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1

Sleator, William. Hell phone. New York: Amulet Books, 2006.

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European Society of Animal Cell Technology., International Association of Biological Standardization., Fondazione iniziative zooprofilattiche (Brescia, Italy) i Fondazione internazionale Menarini, red. Proceedings of the Joint ESACT/IABS Meeting on the Production and Exploitation of Existing and New Animal Cell Substrates, held at Villa Alba, Gardone Riviera, Italy, 21-25 May 1984. Basel: S. Karger, 1985.

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European Society of Animal Cell Technology., red. Proceedings of the 7th General Meeting [of ESACT] on Advances in Animal Cell Technology: Cell Engineering, Evaluation and Exploitation, held ... in Baden near Vienna, Austria, on September 30th to October 4th, 1985. Basel: S. Karger, 1987.

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Wilson-Friesen, Heather Louise. Biological characterization of fastidious enteric adenoviruses types 40 and 41 in 293 and HeLa cell lines. Ottawa: National Library of Canada, 1995.

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Sleator, William. Hell phone. New York: Amulet Books, 2006.

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Skloot, Rebecca. The immortal life of Henrietta Lacks. Detroit: Large Print Press/Gale Cengage Learning, 2011.

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Skloot, Rebecca. The immortal life of Henrietta Lacks. New York: Broadway Paperbacks, 2011.

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Skloot, Rebecca. The immortal life of Henrietta Lacks. New York: Broadway Paperbacks, 2011.

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Skloot, Rebecca. The immortal life of Henriette Lacks. Waterville, Me: Thorndike Press, 2010.

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The Immortal Life of Henrietta Lacks. New York: Crown Publishing Group, 2010.

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Skloot, Rebecca. The immortal life of Henrietta Lacks. New York: Crown Publishers, 2009.

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The immortal life of Henrietta Lacks. New York: Crown Publishers, 2009.

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The immortal life of Henriette Lacks. Waterville, Me: Thorndike Press, 2010.

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Skloot, Rebecca. The immortal life of Henriette Lacks. Waterville, Me: Thorndike Press, 2010.

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Skloot, Rebecca. The Immortal Life of Henrietta Lacks. New York: Crown Publishers, 2009.

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The Immortal Life of Henrietta Lacks. New York, USA: Broadway Paperbacks, 2011.

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Skloot, Rebecca. The Immortal life of Henrietta Lacks. New York, USA: Crown Publishers, 2010.

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A, Logan Niall, Lappin-Scott Hilary M, Oyston Petra C. F i Society for General Microbiology, red. Prokaryotic diversity: Mechanisms and significance : sixty-sixth Symposium of the Society for General Microbiology held at the University of Warwick, April 2006. Cambridge: Cambridge University Press, 2006.

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Office, General Accounting. Telecommunications: Additional federal efforts could help advance digital television transition : report to the ranking minority member, Subcommittee on Telecommunications and the Internet, Committee on Energy and Commerce, House of Representatives. [Washington, D.C.]: General Accounting Office (441 G St. NW, Room LM, Washington, 20548), 2002.

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Tsai, Ching-Wei, Sanjeev Noel i Hamid Rabb. Pathophysiology of Acute Kidney Injury, Repair, and Regeneration. Oxford University Press, 2014. http://dx.doi.org/10.1093/med/9780199653461.003.0030.

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Acute kidney injury (AKI), regardless of its aetiology, can elicit persistent or permanent kidney tissue changes that are associated with progression to end-stage renal disease and a greater risk of chronic kidney disease (CKD). In other cases, AKI may result in complete repair and restoration of normal kidney function. The pathophysiological mechanisms of renal injury and repair include vascular, tubular, and inflammatory factors. The initial injury phase is characterized by rarefaction of peritubular vessels and engagement of the immune response via Toll-like receptor binding, activation of macrophages, dendritic cells, natural killer cells, and T and B lymphocytes. During the recovery phase, cell adhesion molecules as well as cytokines and chemokines may be instrumental by directing the migration, differentiation, and proliferation of renal epithelial cells; recent data also suggest a critical role of M2 macrophage and regulatory T cell in the recovery period. Other processes contributing to renal regeneration include renal stem cells and the expression of growth hormones and trophic factors. Subtle deviations in the normal repair process can lead to maladaptive fibrotic kidney disease. Further elucidation of these mechanisms will help discover new therapeutic interventions aimed at limiting the extent of AKI and halting its progression to CKD or ESRD.
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Albert, Tyler J., i Erik R. Swenson. The blood cells and blood count. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199600830.003.0265.

