Cell Biology Playing Cards
Elsevier - Health Sciences Division
978-0-323-65559-0 (ISBN)
Standard 52-card deck with illustrations of endosomes and lysosome, mother and daughter centrioles, membrane traffic, eukaryotic phylogenetic tree, three cytoskeletal polymers, and more.
Jokers feature illustrations of autophagy (red joker) and ribosome, V-type ATPase, CRISPR/Cas, bacterium (black joker).
Fourteen different card faces in all featuring the well-loved cellular illustrations of Graham Johnson.
Includes 12 individual decks of cards.
Thomas Dean Pollard is a prominent educator, cell biologist and biophysicist whose research focuses on understanding cell motility through the study of actin filaments and myosin motors. He is Sterling Professor of Molecular, Cellular & Developmental Biology and a Professor of Cell Biology and Molecular Biophysics & Biochemistry at Yale University. He was Dean of Yale's Graduate School of Arts and Sciences from 2010 to 2014, and President of the Salk Institute for Biological Studies from 1996 to 2001. Pollard is very active in promoting scientific education and research primarily through two major societies, both of which he is a past President: the American Society for Cell Biology and the Biophysical Society William Charles Earnshaw is Professor of Chromosome Dynamics at the University of Edinburgh where he has been a Wellcome Trust Principal Research Fellow since 1996. Earnshaw is an elected Fellow of the Royal Society since 2013 for his studies of mitotic chromosome structure and segregation. Before Edinburgh, he was Professor of Cell Biology and Anatomy at Johns Hopkins School of Medicine. Graham Johnson is a computational biologist and Certified Medical Illustrator (CMI) with approx. 20 years of professional experience. He is Director of the Animated Cell at the Allen Institute. Before the Allen Institute, Johnson's lab in the California Institute for Quantitative Biosciences at the University of California, San Francisco worked to generate, simulate and visualize molecular models of cells. His lab's Mesoscope project and his team at Allen Institute continue this mission by uniting biologists, programmers and artists to interoperate the computational tools of science and art. Jennifer Lippincott-Swartz is Group Leader at the Howard Hughes Medical Institute Janelia Research Campus. Her lab uses live cell imaging approaches to analyze the spatio-temporal behaviour and dynamic interactions of molecules in cells with a special focus on neurobiology. Before Janelia, Lippincott-Swartz was a primary investigator and chief of the Section on Organelle Biology in the Cell Biology and Metabolism Branch. Her work there included a collaboration with physicists Eric Betzig and Harald Hess (now group leaders at Janelia), who proposed a new function for the photoactivatable protein. The scientists used the protein to generate photoactivatable fluorophores, or dyes, which enabled them to illuminate different sets of molecules sequentially, creating a microscope image far more detailed than previously possible. The method, called super-resolution microscopy, garnered Betzig the 2014 Nobel Prize in Chemistry.
Ace: Three cytoskeletal polymers
2: Mitotic spindle with chromosomes
3: Clathrin triskelion and cage
4: Transport of a large RNP through a nuclear pore
5: Endosomes and lysosome
6: Gap junction connexon
7: Proteasome
8: Nucleosome
9: Mother and daughter centrioles
10: Membrane traffic
Jack: Artist's diagram of budding yeast kinetochore
Queen: Hierarchy of levels of mitotic chromosome structure
King: Eukaryotic phylogenetic tree
Black Joker: Autophagy
Red Joker: Ribosome, V-type ATPase, CRISPR/Cas, bacterium
Verlagsort | Philadelphia |
---|---|
Sprache | englisch |
Gewicht | 1270 g |
Themenwelt | Sonstiges ► Geschenkbücher |
Medizin / Pharmazie ► Medizinische Fachgebiete | |
Studium ► 1. Studienabschnitt (Vorklinik) ► Anatomie / Neuroanatomie | |
Studium ► 1. Studienabschnitt (Vorklinik) ► Histologie / Embryologie | |
ISBN-10 | 0-323-65559-9 / 0323655599 |
ISBN-13 | 978-0-323-65559-0 / 9780323655590 |
Zustand | Neuware |
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