“I would go further and announce loud and clear that the standard of proof in finding the facts necessary to establish the threshold under section 31(2) or the welfare considerations in section 1 of the 1989 Act is the simple balance of probabilities, neither more nor less. Neither the seriousness of the allegation nor the seriousness of the consequences should make any difference to the standard of proof to be applied in determining the facts. The inherent probabilities are simply something to be taken into account, where relevant, in deciding where the truth lies.”
“As already stated when the three elements of the triad coincide for some years conventional medical opinion has been that this is diagnostic of NAHI. Typically the brain is found to be encephalopathic; bleeding is found in the subdural space between the dura and the arachnoid subdural haemorrhages; and there are retinal haemorrhages. There may also be other pathological signs such as subarachnoid bleeding and injuries at the cranio-cervical junction. Further, there may be injuries to nerve tissue (axonal injuries) and external signs of broken bones, bruising and other obvious injuries such as extradural oedema (bruising). Determining these findings requires medical experts from a number of different disciplines interpreting often very small signs within the complex structures of an infant's brain and surrounding tissue. The mechanism for these injuries is said to be the shaking of the infant, with or without impact on a solid surface, which moves the brain within the skull damaging the brain and shearing the bridging veins between the dura and the arachnoid. The shaking may also cause retinal haemorrhages. In the sense that the explanation for the triad is said to be caused by shaking and/or impact it also is a unified hypothesis, albeit that each element is said to be caused individually by trauma. The triad of injuries becomes central to a diagnosis of NAHI when there are no other signs or symptoms of trauma such as bruises or fractures.”
‘Our observations in the present series indicate that, in the immature brain, hypoxia both alone and in combination with infection is sufficient to activate the pathophysiological cascade which culminates in altered vascular permeability and extravasation of blood within and under the dura. In the presence of brain swelling and raised intracranial pressure, vascular fragility and bleeding would be exacerbated by additional haemodynamic forces such as venous hypertension, and the effects of both sustained systemic arterial hypertension and episodic surges in blood pressure.’
“...involves an examination of the reasons given for his opinions and... the extent to which they are supported by the evidence.”
“...the internal consistency and logic of his evidence; his precision and accuracy of thought... the extent to which a witness has conceived an opinion and is reluctant to re-examine it in light of later evidence... whether or not a witness is biased or lacks independence.”
“In a child case involving complex and serious injuries, the expert evidence has to be carefully analysed, fitted into the factual matrix and measured against assessments of witness credibility. To achieve justice for parents and for children, medical evidence given in court is tested fully by the advocates and family judges subject to rigorous analysis.”
“The court invariably needs and invariably depends upon the help it receives from experts in this field. The expert advises, but the judge decides. The judge decides on the evidence. If there is nothing before the court, no facts or no circumstances shown to the court which throw doubt on the expert evidence, then if that is all with which the court is left, the court must accept it.”
“The moral which I draw from this case and will never forget is that a hypothesis in relation to the causation of a child’s injuries must not be dismissed only because such causation would be highly unusual and that, where his history contains a demonstrably rare feature, the possible nexus between that feature and his injuries must be the subject of specialist appraisal at an early stage.”
“Such a diagnosis is a correlation of different features and though it is tempting to take each part separately, you have to take them collectively for a proper diagnosis/conclusion.”
“Although you cannot see the difference between a re-bleed and trauma, we are looking the subdural haemorrhage down the microscope. If you take everything together, particularly the eyes and the history, you can conclude that, even if the subdural haemorrhage was a re-bleed, then it related to trauma/movement of the brain within the skull.”
“In the presence of subdural haemorrhages, if it was going to be said the primary event was a cardiac event there would have to be an explanation for the subdural haemorrhages.”
“Subdural haemorrhages were associated with non-accidental head injuries and seen in any child of this age would make you concerned as to the possibility of a non-accidental head injury.”
“Limited view, but there appears to be two haemorrhages in the left fundus close to the disc (pupils only about 3mm dilated).”
“He has extensive bilateral multi-layer haemorrhages. These are most numerous in the posterior pole of each retina. In excess of 10 deep retinal haemorrhages. In excess of 50 superficial haemorrhages. In excess of 5 subhyaloid haemorrhages - each eye pre-retina between the vitreous and the retina. In the absence of metabolic or clotting, these findings are consistent with raised venous pressure caused by CPR or with shaking injury.”
“The eyes showed widespread bleeding in, and associated with, the retina and the optic nerve sheath. In particular there were widespread retinal haemorrhages in the eyes, more so in the left than the right. The haemorrhages involved, primarily, nerve fibre layer, ganglion cell layer haemorrhage, especially posteriorly. There were a number of microscopic foci and intra-retinal haemorrhages involving the layers extending up to the periphery of the retinas in both eyes. Posteriorly there were so-called pre-retinal haemorrhage, especially in the left eye and there was vitreous detachment with sub-hyaloid haemorrhage present. In the left eye a small amount of blood was present in the anterior chamber. The haemorrhage was most extensive in the subdural location, although there was bleeding in the sheath and bleeding in the orbital tissues adjacent to the optic nerve. The retinal tissues and the tissue of the optic nerve heads showed secondary oedema.”
