語系:
繁體中文
English
說明(常見問題)
圖資館首頁
登入
回首頁
切換:
標籤
|
MARC模式
|
ISBD
Fundamentals of neuromechanics
~
SpringerLink (Online service)
Fundamentals of neuromechanics
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Fundamentals of neuromechanicsby Francisco J. Valero-Cuevas.
作者:
Valero-Cuevas, Francisco J.
出版者:
London :Springer London :2016.
面頁冊數:
xxiv, 194 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
Biomechanics.
電子資源:
http://dx.doi.org/10.1007/978-1-4471-6747-1
ISBN:
9781447167471$q(electronic bk.)
Fundamentals of neuromechanics
Valero-Cuevas, Francisco J.
Fundamentals of neuromechanics
[electronic resource] /by Francisco J. Valero-Cuevas. - London :Springer London :2016. - xxiv, 194 p. :ill., digital ;24 cm. - Biosystems & biorobotics,v.82195-3562 ;. - Biosystems & biorobotics ;v.4..
This book provides a conceptual and computational framework to study how the nervous system exploits the anatomical properties of limbs to produce mechanical function. The study of the neural control of limbs has historically emphasized the use of optimization to find solutions to the muscle redundancy problem. That is, how does the nervous system select a specific muscle coordination pattern when the many muscles of a limb allow for multiple solutions? I revisit this problem from the emerging perspective of neuromechanics that emphasizes finding and implementing families of feasible solutions, instead of a single and unique optimal solution. Those families of feasible solutions emerge naturally from the interactions among the feasible neural commands, anatomy of the limb, and constraints of the task. Such alternative perspective to the neural control of limb function is not only biologically plausible, but sheds light on the most central tenets and debates in the fields of neural control, robotics, rehabilitation, and brain-body co-evolutionary adaptations. This perspective developed from courses I taught to engineers and life scientists at Cornell University and the University of Southern California, and is made possible by combining fundamental concepts from mechanics, anatomy, mathematics, robotics and neuroscience with advances in the field of computational geometry. Fundamentals of Neuromechanics is intended for neuroscientists, roboticists, engineers, physicians, evolutionary biologists, athletes, and physical and occupational therapists seeking to advance their understanding of neuromechanics. Therefore, the tone is decidedly pedagogical, engaging, integrative, and practical to make it accessible to people coming from a broad spectrum of disciplines. I attempt to tread the line between making the mathematical exposition accessible to life scientists, and convey the wonder and complexity of neuroscience to engineers and computational scientists. While no one approach can hope to definitively resolve the important questions in these related fields, I hope to provide you with the fundamental background and tools to allow you to contribute to the emerging field of neuromechanics.
ISBN: 9781447167471$q(electronic bk.)
Standard No.: 10.1007/978-1-4471-6747-1doiSubjects--Topical Terms:
188942
Biomechanics.
LC Class. No.: QP303
Dewey Class. No.: 571.43
Fundamentals of neuromechanics
LDR
:03237nmm a2200337 a 4500
001
481528
003
DE-He213
005
20160720113607.0
006
m d
007
cr nn 008maaau
008
161007s2016 enk s 0 eng d
020
$a
9781447167471$q(electronic bk.)
020
$a
9781447167464$q(paper)
024
7
$a
10.1007/978-1-4471-6747-1
$2
doi
035
$a
978-1-4471-6747-1
040
$a
GP
$c
GP
041
0
$a
eng
050
4
$a
QP303
072
7
$a
TJFM
$2
bicssc
072
7
$a
TJFD
$2
bicssc
072
7
$a
TEC004000
$2
bisacsh
072
7
$a
TEC037000
$2
bisacsh
082
0 4
$a
571.43
$2
23
090
$a
QP303
$b
.V165 2016
100
1
$a
Valero-Cuevas, Francisco J.
$3
737649
245
1 0
$a
Fundamentals of neuromechanics
$h
[electronic resource] /
$c
by Francisco J. Valero-Cuevas.
260
$a
London :
$b
Springer London :
$b
Imprint: Springer,
$c
2016.
300
$a
xxiv, 194 p. :
$b
ill., digital ;
$c
24 cm.
490
1
$a
Biosystems & biorobotics,
$x
2195-3562 ;
$v
v.8
520
$a
This book provides a conceptual and computational framework to study how the nervous system exploits the anatomical properties of limbs to produce mechanical function. The study of the neural control of limbs has historically emphasized the use of optimization to find solutions to the muscle redundancy problem. That is, how does the nervous system select a specific muscle coordination pattern when the many muscles of a limb allow for multiple solutions? I revisit this problem from the emerging perspective of neuromechanics that emphasizes finding and implementing families of feasible solutions, instead of a single and unique optimal solution. Those families of feasible solutions emerge naturally from the interactions among the feasible neural commands, anatomy of the limb, and constraints of the task. Such alternative perspective to the neural control of limb function is not only biologically plausible, but sheds light on the most central tenets and debates in the fields of neural control, robotics, rehabilitation, and brain-body co-evolutionary adaptations. This perspective developed from courses I taught to engineers and life scientists at Cornell University and the University of Southern California, and is made possible by combining fundamental concepts from mechanics, anatomy, mathematics, robotics and neuroscience with advances in the field of computational geometry. Fundamentals of Neuromechanics is intended for neuroscientists, roboticists, engineers, physicians, evolutionary biologists, athletes, and physical and occupational therapists seeking to advance their understanding of neuromechanics. Therefore, the tone is decidedly pedagogical, engaging, integrative, and practical to make it accessible to people coming from a broad spectrum of disciplines. I attempt to tread the line between making the mathematical exposition accessible to life scientists, and convey the wonder and complexity of neuroscience to engineers and computational scientists. While no one approach can hope to definitively resolve the important questions in these related fields, I hope to provide you with the fundamental background and tools to allow you to contribute to the emerging field of neuromechanics.
650
0
$a
Biomechanics.
$3
188942
650
0
$a
Neurobiology.
$3
195022
650
0
$a
Neurophysiology.
$3
194420
650
1 4
$a
Engineering.
$3
210888
650
2 4
$a
Control, Robotics, Mechatronics.
$3
339147
650
2 4
$a
Simulation and Modeling.
$3
273719
650
2 4
$a
Neurosciences.
$3
211508
650
2 4
$a
Computer Appl. in Life Sciences.
$3
274180
650
2 4
$a
Algebraic Geometry.
$3
274807
650
2 4
$a
Evolutionary Biology.
$3
273704
710
2
$a
SpringerLink (Online service)
$3
273601
773
0
$t
Springer eBooks
830
0
$a
Biosystems & biorobotics ;
$v
v.4.
$3
674910
856
4 0
$u
http://dx.doi.org/10.1007/978-1-4471-6747-1
950
$a
Engineering (Springer-11647)
筆 0 讀者評論
全部
電子館藏
館藏
1 筆 • 頁數 1 •
1
條碼號
館藏地
館藏流通類別
資料類型
索書號
使用類型
借閱狀態
預約狀態
備註欄
附件
000000121365
電子館藏
1圖書
電子書
EB QP303 V165 2016
一般使用(Normal)
在架
0
1 筆 • 頁數 1 •
1
多媒體
多媒體檔案
http://dx.doi.org/10.1007/978-1-4471-6747-1
評論
新增評論
分享你的心得
Export
取書館別
處理中
...
變更密碼
登入