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Photon Radiation Therapy for Skin Malignancies is a vital resource for dermatologists interested in radiation therapy, including the physics and biology behind treatment of skin cancers, as well as useful and pragmatic formulas and algorithms for evaluating and treating them. Dermatology has always been a field that overlaps multiple medical specialties and this book is no exception, with its focus on both dermatologists and radiation oncologists. It is estimated that between 2010 and 2020, the demand for radiation therapy will exceed the number of radiation oncologists practicing in the U.S. tenfold, which could profoundly affect the ability to provide patients with sufficient access to treatment. Photon Radiation Therapy for Skin Malignancies enhances the knowledge of dermatologists and radiation oncologists and presents them with the most up-to-date information regarding detection, delineation and depth determination of skin cancers, and appropriate biopsy techniques. In addition, the book also addresses radiation therapy of the skin and the skin’s reactions to radiation therapy.
Bioengineering Approaches to Cancer Diagnosis and Treatment is written for an audience of senior undergraduate students and graduate students in mechanical, electrical and biomedical engineering fields and other professionals in medicine. It is ideally structured for teaching and for those who are working in cancer bioengineering or interdisciplinary projects. The book's authors bring a unique perspective from their expertise in immunology, nanobiomaterials and heat transfer. Topical coverage includes an introduction to the fundamentals of bioengineering and engineering approaches for cancer diagnosis, cancer treatment via case studies, and sections on imaging, immunotherapy, cell therapy, drug delivery, ultrasound and microfluidics in cancer treatment. - Provides fully supported case studies relating to cancer diagnosis and therapy - Pairs the basic fundamentals of engineering and biomedical engineering and applies them to the diagnosis of cancer
together with the oncologist. For man, the laser must be moved out of the laboratory into the operating room. At present, its true position in the cancer therapy program is not yet known. The greatest attention is being directed to melanoma because of the tremendous energy adsorption capabilities of this heavily pigmented tumor. The next area of interest is in uncommon and com mon tumors of blood vessels. Here, too, the color factor influences to a signifi cant degree the absorption of the laser. Multiple accessible malignancies are treated also by the laser chiefly to compare the effect here with other modalities of therapy. Finally, as a type of therapy of desperation, lasers are used in the treatment of metastatic lesions. This then, is the brief introduction to the study of the current status of laser cancer research. Intense, difficult and cooperative research of the next few years will determine the role of the laser, an "optical knife", as an investi gative or therapeutic instrument. T able of Contents Chapter 1 Laser Instrumentation 1 Chapter 2 Laser Protection . 8 Chapter 3 The Laser Reaction in Tissue 13 Chapter 4 Color Qualities of Tissue in Relation to Laser Radiation 16 Chapter 5 Laser Radiation of Tissue Cultures .
It has been recognized for almost 200 years that certain families seem to inherit cancer. It is only in the past decade, however, that molecular genetics and epidemiology have combined to define the role of inheritance in cancer more clearly, and to identify some of the genes involved. The causative genes can be tracked through cancer-prone families via genetic linkage and positional cloning. Several of the genes discovered have subsequently been proved to play critical roles in normal growth and development. There are also implications for the families themselves in terms of genetic testing with its attendant dilemmas, if it is not clear that useful action will result. The chapters in The Genetics of Cancer illustrate what has already been achieved and take a critical look at the future directions of this research and its potential clinical applications.
This book is the third volume on this subject and focuses on the recent advances of nanopharmaceuticals in cancer, dental, dermal and drug delivery applications and presents their safety, toxicity and therapeutic efficacy. The book also includes the transport phenomenon of nanomaterials and important pathways for drug delivery applications. It goes on to explain the toxicity of nanoparticles to different physiological systems and methods used to assess this for different organ systems using examples of in vivo systems.
The editor of Skin Cancer Management: A Practical Approach, Dr. Deborah MacFarlane, gathers experts in selected techniques related to the assessment and management of skin cancer and has them critically review the existing literature in light of their considerable experience delivering care. The authors make recommendations for the best way to perform procedures. The tables provided in each chapter then become a manual of how to perform these procedures, and may in time be adopted by the wider universe of dermatologists as the standard of performance. The detailed descriptions of technique and treatment pearls lead the novice through the sequence of events in a way that instills confidence in their ability to safely perform the procedure. An example of the painstaking expla- tions is found in Chapter 5, Intralesional and Perilesional Treatment of Skin Cancers. The reader is advised to place eye protection on the patient and those performing the injection of methotrexate into a keratoacanthoma with a central crust. Rest assured that there will be a spray or stream of methotrexate emitted from the crusted area. Having eye protection will prevent methotrexate from accidentally getting into someone’s eye. Since we all learn to assimilate new information by taking action on the recommendations that we read, it would be a good idea for the physician to create, where relevant, a checklist for each procedure in the text. The checklist can be given to the office staff to set up the equipment for the procedure.
Stereotactic body radiation therapy (SBRT) has emerged as an important innovative treatment for various primary and metastatic cancers. This book provides a comprehensive and up-to-date account of the physical/technological, biological, and clinical aspects of SBRT. It will serve as a detailed resource for this rapidly developing treatment modality. The organ sites covered include lung, liver, spine, pancreas, prostate, adrenal, head and neck, and female reproductive tract. Retrospective studies and prospective clinical trials on SBRT for various organ sites from around the world are examined, and toxicities and normal tissue constraints are discussed. This book features unique insights from world-renowned experts in SBRT from North America, Asia, and Europe. It will be necessary reading for radiation oncologists, radiation oncology residents and fellows, medical physicists, medical physics residents, medical oncologists, surgical oncologists, and cancer scientists.
Skin cancer is the most common malignant neoplasm and its incidence is rising worldwide. The epidemic increase in such tumors calls for efficient management by the application of appropriate guidelines for therapy and prevention. Clinicians managing these patients need to keep up to date with the latest advances, allowing them to provide optimal treatment. This practical guide offers the reader a comprehensive overview of the options for the diagnosis, treatment, and prevention of cutaneous cancer. It covers all common skin cancers and also rarer lesions. Employing an "evidence-based medicine" approach, this truly international work presents a well-illustrated text in a reader-friendly format with step-by-step guidelines and visual flowcharts. Dermatologists, oncologists, and all other interested physicians will find this book an extraordinarily valuable resource for the clinical management of cutaneous cancer in their daily practice.