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Book Neutron Capture Therapy

    Book Details:
  • Author : Wolfgang A.G. Sauerwein
  • Publisher : Springer Science & Business Media
  • Release : 2012-11-05
  • ISBN : 3642313345
  • Pages : 545 pages

Download or read book Neutron Capture Therapy written by Wolfgang A.G. Sauerwein and published by Springer Science & Business Media. This book was released on 2012-11-05 with total page 545 pages. Available in PDF, EPUB and Kindle. Book excerpt: Neutron capture therapy (NCT) is based on the ability of the non-radioactive isotope boron-10 to capture thermal neutrons with very high probability and immediately to release heavy particles with a path length of one cell diameter, which in principle allows for tumor cell-selective high-LET particle radiotherapy. This book provides a comprehensive summary of the progress made in NCT in recent years. Individual sections cover all important aspects, including neutron sources, boron chemistry, drugs for NCT, dosimetry, and radiation biology. The use of NCT in a variety of malignancies and also some non-malignant diseases is extensively discussed. NCT is clearly shown to be a promising modality at the threshold of wider clinical application. All of the chapters are written by experienced specialists in language that will be readily understood by all participating disciplines.

Book Neutron Dosimetry in Boron Neutron Capture Therapy

Download or read book Neutron Dosimetry in Boron Neutron Capture Therapy written by and published by . This book was released on 1981 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: The recent development of various borated compounds and the utilization of one of these (Na2B12H11SH) to treat brain tumors in clinical studies in Japan has renewed interest in neutron capture therapy. In these procedures thermal neutrons interact with 1°B in boron containing cells through the 1°B(n, .cap alpha.)7Li reaction producing charged particles with a maximum range of approx. 10.mu.m in tissue. Borated analogs of chlorpromazine, porphyrin, thiouracil and deoxyuridine promise improved tumor uptake and blood clearance. The therapy beam from the Medical Research Reactor in Brookhaven contains neutrons from a modified and filtered fission spectrum and dosimetric consequences of the use of the above mentioned compounds in conjunction with thermal and epithermal fluxes are discussed in the paper. One of the important problems of radiation dosimetry in capture therapy is determination of the flux profile and, hence, the dose profile in the brain. This has been achieved by constructing a brain phantom made of TE plastic. The lyoluminescence technique provides a convenient way of monitoring the neutron flux distributions; the detectors for this purpose utilize 6Li and 1°B compounds. Such compounds have been synthesized specially for the purpose of dosimetry of thermal and epithermal beams. In addition, standard lyoluminescent phosphors, like glutamine, could be used to determine the collisional component of the dose as well as the contribution of the 14N(n, p)14C reaction. Measurements of thermal flux were compared with calculations and with measurements done with activation foils.

Book Neutron Beam Design  Development  and Performance for Neutron Capture Therapy

Download or read book Neutron Beam Design Development and Performance for Neutron Capture Therapy written by Otto K. Harling and published by Springer Science & Business Media. This book was released on 2013-03-08 with total page 340 pages. Available in PDF, EPUB and Kindle. Book excerpt: For this Workshop, the organizers have attempted to invite experts from all known centers which are engaged in neutron beam development for neutron capture therapy. The Workshop was designed around a series of nineteen invited papers which dealt with neutron source design and development and beam characterization and performance. Emphasis was placed on epithermal beams because they offer clinical advantages and are more challenging to implement than thermal beams. Fission reactor sources were the basis for the majority of the papers; however three papers dealt with accelerator neutron sources. An additional three invited papers provided a summary of clinical results of Ncr therapy in Japan between 1968 and 1989 and overviews of clinical considerations for neutron capture therapy and of the status of tumor targeting chemical agents for Ncr. Five contributed poster papers dealing with NCT beam design and performance were also presented. A rapporteurs' paper was prepared after the Workshop to attempt to summarize the major aspects, issues, and conclusions which resulted from this Workshop. Many people contributed to both the smooth functioning of the Workshop and to the preparation of these proceedings. Special thanks are reserved for Ms. Dorothy K.

