A fall, a crash, or a hard hit can fracture the spine, and the key question is whether the injury is stable enough to heal in a brace or unstable enough to need surgery to protect the spinal cord. This page explains how surgeons tell stable from unstable, what a spinal cord injury means, and how bracing and surgical stabilization work, in plain language for patients and families.

A fractured vertebra can make the spine unstable
An injury to the bones of the spine, the spinal cord, or both, usually from a sudden force. Two separate questions drive everything that follows: is the broken spine stable, and is the spinal cord hurt?
The spine is a stack of bones, the vertebrae, that both hold you upright and form a protective tunnel around the spinal cord, the bundle of nerves carrying signals between the brain and the body. A high-energy injury such as a car crash, a fall from height, or a diving accident can crack one or more of those bones. Lower-energy events can do it too when bone is already weak from osteoporosis.
Not all spinal fractures are equally serious. The single most important question a surgeon asks is whether the fracture is stable, meaning the spine can safely hold itself together while it heals, or unstable, meaning the broken pieces could shift and injure the spinal cord. Stable injuries often heal in a brace. Unstable injuries usually need surgery to rebuild the spine's support.
The second question is whether the spinal cord itself was injured. Many spinal fractures never touch the cord and cause no weakness or numbness at all. When the cord is injured, the effects and the recovery depend heavily on how complete the injury is, which we explain in plain terms further down this page.
One or more vertebrae crack. The pattern of the break decides whether the spine is stable or not.
Sometimes, but not always, the spinal cord is bruised or pressed. This is what causes weakness or numbness.
A brace or collar holds a stable fracture still so the bone can heal on its own over weeks.
For unstable injuries, screws and rods rebuild the spine's support and take pressure off the cord.
Some people walk away from a crash or fall feeling fine, then develop numbness, weakness, or loss of bladder or bowel control hours or even days later as swelling or bleeding builds around the injury. Any new weakness, numbness, severe neck or back pain, or bladder or bowel changes after an injury needs immediate emergency evaluation. When in doubt, do not move the person and call for help.
Surgeons judge stability by which parts of the spine are broken. Select a fracture type to see what it is, how stable it is, and how it is usually treated. This is educational, not a diagnosis of your own injury.
Surgeons picture each vertebra as three stacked columns: a front (anterior), a middle, and a back (posterior). A fracture that breaks only one column is usually stable and often heals in a brace. When two or three columns fail, the spine can shift under load, so the injury is considered unstable and typically needs surgery. The middle column, right in front of the spinal cord, matters most.
Select a fracture type to see how stable it is and how it is treated.
After a spine injury, symptoms range from pain alone to signs that the spinal cord or nerves are involved. Select a symptom to see what it usually means and how urgently it needs attention.
Select a symptom to see what it typically signals.
Not every spinal fracture injures the spinal cord, but when it does, families understandably have urgent questions about recovery. Here is an honest, plain-language guide.
A note before you read on. This section discusses spinal cord injury, including the possibility of lasting weakness or paralysis. It is written to be honest and clear, because families tell us that straight answers help more than vague reassurance. Every injury is different, and the numbers here are averages, not predictions about any one person. Your care team is the right source for what applies to you.
A spinal cord injury happens when the cord is bruised, compressed, or torn, interrupting the signals that travel between the brain and the body below the level of the injury. The effects depend on two things: how high on the spine the injury is, and how complete it is. A higher injury affects more of the body. A more complete injury leaves less function preserved.
In the first hours and days, the team's job is to protect whatever function remains: keeping the spine still, maintaining good blood pressure and oxygen so the injured cord is not starved, and relieving pressure on the cord promptly when surgery can help. There is good evidence that decompressing a compressed cord early, often within the first day, gives the best chance of recovery. This is why an injured person is moved carefully and evaluated so quickly.
One of the hardest parts early on is uncertainty. In the first days, a state called spinal shock can make an injury look more complete than it truly is, so the earliest exam is not the final word. The clearest picture of long-term function usually emerges over the following weeks to months, and most neurological recovery that will happen tends to occur within the first six months to a year.
Doctors grade completeness with the ASIA Impairment Scale, a letter from A to E. Select a grade to see what it means and the general recovery outlook. Higher letters mean more preserved function.
When some function is preserved, the injury is incomplete, and it often follows a recognizable pattern. Incomplete injuries generally carry a better outlook than complete ones.
The choice between a brace and an operation weighs the fracture pattern, the spinal cord, alignment, and your overall health. Choose a category, then select a factor to see which way it points and why.
Select a factor to see how it influences the brace-versus-surgery decision.
Stable fractures are often treated without surgery. Unstable fractures, or any injury threatening the spinal cord, are stabilized surgically. Alongside either path, pain, mobility, and rehabilitation are managed from day one.
A stable fracture with a normal neurological exam can usually heal in an external brace or collar that holds the spine still while the bone knits, typically over six to twelve weeks, with pain control and guided activity.
An unstable fracture, a dislocation, or bone or blood pressing on the spinal cord is treated with surgery to realign the spine, relieve pressure on the cord, and hold everything in place with screws and rods while it fuses.
Select an option to see how it works and when it is chosen. At Brown we favor the least-invasive treatment that safely protects the spinal cord, and reserve larger operations for genuine instability or cord compression.
When a fracture is unstable, screws and rods hold the spine still while it heals. See how those screws are placed through small incisions, using robotic navigation.
This walks through a typical stabilization operation for an unstable fracture. Select an option above to switch pathways, and select each step to learn what happens and why.
Outcomes depend enormously on the injury. Bone almost always heals; nerve recovery is far less certain. Honest expectations matter most here.
