“… it is in the public interest that children have the right, as they grow into adulthood, to know the truth about who injured them when they were children, and why. Children who are removed from their parents as a result of non-accidental injuries have in due course to come to terms with the fact that one or both of their parents injured them. This is a heavy burden for any child to bear. In principle, children need to know the truth if the truth can be ascertained”
“…evidence cannot be evaluated and assessed in separate compartments. A judge in these difficult cases has to have regard to the relevance of each piece of evidence to other evidence and to exercise an overview of the totality of the evidence in order to come to the conclusion whether the case put forward by the local authority has been made out to the appropriate standard of proof.” (Emphasis by underlining added).
“his head was dipped; his head was loose”
“[44] There is general agreement (Dr. Anslow, Dr. Cartlidge, Dr Fairhurst and Mr Richards) that the skull fracture and brain injury are likely to have been caused by a hard impact with the right side of the head on an unyielding surface. The notion that the skull fracture may have been caused by focal impact was advanced (on paper at least) by Dr. Cartlidge; he was in my judgment, less sure about this when asked in oral evidence. The suggestion of a focal impact was discussed and rejected at the hearing by Dr. Fairhurst who indicated in her view that the presentation of the fracture was likely to have been caused by contact with a “completely flat surface or surface with some angle”
“[57] First, no clotting disorders or bleeding disorders which are relevant to the causation of these injuries were identified (Professor Hann and Dr Cartlidge agree). Further, Professor Nussey had concluded that there was no evident endocrine disorder relevant to the causation of the injuries and no demonstrable metabolic bone disease. [58] Secondly, Dr. Anslow, Dr. Fairhurst and Mr Richards all agreed that the skull fracture would not be affected by any bone fragility, but that less force would be needed to cause the vertebrae fractures, if there was such a disorder. Professor Nussey and Dr Cartlidge opined that if there was generalised bone fragility, this would also affect the skull. [59] When asked about this in evidence, Dr. Fairhurst commented that “if the child had a significantly reduced bone density then they’ll be more likely to suffer fractures.” (Emphasis in the oral evidence).
“[65] Mr Richards gave important evidence on this [issue], confirming the following: i) the event occurred, according to Mr Richards “very recently before the child was admitted to hospital … compatible with a couple of hours, 3, 2, or 1; it would have happened after the child was last seen to be behaving normally”
“O/A at Hosp. Slight swelling noticed on ® temporal area which started to grow while in resus”
“can occur within minutes but may take several hours…”
“… while at one level they accept that I made the findings on the evidence, they do not accept that I was correct in my conclusions. Specifically: The mother: i) The mother’s response to the judgment reveals that she “fully comprehend[s] why those findings have been made” but maintains that “I did not inflict these injuries”, adding that “I may not ever know what caused [AD’s] injuries” (ibid.); she denies that there were any tensions in the house at the time of the injury; ii) The mother told Dr. Van Velsen that she “wanted to work with the agencies concerned and accepted the Judgment, although felt that she could not say that she had hurt her son, because she had not”
“… it is possible that tensile strength was reduced.… The radiology reports indicating osteopenia and the histological finding of woven bone in the skull material examined histologically by Dr Marta Cohen would be compatible with vitamin D deficiency and would indicate that the post-natal supply of vitamin D was inadequate.”
“…seldom reported to cause a significant head injury but when they do the injuries include a scalp bruise and a linear skull fracture at or close to the site of impact, and epidural or subdural bleeding… In this situation, the infant may appear unharmed or minimally injured after the fall but then, minutes to hours later, becomes unconscious…”
“All other things being equal, I would not expect a simple fall from the seated position to have caused his injuries but I do not have the expertise to say whether the forces generated by a putative complex fall onto the various surfaces in [AD]’s vicinity… was sufficient to have fractured the skull especially if the skull was constitutionally weak (a possibility addressed by Dr. Cohen and Dr. Watt in their reports).” (Emphasis added).
“… his head possibly impacted into the wooden bed frame, metal table leg, or with a prominence on the toy trike; however, even an impact upon a flat surface can cause this type of fracture.”
“… there is a myriad of biomechanical scenarios that could be associated with [AD]’s head impact, some of which – in my opinion – can generate enough force to cause all of [AD]’s head injuries.”
