Bentham Science Publishers
Bentham Science Publishers is a major publisher of more than 100 peer-reviewed science, technology and medical (STM) journals, along with a rapidly growing collection of eBooks. Since 1993, Bentham Science Publishers has been catering to the information needs of the pharmaceutical, engineering, biomedical and medical research community.1121 - 1140 of 1750 results
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Minimally Invasive Techniques for the Treatment of Patients with Structural Heart Disease
Historically, patients with advanced structural heart disease have required major surgery to correct the defect. This includes, for example, patients with atrial septal defect, aortic valve disease and mitral valve disease. In recent years there have been major advances in the treatment of patients with structural heart disease using minimally invasive, percutaneous treatments. This field continues to evolve quite quickly.
This e-book outlines the current situation with respect to minimally invasive treatment of a wide range of structural cardiac defects. Each chapter covers details of a structural defect and outlines various technologies available for treating the condition. Indications for procedures as well as details of the procedures are also provided wherever possible. This e-book should be a useful reference for readers interested in minimally invasive cardiovascular surgery.
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Mitochondrial DNA and the Immuno-inflammatory Response: New Frontiers to Control Specific Microbial Diseases
Frontiers in Inflammation: Volume 3
Mitochondria are multifunctional organelles that actively participate in the immune-inflammatory response in various pathologies. This volume updates readers on knowledge about mitochondria function. The editors have compiled six chapters about inflammation in its broadest sense, with contributions from active groups of cell biologists, infectologists and pathologists.
The chapters in this volume focus on research related to five notable diseases:
(1) two diseases (one bacterial and one viral) in which the exacerbation of the inflammatory response can lead to neuropathies: leprosy (one of the oldest diseases in the world) and Zika fever (a disease relatively new in Brazil)
(2) three diseases (two bacterial and one viral) in which the exacerbation of the inflammatory response can lead to irreversible lung damage that can cause rapid death: tuberculosis, pneumonia and the most recent global disease, COVID- 19.
New information about mitochondrial biology is presented, such as the effect of aerobic physical exercise as a stimulator for mitochondria multiplication, and the role of mitochondrial damage in inducing immune-inflammatory responses to pathogens. The contents shed light on mitochondrial biochemical pathways that could serve as potential therapeutic targets.
This is an important reference for scholars (cell biologists, microbiologists) in universities, hospitals and scientific research centers working on biological and biomedical problems, and for health professionals involved in infection control.
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Mixed Polymeric Micelles for Osteosarcoma Therapy: Development and Characterization
Osteosarcoma is a rare bone tumor that has a high incidence among children and young adults. Despite recent therapeutic developments, osteosarcoma still presents major hurdles to achieving successful results, mainly due to the presence of multi-drug-resistant cells.
This monograph primarily aims to provide information about the basic science behind the treatment of osteosarcoma along with experimental results for a novel formulation that overcomes multidrug resistance, and therefore, may serve as a viable treatment option. The book starts with an updated and concise guide to the pathophysiology of the disease, while also introducing the reader to new therapies and materials (specifically chitosan, polyethyleneimine, poloxamers, poloxamines, and Pluronics ) used in the treatment process along with the aims of the experiments present subsequently. Next, the book documents the materials and methods used in developing polymeric micelles for delivering drugs to osteosarcoma sites. By explaining the basics of nanomedicine as a starting point, readers will understand how polymeric micelles act as facilitators of drug transport to cancer cells, and how one can synthesize a small stable micelle (by creating derivatives of base nanomaterials), capable of actively targeting osteosarcoma cells and overcoming multi-drug resistance. The chapter explains the synthesis and characterization techniques of the materials used to develop polymeric micelles.
The results, a reflection of the conjugation of different experimental solutions initiated here, point to a modern route towards the search for a therapeutic solution for osteosarcoma.
The simple, structured presentation coupled with relevant information on the subject of micelle-based nanotherapeutic drug delivery make this monograph an essential handbook for pharmaceutical scientists involved in the field of nanomedicine, drug delivery, cancer therapy and any researchers assisting specialists in clinical oncology for the treatment of osteosarcoma.
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Mobile Computing Solutions for Healthcare Systems
This book focuses on recent developments in integrating AI, machine learning methods, medical image processing, advanced network security, and advanced antenna design techniques to implement practical Mobile Health (M-Health) systems. The editors bring together researchers and practitioners who address several developments in the field of M-Health. Chapters highlight intelligent healthcare IoT and Machine Learning based systems for personalized healthcare delivery and remote monitoring applications. The contents also explain medical applications of computing technologies such as Wireless Body Area Networks (WBANs), wearable sensors, multi-factor authentication, and cloud computing. The book is intended as a handy resource for undergraduate and graduate biomedical engineering students and mobile technology researchers who want to know about the recent trends in mobile health technology.
