TY - CHAP
T1 - Motor trephine syndrome
T2 - A mechanistic hypothesis
AU - Stiver, Shirley I.
AU - Wintermark, Max
AU - Manley, Geoffrey T.
PY - 2008
Y1 - 2008
N2 - Background In our neurotrauma practice, "motor trephine syndrome" was defined as a contralateral monoparesis that developed as a delayed and reversible complication in patients treated with decompressive hemicraniectomy for traumatic brain injury (TBI). The goal of this study was to define causal factors associated with this syndrome. Methods We retrospectively reviewed clinical records and imaging studies of all patients undergoing decompressive hemicraniectomy followed by cranioplasty repair in our comprehensive database of TBI patients. Detailed analysis of motor function from the time of injury to 6 months following cranioplasty repair identified three patterns of motor recovery. Results Blossoming of contusions, CSF circulation dysfunction, and longer times to cranioplasty repair were strongly associated with "motor trephine syndrome". We hypothesize that "motor trephine syndrome" arises from decompensated CSF flow with transgression of CSF fluid and edema into brain parenchyma, together with associated decrements in cerebral blood flow. Conclusion Prior contusion injury, decreased skull resistance with large hemispheric decompressions, and longer intervals to cranioplasty repair facilitate transparenchymal flow of CSF and edema. "Motor trephine syndrome" is rapidly reversible following cranioplasty repair. CSF and edema fluid changes within the parenchyma and CBF normalize, coincident with improvements in the patient's motor function, upon replacement of the bone.
AB - Background In our neurotrauma practice, "motor trephine syndrome" was defined as a contralateral monoparesis that developed as a delayed and reversible complication in patients treated with decompressive hemicraniectomy for traumatic brain injury (TBI). The goal of this study was to define causal factors associated with this syndrome. Methods We retrospectively reviewed clinical records and imaging studies of all patients undergoing decompressive hemicraniectomy followed by cranioplasty repair in our comprehensive database of TBI patients. Detailed analysis of motor function from the time of injury to 6 months following cranioplasty repair identified three patterns of motor recovery. Results Blossoming of contusions, CSF circulation dysfunction, and longer times to cranioplasty repair were strongly associated with "motor trephine syndrome". We hypothesize that "motor trephine syndrome" arises from decompensated CSF flow with transgression of CSF fluid and edema into brain parenchyma, together with associated decrements in cerebral blood flow. Conclusion Prior contusion injury, decreased skull resistance with large hemispheric decompressions, and longer intervals to cranioplasty repair facilitate transparenchymal flow of CSF and edema. "Motor trephine syndrome" is rapidly reversible following cranioplasty repair. CSF and edema fluid changes within the parenchyma and CBF normalize, coincident with improvements in the patient's motor function, upon replacement of the bone.
KW - Cerebral spinal fluid
KW - Cerebrovascular circulation
KW - Craniocerebral trauma
KW - Cranioplasty
KW - Craniotomy
KW - Head injuries closed
KW - Paresis
KW - Trephining
UR - https://www.scopus.com/pages/publications/66649111440
UR - https://www.scopus.com/pages/publications/66649111440#tab=citedBy
U2 - 10.1007/978-3-211-85578-2_51
DO - 10.1007/978-3-211-85578-2_51
M3 - Chapter
C2 - 19388328
AN - SCOPUS:66649111440
SN - 9783211855775
T3 - Acta Neurochirurgica, Supplementum
SP - 273
EP - 277
BT - Intracranial Pressure and Brain Monitoring XIII
PB - Springer-Verlag Wien
ER -