Canonical Question
Neuro – Pathways
Master answer
Cardiovascular
Innervation
- ANS
- Afferents
- Visceral afferent nerves from the heart via the vagal nerve to the NTS
- Baroreceptors via vagal (aortic arch) and glossopharyngeal (carotid sinus)
- Sympathetic system
- Efferents to the heart from the post-ganglionic sympathetic fibres synapsing from T2~5 pre-ganglionic sympathetic fibres
- Positive inotropy, chronotropy, lusitropy and dromotropy
- Efferents to vascular smooth muscle via pre-ganglionic fibres from the thoracolumbar spinal roots synapsing on the sympathetic chain
- Parasympathetic system
- Efferents from the vagal nerve
- Negative inotropy, chronotropy, lusitropy and dromotropy
- Unknown significance of muscarinic innervation of the vasculature
Effects of transection at C6
- Immediate
- Sympathetic stimulation from catecholamine release from adrenal medulla
- Hypertension
- Tachycardia
- Sympathetic stimulation from catecholamine release from adrenal medulla
- Acute
- Afferents from heart and baroreceptors in tact
- Central processing of vasomotor centre in tact
- Efferent sympathetic innervation to heart will be lost
- Resting sympathetic tone of heart lost
- HR will decrease from ~60 to 50bpm
- Baroreceptor response to hypotension will be lost
- No reflex tachycardia or positive inotropy
- Resting sympathetic tone of heart lost
- Efferent sympathetic innervation to vasculature will be lost
- Resting sympathetic tone of blood vessels lost → vaso and venodilatation → decreased MAP and decreased venous return
- Decreased cardiac output
- Decreased baroreflex vasoconstriction in response to hypotension
- Resting sympathetic tone of blood vessels lost → vaso and venodilatation → decreased MAP and decreased venous return
- Efferent parasympathetic innervation in tact (via vagus nerve).
- Parasympathetic tone of resting heart rate will remain
- Reflex negative inotropy and chronotropy in response to hypertension will remain
Respiratory
Innervation
- Afferents from central and peripheral chemoreceptors
- Meduallary respiratory centre
- Sympathetic
- Unknown innervation and significance although β2 adrenoceptors are present within respiratory system
- Postulated response to circulating catecholamine from adrenal medulla
- Parasympathetic
- Vagal innervation of respiratory system causing bronchoconstriction and mucous secretion
- Motor innervation of respiratory muscles
- Phrenic nerve – C3~5
- Diaphragm
- Thoracic spinal nerve roots
- Intercostal muscles
- External (inspiration)
- Internal (expiration)
- Innermost
- Intercostal muscles
- Accessory muscles of respiration
- Accessory nerve innervation of sternocleidomastoid and trapezius
- Brachial plexus
- Pec. major/minor
- Nerve to subclavius
- Serratus anterior
- Thoracic spinal roots
- External, internal, innermost intercostal muscles
- Abdominal wall muscles
- Phrenic nerve – C3~5
Effect of C6 transection
- Sympathetic
- Decreased adrenaline secretion from adrenal medulla → decreased circulating adrenaline → unopposed muscarinic stimulation of lung → increased likelihood of bronchoconstriction
- Vasodilation leading to pooling of blood in pulmonary circulation → decreased lung compliance
- Parasympathetic
- Innervation will remain → bronchoconstriction
- Motor innervation
- Phrenic nerve function in tact
- Diaphragm – Tidal inspiration will largely remain
- Intercostal muscle function lost
- External – Loss of elevation of ribs to increase AP diameter – required in inspiration
- Internal – Loss of lowering of ribs to decrease AP diameter – required in expiration
- Accessory muscles
- Variable effects
- Sternocleidomastoid and trapezius function in tact (forced inspiration)
- Scalenus anterior, medius, posterior in tact (forced inspiration)
- Pec. major and minor in tact (forced inspiration)
- Abdominal muscle function lost
- Required in forced expiration, cough
- Variable effects
- Loss of expiratory reserve volume
- Decreased vital capacity
- Phrenic nerve function in tact
Sakurai 2016
Exam appearances
| Exam | Exact wording | Relationship | Success |
|---|---|---|---|
| 2012B Q15 | Outline the respiratory and cardiovascular consequences of an acute complete spinal cord transection at C6. | historical_member | — |