powered by natural selection, and not all phenotypes are adaptive. Finally, therefore, living processes are radically indeterminate; like all other living organisms, but to an even greater degree, we make our own future, though in circumstances not of our own choosing.
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Stone, Robert J. "The (human) science of medical virtual learning environments." Philosophical Transactions of the Royal Society B: Biological Sciences 366, no. 1562 (January 27, 2011): 276–85. http://dx.doi.org/10.1098/rstb.2010.0209.

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The uptake of virtual simulation technologies in both military and civilian surgical contexts has been both slow and patchy. The failure of the virtual reality community in the 1990s and early 2000s to deliver affordable and accessible training systems stems not only from an obsessive quest to develop the ‘ultimate’ in so-called ‘immersive’ hardware solutions, from head-mounted displays to large-scale projection theatres, but also from a comprehensive lack of attention to the needs of the end users. While many still perceive the science of simulation to be defined by technological advances, such as computing power, specialized graphics hardware, advanced interactive controllers, displays and so on, the true science underpinning simulation—the science that helps to guarantee the transfer of skills from the simulated to the real—is that of human factors, a well-established discipline that focuses on the abilities and limitations of the end user when designing interactive systems, as opposed to the more commercially explicit components of technology. Based on three surgical simulation case studies, the importance of a human factors approach to the design of appropriate simulation content and interactive hardware for medical simulation is illustrated. The studies demonstrate that it is unnecessary to pursue real-world fidelity in all instances in order to achieve psychological fidelity—the degree to which the simulated tasks reproduce and foster knowledge, skills and behaviours that can be reliably transferred to real-world training applications.
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Cascajares, Mila, Alfredo Alcayde, Esther Salmerón-Manzano, and Francisco Manzano-Agugliaro. "Transfer of Agricultural and Biological Sciences Research to Patents: The Case of EU-27." Agronomy 11, no. 2 (January 29, 2021): 252. http://dx.doi.org/10.3390/agronomy11020252.

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Agriculture as an economic activity and agronomy as a science must provide food for a constantly growing population. Research in this field is therefore becoming increasingly essential. Much of the research is carried out in academic institutions and then developed in the private sector. Patents do not have to be issued through scientific institutions. Patents from scientific institutions are intended to have a certain economic return on the investment made in research when the patent is transferred to industry. A bibliometric analysis was carried out using the Scopus and SciVal databases. This study analyses all the research carried out in the field of agronomy and related sciences (Agricultural and Biological Sciences category of Scopus database) by EU-27 countries, which has been cited in at least one international patent. The data show that out of about 1 million published works only about 28,000 have been used as a source of patents. This study highlights the main countries and institutions in terms of this transfer. Among these, Germany, France and Spain stand out in absolute terms, but considering the degree of specialization. Regarding their specialization the institution ranking is led by Swedish University of Agricultural Sciences (58%), AgroParisTech (52%), Wageningen University & Research (48%), and INRAE (38%). It also analyses which journals used for this transfer are most important. For these publications more than 90% of the articles have had a higher-than-expected citation level for the year of publication, the type of publication and the discipline in which they are categorized. The most-obtained research fields can be distinguished as those related to genetics or mo-lecular biology, those related to specific foods, such as cheeses, milk, breads or oils, and, thirdly, the group covering food-related constituents such as caseins, probiotics, glutens, or starch.
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Barnes, Taylor, Kirstin M. Burnett, W. Shawn Ramsey, and Kathrin Dunlap. "252 Better Preparing Animal Science Students for Education Associated Careers." Journal of Animal Science 98, Supplement_4 (November 3, 2020): 186. http://dx.doi.org/10.1093/jas/skaa278.343.

