Morgan P Lorio
Medical Practice at Galway Rd, Bristol, TN

License number
Florida 130014
Issued Date
Oct 3, 2016
Effective Date
Oct 3, 2016
Expiration Date
Jan 31, 2019
Category
Health Care
Type
Medical Doctor
Address
Address
110 Galway Rd, Bristol, TN 37620
Phone
(423) 340-1803

Organization information

See more information about Morgan P Lorio at bizstanding.com

Neuro-Spine Solutions, PC

240 Medical Park Blvd #2700, Bristol, TN 37620

Industry:
Business Services, Medical Doctor's Office, Medical Office, ...
Doing business as:
Neuro-Spine Solutions PC - Morgan P Lorio MD<br>NeuroSpine Solutions
Registration:
May 1, 2005
Phone:
(423) 844-0501 (Phone), (423) 844-0006 (Fax)
Description:
There are 2 doctors at this site. Surgery is not performed at this site. Average patient volume is 25 patients per day.
Office Managers:
John Testerman (Owner),Morgan Lorio (Owner),Donna Groseclose (Office Manager)
SIC6:
738900 - Business service
Categories:
Physicians - Surgeons & Neurosurgeons, Orthopedics Physicians & Surgeons, Physicians & Surgeons, ...
Specialties:
Back & Spinal Pain, back problems, Disc Pain, ...
Products:
Arthroscopic Surgery, Arthroscopy, Comprehensive Spine, Nerve, ...
Additional:
Accepting New Patients
Company size:
12

Professional information

Morgan P Lorio Photo 1

Dr. Morgan P Lorio, Bristol TN - MD (Doctor of Medicine)

Specialties:
Orthopedic Hand Surgery
Address:
Neurospine Solutions
240 Medical Park Blvd STE 2700, Bristol 37620
(423) 844-0501 (Phone)
Certifications:
Hand Surgery, 2010, Orthopedic Surgery, 1999
Awards:
Healthgrades Honor Roll
Languages:
English
Hospitals:
Neurospine Solutions
240 Medical Park Blvd STE 2700, Bristol 37620
Holston Valley Medical Center
130 West Ravine Rd, Kingsport 37660
Indian Path Medical Center
2000 Brookside Dr, Kingsport 37660
Johnson City Medical Center
400 North State Of Franklin Rd, Johnson City 37604
Wellmont Bristol Regional Medical Center
1 Medical Park Blvd, Bristol 37620
Education:
Medical School
Louisiana State University School Of Medicine In Shreveport
Graduated: 1988
SUNY Buffalo
Graduated: 1990
University At Buffalo State University Of New York
Graduated: 1996


Morgan P Lorio Photo 2

Morgan P Lorio, Bristol TN

Specialties:
Orthopedic Surgeon
Address:
240 Medical Park Blvd, Bristol, TN 37620
Education:
Louisiana State University, School of Medicine (Shreveport) - Doctor of Medicine
Buffalo General Hospital - Residency - Orthopaedic Surgery
Board certifications:
American Board of Orthopaedic Surgery Certification in Orthopaedic Surgery, American Board of Orthopaedic Surgery Sub-certificate in Hand Surgery (Orthopaedic Surgery)


Morgan Lorio Photo 3

Morgan Lorio, Bristol TN

Work:
Neuro-Spine Solutions
240 Medical Park Blvd, Bristol, TN 37620 NeuroSpine Solutions, PC
400 N St Franklin Rd, Johnson City, TN 37604


Morgan Lorio Photo 4

Bone Plating System And Method

US Patent:
2013005, Feb 28, 2013
Filed:
Mar 3, 2011
Appl. No.:
13/580611
Inventors:
Caleb Stoll - Broomfield CO, US
Morgan Lorio - Bristol TN, US
Michael Fulton - Superior CO, US
Assignee:
LANX, INC. - Broomfield CO
International Classification:
A61B 17/88, A61B 17/70
US Classification:
606279, 606246
Abstract:
The described apparatus and method include a bone plating system comprising a plate longitudinally extending between a first plate end and a second plate end, wherein the plate further comprises a first plate surface spaced apart from an opposing second plate surface. Further, the bone plating system further includes a first spacer segment longitudinally extending between a first spacer end and a second spacer end, wherein the first spacer segment is shaped to adapt the plate to conform to an adjacent bone segment surface.


Morgan Lorio Photo 5

Spinal Plate And Method For Using Same

US Patent:
2013000, Jan 3, 2013
Filed:
Jun 29, 2012
Appl. No.:
13/538824
Inventors:
Morgan Packard Lorio - Bristol TN, US
Rocky Wayne Renfro - Kingsport TN, US
International Classification:
A61B 17/88, A61B 17/80
US Classification:
606281, 606280
Abstract:
A spinal plate for installation on one or more vertebrae. The spinal plate can be an asymmetrical cervical plate. The cervical plate can have a thicker side, a thinner side, one or more threaded fastener holes, and one or more locking fastener holes. The shape of the cervical plate can match the shape of a vertebra to facilitate installation, thus, the thickness of both the thicker and thinner sides, and shape of the cervical plate between the thicker side and the thinner side can match the shape of a vertebra. The cervical plate can include locking features that secure one or more locking fasteners in the one or more locking fastener holes, and thereby secure one or more threaded fasteners in the one or more threaded fastener holes.


Morgan Lorio Photo 6

Intervertebral Device And Methods Of Use

US Patent:
2012008, Apr 5, 2012
Filed:
Sep 29, 2011
Appl. No.:
13/248747
Inventors:
Thomas Purcell - Del Mar CA, US
Morgan Lorio - Bristol TN, US
Assignee:
Alphatec Spine, Inc. - Carlsbad CA
International Classification:
A61F 2/44
US Classification:
623 1716
Abstract:
A minimally invasive intervertebral implant includes a circuitous body defining a luminal axis extending longitudinally therethrough. The circuitous body includes proximal and distal ends oppositely disposed along a lateral axis of the circuitous body. Each of the proximal and distal ends includes an aperture disposed therethrough such that the circuitous body includes a first configuration wherein the proximal and distal ends are at a maximum separation and a second configuration wherein the proximal and distal ends are closer together than in the first configuration.


Morgan Lorio Photo 7

Intervertebral Device And Methods Of Use

US Patent:
2012008, Apr 5, 2012
Filed:
Oct 4, 2011
Appl. No.:
13/252427
Inventors:
Thomas Purcell - Del Mar CA, US
Morgan Lorio - Bristol TN, US
Assignee:
Alphatec Spine, Inc. - Carlsbad CA
International Classification:
A61F 2/44
US Classification:
623 1716
Abstract:
An intervertebral device comprises a plurality of struts that are rotatably associated with each adjacent strut to form a modifiable inner volume V for bone graft containment.