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Blood is a dynamic fluid consisting of cellular and plasma components undergoing constant regeneration and recycling. Like most physiological systems, the concentrations of these components are tightly regulated within narrow limits under normal conditions. In the critically-ill population, however, haematological abnormalities frequently occur and are largely due to non-haematological single- or multiple-organ pathology. Haematopoiesis originates from the pluripotent stem cell, which undergoes replication, proliferation, and differentiation, giving rise to cells of the erythroid, myeloid, and lymphoid series, as well as megakaryocytes, the precursors to platelets. The haemostatic system is responsible for maintaining blood fluidity and, at the same time, prevents blood loss by initiating rapid, localized, and appropriate blood clotting at sites of vascular damage. This system is complex, comprising both cellular and plasma elements, i.e. platelets, coagulation and fibrinolytic cascades, the natural intrinsic and extrinsic pathways of anticoagulation, and the vascular endothelium. A rapid, reliable, and inexpensive method of examining haematological disorders is the peripheral blood smear, which allows practitioners to assess the functional status of the bone marrow during cytopenic states. Red blood cells, which are primarily concerned with oxygen and carbon dioxide transport, have a normal lifespan of only 120 days and require constant erythropoiesis. White blood cells represent a summation of several circulating cell types, each deriving from the hematopoietic stem cell, together forming the critical components of both the innate and adaptive immune systems. Platelets are integral to haemostasis, and also aid our inflammatory and immune responses, help maintain vascular integrity, and contribute to wound healing.
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22

L, Gardner R., Lawrence P. A i Royal Society (Great Britain), red. Single cell marking and cell lineage in animal development: Proceedings of a Royal Society discussion meeting, held on 23 and 24 May 1985. London: Royal Society, 1986.

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Wolfe, George C. The immortal life of Henrietta Lacks. 2017.

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Wolfe, George C. The immortal life of Henrietta Lacks. 2017.

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T, Kakunaga, Yamasaki H, International Agency for Research on Cancer., National Cancer Institute (U.S.), United States. Environmental Protection Agency. i World Health Organization, red. Transformation assay of established cell lines: Mechanisms and application: proceedings of a workshop organized by IARC in collaboration with US National Cancer Institute and the US Environmental Protection Agency, held in Lyon, 15-17 February 1984. Lyon: International Agency for Research on Cancer, 1985.

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Sleator, William. Hell Phone. Amulet, 2006.

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Sleator, William. Hell Phone. Turtleback Books, 2007.

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Sleator, William. Hell Phone. Amulet Books, 2007.

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Brown, Ronald T., red. Comprehensive Handbook of Childhood Cancer and Sickle Cell Disease. Oxford University Press, 2006. http://dx.doi.org/10.1093/oso/9780195169850.001.0001.

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Over recent decades, tremendous advances in the prevention, medical treatment, and quality of life issues in children and adolescents surviving cancer have spawned a host of research on pediatric psychosocial oncology. This important volume fulfills the clear need for an up-to-date, comprehensive handbook for practitioners that delineates the most recent research in the field--the first of its kind in over a decade. Over 60 renowned authors have been assembled to provide a thorough presentation of the state-of-the art research and literature, with topics including: -Neuropsychological effects of chemotherapy and radiation therapy -Bone marrow transplantation -Important issues about quality of life during and following treatment -Collaborative research among child-focused psychologists -Standards of psychological care for children and adolescents -Stress and coping in the pediatric cancer experience -The role of family and peer relationships The Comprehensive Handbook of Childhood Cancer and Sickle Cell Disease represents both multidisciplinary and international efforts, an alliance between physicians and parents, and a combination of research and service. With a wealth of information of great interest to patients and their families, this volume will also be a welcome resource to the psychologists, psychiatrists, pediatricians, oncologists, nurses, and social workers who confront these issues as they help children and their families through the treatment, recovery, and grieving processes.
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Christianity 101: Help for the new believer to grow in Christ and to be nurtured in a cell group setting. Baker, LA: Bethany World Prayer Center, 1998.

