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Degenerative Disc Disease clinical trials

View clinical trials related to Degenerative Disc Disease.

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NCT ID: NCT01491425 Completed - Clinical trials for Degenerative Disc Disease

A Pivotal Study of rhBMP-2/ACS/LT-CAGE® Device for Anterior Lumbar Interbody Fusion in Patients With Degenerative Disc Disease

Start date: November 1998
Phase: N/A
Study type: Interventional

This study is designed to assess the safety and effectiveness of the rhBMP-2/ACS/LT-CAGE® Device using laparoscopic surgical technique as compared to an historical control group treated with Autogenous Bone/LT-CAGE® Device using an open surgical technique in patients with symptomatic degenerative disc disease.

NCT ID: NCT01491386 Completed - Clinical trials for Degenerative Disc Disease

Pivotal Study of rhBMP-2/ACS/LT-CAGE® Device for Anterior Lumbar Interbody Fusion in Patients With Symptomatic Degenerative Disc Disease

Start date: August 1998
Phase: N/A
Study type: Interventional

This study is designed to assess the safety and effectiveness of the rhBMP-2/ACS/LT-CAGE® device as compared to the LT-CAGE® device with autogenous bone in patients with symptomatic degenerative disc disease using an open surgical technique.

NCT ID: NCT01455805 Completed - Clinical trials for Degenerative Disc Disease

Minuteman Spinal Fusion Implant Versus Surgical Decompression for Lumbar Spinal Stenosis

Start date: June 2012
Phase: N/A
Study type: Interventional

Lumbar spinal stenosis (LSS), is a common disorder of narrowing of the spinal canal in the lower part of the back. This causes discomfort in the legs when standing or walking because of pressure on the spinal nerves.There are several treatment options for LSS including physiotherapy, lumbar surgical decompression procedures such as laminectomy, Foraminotomy, Discectomy and more recently devices for interspinous distraction such as the XSTOP® and from May 2011 Minuteman™. Surgical decompression for LSS involves the removal of excess bone, ligament, and soft-tissue allowing more room for the nerves. The operation is usually preformed under general anaesthetic and with an average stay in hospital for 2-3 nights. Whereas the Minuteman™ implant is preformed as a day case under local or general anaesthetic and involves implanting the device into the space between two back bones to relieve pressure on the nerves and, therefore, pain in the legs. This is a multi centred (four sites) randomised controlled trial with a total sample of 50 participants after obtaining their informed consent. Participants will attend the pain clinic at the Hospitals for a baseline visit where they will be randomised with a ratio of 1:1 to receive either the Minuteman™ Interspinous interlaminar fusion Implant or standard surgical decompression for the treatment of lumbar spinal stenosis (LSS). Following randomisation arrangements will be made for the participant to receive the randomised treatment. If allocated to Minuteman™ Implant, the treatment will be conducted by the Pain Specialist identified at the site. If allocated to surgical decompression, the treatment will be conducted by the neuro/spinal-surgeon identified at the site. Participates will be followed up regularly for 60 months post implant to assess clinical efficacy, safety, participants function and quality of life of each treatment.

NCT ID: NCT01452516 Terminated - Clinical trials for Degenerative Disc Disease

Effectiveness of Lumbar Fusion When NanOss Bioactive Is Used With Posterolateral Gutter Fusions

Start date: July 2010
Phase: N/A
Study type: Interventional

Spine fusion is one of the most common procedures performed in spinal surgery. Several surgical techniques can achieve a solid union, but the intertransverse posterolateral fusion (PLF) is the most widely used. However, complications can develop when the bone graft material used is insufficient to achieve the desired fusion. With its unique properties, nanOss Bioactive can be mixed with bone marrow aspirate (BMA) and other graft materials to obtain new bone growth during the healing process. It is hypothesized that the use of nanOss Bioactive will result in fusion at 12 months, with CT evidence of bridging trabecular bone, less than 3mm of translational motion, and less than 5 degrees of angular motion. In addition, patients are expected to see an improvement in Oswestry Disability Index scores, VAS pain scores, and SF36 scores, while decreasing the use of pain medication, returning to work, and finding satisfaction in the results of their surgery.

NCT ID: NCT01442922 Completed - Clinical trials for Degenerative Disc Disease

Intervertebral Disc Augmentation With Minimally Invasive Surgical Procedure

Start date: March 2011
Phase: N/A
Study type: Observational

The primary purpose of the study is to establish the degree and duration of pain relief following minimally invasive surgery for a painful degenerative disc.

NCT ID: NCT01406405 Completed - Clinical trials for Degenerative Disc Disease

PEEK and Allograft Spacers Evaluation in Spinal Fusion Surgeries

PEEK
Start date: July 2011
Phase:
Study type: Observational

Purpose The primary purpose of this study is to prospectively compare clinical and radiographic clinical outcomes in patients undergoing cervical or lumbar interbody fusions and randomized to receive either polyetheretherketone (PEEK) or cortical allografts.

NCT ID: NCT01338493 Completed - Clinical trials for Degenerative Disc Disease

Maverick Total Disc Replacement in a 'Real World' Patient Population

Maverick
Start date: February 2009
Phase: N/A
Study type: Observational

The primary purpose of the study is to document the reduction of disability after Maverick total disc replacement surgery in a 'real-world' patient population requiring disc replacement.

NCT ID: NCT01290367 Completed - Clinical trials for Degenerative Disc Disease

Safety and Preliminary Efficacy Study of Mesenchymal Precursor Cells (MPCs) in Subjects With Lumbar Back Pain

Start date: August 2011
Phase: Phase 2
Study type: Interventional

The purpose of this study is to compare two doses of immunoselected, culture-expanded, nucleated, allogeneic adult MPCs when combined with hyaluronic acid to two control intradiscal injections in subjects with chronic low back pain due to moderate Degenerative Disc Disease (DDD) at one lumbar level from L1 to S1. All investigational subjects in this study will undergo injection of either 6 million (M) or 18M cells in a hyaluronic acid carrier into the degenerated lumbar disc's nucleus pulposus. All control subjects will undergo an intradiscal control injection with either saline or hyaluronic acid only

NCT ID: NCT01028300 Terminated - Clinical trials for Degenerative Disc Disease

Clinical Outcomes of Lumbar Degenerative Disc Disease in Active-Duty U.S. Service Personnel

Start date: April 2010
Phase: N/A
Study type: Interventional

Degenerative disc disease (DDD) refers to a syndrome in which a degenerating disc causes chronic back pain, significantly impacting an individual's ability to function. The condition is most commonly diagnosed in the lumbosacral spinal segments L3-S1. The condition often starts with an injury to the disc space. The injury weakens the disc and creates excessive motion at the corresponding vertebral level. Over time, the segmental instability and associated neurological compromise combined with ongoing inflammatory processes that occur in and around the disc produce low back pain. The reparative processes in the disc are poor, thus the painful symptoms can become chronic. Premature degeneration at adjacent levels of the spine remains one of the more vexing problems facing spinal surgeons when advising relatively young people to consider lumbar fusion surgery. Stopping the motion changes the mechanics of the back (which is designed for motion and flexibility) and results in the transfer of the loads and stresses to the adjacent vertebral segments. It is therefore intuitive to pursue total disc replacement, which allows for the treatment of pain due to DDD while re-establishing motion and stability, load distribution, and restoring the disc height, as an alternative to spinal fusion surgery. The study hypothesis is that military personnel receiving Total Disc Replacement will return to the same level of active duty performance as at the time of their most recent successful physical readiness test.