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The "Shaken Baby" syndrome: pathology and mechanisms
1Department of Neuropathology, West Wing, John Radcliffe Hospital, Oxford, UK. waney.squier@clneuro.ox.ac.uk
Insights
The diagnosis of Shaken Baby Syndrome (SBS) is controversial. Research questions whether shaking alone causes the triad of subdural hemorrhage, retinal hemorrhage, and encephalopathy, leading to the adoption of "non-accidental head injury".
Area of Science:
- Forensic Pathology
- Pediatric Neurology
- Neuroradiology
Background:
- The "Shaken Baby" syndrome (SBS) diagnosis historically relied on a triad: subdural hemorrhage (SDH), retinal hemorrhage, and encephalopathy.
- Recent research challenges the hypothesis that shaking alone causes this triad, leading to the term "non-accidental head injury".
- Infants can sustain abusive head injuries, but the specific mechanisms and causes of the SBS triad require re-evaluation.
Purpose of the Study:
- To review the pathology and mechanisms of the three findings constituting the "triad" (SDH, retinal hemorrhage, encephalopathy).
- To explore the diverse causes of these findings in infants, encompassing both traumatic and non-traumatic conditions.
- To critically examine the role of shaking versus other factors in infant head injuries.
Main Methods:
- Review of existing literature on the pathology and mechanisms of subdural hemorrhage, retinal hemorrhage, and encephalopathy in infants.
- Analysis of the diagnostic criteria and controversies surrounding Shaken Baby Syndrome (SBS).
- Examination of neuropathological findings, including sources of SDH and optic nerve sheath hemorrhage, and cerebral pathologies like swelling and hypoxic-ischemic injury.
Main Results:
- Subdural bleeding originates in the dura, with potential sources including bridging veins, dural vessels, hemorrhagic membranes, and aneurysms.
- Retinal hemorrhage, while clinically visible, is often overshadowed by dural/subarachnoid optic nerve sheath hemorrhage seen by pathologists.
- Encephalopathy is broadly defined in SBS, and cerebral pathology often involves swelling and hypoxic-ischemic injury, with mechanical shearing and contusions being rare in infants under one year.
Conclusions:
- The traditional triad of SBS is associated with a wide range of conditions, not exclusively shaking.
- Alternative explanations for subdural bleeding and white matter changes exist, particularly in infants.
- The review highlights the need for a broader differential diagnosis beyond SBS for these findings in infants.
Abstract:
The "Shaken Baby" syndrome (SBS) is the subject of intense controversy; the diagnosis has in the past depended on the triad of subdural haemorrhage (SDH), retinal haemorrhage and encephalopathy. While there is no doubt that infants do suffer abusive injury at the hands of their carers and that impact can cause catastrophic intracranial damage, research has repeatedly undermined the hypothesis that shaking per se can cause this triad. The term non-accidental head injury has therefore been widely adopted. This review will focus on the pathology and mechanisms of the three physiologically associated findings which constitute the "triad" and are seen in infants suffering from a wide range of non-traumatic as well as traumatic conditions. "Sub" dural bleeding in fact originates within the deep layers of the dura. The potential sources of SDH include: the bridging veins, small vessels within the dura itself, a granulating haemorrhagic membrane and ruptured intracranial aneurysm. Most neuropathologists do not routinely examine eyes, but the significance of this second arm of the triad in the diagnosis of Shaken Baby syndrome is such that it merits consideration in the context of this review. While retinal haemorrhage can be seen clinically, dural and subarachnoid optic nerve sheath haemorrhage is usually seen exclusively by the pathologist and only rarely described by the neuroradiologist. The term encephalopathy is used loosely in the context of SBS. It may encompass anything from vomiting, irritability, feeding difficulties or floppiness to seizures, apnoea and fulminant brain swelling. The spectrum of brain pathology associated with retinal and subdural bleeding from a variety of causes is described. The most important cerebral pathology is swelling and hypoxic-ischaemic injury. Mechanical shearing injury is rare and contusions, the hallmark of adult traumatic brain damage, are vanishingly rare in infants under 1 year of age. Clefts and haemorrhages in the immediate subcortical white matter have been assumed to be due to trauma but factors specific to this age group offer other explanations. Finally, examples of the most common causes of the triad encountered in clinical diagnostic and forensic practice are briefly annotated.
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