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Nestler, Eric J. The Biological Basis of Depression. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190603342.003.0001.

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Most major advances in biomedical research have relied on the use of animal and cell models of disease. This is a particularly difficult challenge in psychiatry, because many core symptoms of mental illnesses are inherently inaccessible in animals. Moreover, because still today there are no bona fide molecular-cellular abnormalities that are pathogenomic for these illnesses, cell models are even more far afield. This chapter reviews efforts to overcome these obstacles and use animal and cell studies to better understand the biological basis of depression and to develop improved treatments. An important distinction is made between acute vs. chronic stress models as well as differentiating the changes that stress induces in brain that mediate deleterious maladaptations as opposed to homeostatic adaptations that help the individual cope with the stress. Studies along these lines are making major strides in identifying candidate molecular pathways that should be mined for new antidepressant treatments. However, a major gap in the field is the great difficulty in testing novel mechanisms in humans; closing this gap is one of the highest priorities for the field.
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Money, Nicholas P. 1. Microbial diversity. Oxford University Press, 2014. http://dx.doi.org/10.1093/actrade/9780199681686.003.0001.

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‘Microbial diversity’ considers the vast array of microorganisms—the smallest forms of life—which exist everywhere. The three primary groups of microorganisms are bacteria, archaea, and eukaryotes. Bacteria and archaea are prokaryotes with their genetic material held in a single chromosome. In eukaryotes, most of the genome is held in multiple chromosomes. Over 11,000 species of bacteria have been identified using microscopic identification of cell shape and metabolic activity, Gram-staining techniques, and genetic identification of RNA and DNA sequences. There are 500 named species of archaea, divided into two phyla: the euryarchaeota and the crenarchaeota. There are eight supergroupings of eukaryotes, all of them include single-celled organisms, and five are entirely microbial.
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O'Keeffe, Gwenn Schurgin. CyberSafe. American Academy of Pediatrics, 2005. http://dx.doi.org/10.1542/9781581105315.

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Dr. Gwenn provides the tools parents need to help their child navigate the digital world with insight and intelligence. Children today are growing up in a world far different from the one in which their parents were raised. Between the Internet, gaming systems, mp3 players, and cell phones, today's kids are nearly always connected to something digital. And, because it's developing so fast, it's hard for parents to stay on top of the technology--and even harder to figure out how to help their kids make good decisions when it comes to these things. This informative book will guide parents through the landscape of the digital world, helping them better understand things like:
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Immortal Life of Henrietta Lacks. Pan Publishing, 2011.

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Skloot, Rebecca. The Immortal Life of Henrietta Lacks. Pan Books, 2010.

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The Immortal Life of Henrietta Lacks. Crown Publishing Group, 2011.

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Skloot, Rebecca. The Immortal Life of Henrietta Lacks. Crown Pub, 2011.

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Skloot, Rebecca. The Immortal Life of Henrietta Lacks. Crown, 2010.

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Skloot, Rebecca. The Immortal Life of Henrietta Lacks. Random House Audio, 2015.

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(Editor), M. Williams, red. International Symposium on Continuous Cell Lines - An International Workshop on Current Issues: Proceedings of a Workshop Held at Masur Auditorium N (Developments in Biologicals). S Karger Pub, 1992.

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Skloot, Rebecca. Immortal Life of Henrietta Lacks: TV Tie-In. Pan Macmillan Australia Pty, Limited, 2017.

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Stephens, Keri K. Theoretical Notions of Control—A Mobile Tug-of-War. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780190625504.003.0004.