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Model-Driven Business Process Engineering
Model Driven development (MDD) is a software and systems development model that involves the application of visual modeling principles and best practices.
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Modern Applications of High Throughput R&D in Heterogeneous Catalysis
This eBook covers the application of high-throughput R&D to both fundamental and applied catalysis including catalyst synthesis, characterization, and testing in various reactor types. Chapters include topics such as applications ranging from optimizations of established industrial catalysts to the discovery of innovative new materials, examples of the development of innovative parallel characterization methods, and cases of real catalyst testing in small scale reactor systems. Readers will also find chapters that cover commodity chemicals produced using continuous gas phase processes as well as fine chemicals produced in liquid phase batch reactors. The potential of industrial chemicals production from biorenewable feedstocks is also presented. The steadily improving high throughput workflows are today being applied to relevant reactions and targets such as hydrotreating, Deacon oxidation, Fischer-Tropsch, propane dehydrogenation, C4 oxidation, methane coupling, exhaust gas catalysis, bio-based Nylon, fuel cells and vitamins. The topics presented in this eBook have been contributed by researchers from academia as well as industry, making this eBook a well-balanced reference, which could be of particular interest to professional, industrial or service R&D labs.
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Modern Cancer Therapies and Traditional Medicine: An Integrative Approach to Combat Cancers
The advancements in molecular marker discovery, genomics, transcriptomics and proteomics in recent years have enabled researchers to develop targeted therapies against cancers. Cancer research and management is multi-disciplinary and multimodal. In addition to conventional chemotherapy and radiotherapy, targeted immunotherapy has also provided considerable success in the clinic. There is also scientific evidence on the impact of alternative therapies on cancer patients.
Modern Cancer Therapies and Traditional Medicine: An Integrative Approach to Combat Cancers summarizes the general aspects of cancer therapy and management. Chapters cover cancer medicine in two broad sections, the book presents comprehensive information on a diverse range of cancer treatments. The first section covers conventional molecular oncology and therapy including targeted therapies, immunotherapies, cancer signaling pathways and the use of computational techniques. The second section focuses on traditional methods of treatment including the role of nutrition, traditional medicine, Yoga and Ayurveda in cancer prevention and management.
The book is an accessible update of the state of the art in cancer diagnostics and therapy for students and academicians at all levels.
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Modern Intelligent Instruments - Theory and Application
His text book serves as a guide for readers learning about the technical design of intelligent instruments, that is, instruments designed to collect information about the performance of other electronic devices and systems. The book introduces the readers to the concept of intelligent instrumentation and guides them on more advanced aspects of the subject including signal detection and analysis, data processing, performance analysis and data communication. Practical examples are also provided in the latter half of the book to blend the theoretical concepts with applied knowledge for the benefit of the reader.
Key features:
- Features 10 chapters covering key topics related to intelligent instrument design and operation
- Provides theoretical knowledge of fundamental concepts
- Provides practical examples of working instrument models (online equipment monitoring system and a mobile robot)
- Provides notes on the use of packages such as MATLAB, ARGUINO and Proteus to develop intelligent instruments
- Presents information in a simple, easy-to-understand format which is reader friendly
- Presents handy chapter notes and references for the reader
Modern Intelligent Instruments - Theory and Application is a useful textbook for engineering students and technical apprentices learning about instrumentation and PCB design and testing.
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Modern Occupational Diseases: Diagnosis, Epidemiology, Management and Prevention
Occupational disease is an important public health problem of the 21st century. Occupational disease still accounts for many preventable illnesses and injuries in the workplace. It is important to incorporate modern knowledge of disease epidemiology and cutting-edge diagnostic methods and treatment with the most recent developments in the management and prevention methods to better control work-related diseases and injuries. This book covers a selection of the common occupational diseases and injuries. It offers accurate, current information on the history, causes, diagnosis, management and prevention of several occupational diseases.
Key features:
- 14 chapters contributed by more than 30 experts in occupational and preventive medicine
- Comprehensive treatment of the history, causes, diagnosis, management and prevention of many important occupational diseases (including asbestosis, silicosis, work-related asthma, occupational cancer, mesothelioma, arsenic, and other diseases.).
- Each chapter highlights the latest research findings and cutting-edge technologies
- References for further reading
Modern Occupational Diseases: Diagnosis, Epidemiology, Management and Prevention serves as a useful guide for all readers interested in occupational diseases. The suggested readership includes trainees in occupational medicine, general practitioners, medical students, graduate students in public health programs, occupational health nurses, and professionals involved in occupational health and safety roles at public and private levels.
