Dehn surgery Information & Dehn surgery Links at HealthHaven.com
advertise
add site
services
publishers
database
health videos
Bookmark and Share

search wiki for    ?
web dir firms image gallery news pdf wiki shop video 
about
toolbar
stats
live show
health store
more stuff
JOIN/LOGIN
Featured Results:
Bypass Surgery : Robotic Surgery , Nephrology,Neurology ,Plastic...
Bypass Surgery : Robotic Surgery, Nephrology,Neurology ,Plastic...
chettinadhealthcity.com
 Laser Eye Surgery | Laser Eye Treatment | Laser Vision Correction |...
Laser Eye Surgery | Laser Eye Treatment | Laser Vision Correction |...
ultralase.com
 Body Surgery : Body Lift Surgery & Plastic Surgery Contouring
Body Surgery: Body Lift Surgery & Plastic Surgery Contouring
drstile.com
 Hip Arthritis Surgery , Knee Arthritis Surgery - Osteoarthritis,...
Hip Arthritis Surgery, Knee Arthritis Surgery - Osteoarthritis,...
hipandkneesurgery.com.au
 

In topology, a branch of mathematics, a Dehn surgery, named after Max Dehn, is a specific construction used to modify 3-manifolds. The process takes as input a 3-manifold together with a link. Dehn surgery can be thought of as a two stage process: drilling and Dehn filling.

Contents

[edit] Definitions

  • Given a 3-manifold with torus boundary components, we may glue in a solid torus by a homeomorphism (resp. diffeomorphism) of its boundary to the torus boundary component T of the original 3-manifold. There are many inequivalent ways of doing this, in general. This process is called Dehn filling.
  • Dehn surgery on a 3-manifold containing a link consists of drilling out a tubular neighbourhood of the link together with Dehn filling on all the components of the boundary corresponding to the link.

We can pick two oriented simple closed curves m and on the boundary torus of the 3-manifold that generate the fundamental group of the torus. This gives any simple closed curve γ on that torus two coordinates p and q, each coordinate corresponding to the algebraic intersection of the curve with m and respectively. These coordinates only depend on the homotopy class of γ.

We can specify a homeomorphism of the boundary of a solid torus to T by having the meridian curve of the solid torus map to a curve homotopic to γ. As long as the meridian maps to the surgery slope [γ], the resulting Dehn surgery will yield a 3-manifold that will not depend on the specific gluing (up to homeomorphism). The ratio p/q is called the surgery coefficient.

In the case of links in the 3-sphere or more generally an oriented homology sphere, there is a canonical choice of the meridians and longitudes of T. The longitude is chosen so that it is null-homologous in the knot complement—equivalently, if it is the boundary of a Seifert surface. The meridian is the curve that bounds a disc in the tubular neighbourhood of the link. When the ratios p/q are all integers, the surgery is called an integral surgery or a genuine surgery, since such surgeries are closely related to handlebodies, cobordism and Morse functions.

[edit] Results

Every closed, orientable, connected 3-manifold is obtained by performing Dehn surgery on a link in the 3-sphere. This result, the Lickorish-Wallace theorem, was first proven by Wallace in 1960 and independently by Lickorish in a stronger form in 1962. Via the now well-known relation between genuine surgery and cobordism, this result is equivalent to the theorem that the oriented cobordism group of 3-manifolds is trivial, originally due to V. Rohlin in 1951.

Since orientable 3-manifolds can all be generated by suitably decorated links, one might ask how distinct surgery presentations of a given 3-manifold might be related. The answer is called the Kirby calculus.

[edit] See also

[edit] References




Product Results (view all...)

search wiki for    ?
web dir firms image gallery news pdf wiki shop video 



↑ top of page ↑about thumbshots