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Communication, information, and organizational control are tightly entwined; this chapter explores the theoretical literature that elaborates on these concepts. The early years of car phones and cell phones were a time when people used their devices to reach others. But that changed as smartphones—those with Internet access—started diffusing into organizations and throughout society. Now, people with those same devices could access data and share information in addition to communicating. This chapter focuses on a process perspective on organizational control and links the data from Chapters 1 and 2 to the concepts of agentic, hierarchical, and concertive control. Longitudinal data help illustrate how control is fluid and how these changes resemble a tug-of-war. Control is related to power, so it also discusses different types of power. Often organizations control resources, like mobile information and communication technologies, so power and control might work together in mobile communication.
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Clegg, Michael T. Molecular Evolution: Proceedings of a UCLA Colloquium, Held at Lake Tahoe, California February 27-March 6, 1989 (Ucla Symposia on Molecular and Cell). Wiley-Liss, 1990.

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Voit, Eberhard O. Systems Biology: A Very Short Introduction. Oxford University Press, 2020. http://dx.doi.org/10.1093/actrade/9780198828372.001.0001.

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Systems biology came about as growing numbers of scientists and engineers from different fields created experimental methods and algorithms that supported the analysis of very large quantities of biological data. Systems Biology: A Very Short Introduction outlines the exciting processes and possibilities in this new field. It describes how modern biology enabled us to learn how intricately the expression of every gene is controlled, how signalling systems keep organisms running smoothly, how complicated even the simplest cells are, and how computational methods may help us understand these complex systems of life. It explores what this field is about, why it is needed, and how it will affect our understanding of life, particularly in the areas of personalized medicine, drug development, food and energy production, and sustainable stewardship of our environments.
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Paulson, CAJ. Greenhouse Gas Control Technologies. Redaktorzy RA Durie, DJ Williams, AY Smith i P. McMullan. CSIRO Publishing, 2001. http://dx.doi.org/10.1071/9780643105027.

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The control of greenhouse gas emissions continues to be a major global problem. It is inter-disciplinary, both in substance and approach, and covers technical, political and economic issues involving governments, industry and the scientific community. These proceedings contain 220 papers presented at the 5th International Conference on Greenhouse Gas Control Technologies (GHGT-5) held in August 2000 at Cairns, Queensland, Australia. The papers cover the capture of carbon dioxide, geological storage of carbon dioxide, ocean storage of carbon dioxide, storage of carbon dioxide with enhanced hydrocarbon recovery, utilisation of carbon dioxide, other greenhouse gases, fuel cells, alternative energy carriers, energy efficiency, life cycle assessments and energy modelling, economics, international and national policy, trading and accounting policy, social and community issues, and reducing emission from industry and power generation.
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Kenney, Padraic. Dance in Chains. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780199375745.001.0001.

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The political prisoner is a creation of the modern era, in which states deploy police, courts, and prisons against organized opposition movements. Dance in Chains traces the history of political imprisonment from the 1860s through the present day, using the struggles of opponents from a wide variety of regimes. They range from colonial South Africa through the detention center at Guantanamo Bay, and from the right-wing dictatorship in 1930s Poland through the Troubles in Northern Ireland. The book asks why regimes incarcerate opponents, and why political prisoners are important to opposition movements. It examines the contest in the cells themselves, as political prisoners organize themselves and engage in acts of protest and resistance, and how prisoner assistance movements like Amnesty International help to make the political prisoner a recognizable figure in global history.
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1938-, Hargrave P. A., Hofmann K. P. 1943-, Kaupp U. B. 1949- i International Symposium on Signal Transduction in Photoreceptor Cells (1990 : Forschungszentrum Jülich), red. Signal transduction in photoreceptor cells: Proceedings of an international workshop, held at the Research Centre Jülich, Jülich, Fed. Rep. of Germany, 8-11 August 1990. Berlin: Springer-Verlag, 1992.

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Hargrave, Paul A., i K. P. Hofmann. Signal Transduction in Photoreceptor Cells: Proceedings of an International Workshop Held at the Research Centre Julich, Julich, Fed. Rep. of Germany (Lecture Notes in Computer Science). Springer, 1992.

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Vurgaftman, Igor, Matthew P. Lumb i Jerry R. Meyer. Bands and Photons in III-V Semiconductor Quantum Structures. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780198767275.001.0001.