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Modern Radio Signals Filtering Devices Methods, Technologies, & Structures
This comprehensive book covers spectral analysis theory for radio signals and innovative devices designed for filtering electromagnetic waves across diverse frequency ranges. The book features 14 chapters that explain the working of devices utilizing surface and bulk acoustic waves. The chapters provide insights into acousto-optical and acousto-electronic Fourier processors' design principles, description methods, and characteristics. The inclusion of algorithms for multi-channel frequency discriminators enhances the precision of radio signal frequency measurements, ensuring stability in tracking frequency meters amidst intense interference. The book also includes mathematical modeling and experimental studies of waveguide microwave filters and X-band multiplexers, specifically tailored for non-pressurized radio electronic equipment in space communication systems. Notably, the book introduces readers to a compelling alternative to conventional filters: 2-D periodic structures in the form of thin perforated metal meshes that offer compact solutions for millimeter and sub-millimeter wave systems. A significant portion of the book is dedicated to the development of highly selective microstrip filters, incorporating complex topological structures with limited resonators and numerous couplings. This approach allows for the formation of numerous attenuation poles at finite frequencies, facilitating the achievement of high electrical parameters and compact filter sizes. Engineers and scientists specializing in communication systems design and analog Fourier processors will find a wealth of well-established and original solutions within this book.
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Molecular Aspects of Hepatocellular Carcinoma
Therapeutic options for late-stage liver cancer are very limited and the prognosis is often poor. A better understanding of the molecular mechanisms involved in the initiation, progression, and metastasis of hepatocellular carcinoma is critical for developing more rational diagnostic and therapeutic approaches. This e-book covers current developments on clinically relevant research on the molecular biology of hepatocellular carcinoma. It should be a valuable reference for professional gastroenterologists, hepatologists and oncologists as well as medical students and researchers.
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Molecular Aspects of Neurodegeneration and Neuroprotection
Neurodegenerative diseases are a complex heterogeneous group of diseases associated with site-specific premature and slow death of certain neuronal populations in brain and spinal cord tissues. For example, in Alzheimer disease, neuronal degeneration occurs in the nucleus basalis, whereas in Parkinson disease, neurons in the substantia nigra die. The most severely affected neurons in Huntington disease are striatal medium spiny neurons. The neuronal populations that are lost in neurodegenerative diseases modulate functions such as controlling movements, processing sensory information, memory, and making decisions. Although, the molecular mechanism of neurodegeneration remains unknown, but excitotoxicity, inflammation, and oxidative stress may contribute to neural cell demise independently or synergistically. The purpose of this E-book is to present readers with cutting edge and comprehensive information on molecular aspects of neurodegenerative diseases and neuroprotection in a manner that is useful not only to students and teachers, but also to researchers and physicians.
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Molecular Bases of Neurodegenerative Disorders of the Retina
This book focuses on the physiology and molecular biology of the front and back regions of the eye. Specifically, the chapters of this book cover topics that explain currently less understood aspects of retinal health as well as the use of zebrafish models to understand the molecular pathogenesis of associated diseases. This includes retinitis pigmentosa, diabetic retinopathy ciliopathies in the eye, rhodopsin trafficking and associated disorders, and the biochemistry of cone defects. This book serves as a useful reference for scientists and graduate students seeking to understand protein trafficking mechanisms and metabolic control in retinal diseases.
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Molecular Imaging and Related Topics
Frontiers in Heart Failure: Volume 2
This volume of Frontiers in Heart Failure comprehensively covers the gap between clinical management of heart failure and advanced molecular imaging techniques (SPECT, PET, MRI etc.). These techniques provide valuable evidence to cardiologists for the evaluation and follow-up of heart failure patients. It brings forth established research data regarding the pathophysiology, clinical presentations and therapy of heart failure, in a balance between clinical items and molecular imaging modalities. Readers will also find additional chapters on hybrid cardiovascular imaging techniques as well as guidelines on imaging artifacts and radiation protection. This volume is a useful resource for radiologists, cardiologists, cardiac care nurses and medical physicists.
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Molecular Mechanism and Morphology in Cancer
The WHO report estimates that 12 million people will be diagnosed with some form of cancer this year. In addition, the report predicts that more than 7 million people will die early from the disease. Together, the number of cancer cases and deaths from cancer are expected to increase by one percent each year. Cancer research has seen remarkable advancements, including the multi-step carcinogenesis theory and the identification of a cancer stem cell. These advancements are being applied to clinical therapies targeting the oncogene. In addition, the function of the gene product is becoming clear through analysis of the intracellular signaling of the oncogene. As a result, it has become clear that the morphologies of the cancers depend on the kind of the abnormal gene. Of course, these differences would influence patientÂ’s life and death and is summarized by specialists in this area. This theme includes the full range of human diseases regarding medical genetics, biochemistry, microbiology, immunology, anatomy, pathology, structural biology, molecular cell biology, neuroscience and developmental biology. The eBook contains articles written by specialists in this area. It should prove to be of great use to clinicians and scientists in all medical fields.
