This book examines illustrations created to accompany fictions written by several of the most popular authors published in Britain and America between 1885 and 1920. By studying the lavish illustrations that complemented not only initial serializations, but also subsequent publications of fictions by H. Rider Haggard, Rudyard Kipling, James De Mille, Robert Louis Stevenson, and H. G. Wells, the book demonstrates the significance of images to the fin de siècle romance form. In order to make fantastic plots seem possible, graphic artists worked hand in hand with authors to not only fill gaps in audience understanding, but also expand and deepen the meaning of these marvels. The book will be of interest to scholars working in art history, visual culture, illustration studies, British and American history, and British and American literature.
A concise primer that complicates a convenient truth in biology—the divide between germ and somatic cells—with far-reaching ethical and public policy ramifications. Scientists have long held that we have two kinds of cells—germ and soma. Make a change to germ cells—say using genome editing—and that change will appear in the cells of future generations. Somatic cells are “safe” after such tampering; modify your skin cells, and your future children’s skin cells will never know. And, while germ cells can give rise to new generations (including all of the somatic cells in a body), somatic cells can never become germ cells. How did scientists discover this relationship and distinction between somatic and germ cells—the so-called Weismann Barrier—and does it actually exist? Can somatic cells become germ cells in the way germ cells become somatic cells? That is, can germ cells regenerate from somatic cells even though conventional wisdom denies this possibility? Covering research from the late nineteenth century to the 2020s, historian and philosopher of science Kate MacCord explores how scientists came to understand and accept the dubious concept of the Weismann Barrier and what profound implications this convenient assumption has for research and policy, from genome editing to stem cell research, and much more.
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