Book Advances in Neutron Capture Therapy

Download or read book Advances in Neutron Capture Therapy written by R.F. Barth and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 776 pages. Available in PDF, EPUB and Kindle. Book excerpt: Binary systems for the treatment of cancer potentially are among the most attractive of the new therapeutic modalities that currently are under investigation. The basicconcept is to selectivelydestroy malignantcells whileconcomitantlysparing normal tissue. Neutron capture therapy (NCT) is the binary system that has been the subject of the Fifth International Symposium on Neutron Capture Therapy, which was held September13-17, 1992, in Columbus, Ohio, undertheauspicesoftheInternational Society for Neutron Capture Therapy. Its objective was to bring together researchers from throughout the world and to provide a forum at which they could present the latest advances in the development of Neutron capture therapy. Neutron capture therapy has largely, but not exclusively, focused on the use of boron-10 as the target nuclide. Boron neutron capture therapy (BNCT) is based on the nuclear reaction that occurs when the stable isotope, boron-10, absorbs low-energy non ionizing thermal neutrons to yield alphaparticles and recoiling lithium-7 nuclei. The size and energy of these high linear energy transfer (LET) particles result in their being confined largely to the cells in which the capture reaction occurs. For BNCT to be successful, a sufficient numberof I~atoms mustbe localized within neoplastic cells, and enough thermal neutrons must be delivered and absorbed by the I~ to produce a lethal 1~(n,QVLi reaction. Two major problems must be surmounted.

Book Frontiers in Neutron Capture Therapy

Download or read book Frontiers in Neutron Capture Therapy written by M. Frederick Hawthorne and published by Springer. This book was released on 2013-11-11 with total page 1389 pages. Available in PDF, EPUB and Kindle. Book excerpt: Frontiers in Neutron Capture Therapy contains current research results originally presented at the Eighth International Symposium on Neutron Capture Therapy for Cancer in La Jolla, CA. This comprehensive collection of peer-reviewed manuscripts is showcased in two volumes covering all aspects of the development of this multidisciplinary approach to cancer therapy. Volume I of this work includes clinical results and current progress in treatment planning, neutron sources and dosimetry, while Volume II presents the synthesis, pharmacology and tissue-targeting design of boron compounds, including work on preclinical dosimetry and radiobiology. Intended for researchers and clinicians involved with or interested in new modes of cancer therapy, this volume will also serve as a useful guideline for scientists, students, and practitioners in the field.

Book Boron Neutron Capture Therapy

Download or read book Boron Neutron Capture Therapy written by Detlef Gabel and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 274 pages. Available in PDF, EPUB and Kindle. Book excerpt: The European Collaboration on Boron Neutron Capture Therapy (BNCT), conceived in 1987 and successful in 1989 in gaining financial support as a Concerted Action through the Medical and Health Research Programme of the Commission ofthe European Communities (CEC) in Brussels, considered it an opportune moment to hold its annual Plenary Meeting on 18-20 Septem ber 1991 as an International Workshop entitled "Towards Clinical Trials of Glioma with BNCT". The background to this consideration was influenced by the world-wide resurgence ofinterest in NCT over the last 2 decades and by the exemplifica tions at the Fourth International Symposium on Neutron Capture Therapy for Cancer held in Sydney in December 1990, where it was strongly indicated that within the next 2 years clinical trials would be started both in Europe and the United States. In particular at the High Flux Reactor of the Joint Research Centre of the CEC at Petten in The Netherlands, an epithermal neutron beam designed and installed in the summer of 1990 recently became operable at full reactor power. An extensive series ofexperiments, including the nuclear and radiobiological characterisation of the beam and a healthy tissue tolerance study on canines has started and has the aim to define the preconditions for clinical trials onpatients with Grade III/IV glioma. However, as with any other new therapy modality, it must be demon strated that BNCT is safe for the patient and has a reasonable chance of being an effective therapy.

Book Real time Dosimetry for Boron neutron Capture Therapy

Download or read book Real time Dosimetry for Boron neutron Capture Therapy written by and published by . This book was released on 1994 with total page 11 pages. Available in PDF, EPUB and Kindle. Book excerpt: Epithermal/thermal boron neutron-capture therapy (BNCT) is promising treatment method for malignant tumors. Because the doses and dose rates for medical therapeutic radiation are very close to the normal tissue tolerance, small errors in radiation delivery can result in harmful overdoses. A substantial need exists for a device that will monitor, in real time, the radiation dose being delivered to a patient. Pacific Northwest Laboratory (PNL) has developed a scintillating glass optical fiber that is sensitive to thermal neutrons. The small size of the fibers offers the possibility of in vivo dose monitoring at several points within the radiation field. The count rate of such detectors can approach 10 MHz because the lifetime of the cerium activator is fast. Fluxes typical of those in BNCT (i.e., 109 n/cm2/sec) may be measured because of this potentially high count rate and the small diameter of the fiber.