Stabilization surgery is major surgery. Its risks include infection, bleeding, blood clots, problems with the hardware, the need for further surgery, and, rarely, worsening of neurological function despite every precaution. General anesthesia carries its own risks, which rise with age and other illness. Bracing avoids these surgical risks but has trade-offs of its own: skin problems, discomfort, and, for some fractures, a slightly higher chance the bone heals in a more angled position.
It is also important to be clear about what surgery can and cannot do. Stabilizing the spine reliably restores its mechanical support and protects the cord from further injury, and it lets people get up and moving sooner. It does not, by itself, repair an already-injured spinal cord. When paralysis or numbness is present from the injury, surgery aims to give the cord its best chance to recover and to prevent additional harm, but it cannot promise to reverse what the injury has already done.
Whether treated in a brace or with surgery, recovery from spinal trauma is a journey measured in weeks to months, and rehabilitation is as important as the initial treatment.
Rehabilitation after a cord injury is a specialized, team effort that continues well beyond the hospital, involving physical and occupational therapists, rehabilitation physicians, nurses, psychologists, and social workers. Its goals reach past strength alone: managing the bladder and bowel, protecting the skin, preventing complications, adapting the home, and supporting the emotional health of both the patient and the family. Meaningful gains in independence are common even when full recovery is not, and the people who do best are supported by a team and by loved ones who understand the road ahead.
Both aim to let the spine heal in good alignment while protecting the cord. The difference is whether the support comes from the outside or is built in. The right choice depends on the injury and is decided with your surgeon.
| Feature | Bracing | Surgical Stabilization |
|---|---|---|
| How support is given | An external brace or collar holds the spine still from outside | Screws and rods rebuild support from inside |
| Anesthesia | None | General anesthesia |
| Hospital stay | Short or none, depending on injury | A few days, longer if cord injury |
| Relieves cord pressure? | No | Yes, when decompression is included |
| Main downsides | Skin irritation, discomfort, possible mal-alignment | Surgical risks: infection, bleeding, hardware issues |
| Situation | Bracing | Surgery |
|---|---|---|
| Stable fracture, normal exam | Well suited | Usually not needed |
| Unstable fracture | Not sufficient alone | Preferred |
| Cord or nerve compression | Does not relieve pressure | Preferred; allows decompression |
| Fracture-dislocation | Not appropriate | Required |
| Multiple injuries / cannot tolerate a brace | Impractical | Often favored to allow early mobilizing |
| Factor | Bracing | Surgery |
|---|---|---|
| Time in brace | Typically 6–12 weeks | Shorter or none; the hardware provides support |
| Getting up and moving | As comfort allows, guided | Often within a day or two of surgery |
| Long-term motion | No fused segments | Fused levels lose some motion |
| Follow-up imaging | To confirm the fracture stays aligned | To confirm healing and hardware position |
Neither is universally better. A stable fracture in a well person is ideal for bracing; an unstable fracture or one pressing on the cord calls for surgery. Many decisions in between are genuine judgment calls made together with your surgeon.
A fusion only succeeds if the bone heals around the hardware and keeps its grip on the screws. When bone is thin, screws loosen, cages settle into the vertebra, and the fusion can fail to knit — so when a fusion is part of the plan, strengthening the bone beforehand is part of the operation, not an afterthought.
Spinal hardware is only as strong as the bone it anchors into. In osteoporotic bone, pedicle screws pull out or loosen more often, interbody cages can sink into the soft vertebral body (subsidence), and the fusion is slower and less certain to form a solid bridge — a higher risk of pseudarthrosis, or non-union. Longer, multi-level constructs carry the most bone-related risk, including new fractures at the top of the construct. Weak bone rarely rules surgery out, but it changes how we plan and prepare for it.
Before an elective fusion we take stock of the bone. A DEXA scan gives a T-score, and a CT you may already have gives a direct read of bone density — in Hounsfield units — at the very levels we plan to instrument, which is often more reliable than DEXA when the spine is arthritic. Bloodwork checks vitamin D and screens for reversible causes of bone loss.
When the numbers are low and the operation is elective, we treat the bone first. The strongest evidence is for anabolic (bone-building) agents — teriparatide, abaloparatide, or romosozumab. When the timeline allows, starting an anabolic roughly 2–3 months before surgery and continuing it 6–12 months afterward is associated with higher fusion rates and fewer loose screws, and it is then followed by an antiresorptive to hold the gains. Building first and protecting second is the sequence that adds the most strength. Urgent or unstable cases are not delayed — there we optimize around the operation instead of before it.
Coordinated with your surgeon and a bone-health physician, and weighed against how urgent surgery is. General education, not a prescription.
The thresholds below are what teams use to decide when bone is weak enough to treat, and weak enough to optimize before an elective fusion. Shared here for transparency; your own targets are set by your physicians.
A prior fragility fracture counts as osteoporosis on its own. DEXA can read falsely high over spinal arthritis, so a normal DEXA does not fully clear weak bone before a fusion.
Read from a CT you may already have. Loose hardware, cage subsidence, and non-union climb as this falls; many surgeons flag roughly < 120 HU at the instrumented levels as worth optimizing before elective surgery.
Any one of these shifts an elective fusion toward treating the bone beforehand:
This educational resource was developed by the Division of Spine and Spine Tumor Neurosurgery at Brown University Health to help patients and families understand spinal trauma and its treatment. Our surgeons care for the full spectrum of spinal injuries at a Level I trauma center, from bracing of stable fractures to complex stabilization and decompression, working alongside trauma surgery, neurocritical care, and rehabilitation.






The full trauma-spine team includes additional faculty. For complete profiles, visit the Brown Neurosurgery Spinal Surgery Division. Team list is a draft for faculty to confirm.