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211 - 220 of 333 results for: all courses

HUMBIO 131: The Science of Human Movement Lab

This course covers the basic principles governing human movement with an emphasis on sports applications. The course spends roughly equal amounts of time on the applied anatomy and biology, meaning both the large and small-scale body structure and function. The applied anatomy portion includes body structure (the muscles and their connections) and mechanics (e.g. forces, torque, momentum and power), which together describe macroscopic movement. The applied biology portion includes the molecular and cellular basis of movement, mainly muscle contraction, nerve signaling, and the mechanisms of exercise damage, cramping, muscle memory, delayed-onset muscle soreness, and fatigue. Prerequisites: Human Biology Core or Biology Foundations or equivalent or consent of instructor.
Terms: Spr | Units: 4 | UG Reqs: WAY-SMA

HUMBIO 133: Human Physiology (BIO 112)

Human physiology will be examined by organ systems: cardiovascular, respiratory, renal, gastrointestinal and endocrine. Molecular and cell biology and signaling principles that underlie organ development, pathophysiology and opportunities for regenerative medicine are discussed, as well as integrative control mechanisms and fetal development. Prerequisite: HUMBIO3A or HUMBIO4A or BIO83 or BIO84 orBIO86 or consent of instructor.
Terms: Win | Units: 4 | UG Reqs: GER: DB-NatSci, WAY-SMA

HUMBIO 135: Exercise Physiology

Explore the amazing capacity of your body to move and adapt within your everyday world. You will learn: how your body systems respond to the stress of acute exercise and adapt to chronic exercise training, how your cardiovascular system adapts to optimize oxygen delivery and utilization, how your muscles generate force and hypertrophy in response to training, and how your metabolic/biochemical pathways are regulated to support the increased energy demand of exercise. We will discuss theories on the causes of fatigue and muscle soreness, and on what limits human performance. Applied topics such as the effects of aging, gender, and environmental conditions (high altitude, heat, cold, microgravity) on your body will be emphasized in the second half of the course. Portions of the class will be taught through videos that use online lectures and engaging stories to illustrate physiology concepts. Prerequisites: HUMBIO 4A or BIO 84 or consent of instructor.
Terms: Aut | Units: 4 | UG Reqs: WAY-SMA

HUMBIO 139S: Sport and Exercise Medicine

This is an upper division course with a common theme of injury as well as injury prevention in sport and physical activity. The topics include the treatment and evaluation of common sports injuries and illnesses for both musculoskeletal and non-musculoskeletal/medical conditions. Students will also develop critical reading and thinking skills. Classes will incorporate didactic lectures, critical analysis of sports medicine literature, as well as hand-on labs incorporating current sports medicine injury evaluation tools. Enrollment limited to students with sophomore academic standing or above. Prerequisite: Human Biology Core or Biology Foundations or equivalent or consent of instructor.
Last offered: Spring 2022 | UG Reqs: WAY-SMA

HUMBIO 151R: Biology, Health and Big Data

We are living in a time of rapid growth in the accessibility and availability of biological and medical data. How can all this data be used to improve human health? In this course, students will look at case studies from diabetes and cancer research to learn how to access publicly available data ranging from genetic, protein and signaling pathway databases to information about clinical trials. Students will apply what they learn about bioinformatics databases to develop a research proposal and presentation on a biology-related topic of their choice. The class will have an interactive format with in-class data analysis activities. Students will gain skills in research methods including accessing, analyzing and presenting data. Assignments will use the R programming language. Prior programming experience is not required. Prerequisites: HUMBIO 2A and HUMBIO 3A or BIO 82 and BIO 83 or consent of instructor
Terms: Spr | Units: 3 | UG Reqs: WAY-SMA
Instructors: Salmeen, A. (PI)

HUMBIO 159: Genes and Environment in Disease Causation: Implications for Medicine and Public Health (EPI 238)

