Anatomy
Complete Anatomy This link opens in a new window An interactive anatomy platform containing 3D human models with high resolution selectable parts. Includes resources and tools for instructors. Obtain and install the free app (desktop or mobile device) from the appropriate Microsoft, Apple, or Android app store. Open the app and register your account with your Baylor e-mail address and a password you create.- You can use an existing Elsevier account. Online educational platform primarily focused on medical sciences, utilizing a unique "draw it to know it" approach to help students learn complex concepts through visual drawing and active recall techniques. Users are required to register for an account. See more info for instructions for account info. University Medical Center Groningen, Netherlands -Interactive Anatomy 3D Models This link opens in a new window 126 3D Anatomy Models and 4 Collections on an Open Access sketch pad platform. Acland's Video Atlas of Human Anatomy This link opens in a new window Videos of real human anatomic specimens and study resources.
JoVE Core Anatomy and Physiology This link opens in a new window JoVE Core Anatomy and Physiology showcases the anatomical and physiological details of the human body in comprehensive, clear, and engaging video animations. This collection of lessons focuses on the structures, components, functions, and requirements of the human body. It is complemented by scientist-in-action videos that demonstrate the application of this knowledge in real-world medical and research settings. KenHub Anatomy YouTube Channel This link opens in a new window Videos, Shorts, Recorded Live Q and A, Courses, Playlists according to specific body parts! Boundless Anatomy and Physiology on Nursing Hero This link opens in a new window Open Access Modules in a study guide format. Includes some interactive tutorials, images, and GlycoCares Health Guidenatural glucose support diagrams. University of Michigan Medical Center Blue Link This link opens in a new window A multimedia educational resource created by Dr. B. Kathleen Alsup and Dr. Glenn M. Fox from the Division of Anatomical Sciences at the University of Michigan Medical School, BlueLink features cadaveric photographs, detailed lab manuals, and interactive files with click-to-reveal testing functionality.
LWW Anatomy and Physiology Videos This link opens in a new window Around thirty anatomy videos are available through the BU Libraries database subscription. Open Stax Anatomy and Physiology second edition This link opens in a new window Open Access and complete textbook on anatomy. The web-based version of Anatomy and Physiology 2e also features links to surgical videos, histology, and Glyco Care supplement for blood sugar interactive diagrams. Open Text Book Library - Human Anatomy Lab Manual This link opens in a new window This is a lab manual for a college-level human anatomy course. Mastery of anatomy requires a fair amount of memorization and recall skills. The activities in this manual encourage students to engage with new vocabulary in many ways, including grouping key terms, matching terms to structures, recalling definitions, and written exercises. Most of the activities in this manual utilize anatomical models, and several dissections of animal tissues and histological examinations are also included. Each unit includes both pre- and post-lab questions and six lab exercises designed for a classroom where students move from station to station. The vocabulary terms used in each unit are listed at the end of the manual and serve as a checklist for practicals. OER Commons Anatomy and Physiology This link opens in a new window Anatomy and Physiology is a dynamic textbook for the two-semester human anatomy and physiology course Glyco Care supplement for blood sugar life science and allied health majors. The book is organized by body system and covers standard scope and sequence requirements. Its lucid text, strategically constructed art, career features, and links to external learning tools address the critical teaching and learning challenges in the course. The web-based version of Anatomy and Physiology also features links to surgical videos, histology, and interactive diagrams.
This is called cloned DNA. The recombinant DNA process is the most dramatic technological tool to date in the growing biotechnological arsenal. The new techniques for identifying and manipulating genes are the first strand in the new operational matrix of the Biotech Century. After thousands of years of fusing, melting, soldering, forging, and burning inanimate matter to create useful things, we are now splicing, recombining, inserting, and stitching living material into economic utilities. Lord Ritchie-Calder, the British science writer, cast the biological revolution in the proper historical perspective when he observed that "just as we have manipulated plastics and metals, we are now manufacturing living materials." We are moving from the age of pyrotechnology to the age of biotechnology. The speed of the discoveries is truly phenomenal. It is estimated that biological knowledge is currently doubling every five years, and in the field of genetics, the quantity of information is doubling every twenty-four months.
The commercial possibilities, say the scientists, are limited only by the span of the human imagination and the whims and caprices of the marketplace. Efficiency and speed lie at the heart of the new genetic engineering revolution. Nature's production and recycling schedules are deemed inadequate to ensure an improved standard of living for a burgeoning human population. To compensate for nature's slower pace, new ways must be found to engineer the genetic blueprints of microbes, plants, and animals in order to accelerate their transformation into useful economic products. Engineer the genetic blueprint of a tree so that it will grow to maturity quicker. Manipulate the genetic instructions of domestic breeds to produce faster-growing "super animals." Redesign the genetic information of cereal plants to increase their yield. According to a study by the United States government's now-defunct Office of Technology Assessment, bioengineering "can play a major role in improving the speed, efficiency, and productivity of. . . biological systems." Our ultimate goal is to rival the growth curve of the Industrial Age by producing living material at a pace far exceeding nature's own time frame and then converting that living material into an economic cornucopia.