“you cannot rule out short QT, but it is very unlikely to be the case”
“The evidence is that there is no recognised association. There is a very small chance that it is Short QT syndrome. I was extremely sceptical anyway on the cardiac evidence and you cannot explain retinal haemorrhage in connection with Short QT, so that makes me even more doubtful...I cannot rule it out, it is very rare and with the other findings at post-mortem, which I cannot explain with it, it would make me doubt very much the presence of this condition.”
“The baby was given a feed of powdered milk at about 1700hrs and placed in a bouncer in the living room where he slept. At about 2030hrs the father came home on a break and checked on the baby who was okay. The baby then started to choke whilst asleep in the bouncer. The mother, who does not speak any English, had to call her husband to telephone for an ambulance.”
“I have made a lot of statements to a variety of people relating to Z’s collapse on 29th October ... I don’t think it would help to go through each one in this statement, but I know my account of Z collapsing at home is not accepted so it is important that I am clear about what I say happened and what I reported as happening.”
“I am clear that Z seemed generally okay during the day and things went wrong from when he woke up after his nap at 8.15/8.30pm. He had his last feed at 6.30pm and he had gone to sleep in his baby bouncer in the front room with no problems after being winded... Z cried when he awoke, but that was not unusual. However, it was not normal for him to continue crying, as he then did, after being picked up and comforted. His cries got more persistent. I tried the usual things to sooth him. I winded him over my shoulder. I walked around the room with him. I tried to give him milk, but he resisted by moving his mouth from the teat and pushing it out of his mouth. He would not stop crying – not little ones, but big ones with tears in his eyes. He made noises as if he was trying to vomit or bring something up, but nothing did. He was crying and was clearly having difficulty in breathing. His colour changed, it became paler.”
“What has been seen overall is very occasional and unilateral haemorrhages with a pattern of bilateral haemorrhages in multi-levels only being seen within the cohort which represents unequivocal trauma. So far as CPR is concerned there has been one observation of retinal haemorrhages after CPR, but that was a single isolated unilateral haemorrhage. Similarly cases of hypoxia, following respiratory failure, following infection has only exhibited isolated unilateral retinal haemorrhages.”
“I think it is generally agreed that from the overall body of published literature (subject to selection bias) is that trauma outside of the birth related haemorrhage period is the most commonly seen cause of extensive retinal haemorrhages and combined optic nerve haemorrhages...In my experience, in most instances where there is retinal haemorrhages, I see optic nerve haemorrhage so I think the two are closely linked together in this syndrome with swollen brain, subdural haemorrhage within the intracranial cavity and retinal haemorrhages.”
“The history is the most important information from which to form a diagnosis and mother’s description of Z trying to vomit was a very reasonable description of what could happen in a choke. Baby becomes hypoxic, starts to bleed, becomes coagulopathic and the bleeding gets worse.”
“If it was suggested that only minimal trauma was necessary for there to be a fresh bleed, the evidence in the eyes would be against minimal trauma”
“To examine the brain and spinal cord is very complex and you have to look at all areas and correlate very carefully. So an out of focus photograph of an area I cannot properly identify is wholly unacceptable. I would need to see the brain, the cord and the cranial nerves.”
“They come in all the defence cases, so you do not realise that they are in such a minority.”
“The triad of injuries becomes central to a diagnosis of non-accidental injury where there are no other signs or symptoms of trauma, such as bruises or fractures.”
“Throw light into corners that were then dark and that the hypothesis of Dr. Geddes may yet be proven to be in all, or in part, correct.”
“It is my opinion that the presence of the chronic subdural haemorrhage is also very significant. It is possible that this caused a seizure and collapse, or caused this baby to choke and impaired the baby’s normal protective reflexes. There are well described cases in the literature of babies who have choked and presented with subdural and retinal haemorrhages (Hilton 2004, Martinez-Lage 2006).”