Book Boron and Gadolinium Neutron Capture Therapy for Cancer Treatment

Download or read book Boron and Gadolinium Neutron Capture Therapy for Cancer Treatment written by Narayan S. Hosmane and published by World Scientific. This book was released on 2012 with total page 271 pages. Available in PDF, EPUB and Kindle. Book excerpt: The book focuses on two concurrent experimental therapies in cancer treatment known as boron neutron capture therapy (BNCT) and gadolinium neutron capture therapy (GdNCT) using a variety of boron- and gadolinium-based compounds. Some of the gadolinium compounds serve the dual purpose as being MRI contrast agents and GdNCT agents. The book describes why BNCT & GdNCT were not at the forefront of the clinical trials during the past seven to eight decades since the discovery of neutrons by John Chadwick in 1932 and how the latest development in the synthesis of target boron- and gadolinium-based drugs have turned the area to be the hottest one and worthy of further investigation with the new clinical trials in the USA and elsewhere.

Book Spectral Tailoring for Boron Neutron Capture Therapy

Download or read book Spectral Tailoring for Boron Neutron Capture Therapy written by Victor Alexander Nievaart and published by IOS Press. This book was released on 2007 with total page 144 pages. Available in PDF, EPUB and Kindle. Book excerpt: Since the first clinical trials on Boron Neutron Capture Therapy in the 1950s, BNCT research has been mainly focussed on the treatment of (deep-seated) brain tumours, in particular, glioblastoma multiforme. Promising work to treat other cancers at other locations and even other diseases are in progress. Therefore, the chemists, medical doctors, physicists and biologists involved in BNCT are not only continuing to investigate and improve the (brain) clinical results, but are also investigating the new applications in BNCT. The work presented in this thesis is in the field of physics and deals, from three different viewpoints, with obtaining the optimal source neutron energy to optimise BNCT. The optimal source neutron energy is defined such as to obtain as many as possible (n, a)-absorptions due to 10B in the tumours and as low as possible total neutron dose in the healthy tissues and organs at risk

Book Dosimetry and Treatment Planning for Boron Neutron Capture Therapy

Download or read book Dosimetry and Treatment Planning for Boron Neutron Capture Therapy written by Cornelis Petrus Johannes Raaijmakers and published by . This book was released on 1997 with total page 118 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Book Fast Neutrons and High LET Particles in Cancer Therapy

Download or read book Fast Neutrons and High LET Particles in Cancer Therapy written by Rita Engenhart-Cabillic and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 225 pages. Available in PDF, EPUB and Kindle. Book excerpt: Fast neutron therapy was introduced in London in 1970. The book gives an overview of the developments of the past 28 years, assesses the results of fast neutron treatment, and reviews the compiled clinical data worldwide. The authors describe the radiobiological profile of the neutron beams and evaluate the neutron RBE for secondary cancer induction, they introduce heavy-ion therapy, which combines high physical selectivity with the biological advantages of high-LET radiation for some tumor types, and finally they describe the very recent developments in Boron Neutron Capture Therapy (BNCT).

Book Cancer Neutron Capture Therapy

Download or read book Cancer Neutron Capture Therapy written by Y. Mishima and published by Springer Science & Business Media. This book was released on 2013-06-29 with total page 893 pages. Available in PDF, EPUB and Kindle. Book excerpt: There are many human cancers which actively synthesize specific characteristic proteins such as melanomas, thyroid cancer and squamous cell carcinoma. Many cancer researchers have of course tried to utilize this specific activity as a key for the selective treatment of cancers. In the past for example, the molecular hybrid compound of DOPA, a substrate of melanin, and nitrogen mustard N-oxide hydrochloride, a ctyotoxic anti-tumor drug, was synthesized as Melphalan and used to treat malignant melanoma. A major problem arose though in that it was soon found to be highly suppressive toward bone marrow and quite toxic while not being remarkably effective. Thus, malignant melanoma could not be cured by it. Such failure led us to develop a novel bimodal therapeutic system which includes the use of non-toxic potentially cytocidal chemicals which selectively accumulate within the cancer cells and which are converted by a controllable modality into an actively cytocidal element in situ. We can now non-surgically cure malignant melanoma and glioblastoma with our selective cancer treatment, neutron capture therapy (NCT); as can be found in this volume. Included are 124 papers on the latest breaking developments discussed at the Sixth International Symposium on NCT for Cancer held in Kobe during the late autumn of 1994.

