Structures · Spinal cord segments
T10 spinal cord segment
The piece of spinal cord that gives rise to the T10 pair of spinal nerves. Segment names use the spinal cord level system, which does not line up with the vertebrae.
At a glance
- Level system
- T10 segment (spinal cord level)
- Lies opposite
- T8-T9 disc to T9 (vertebral levels)Model mapping; varies between people. Frostell et al. 2016; De Leener et al. 2018; Cadotte et al. 2014
- Length along the cord
- 20.3 mmMeasured on one model: the Visible Human male, imaged as a supine cadaver. Not a normal range. De Leener et al. 2018; Frostell et al. 2016
- Its nerve
- The T10 nerve exits between the T10 vertebra and the T11 vertebra, below the T10 vertebra.Betts et al. 2022, §13.4
- ISNCSCI key sensory point
- Midclavicular line, level of the umbilicusRupp et al. 2021; Kirshblum et al. 2011
Cross-section at T10
Regions in this section (text list)
- left ventral horn
- right ventral horn
- left intermediate zone
- right intermediate zone
- left dorsal horn
- right dorsal horn
Grey matter and white-matter tracts at this level. Outline from the PAM50 template and atlas, cut at the segment midpoint. De Leener et al. 2018; Lévy et al. 2015
Open this section in the viewerWhat the sources say
“The lateral horn , which is only found in the thoracic, upper lumbar, and sacral regions, contains cell bodies of motor neurons of the autonomic nervous system.” Betts et al. 2022, §13.2
“The posterior horn is responsible for sensory processing.” Betts et al. 2022, §13.2
“The anterior horn sends out motor signals to the skeletal muscles.” Betts et al. 2022, §13.2
Connections to the rest of the body
Spinal nerves and plexuses
Intercostal nerves run between the ribs
Thoracic nerves T2 to T11 do not join a plexus: each runs around the chest wall between two ribs.
Key sensory points (ISNCSCI)
Key sensory points: one patch of skin per segment
The examination tests light touch and pinprick at one key point per segment on each side, from C2 behind the ear to S4–5 beside the anus. The points here were placed on this body by following the standard’s written descriptions from bony landmarks, so they are approximate.
Sympathetic outflow
Sympathetic outflow: thoracic and upper lumbar cord
Every sympathetic signal to the body leaves the cord between T1 and L2, from neurons in the lateral horn, and passes through the chain of ganglia beside the vertebral column.
Wulf and Tom 2023; Betts et al. 2022, §15.1 · Show on the body
Sympathetic outflow
Spleen: sympathetic from T4–T12
Sympathetic neurons for the spleen sit in the lateral horn of segments T4 to T12. A spinal cord injury above these segments cuts them off from the brain's control, though they still work as part of spinal reflexes.
Sympathetic outflow
Pancreas: sympathetic from T6–L2
Sympathetic neurons for the pancreas sit in the lateral horn of segments T6 to L2. A spinal cord injury above these segments cuts them off from the brain's control, though they still work as part of spinal reflexes.
Sympathetic outflow
Liver: sympathetic from T7–T12
Sympathetic neurons for the liver sit in the lateral horn of segments T7 to T12. A spinal cord injury above these segments cuts them off from the brain's control, though they still work as part of spinal reflexes.
Sympathetic outflow
Gallbladder and bile ducts: sympathetic from T7–T10
Sympathetic neurons for the gallbladder and bile ducts sit in the lateral horn of segments T7 to T10. A spinal cord injury above these segments cuts them off from the brain's control, though they still work as part of spinal reflexes.
Sympathetic outflow
Adrenal glands: sympathetic from T9–T10
Sympathetic neurons for the adrenal glands sit in the lateral horn of segments T9 to T10. A spinal cord injury above these segments cuts them off from the brain's control, though they still work as part of spinal reflexes.
For learning only. Levels and sizes vary between people; nothing here describes a particular person or gives medical advice. Sources: Betts et al. 2022, §13.2; Frostell et al. 2016; De Leener et al. 2018; Cadotte et al. 2014; Betts et al. 2022, §13.4; Rupp et al. 2021; Kirshblum et al. 2011; Wulf and Tom 2023; Betts et al. 2022, §15.1.