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Abstract An Animal Science degree prepares students for a broad range of career opportunities yet the two most discussed in the literature and assumed by society are in animal science industry or veterinary medicine. However, studies indicate that -60% of our students enter into education as a career path, yet animal science departments typically do not emphasize educational careers or provide opportunities for students to develop skills in methods relevant for animal science related teaching. To combat this lack of representation for educational career opportunities, our research university’s animal science department has acted in two ways:-Developed a laboratory teaching methods course that allows undergraduate students to serve as teaching assistants for an animal handling lab with support and supervision from the course and graduate student lab instructors-Performed a content analysis to identify the type, frequency, and way educational career paths are discussed and/or assessed in introductory animal science courses. These are the first steps in ensuring that students are as prepared for pursuit of a possible educational career at a level equal to that for industry or veterinary careers. Sustainability of animal science includes retaining students in educational careers and actively improving our educational practices within the discipline. These changes better prepare our undergraduate students to have more realistic job expectations and competence in teaching when they pursue graduate school or animal science related educational career options. The university animal science program also benefits, as the undergraduate teaching assistants improve the instructor-to-student ratio thus positively impacting safety and logistics of hands-on large animal labs while increasing one-on-one instruction time with students. These practices increase student engagement and learning. Additionally, the field of animal science will prosper from increased competence in pedagogical techniques providing a richer, more complete educational experience for our students both in and out of university settings.
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Book chapters on the topic "Degree Discipline: Genetics"

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Norman, Colin. "Trade and Science Journals." In A Field Guide for Science Writers. Oxford University Press, 2005. http://dx.doi.org/10.1093/oso/9780195174991.003.0015.

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I once asked a friend who was a political reporter for an influential British daily whether he had a particular type of reader in mind when he sat down at his typewriter (yes, I said typewriter; it was a long time ago). His response: “Somebody who moves his lips when he reads.” At the time, equipped with a mere bachelor's degree, I was starting out as a reporter for Nature, a journal read by researchers at the forefront of their disciplines—Nobel laureates, even. My friend's flip remark carried a useful message, which is why it has stuck with me over the years: Don't be intimidated by your readers. Writing for a scientific journal can certainly be intimidating. A fraction of your readers will know a good deal more about the topic than you do, and a larger fraction will be quick to jump on any mistakes. Yet if you are writing for a multidisciplinary journal like Science or Nature, and are hoping to entice an astrophysicist, say, to read an article on genetics, you'll need to explain some basic terms—and you'll need to do it without talking down to the scientists who are already the experts. You are also writing for a very busy audience, so there's a premium on good writing. Scientists have a hard enough time understanding the technical papers in the back of the journal, and they will turn the page rather than struggle through a news story if it's needlessly dense. And, perhaps most important, you are setting the context of whatever research you're describing. Your readers can get the findings just by scanning the literature, but what they can't get is how those findings fit into a hot new trend or the way that intense competition drove the research. That's where you come in. So what makes a good story for a professional magazine? Remember who your readers are: a community of scientists—a relatively specific community if you are writing for a magazine like Chemical and Engineering News, or a very broad one if you are writing for Science or Nature.
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Conference papers on the topic "Degree Discipline: Genetics"

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Sun, Xuan, Kjell Andersson, and Ulf Sellgren. "Towards a Methodology for Multidisciplinary Design Optimization of Haptic Devices." In ASME 2015 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. American Society of Mechanical Engineers, 2015. http://dx.doi.org/10.1115/detc2015-47181.

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Design of haptic devices requires trade-off between many conflicting requirements, such as high stiffness, large workspace, small inertia, low actuator force/torque, and a small size of the device. With the traditional design and optimization process, it is difficult to effectively fulfill the system requirements by separately treating the different discipline domains. To solve this problem and to avoid sub-optimization, this work proposes a design methodology, based on Multidisciplinary Design Optimization (MDO) methods and tools, for design optimization of six degree-of-freedom (DOF) haptic devices for medical applications, e.g. simulators for surgeon and dentist training or for remote surgery. The proposed model-based and simulation-driven methodology aims to enable different disciplines and subsystems to be included in the haptic device optimization process by using a robust model architecture that integrates discipline-specific models in an optimization framework and thus enables automation of design activities in the concept and detail design phase. Because of the multi-criteria character of the performance requirements, multi-objective optimization is included as part of the proposed methodology. Because of the high-level requirements on haptic devices for medical applications in combination with a complex structure, models such as CAD (Computer Aided Design), CAE (Computer Aided Engineering), and kinematic models are considered to be integrated in the optimization process and presenting a systems view to the design engineers. An integration tool for MDO is used as framework to manage, integrate, and execute the optimization process. A case study of a 6-DOF haptic device based on a TAU structure is used to illustrate the proposed methodology. With this specific case, a Multi-objective Genetic Algorithm (MOGA) with an initial population based on a pseudo random SOBOL sequence and Monte Carlo samplings is used for the optimization.
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