“… serious head injuries are unexpected and rare outcomes from short falls” even if not inconsistent; “severe head injury outcomes from domestic type falls are uncommon. In most fall cases, children will impact with feet, knees, arms, buttocks or shoulders first… it is in the relatively rare case where the head makes a primary impact”
“… given the available data… It is not possible to exclude the scenario that [AD] suffered his skull fracture while in the room with his sister. I do find it to be an unexpected outcome but not necessarily an inconsistent outcome given the information available. To be clear, for a normal healthy child of this size tipping over from a seated position onto a flat firm surface I do not know of any scientific data that suggests that a skull fracture of this magnitude could occur. If however, the head impact surface presented an edge or some other localised feature, if [AD] had pre-existing bone abnormalities make skull weaker, and/or if [AD]’s sister interacted with [AD] lowering the head impact scenario then the biomechanical data is much less clear and this may very well represent a reasonable injury scenario explaining [AD]’s head injury.”
“… skull fractures do occur in children of normal skeletal strength with falls from a height of 1 metre or more, but are very infrequent. Fractures as a result of falls of less than this height are extremely rare… While it is difficult to be exactly sure how significant a force occurred in this case, the combination and number of features present suggest a severe force impact being the case rather than a simple fall in a child of normal skeletal strength. In my professional experience I have encountered similar injuries occurring from falling from an upper floor onto hard ground, or as a result of a high-speed road traffic accident with ejection of the child from the car, and it is reasonable to assume a similar degree of force would be required in this case if the child has normal skeletal strength.”
“The skull bone appears normal other than where it is fractured and therefore the amount of force required to have caused this extensive fracture would have been considerable. In a child of this age accidental fracture is a possibility but unless there is a clear history of the child having fallen from a considerable height onto its head or equivalent, non-accidental injury must be considered, and is perhaps the more likely.”
“Vertebral fractures are extremely rare in young children… vertebral compression fractures are most commonly seen in this age group as the result of an underlying medical condition causing increased bone fragility resulting in fracturing with non-major trauma. The conditions include osteogenesis imperfecta and rickets… this type of injury is extremely rare in this age group in the absence of an underlying medical condition.” (Emphasis added)
“… [T]he imaging features suggested an impact or blow of significant force, incompatible with a fall from a low height such as out of bed in an infant of normal skeletal strength. Subsequent imaging studies identified multiple compression fractures of the spinal vertebrae, suggestive of a significant compressive or flexion force being applied to the spine, incompatible with a fall from a low height in a child of normal skeletal strength. Generalised vertebral osteopenia with compression fractures and mild osteopenia with metaphysical lucencies in the long bones were identified on the skeletal survey performed seven days after presentation.… This combination of findings is most commonly found to be the result of an underlying medical condition was not identified to be likely at the time. Blood tests not identify a nutritional deficiency but the reliability of the blood tests performed at the time has been called into question… If osteopenia from a medical cause was present in [AD] prior to his injuries, any assumptions as to the degree of force required to cause such skull and vertebral fractures would also therefore be unreliable.” (Emphasis added)
“… there was a more recent injury which could be minor and accidental and may not have been noticed by the parents. This led to a small fragment of the fractured parietal bone being pushed in, tearing the dura mater and leading to haemorrhage in the brain parenchyma. The more recent injury shows an acute reaction that could be anywhere from 12 - 72 hours old but is likely older than 24 hours.”
“… latent intervals do occur in head trauma; accordingly, the family’s history should not be discounted.”
“A latent interval may occur before clinical signs and symptoms of extradural haemorrhages appear. After head trauma, the victim may recover and then relax into a deepening stupor or coma when intracranial pressure rises secondary to progression of subdural bleeding and or cerebral oedema. A lucid interval may persist for longer than the average four hours, which is commonly seen with epidural haemorrhage. In fact, there is no known upper limit to the duration of a lucid interval, as the acute subdural haemorrhage merges into a chronic condition that may recur after weeks or even months.”
“… are medical explanations for all of [AD]’s findings. None of his findings, alone or in combination, are pathognomonic or highly specific for child abuse”