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Biomedical subjects

F D Rose

Publications and source records attributed to F D Rose.

38 records · Page 3Linked to original sources

Age and recovery from brain injury: legal opinions, clinical beliefs and experimental evidence.

Despite considerable scientific evidence to the contrary, many medical practitioners maintain that children recover from brain injury better than adults. This belief, which is commonly referred to as the "Kennard Principle", has important ramifications for personal injury compensation claims in which the amount of financial damages claimed is partly based on medical experts' prognoses for recovery and long-term outcome. The present study investigated whether legal practitioners' beliefs are consistent with those of medical practitioners. Lawyers were asked to estimate their confidence in consultant neurologists' estimates of recovery in four clinically-based but fictitious case studies which differed only in the reported age of the patient. The lawyers showed more confidence in estimates which coincided with the Kennard Principle than those which did not. These results support previous findings in showing widespread belief that "younger is better" in recovery from brain injury. In consequence, it is likely that financial compensation for children with brain injury is currently being underestimated in litigation, thereby prejudicing the long-term outcome of the child.

Age Factors↗

Rehabilitation of the head-injured child: basic research and new technology.

The view that brain damage in children is less impairing than equivalent damage in adults is no longer acceptable. However, it is acknowledged that recovery following brain damage, when it does occur, owes much to the plasticity of the brain and that the young brain displays greater plasticity than the mature brain. To maximize brain damage recovery in children we need to focus both on what is known about brain plasticity and how to influence it. Research on environmental enrichment in rats has told us that enforced interaction with a complex environment can both stimulate anatomical and biochemical plasticity and ameliorate some of the behavioural consequences of brain damage. The view that environmental interaction has rehabilitative value also accords with clinical experience. However, the sensory, motor and cognitive consequences of brain damage often conspire to make environmental interaction difficult. One potential solution lies in using computers to generate virtual environments tailored to the precise sensory and motor capacities of the brain-injured child. In this way children may be enabled to benefit from environmental interaction whatever their level of disability. The use of Virtual Reality (VR) in the context of rehabilitation is discussed and relevant work reviewed.

Adult↗