“I am not given enough evidence to know which was more important. We know shaking needs to be extremely violent and it is probably beyond the ability of a human, so it is unlikely to have been shaking. So we have to work on the basis that it is the choking that was responsible. “When one steps back and is logical”, Dr. Squier went on to say “we must assume that the parent was trying to rescue from a choking episode and that that may be the basis of the subdural haemorrhages and retinal haemorrhages…… I think it was a wrong decision placing the child in foster care and an unfair decision was probably made, as the result in this case of sweeping aside an explanation of choking” 231. Dr. Squier made this assumption based only on the bald facts outlined above. It was put to Dr Squier that had any third party who read her report but had not had access to the paper itself y would not have known that shaking was an essential element of the case. Dr. Squier, seemed oblivious to significance of the fact that any reader of her report would have been without that key fact; namely that it was common ground that the child had been shaken rather she replied “I try to present this evidence that subdural haemorrhages results from choking, a shake is noted but on any logical analysis that shake could not have caused it”. “Benign shaken baby syndrome. Case report” by Martinez-Lage. 232. The facts in the second case relied on by Dr. Squier were that a three and a half month old baby was admitted to intensive care, having experienced an acute episode of loss of consciousness. The parents said that the child had choked when eating. One of the parents applied the Heimlich manoeuvre in an attempt to dislodge the food and in doing so they acknowledged shook the baby forcefully. The author quotes: “We have identified this type of injury as “benign shaken baby syndrome” to refer to the unintentional mechanism of the injury, rather than the severity of the cerebral damage”
“Dr. Till addressed this issue very well and she was convinced upon recovery that this QT interval remained short, and she actually raised this issue. The only thing that obviously discouraged her was the presence of a retinal haemorrhage.” 252. This is not an accurate reflection of Dr. Till’s evidence. Dr. Till was clear when it was put to her, that she has at no stage been “convinced” that the QT intervals were short upon resuscitation. She said very firmly in oral evidence: “It (the note of the experts meeting) says I was convinced. I am not convinced. There is a very small chance that it is QT syndrome. I was extremely sceptical anyway on the cardiac evidence and cannot explain retinal haemorrhage in conjunction with the QT.” 253. To return to Dr. Cohen’s oral evidence. When it was put to Dr. Cohen again that Dr. Till did not think short QT was a strong possibility she said, somewhat ungraciously: “I’m leaving it to her, I cannot go against her.” 254. Cases involving an allegation of shaking are, inevitably, and necessarily, multi-disciplinary in their approach. It is therefore crucial that each expert keeps within the bounds of their own expertise and works in a collaborative way with the other experts in order to see if a diagnosis/cause can be reached. This means that each expert must defer to the expertise of others more qualified to comment on certain areas such deferral must be made not grudgingly or reluctantly, but in ready acknowledgment of the greater expertise and knowledge that the other specialists may have in relation to certain aspects of the case. 255. Dr. Squier, I found to be very reluctant to defer to experts and where, in the witness box, she was driven to do so it was with the utmost reluctance, one was left with the sense that she said it for form’s sake, and did not really believe it to be true. 256. The most striking of a number of examples of this was in relation to the history of Z’s presentation given by the mother. Dr. Squier said that it was not necessary to be a clinician to assess the description given by the mother of the so called choke. She accepted that in terms of actual experience of such an event she had none. She understood the view of Dr. Peters that Z had been crying, and that the noises he was described as having made were such as one would expect to hear after a traumatic insult. But even then, not only did she decline to defer, but she did not accept that Dr. Peters was better placed to comment than she. Rather, she said, that she would defer to any direct observation of the baby, but not to an assessment in the round. She said, in such circumstances even an ophthalmologist could express a view. “He (Dr Peters) is a paediatrician and if he has more information I accept it, but there is not much a paediatrician can see or hear after the event.” 257. The frustration of her professional colleagues at what was perceived as Dr. Squier’s persistence in straying out of her area of expertise was revealed by Dr. Cary during the course of his oral evidence. Having described the mechanics of choking and specifically deferred to Dr. Peters on the issue as to whether or not, such a choke had in fact occurred , Dr Cary concluded by somewhat caustically commenting that “larynx spasm has nothing to do with neuropathology”. 258. In order to provide an explanation for all the clinical features found in Z’s death, both Dr. Squier and Dr. Cohen have had to provide an explanation for the retinal haemorrhages. Dr. Cohen appropriately and properly conceded that she would not have expected to see such extensive haemorrhages as a result of CPR. Both Dr Cohen and Dr Squier, speculated that, as the eye is part of the central nervous system, it must therefore behave in the same way as the brain. This hypothesis would allow reperfusion which had been put forward as one possible theory for the cause for the subdural haemorrhages, equally to explain the presence of the retinal haemorrhages. Such comments made by Drs Cohen and Squier are significantly out of their respective areas of expertise,. Aside from that to make, (as Dr. Squier termed it in her written material), such an “assumption” as a means of plugging a gap in their hypothesis, lacked scientific rigour and it is a matter of concern to see any expert doing such a thing. (iii) Factual accuracy 259. These cases are difficult, distressing and complex. I understand that Dr. Squier and Dr. Cohen have strong views about Shaken Baby Syndrome and the triad. They are each to be applauded for their dedication to the cause of research in this controversial area and it is to their individual credit that they are undeterred by being, as they see it, voices in the wilderness. 