Book A Review of the Recommendations for the Physical Dosimetry of Boron Neutron Capture Therapy  BNCT

Download or read book A Review of the Recommendations for the Physical Dosimetry of Boron Neutron Capture Therapy BNCT written by and published by . This book was released on 2008 with total page 147 pages. Available in PDF, EPUB and Kindle. Book excerpt: For the development and clinical implementation of the particular type of radiotherapy BNCT, it is of crucial importance that the basic characteristics of the neutron beam free-in-air and of the basic dosimetry quantities in a phantom are determined in a coherent and reproducible way. Consistent dosimetry is a requirement for a reliable comparison with conventional radiotherapy or other treatment modalities and for the safety of patient treatments. This imposes the condition that the basic dosimetric methods must be traceable by international standards. A consortium consisting of most of the BNCT groups in Europe has produced recommendations and guidelines for BNCT dosimetry. The recommendations presented in this report are based on the available knowledge and experience gained so far, including theoretical reviews, systematic experimental comparisons and analysis of the methods at all available European BNCT facilities. Criteria for the selection of the methods and procedures are defined and applied in the recommendations. The recommendations are limited to the basic experimental procedures related to dosimetry prior to clinical treatment, including quality assurance procedures. Guidance on treatment planning and other clinical and biological issues are not the subject of this document. Recommendations are given for: - Beam characterisation, which includes primary and supplementary methods to determine the free-in-air beam profile of neutrons and photons, to determine the neutron and photon profiles in a phantom and to determine the neutron and photon energy distributions. - Beam monitoring, being essential for the accurate dose delivery. - Beam calibration, which includes the definition of the reference conditions, primary and supplementary methods for the determination of the neutron and photon absorbed dose and a review of corrections that are related to dosimetry in mixed fields of neutrons and photons. Although the recommendations are focused on measurement in well-defined reference conditions, dosimetry for non-reference conditions is reviewed for completeness as well. Finally the quality assurance and the uncertainties in the measured quantities are estimated. The report demonstrates the feasibility to establish a collaborative network on a BNCT dosimetry-standard in Europe, with links to North, South America and Asia.

Book Neutron Dosimetry

Download or read book Neutron Dosimetry written by H. G. Menzel and published by . This book was released on 1997 with total page 614 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Book Progress in Neutron Capture Therapy for Cancer

Download or read book Progress in Neutron Capture Therapy for Cancer written by B.J. Allen and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 641 pages. Available in PDF, EPUB and Kindle. Book excerpt: Despite the many advances made in the diagnosis and therapy of cancer, the mortality rate is still about half that of the incidence rate. However, the odds are not evenly distributed. Prognosis for some cancers is good, but for others, few patients will survive 12 months. This latter group of cancers is characterised by a proclivity to disseminate malignant cells in the host organ. The degree of surgery possible may be limited by the critical nature of the organ, and chemotherapy and radiotherapy are of palliative value only. In some cases systemic metastases occur, but in other cases, failure to achieve local control results in death. First among these cancers are the high grade brain tumours, astrocytoma 3,4 and glioblastoma multiforme. Local control of these tumours should lead to cure. Other cancers melanoma metastatic to the brain, for which a useful palliative therapy is not yet available, and pancreatic cancer for which localised control at an early stage could bring about improved prognosis. Patients with these cancers have little grounds for hope. Our primary objective is to reverse this situation with Neutron Capture Therapy (NCT). The purpose of this fourth symposium is to hasten the day whereby patients with these cancers can reasonably hope for substantial remissions. The first symposium on NCT was held in Boston in 1983, followed by Tokyo in 1985 and Bremen, Germany in 1988.