Mosaicplasty Scarborough ME

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Stanley James Bigos, MD
(206) 548-4288
100 US Route 1
Scarborough, ME
Specialties
Orthopedics
Gender
Male
Education
Medical School: Univ Of Mo, Columbia Sch Of Med, Columbia Mo 65212
Graduation Year: 1975

Data Provided By:
Robert B Keller
(207) 885-4479
49 Spring St
Scarborough, ME
Specialty
Orthopedic Surgery

Data Provided By:
Ann Margaret Babbitt, MD
(207) 828-1133
800 Main St
South Portland, ME
Specialties
Orthopedics
Gender
Female
Education
Medical School: Med Coll Of Wi, Milwaukee Wi 53226
Graduation Year: 1977

Data Provided By:
Samuel Spencer Scott
(207) 773-9729
100 Foden Rd. W, Ste 307
South Portland, ME
Specialty
Orthopedic Surgery

Data Provided By:
Susan M Mosier La Clair, MD
254 Western Ave
S Portland, ME
Specialties
Orthopedics
Gender
Female
Education
Medical School: Univ Of Mi Med Sch, Ann Arbor Mi 48109
Graduation Year: 1994

Data Provided By:
Daniel W Wilson, MD
(207) 885-0011
11 Indian Woods Rd
Scarborough, ME
Specialties
Orthopedics
Gender
Male
Education
Medical School: Univ Of Colombo, Fac Of Med, Colombo, Sri Lanka
Graduation Year: 1950

Data Provided By:
Craig Ridges Barrow, MD
254 Western Ave
South Portland, ME
Specialties
Orthopedics
Gender
Male
Education
Medical School: Loma Linda Univ Sch Of Med, Loma Linda Ca 92350
Graduation Year: 1997

Data Provided By:
Donald Geo Belliveau, MD
(207) 284-5946
468 Boom Rd
Saco, ME
Specialties
Orthopedics
Gender
Male
Education
Medical School: New York Med Coll, Valhalla Ny 10595
Graduation Year: 1956

Data Provided By:
Gregory Clarence Pomeroy, MD
(207) 774-3338
254 Western Ave
South Portland, ME
Specialties
Orthopedics
Gender
Male
Education
Medical School: Royal Coll Of Surgeons In Ireland, Med Sch, Dublin, Ireland
Graduation Year: 1989

Data Provided By:
Samuel Spencer Scott, MD
(207) 773-9729
100 Foden Rd Ste 307
South Portland, ME
Specialties
Orthopedics, Hand Surgery
Gender
Male
Education
Medical School: Dartmouth Med, Hanover Nh 03755
Graduation Year: 1982

Data Provided By:
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Cartilage Repair in Sports Athletes Using Mosaicplasty

Injuries, defects, lesions, or tears of any kind in the joint cartilage can end a sports athlete's career. Today, there are improved ways to treat cartilage injuries, especially in the knee. One of those methods is called mosaicplasty. This article reviews the uses and long-term results of mosaicplasty in an athletic population.

What is mosaicplasty? It's a form of osteochondral autografting. That doesn't really explain anything, does it? Let's start with the last part of the term: grafting tissue is the moving of some type of soft tissue from one spot to another. It could be ligament, tendon, muscle, or as in this case, cartilage. Autografting tells us the donor tissue being harvested to repair the problem is coming from the patient himself.

Osteochondral can be broken down into two words: osteo for bone and chondral meaning cartilage. So with osteochondral, we have cartilage that has pulled away from the joint with the underlying next layer of bone still attached. We call this kind of damage a full-thickness defect. That is the injury side of things.

Now the repair side of the problem: mosaicplasty. During this procedure, the surgeon harvests cartilage and bone from an area of the knee that doesn't get much action and isn't under the pressure of constant weight bearing. The donor or graft is smoothed and shaped to fill in the defect site. Sometimes only one donor plug is needed but some patients in this particular study had as many as nine grafted pieces.

What are the advantages of this treatment? And who is considered a good candidate for the procedure? Mosaicplasty can help save the joint and protect it from further wear and tear around the defect site. Normal joint biomechanics can be restored with this technique and get the athlete back into full sports participation sooner than later. With seasonal sports and a limited amount of playing time, faster return-to-sports can be a huge benefit of a successful mosaicplasty.

Among the athletes with cartilage damage, who can benefit? The results of this study confirm what other studies have shown. Younger athletes who have smaller (and fewer) lesions seem to do the best. But location of the lesion was a key risk factor for successful outcomes. Lesions located on the femoral condyles (large round knobs at the end of the femur (thighbone) seem to respond better than damage or defects to the patella (kneecap).

Athletes from all types of sports were included with no real difference in results based on their sports injuries. Soccer players, handball, water polo, wrestling, gymnasts, and many others had equally good results. Only a small number of patients suffered from post-operative complications such as hemorrhage, infection, or persistent pain and swelling. At least in this study, sex (male versus female) was not a significant factor.

The researchers found that there were some other specific factors that influenced success or failure. For example, smaller...

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