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Molecular Oncology: Principles and Recent Advances
Cancer is one of the major causes of death worldwide. Despite hundreds of clinical trials currently in progress for cancer patients, the success rate is still very low. Understanding the molecular aspects of cancer development, the discovery of new molecular targets and rational drug design on this molecular basis should help in discovering early cancer biomarkers as well as novel therapeutic drugs.
This book describes various cancer topics on a molecular level and integrates information on the relationship between causes of cancer, cancer cell biology, metastasis, cancer prevention and drug design. This book should prove to be an extraordinary reference text for students, physicians and oncologists.
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Molecular Targets and Cancer Therapeutics Part I
Today, treatment options for cancer patients typically include surgery, radiation therapy, immunotherapy, and chemotherapy. While these therapies have saved lives and reduced pain and suffering, cancer still takes millions of lives every year around the world. Researchers are now developing advanced therapeutic strategies such as immunotherapy, targeted therapy, and combination nanotechnology for drug delivery. In addition, the identification of new biomarkers will potentiate early-stage diagnosis. Molecular Targets and Cancer presents information about cancer diagnosis and therapy in a simple way. It covers several aspects of the topic with updated information on par with medical board levels. The book features contributions from experts and includes an overview of cancer from basic biology and pathology, classifications, surveillance, prevention, diagnosis, types of cancer, treatment and prognosis. The first part of this book introduces the reader to cancer epidemiology, genetic alterations in cancer, exogenous and endogenous factors in carcinogenesis, roles for growth factors in cancer progression, cell signaling in cancer, transcription factors in cancer, and cancer genetics and epigenetics. This comprehensive guide is a valuable resource for oncologists, researchers, and all medical professionals who work in cancer care and research.
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Molecular Targets and Cancer Therapeutics Part II
Today, treatment options for cancer patients typically include surgery, radiation therapy, immunotherapy, and chemotherapy. While these therapies have saved lives and reduced pain and suffering, cancer still takes millions of lives every year around the world. Researchers are now developing advanced therapeutic strategies such as immunotherapy, targeted therapy, and combination nanotechnology for drug delivery. In addition, the identification of new biomarkers will potentiate early-stage diagnosis.
Molecular Targets and Cancer presents information about cancer diagnosis and therapy in a simple way. It covers several aspects of the topic with updated information on par with medical board levels. The book features contributions from experts and includes an overview of cancer from basic biology and pathology, classifications, surveillance, prevention, diagnosis, types of cancer, treatment and prognosis.
The second part of this book discusses specialized topics in clinical oncology which include the pathophysiology of various types of cancer, cancer screening, different types of cancer surgery, cancer stem cell-targeted immunotherapy, nanotechnology for precision medicine applications in cancer and cancer surveillance.
This comprehensive guide is a valuable resource for oncologists, researchers, and all medical professionals who work in cancer care and research.
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Molecular and Cellular Biology of Pathogenic Trypanosomatids
Frontiers in Parasitology: Volume 1
Frontiers in Parasitology is an Ebook series devoted to publishing the latest and the most important advances in parasitology. Eminent scientists present reviews on the microbiology, cytology, epidemiology, genomics, and molecular biology of microbial parasites and their associated infections. Additionally, the series also gives information about new diagnostic and therapeutic protocols. The Ebook series is essential reading to all scientists involved in studying harmful microbes and their impact on human health.
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Molecular and Physiological Insights into Plant Stress Tolerance and Applications in Agriculture
Molecular and Physiological Insights into Plant Stress Tolerance and Applications in Agriculture is an edited volume that presents research on plant stress responses at both molecular and physiological levels. Key Features: - Emphasizes the morphological and physiological reactions of plants and the underlying molecular mechanisms when faced with stress from environmental or pathogenic factors. - Explores microbial dynamics within the plant rhizosphere and the application of plant growth-promoting bacteria as biofertilizers and endophytes as biocontrol agents to enhance crop growth and productivity for sustainable agriculture. - Systematically summarizes molecular mechanisms in plant stress tolerance and discusses the current applications of biotechnology, nanotechnology, and precision breeding to obtain stress-tolerant crops, contributing to climate-smart agriculture and global food security. - Includes contributions and references from multidisciplinary experts in plant stress physiology, plant molecular biology, plant biotechnology, agronomy, agriculture, nanotechnology, and environmental science. The content of the book is aimed at addressing UN SDG goals 2, 12, and 15 to achieve zero hunger and responsible consumption and production, and to sustainable use of terrestrial ecosystems, respectively. This comprehensive resource is suitable for researchers, students, teachers, agriculturists, and readers in plant science, and allied disciplines.
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