Neuronal dendritic trees are complex structures that endow the cell with powerful computing capabilities and allow for high neural interconnectivity. Studying the function of dendritic structures has a long tradition in theoretical neuroscience, starting with the pioneering work by Wilfrid Rall in the 1950s. Recent advances in experimental techniques allow us to study dendrites with a new perspective and in greater detail. The goal of this volume is to provide a rsum of the state-of-the-art in experimental, computational, and mathematical investigations into the functions of dendrites in a variety of neural systems.
Thứ Hai, 2 tháng 3, 2015
The Computing Dendrite
Chủ Nhật, 1 tháng 3, 2015
Functional Bladder Reconstruction Following Spinal Cord Injury via Neural Approaches
One of the most common problems for spinal cord injury patients is urinary system dysfunction. The book Functional Bladder Reconstruction Following Spinal Cord Injury via Neural Approaches introduces how to solve this problem using multi-disciplinary approaches. From animal model studies to surgical techniques as well as successful case reports, six kinds of surgery are presented in separate chapters. This up-to-date monograph will be a valuable resource for surgeons, urologists and neurologists caring for spinal cord injury patients. The contributors are a group of surgeons working in the fields of orthopaedics and microsurgery. Editor Chunlin Hou is Professor in Changzheng Hospital, the Second Military Medical University, Shanghai, China.
Thứ Hai, 12 tháng 1, 2015
A Neural Network Model of Lexical Organization
This is an engaging study of the mental lexicon: the way in which the form and meaning of words is stored by speakers of specific languages. Fortescue attempts to narrow the gap between the results of experimental neurology and the concerns of theoretical linguistics in the area of lexical semantics. The prime goal as regards linguistic theory is to show how matters of lexical organization can be analysed and discussed within a neurologically informed framework that is both adaptable and constrained.