This book describes the ever-escalating dangers to which Jewish refugees and recent immigrants were subjected in France and Italy as the Holocaust marched forward. Susan Zuccotti uncovers a grueling yet complex history of suffering and resilience through historical documents and personal testimonies from members of nine central and eastern European Jewish families displaced to France in the opening years of the Second World War. The chronicle of their lives reveals clearly that these Jewish families experienced persecution of far greater intensity than citizen Jews or long-time resident immigrants.
The odyssey of the nine families took them from hostile Vichy France to the Alpine village of Saint-Martin-Vesubie and on to Italy where German soldiers rather than hoped-for Allied troops awaited. Those who crossed over to Italy were either deported to Auschwitz or forced to scatter in desperate flight. Zuccotti brings to light the agonies of the refugees' unstable lives the evolution of French policies toward Jews the reasons behind the flight from the relative idyll ofSaint-Martin-Vesubie and the choices that confronted those who arrived in Italy. Powerful archival evidence frames this history while firsthand reports underscore the human cost of the nightmarish years of persecution.
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John L. Phillips, M.D., is a fellow in urologic oncology at the National Cancer Institute, NIH.
The spanning of deep rivers and estuaries, the extraction of minerals from wet ground, and the exploration of the continental shelf were possible only when it became feasible for men to work under conditions of increased air pressure. Blacksmiths used leather bellows to generate compressed air as early as the 14th century, and natural philosophers experimented with air pumps in the 16th and 17th centuries, but these hand-powered devices could not conveniently compress the large volume of air needed to provide a practical work space. In the third decade of the 19th century, when engineers developed air pumps powered by steam engines that could force water from mines and fill caissons with compressed air, men began to work under hyperbaric conditions. Soon thereafter, physicians took note of the sicknesses produced, strangely, by a surfeit of life-sustaining air. "The bends," as the new disease of industrial progress came to be called, is the subject of John Phillips's fascinating new book.
Today, we think it obvious that new industrial technology can threaten workers, and we demand full investigations after any occupational injury. Phillips recounts the many hundreds of injuries during the nearly 50 years that preceded the development of rational safety measures for the use of compressed-air environments in the 19th century. He focuses rightly on the early use of compressed air in caissons and in mining, for there the majority of workers were to be found. Following Triger's initial observations of new symptoms in the miners, Pol and Watelle, two physicians attending workers in a pressurized coal mine in Douchy, France, wrote the first medical report on mal de caisson, in 1854. There followed contributions from occupational physicians attending the caisson works at the Eads Bridge in St. Louis and the Brooklyn Bridge in New York. Clinical epidemiologic studies gradually associated the bends with the return to a normal atmosphere from the high pressure of the caisson. Physicians and engineers then noted that increasing the pressure in the caisson and extending the duration of the work shift increased the risk of the disorder. They instituted preventive regulations and provided comforts for the workers, making their industry, as Phillips points out, the first to institute on-site medical attendance and monitoring to prevent occupational injuries. Phillips also recounts the belated efforts of government to intervene in the management of workers' health. Miners and tunnel workers were among the first industrial workers to be covered by occupational-safety regulations. New York State introduced guidelines governing caisson work in 1909, as "sandhogs" began digging the East River and Hudson River railway tunnels. An unintended action of government rule-making has been, in Phillips's narrative, to ensure that traditional regulations remain in force when newer limits would be more effective.
Phillips discusses the pioneering physiologic work of Paul Bert and of J.S. Haldane, as well as the mid-20th-century successes of military and commercial open-water diving. Military needs for stealth and commercial needs for deep salvage and oil exploration drove the development of equipment allowing divers to swim freely, untethered to a surface air supply, and of techniques of diving to great depths while breathing helium-oxygen mixtures. Phillips notes the remarkable rapidity with which researchers influenced the operational practices at diving sites. Divers relied on the advice and expertise of the diving medical officer, who struggled with sophisticated physiology in an effort to enhance safety and extend the depth and usefulness of diving.
Phillips ranges widely and rapidly over early research into the physical properties of air and over the modern understanding of diving physiology. Writing with a general audience in mind, Phillips explains the relevant physiology at length and with perhaps less rigor than a professional medical audience would demand. The need to explain physiology frequently interrupts the flow of the historical narrative. These transitions, however, are the focus of the book, since Phillips is most concerned not with the history of engineering but with the response of the physiologist and physician to the unexpected medical challenge of working with compressed air. The Bends is highly recommended as a recreation, an educational exploration of a largely unfamiliar area of physiology, and a reminder of the responsibility of physicians to understand the working environments of their patients.
Reviewed by Andrew J. Dutka, M.D.
Copyright © 1998 Massachusetts Medical Society. All rights reserved. The New England Journal of Medicine is a registered trademark of the MMS.
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Hardcover. Condition: new. Hardcover. With the invention of compressed air in the 1840s, human divers could enter previously inaccessible deep water environments and engineers could design underwater mines and monumental bridges that had never been possible before. But a painful, sometimes fatal illness-decompression sickness, or the bends-mysteriously afflicted many of those who used compressed air. This book is a wide-ranging history of the wonders compressed air brought about and the suffering its unknown hazards inflicted. John L. Phillips explores the intertwining roles of science, technology, engineering, medicine, and politics in the invention of compressed air, the recognition and identification of decompression sickness, and the hundred-year-long process of learning to understand and treat the bends.The book begins with an overview of the biology and chemistry of respiration and a discussion of the steam engine that could generate compressed air. Drawing on previously unpublished letters, diaries, and notes, Phillips tells the story of early uses of compressed air, first observations of decompression sickness, growing awareness of the bends during construction of the Brooklyn Bridge, and efforts to understand the pathophysiology of the illness. He then considers employee health and safety issues, the science of diving today, and human limits to exploring the ocean deeps. In the history of compressed air and its illnesses, Phillips finds important lessons for dealing with other diseases yet to be confronted in the modern world. With the invention of compressed air in the 1840s, divers could reach previously inaccessible deep water, but the advances also brought with them the hazards of decompression sickness. This is a history of the wonders compressed air brought about and the suffering the bends inflicted. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9780300071252
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