Catálogo de publicaciones - libros
Support Vector Machines for Pattern Classification
Shigeo Abe
Resumen/Descripción – provisto por la editorial
No disponible.
Palabras clave – provistas por la editorial
No disponibles.
Disponibilidad
Institución detectada | Año de publicación | Navegá | Descargá | Solicitá |
---|---|---|---|---|
No detectada | 2005 | SpringerLink |
Información
Tipo de recurso:
libros
ISBN impreso
978-1-85233-929-6
ISBN electrónico
978-1-84628-219-5
Editor responsable
Springer Nature
País de edición
Reino Unido
Fecha de publicación
2005
Información sobre derechos de publicación
© Springer-Verlag London Limited 2005
Tabla de contenidos
Introduction
Shigeo Abe
Minimally invasive surgery has the potential to minimize surgical trauma and pain while improving functional recovery in patients having total hip replacement. The minimally invasive two-incision total hip technique described here, where muscle and tendon trauma is minimized, shows substantial short-term pain and functional improvement over traditional hip replacement. While this minimally invasive two-incision technique shows great promise; this technique requires meticulous surgical technique, specialized instrumentation, and special instruction. Therefore, specialized training is strongly recommended for surgeons interested in this new technique to minimize complications and ensure success.
Pp. 3-13
Two-Class Support Vector Machines
Shigeo Abe
Minimally invasive surgery has the potential to minimize surgical trauma and pain while improving functional recovery in patients having total hip replacement. The minimally invasive two-incision total hip technique described here, where muscle and tendon trauma is minimized, shows substantial short-term pain and functional improvement over traditional hip replacement. While this minimally invasive two-incision technique shows great promise; this technique requires meticulous surgical technique, specialized instrumentation, and special instruction. Therefore, specialized training is strongly recommended for surgeons interested in this new technique to minimize complications and ensure success.
Pp. 15-82
Multiclass Support Vector Machines
Shigeo Abe
Minimally invasive surgery has the potential to minimize surgical trauma and pain while improving functional recovery in patients having total hip replacement. The minimally invasive two-incision total hip technique described here, where muscle and tendon trauma is minimized, shows substantial short-term pain and functional improvement over traditional hip replacement. While this minimally invasive two-incision technique shows great promise; this technique requires meticulous surgical technique, specialized instrumentation, and special instruction. Therefore, specialized training is strongly recommended for surgeons interested in this new technique to minimize complications and ensure success.
Pp. 83-128
Variants of Support Vector Machines
Shigeo Abe
Minimally invasive surgery has the potential to minimize surgical trauma and pain while improving functional recovery in patients having total hip replacement. The minimally invasive two-incision total hip technique described here, where muscle and tendon trauma is minimized, shows substantial short-term pain and functional improvement over traditional hip replacement. While this minimally invasive two-incision technique shows great promise; this technique requires meticulous surgical technique, specialized instrumentation, and special instruction. Therefore, specialized training is strongly recommended for surgeons interested in this new technique to minimize complications and ensure success.
Pp. 129-154
Training Methods
Shigeo Abe
Minimally invasive surgery has the potential to minimize surgical trauma and pain while improving functional recovery in patients having total hip replacement. The minimally invasive two-incision total hip technique described here, where muscle and tendon trauma is minimized, shows substantial short-term pain and functional improvement over traditional hip replacement. While this minimally invasive two-incision technique shows great promise; this technique requires meticulous surgical technique, specialized instrumentation, and special instruction. Therefore, specialized training is strongly recommended for surgeons interested in this new technique to minimize complications and ensure success.
Pp. 155-188
Feature Selection and Extraction
Shigeo Abe
Minimally invasive surgery has the potential to minimize surgical trauma and pain while improving functional recovery in patients having total hip replacement. The minimally invasive two-incision total hip technique described here, where muscle and tendon trauma is minimized, shows substantial short-term pain and functional improvement over traditional hip replacement. While this minimally invasive two-incision technique shows great promise; this technique requires meticulous surgical technique, specialized instrumentation, and special instruction. Therefore, specialized training is strongly recommended for surgeons interested in this new technique to minimize complications and ensure success.
Pp. 189-199
Clustering
Shigeo Abe
Minimally invasive surgery has the potential to minimize surgical trauma and pain while improving functional recovery in patients having total hip replacement. The minimally invasive two-incision total hip technique described here, where muscle and tendon trauma is minimized, shows substantial short-term pain and functional improvement over traditional hip replacement. While this minimally invasive two-incision technique shows great promise; this technique requires meticulous surgical technique, specialized instrumentation, and special instruction. Therefore, specialized training is strongly recommended for surgeons interested in this new technique to minimize complications and ensure success.
Pp. 201-208
Kernel-Based Methods
Shigeo Abe
Minimally invasive surgery has the potential to minimize surgical trauma and pain while improving functional recovery in patients having total hip replacement. The minimally invasive two-incision total hip technique described here, where muscle and tendon trauma is minimized, shows substantial short-term pain and functional improvement over traditional hip replacement. While this minimally invasive two-incision technique shows great promise; this technique requires meticulous surgical technique, specialized instrumentation, and special instruction. Therefore, specialized training is strongly recommended for surgeons interested in this new technique to minimize complications and ensure success.
Pp. 209-222
Maximum-Margin Multilayer Neural Networks
Shigeo Abe
Minimally invasive surgery has the potential to minimize surgical trauma and pain while improving functional recovery in patients having total hip replacement. The minimally invasive two-incision total hip technique described here, where muscle and tendon trauma is minimized, shows substantial short-term pain and functional improvement over traditional hip replacement. While this minimally invasive two-incision technique shows great promise; this technique requires meticulous surgical technique, specialized instrumentation, and special instruction. Therefore, specialized training is strongly recommended for surgeons interested in this new technique to minimize complications and ensure success.
Pp. 223-235
Maximum-Margin Fuzzy Classifiers
Shigeo Abe
Minimally invasive surgery has the potential to minimize surgical trauma and pain while improving functional recovery in patients having total hip replacement. The minimally invasive two-incision total hip technique described here, where muscle and tendon trauma is minimized, shows substantial short-term pain and functional improvement over traditional hip replacement. While this minimally invasive two-incision technique shows great promise; this technique requires meticulous surgical technique, specialized instrumentation, and special instruction. Therefore, specialized training is strongly recommended for surgeons interested in this new technique to minimize complications and ensure success.
Pp. 237-263