The historical, contemporary, and future research and practice among genetics, epidemiology, clinical medicine, and public health as a source of insight for medicine and public health. Genetic and environmental contributions to multifactorial diseases; multidisciplinary approach to enhancing detection and diagnosis. The impact of the Human Genome Project on analysis of cardiovascular and neurological diseases, and cancer. Ethical and social issues in the use of genetic information. This course must be taken for a minimum of 3 units and a letter grade to be eligible for Ways credit. Basic knowledge of genetics and human physiology to better understand chronic diseases and preferably have taken or concurrently in the statistics core. Prerequisites: Human Biology core or Biology Foundations or consent of instructor. Preferably have¿taken the statistics core or concurrently enrolled in it.
Terms: Win | Units: 3 | UG Reqs: WAY-SMA

HUMBIO 160: Human Behavioral Biology (BIO 150)

Multidisciplinary. How to approach complex normal and abnormal behaviors through biology. How to integrate disciplines including sociobiology, ethology, neuroscience, and endocrinology to examine behaviors such as aggression, sexual behavior, language use, and mental illness.
Terms: Spr | Units: 5 | UG Reqs: WAY-SMA, GER: DB-NatSci
Instructors: Sapolsky, R. (PI)

HUMBIO 161: The Neurobiology of Sleep (BIO 149, BIO 249, PSYC 149, PSYC 261)

The neurochemistry and neurophysiology of changes in brain activity and conscious awareness are associated with changes in the sleep/wake state. Behavioral and neurobiological phenomena include sleep regulation, sleep homeostasis, circadian rhythms, sleep disorders, sleep function, and the molecular biology of sleep. Preference to seniors and graduate students.
Terms: Win | Units: 4 | UG Reqs: GER: DB-NatSci, WAY-SMA

LINGUIST 105: Phonetics (LINGUIST 205A)

Every time you speak a word, you say it differently than the time before. Getting all the movements used during speech production to produce an exact repetition of a word is nearly impossible. Your friends and family also vary in how they say words, and this variation differs across speech styles, emotions, and social communities. Imagine that. Our minds encounter thousands of different productions of a single word, but somehow identify it as one word, and not another. Phonetics is the systematic study of the articulation, acoustics, and perception in speech and can help us explain how different talkers vary their speech, how information from speech is used by listeners to understand one another, and how listeners store social and linguistic information in memory. Through lectures, class activities, and weekly lab assignments, this class highlights both the complexity of the physical nature of speech production, how we can understand the resulting acoustic signal, and how that signal i more »
Every time you speak a word, you say it differently than the time before. Getting all the movements used during speech production to produce an exact repetition of a word is nearly impossible. Your friends and family also vary in how they say words, and this variation differs across speech styles, emotions, and social communities. Imagine that. Our minds encounter thousands of different productions of a single word, but somehow identify it as one word, and not another. Phonetics is the systematic study of the articulation, acoustics, and perception in speech and can help us explain how different talkers vary their speech, how information from speech is used by listeners to understand one another, and how listeners store social and linguistic information in memory. Through lectures, class activities, and weekly lab assignments, this class highlights both the complexity of the physical nature of speech production, how we can understand the resulting acoustic signal, and how that signal is interpreted and understood by listeners. By the end of this course, you will be able to (1) look at a visual representation of speech and understand what you are looking at; (2) manipulate speech samples to understand how listeners experience language and categorize different speech sounds; (3) understand the processes involved in articulating speech sounds; (4) explain how linguistic segments interact with cues to emotion, gender, and other macro-social attributes; and (5) identify the ways an understanding of speech variation can be used to advance our understanding of spoken language understanding my humans and machines. We will be using the software program Praat (https://www.fon.hum.uva.nl/praat/) weekly, beginning the first week of class. Please download the program and have it installed on your computer before class begins.
Terms: Win | Units: 4 | UG Reqs: GER:DB-SocSci, WAY-SMA

MATSCI 81N: Bioengineering Materials to Heal the Body

Preference to freshmen. Real-world examples of materials developed for tissue engineering and regenerative medicine therapies. How scientists and engineers design new materials for surgeons to use in replacing body parts such as damaged heart or spinal cord tissue. How cells interact with implanted materials. Students identify a clinically important disease or injury that requires a better material, proposed research approaches to the problem, and debate possible engineering solutions.
Last offered: Spring 2023 | UG Reqs: GER:DB-EngrAppSci, WAY-SMA
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