BackBasic Principles of Animal Form and Function
Study Guide - Smart Notes
Tailored notes based on your materials, expanded with key definitions, examples, and context.
{"type":"doc","content":[{"type":"heading","attrs":{"textAlign":null,"level":2},"content":[{"type":"text","text":"Basic Principles of Animal Form and Function"}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Introduction"}]},{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"This chapter explores how animal form and function are intricately linked, focusing on the structural and physiological adaptations that enable animals to survive and thrive in diverse environments. Key concepts include the correlation between anatomy and physiology, hierarchical organization of body plans, mechanisms of homeostasis, and the energetic demands of animal life."}]},{"type":"heading","attrs":{"textAlign":null,"level":2},"content":[{"type":"text","text":"Animal Form and Function: Correlation at All Levels of Organization"}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Structure and Function"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","marks":[{"type":"bold"}],"text":"Anatomy"},{"type":"text","text":" refers to the biological structure of an organism, while "},{"type":"text","marks":[{"type":"bold"}],"text":"physiology"},{"type":"text","text":" refers to its biological function."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Structure and function are closely correlated; examining anatomy often provides clues to physiological roles."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Animal forms are shaped by evolutionary pressures, physical laws, and environmental interactions."}]}]}]},{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"image","attrs":{"src":"https://static.studychannel.pearsonprd.tech/study_guide_files/biology/sub_images/7e40cedd_image_2.png","alt":"Penguins swimming underwater, demonstrating streamlined body form","title":null,"width":null,"height":null}}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Physical Constraints on Animal Form"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Physical laws (e.g., those governing strength, diffusion, movement, and heat exchange) limit the range of possible animal forms."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Properties of water, for example, restrict the shapes of fast-swimming animals to fusiform (streamlined) bodies."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Convergent evolution leads to similar adaptations in unrelated species facing similar environmental challenges."}]}]}]},{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"image","attrs":{"src":"https://static.studychannel.pearsonprd.tech/study_guide_files/biology/sub_images/7e40cedd_image_17.png","alt":"Fusiform shape diagram","title":null,"width":null,"height":null}}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Size, Shape, and Environmental Interaction"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"As animals increase in size, their skeletons must become thicker for support, and muscle mass increases proportionally."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Mobility may become limited at larger sizes due to these constraints."}]}]}]},{"type":"heading","attrs":{"textAlign":null,"level":2},"content":[{"type":"text","text":"Exchange with the Environment"}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Surface Area and Volume Relationships"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Materials such as nutrients, gases, and wastes must be exchanged across cell membranes."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"The rate of exchange is proportional to surface area, while the amount of material exchanged is proportional to volume."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Single-celled organisms have sufficient surface area for exchange; multicellular organisms require adaptations to ensure all cells have access to exchange surfaces."}]}]}]},{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"image","attrs":{"src":"https://static.studychannel.pearsonprd.tech/study_guide_files/biology/sub_images/7e40cedd_image_29.png","alt":"Amoeba showing direct exchange with environment","title":null,"width":null,"height":null}},{"type":"image","attrs":{"src":"https://static.studychannel.pearsonprd.tech/study_guide_files/biology/sub_images/7e40cedd_image_30.png","alt":"Hydra with two cell layers facilitating exchange","title":null,"width":null,"height":null}}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Adaptations for Exchange in Multicellular Organisms"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Simple body plans (e.g., flatworms, hydra) allow direct exchange with the environment."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Complex animals have specialized, branched, or folded structures (e.g., lungs, intestines) to increase surface area for exchange."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Interstitial fluid fills spaces between cells, linking exchange surfaces to body cells."}]}]}]},{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"image","attrs":{"src":"https://static.studychannel.pearsonprd.tech/study_guide_files/biology/sub_images/7e40cedd_image_39.png","alt":"Diagram of internal exchange surfaces and interstitial fluid","title":null,"width":null,"height":null}}]},{"type":"heading","attrs":{"textAlign":null,"level":2},"content":[{"type":"text","text":"Hierarchical Organization of Body Plans"}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Levels of Organization"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Cells are organized into "},{"type":"text","marks":[{"type":"bold"}],"text":"tissues"},{"type":"text","text":", which form "},{"type":"text","marks":[{"type":"bold"}],"text":"organs"},{"type":"text","text":", which in turn make up 