260. However, it is of the utmost importance that all experts, whether mainstream or not, read all the papers and where they have to rely on raw data that they check its veracity and accuracy in the medical notes. A trial is first and foremost, a forensic exercise and fairness to the parties demands, as a basic premise, that the experts will be accurate in their use of the source material. Head Circumference 261. When Z was born he had a head circumference on the 25th centile. When his head was measured again on22nd August 2007 by the health visitor, his head circumference had increased to the 75th centile. This meant it had crossed 3 centile lines and consequently it was planned to review his head circumference in the immediate future. This was done on18th September 2007 . It was again on the 75th centile. 262. When Z’s head circumference was checked on the afternoon of30th October 2007 , by which time he was in Addenbrookes Hospital, his head circumference was slightly above the 91st centile. 263. Dr. Peters, for the purposes of these proceedings, took the measurements from the medical records and plotted his own charts. His evidence was that the child was born small; (his weight also being below the 25th centile) and that the child and his head had grown in proportion. He said in evidence that the centile chart showed the sign of a healthy child catching up on post-natal growth. There was and nothing wrong with Z. 264. Mr. Peter Richards for his report, also took the weights and measurements from the medical records. Mr. Richards did, however unfortunately , make an error and, in the body of his report. He referred to the measurement of 22nd August as being on the 91st centile as opposed to the 75th centile. This was a simple misreading error on his part. 265. Dr. Cohen set out in her oral evidence those features upon which she had placed significance in reaching her conclusion; they included what she referred to as “a large head”
“It appears from the statement of Mr. Richards that this baby may have had a pre-existing intracranial bleed because the head circumference was growing abnormally fast in the first few months of life. This must be considered as a factor in considering the cause for collapse and the baby’s response to hypoxia.” 272. Later in the report she went on to say: “The clinical history of Z’s’s case [sic] indicates that his head circumference was growing faster than expected; it rose from the 25th to the 91st and then returned to the 75th centile by two months of life. This may be an indication that a chronic subdural bleeding was present and was a fluid collection of fluctuating volume during this time.” 273. In her analysis of why she felt choking to be the likely cause of Z’s collapse she said in her report: “It is my opinion that the presence of the chronic subdural haemorrhage is also very significant. It is possible that this caused a seizure and collapse which caused this baby to choke and impaired the baby’s normal protective reflexes.” 274. It was in this context that Dr. Squier went on to say: “There are well described cases in the literature of babies who have choked and presented with subdural and retinal haemorrhages.” 275. Which assertion has been dealt with elsewhere in this judgment. 276. Finally, Dr. Squier went on to say: “In the presence of chronic subdural membrane, small vessels are damaged by hypoxia and they may bleed particularly following resuscitation which leads to reperfusion injury. I assume that the vessels of the retina, being similar to the vessels of the brain, would be subject to similar damage by hypoxia and would also bleed on reperfusion.” 277. It can be seen, therefore, that Dr. Squier was building her theory, in part anyway, from the basis that Z had an abnormal head circumference and that this was evidence that he had a chronic, as opposed to old, subdural haemorrhage; (a chronic subdural haemorrhage being one which did not disperse, but continued to develop leading to an increase in the head size). This chronic subdural haemorrhage she regarded as being very significant as having either caused a seizure and collapse, or a choke resulting from the chronic subdural haemorrhage having impaired the baby’s normal protective reflexes and allowed him to choke even though he was not being fed at the time. 278. In oral evidence, Dr. Squier reiterated that one of the factors she takes into consideration is that there is a fluid collection which has led to swelling. She said, once again, that she regarded it as “very significant” that the head grew abnormally fast. She too was also told of Dr. Richards’ error. She, unlike Dr. Cohen, suggested that she had in fact looked at the records, but accepted that the evidence of the head circumference is in fact entirely neutral. Even having made that concession, Dr. Squier again said: “Chronic subdurals cause some babies to be unwell, clearly irritable and there may be an association between old subdural haemorrhages and vulnerability to choking. The physical signs? no evidence just a reflux that did not work. The sound effect I think is consistent.” 279. In the present case, Mr. Richards made a simple error as he read the weight off a centile chart (from the source material). Thereafter, Dr. Cohen and Dr. Squier failed to check that data, but simply took it from Mr. Richard’s report. As a consequence, they each regarded the erroneous readings as “highly significant” based, as they were, on faulty data. Had Dr. Peters, as part of his preparation, not gone back to the source documents and prepared his own fresh centile chart, the error may not have come to light. Pink frothy sputum 280. The error in relation to Z’s head circumference was not the only serious factual error made by Dr. Squier. In her written material, Dr. Squier recorded that the paramedic at the scene had noted “pink frothy sputum running out of Z’s nostrils”