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Semiconductor quantum structures are at the core of many photonic devices such as lasers, photodetectors, solar cells etc. To appreciate why they are such a good fit to these devices, we must understand the basic features of their band structure and how they interact with incident light. This book takes the reader from the very basics of III-V semiconductors (some preparation in quantum mechanics and electromagnetism is helpful) and shows how seemingly obscure results such as detailed forms of the Hamiltonian, optical transition strengths, and recombination mechanisms follow. The reader does not need to consult other references to fully understand the material, although a few handpicked sources are listed for those who would like to deepen their knowledge further. Connections to the properties of novel materials such as graphene and transition metal dichalcogenides are pointed out, to help prepare the reader for contributing at the forefront of research. The book also supplies a complete, up-to-date database of the band parameters that enter into the calculations, along with tables of optical constants and interpolation schemes for alloys. From these foundations, the book goes on to derive the characteristics of photonic semiconductor devices (with a focus on the mid-infrared) using the same principles of building all concepts from the ground up, explaining all derivations in detail, giving quantitative examples, and laying out dimensional arguments whenever they can help the reader’s understanding. A substantial fraction of the material in this book has not appeared in print anywhere else, including journal publications.
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Lameire, Norbert, Raymond Vanholder i Wim Van Biesen. Clinical approach to the patient with acute kidney injury. Redaktor Norbert Lameire. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780199592548.003.0222_update_001.

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The prognosis of acute kidney injury (AKI) depends on early diagnosis and therapy. A multitude of causes are classified according to their origin as prerenal, intrinsic (intrarenal), and post-renal.Prerenal AKI means a loss of renal function despite intact nephrons, for example, because of volume depletion and/or hypotension.There is a broad spectrum of intrinsic causes of AKI including acute tubular necrosis (ATN), interstitial nephritis, glomerulonephritis, and vasculitis. Evaluation includes careful review of the patient’s history, physical examination, urinalysis, selected urine chemistries, imaging of the urinary tree, and eventual kidney biopsy. The history should focus on the tempo of loss of function (if known), associated systemic diseases, and symptoms related to the urinary tract (especially those that suggest obstruction). In addition, a review of the medications looking for potentially nephrotoxic drugs is essential. The physical examination is directed towards the identification of findings of a systemic disease and a detailed assessment of the patient’s haemodynamic status. This latter goal may require invasive monitoring, especially in the oliguric patient with conflicting clinical findings, where the physical examination has limited accuracy.Excluding urinary tract obstruction is necessary in all cases and may be established easily by renal ultrasound.Distinction between the two most common causes of AKI (prerenal AKI and ATN) is sometimes difficult, especially because the clinical examination is often misleading in the setting of mild volume depletion or overload. Urinary chemistries, like calculation of the fractional excretion of sodium (FENa), may be used to help in this distinction. In contrast to FENa, the fractional excretion of urea has the advantage of being rather independent of diuretic therapy. Response to fluid repletion is still regarded as the gold standard in the differentiation between prerenal and intrinsic AKI. Return of renal function to baseline or resuming of diuresis within 24 to 72 hours is considered to indicate ‘transient, mostly prerenal AKI’, whereas persistent renal failure usually indicates intrinsic disease. Transient AKI may, however, also occur in short-lived ATN. Furthermore, rapid fluid application is contraindicated in a substantial number of patients, such as those with congestive heart failure.‘Muddy brown’ casts and/or tubular epithelial cell casts in the urine sediment are typically seen in patients with ATN. Their presence is an important tool in the distinction between ATN and prerenal AKI, which is characterized by a normal sediment, or by occasional hyaline casts. There is a possible role for new serum and/or urinary biomarkers in the diagnosis and prognosis of the patient with AKI, including the differential diagnosis between pre-renal AKI and ATN. Further studies are needed before their routine determination can be recommended.When a diagnosis cannot be made with reasonable certainty through this evaluation, renal biopsy should be considered; when intrarenal causes such as crescentic glomerulonephritis or vasculitis are suspected, immediate biopsy to avoid delay in the initiation of therapy is mandatory.
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