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thermoregulation"}]}]}]},{"type":"tableRow","content":[{"type":"tableCell","attrs":{"colspan":1,"rowspan":1,"colwidth":null},"content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Skeletal"}]}]},{"type":"tableCell","attrs":{"colspan":1,"rowspan":1,"colwidth":null},"content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Bones, tendons, ligaments, cartilage"}]}]},{"type":"tableCell","attrs":{"colspan":1,"rowspan":1,"colwidth":null},"content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Support, protection, movement"}]}]}]},{"type":"tableRow","content":[{"type":"tableCell","attrs":{"colspan":1,"rowspan":1,"colwidth":null},"content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Muscular"}]}]},{"type":"tableCell","attrs":{"colspan":1,"rowspan":1,"colwidth":null},"content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Skeletal muscles"}]}]},{"type":"tableCell","attrs":{"colspan":1,"rowspan":1,"colwidth":null},"content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Locomotion and movement"}]}]}]}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Animal Tissue Types"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","marks":[{"type":"bold"}],"text":"Epithelial tissue"},{"type":"text","text":": Covers body surfaces and lines organs/cavities; cells may be cuboidal, columnar, or squamous."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","marks":[{"type":"bold"}],"text":"Connective tissue"},{"type":"text","text":": Binds and supports other tissues; contains fibroblasts and macrophages; matrix may be liquid, jellylike, or solid."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","marks":[{"type":"bold"}],"text":"Muscle tissue"},{"type":"text","text":": Responsible for movement; contains actin and myosin filaments; types include skeletal (voluntary), smooth (involuntary), and cardiac (heart)."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","marks":[{"type":"bold"}],"text":"Nervous tissue"},{"type":"text","text":": Functions in information processing and transmission; contains neurons and glial cells."}]}]}]},{"type":"heading","attrs":{"textAlign":null,"level":2},"content":[{"type":"text","text":"Coordination and Control: Endocrine and Nervous Systems"}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Endocrine System"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Uses hormones as signaling molecules, which are broadcast throughout the body via the bloodstream."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Hormonal effects are often gradual and long-lasting, affecting one or multiple sites."}]}]}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Nervous System"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Transmits information via nerve impulses along axons to specific target cells."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Responses are rapid and short-lived; the pathway determines the response."}]}]}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Integration of Systems"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Both systems work together to maintain homeostasis and coordinate responses to stimuli."}]}]}]},{"type":"heading","attrs":{"textAlign":null,"level":2},"content":[{"type":"text","text":"Feedback Control and Homeostasis"}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Regulators vs. Conformers"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","marks":[{"type":"bold"}],"text":"Regulators"},{"type":"text","text":" use internal mechanisms to maintain stable conditions despite external fluctuations."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","marks":[{"type":"bold"}],"text":"Conformers"},{"type":"text","text":" allow internal conditions to vary with the environment."}]}]}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Homeostasis"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Homeostasis is the maintenance of a steady internal state (e.g., temperature, pH, glucose concentration)."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Control systems involve a set point, sensors, a control center, and effectors that generate responses."}]}]}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Feedback Mechanisms"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","marks":[{"type":"bold"}],"text":"Negative feedback"},{"type":"text","text":": Reduces or dampens the stimulus (e.g., temperature regulation)."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","marks":[{"type":"bold"}],"text":"Positive feedback"},{"type":"text","text":": Amplifies the stimulus (e.g., childbirth); not common in homeostasis."}]}]}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Alterations in Homeostasis"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Set points can change with age, cyclic variation (circadian rhythms), or acclimatization to new environments."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Acclimatization involves physiological adjustment to environmental changes (e.g., altitude adaptation)."}]}]}]},{"type":"heading","attrs":{"textAlign":null,"level":2},"content":[{"type":"text","text":"Thermoregulation"}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Endothermy vs. Ectothermy"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","marks":[{"type":"bold"}],"text":"Endotherms"},{"type":"text","text":" (birds, mammals) generate heat metabolically and maintain stable body temperatures."}]}]},{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","marks":[{"type":"bold"}],"text":"Ectotherms"},{"type":"text","text":" (most invertebrates, fishes, amphibians, reptiles) gain heat from the environment and tolerate greater temperature variation."}]}]}]},{"type":"heading","attrs":{"textAlign":null,"level":3},"content":[{"type":"text","text":"Mechanisms of Heat Exchange"}]},{"type":"bulletList","content":[{"type":"listItem","content":[{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":"Heat is exchanged by radiation, evaporation, convection, and conduction."}]}]}]},{"type":"paragraph","attrs":{"textAlign":null},"content":[{"type":"text","text":" 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