Sentences with phrase «hypoxic brain»

Personal injury cases related to hypoxic brain injuries are often associated with birth injuries or other forms of medical negligence, as well as near - drowning incidents.
Hypoxic brain injuries are caused by lack of oxygen (hypoxia) to the brain.
Each Neinstein medical malpractice lawyer has experience litigating a wide variety of malpractice cases, including surgical negligence, cancer, cardiac arrest, sepsis, hypoxic brain injuries, acquired brain injuries, tPA administration, atrial fibrillation, medication or nursing errors, and birthing injuries.
A failure to monitor or respond to a change in condition can lead to a stroke, a hypoxic brain injury, or other disabling conditions.
-- Birthing injuries — Acquired brain injuries — tPA administration — Atrial fibrillation — Surgical negligence — Cardiac arrest — Sepsis — Hypoxic brain injuries — Breast, colon, lung, and prostate cancer — Failure to monitor — Medication errors, and — Nursing errors
Neinstein's lawyers have experience with a wide variety of malpractice suits, including those regarding nursing errors, cardiac arrest, medication errors, hypoxic brain injuries, sepsis, surgical negligence, atrial fibrillation, tPA administration, acquired brain injuries, and a number of different forms of cancer.
The resulting injury led to the baby undergoing a cardiac arrest, which developed into a devastating hypoxic brain injury as a consequence of dangerously low oxygen levels.
Will victims who suffer hypoxic brain injury in Louisville have problems processing information?
Hypoxic brain injuries occur when the brain only gets a small amount of oxygen that is not enough for the brain to function.
When a baby is obstructed in labour at home, or born with hypoxic brain injury, the delay in transferring to a tertiary hospital may result in permanent severe disability that will persist for the rest of that person's life.
When compared with babies born vaginally in the hospital, babies born at homebirth had a rate of hypoxic brain damage 32 times higher, suggesting that C - sections dramatically decreased the risk of hypoxic brain injury.
Michelle — if you're not scare by a 3 — 4X chance of your baby dying (and who knows how many more times risk of hypoxic brain damage), what made you choose hospital birth?
Women do not understand that hypoxic brain damage can be a random occurrence; women believe that a bad obstetric outcome must be someone's fault.

Not exact matches

Landon was diagnosed with hypernatremic dehydration (a high concentration of sodium in the blood), cardiac arrest from hypovolemic shock (a condition where the liquid portion of the blood is dangerously low), and hypoxic - ischemic encephalopathy (a brain injury caused by oxygen deprivation).
That's more than 5X the rate of 0.4 / 1000 found in a 2009 report on birth in South Australia.In addition, 2 babies suffered hypoxic ischemic encephalopathy (brain damage due to lack of oxygen).
Some autopsy data shows that infants of smokers have signs of established hypoxic - ischemic cellular injury in the brain and the heart which probably occurred in antenatal life, may have been caused by suboptimal placental function and may have been sub-clinical, but if the baby continues to be in a vulnerable environment exposed to post-natal passive smoking, this could affect autonomic nervous system function and lead to poor temperature control, and poor heart rate and respiration control.
This leads to a suggestion that in utero nicotine exposure causes brain stem anomalies that results in their hypoxic arousal mechanisms not working properly.
Landon died of hypoxic - ischemic encephalopathy, or brain injury caused by oxygen deprivation; cardiac arrest; and hypernatremic dehydration, according to records from the Los Angeles County coroner.
Addition of vitamin D to hypothermia and NAC following neonatal hypoxic ischemia improves functional outcomes and preserves brain volume in male rodents, report researchers at the Medical University of South Carolina (MUSC) in the September 1, 2017 issue of Neuropharmacology.
Overall, the research found that the most common type of condition that contributed to brain injuries was damage caused by lack of oxygen to the brain, called hypoxic ischaemic encephalopathy; this is seen mainly in full term babies.
They play a pivotal role in regulating synaptic transmission, modulating excitotoxicity responsible for much of the neuronal damage caused by hypoxic insult in the brain [37], and are expressed in retinal photoreceptors, horizontal cells, and bipolar cells as well as the amacrine and ganglion cells of the inner retina [38 — 41].
Several studies have investigated the genomic response of the brain to hypoxic preconditioning.
Interestingly, it has been suggested that the initial signal responsible for triggering the development of hypoxic preconditioning in the brain involves the opening of ATP - sensitive potassium channels via the activation of adenosine A1 receptors [69].
But a different result was unexpected: A switch to hypoxic conditions seemed to actually reverse existing brain damage.
Importantly, NSCs can target breast cancer metastasis in the brain [9] and can penetrate deep and hypoxic regions of solid tumors [7].
Acquired brain injuries can be broken down into two groups: anoxic and hypoxic.
Hypoxic - anoxic injury (HAI) is a serious and potentially debilitating injury caused when the brain is deprived of oxygen.
ABI may be also caused by nearly drowning, hypoxic or anoxic brain injury, tumors, neurotoxins, substance abuse, illness, infection, electric shock, or lightning strike.
Hypoxic - ischemic encephalopathy is a serious condition that occurs when a baby's brain gets insufficient oxygen.
Hypoxic Ischemic Encephalopathy (HIE), brain damage that can result from the cutting off of oxygen to the brain as a whole
However, if the asphyxia persists the baby can develop hypoxic - ischemic encephalopathy, a type of brain damage that destroys tissue in the cerebral motor cortex and other areas of the brain.
Hypoxic ischemic encephalopathy (HIE) is a condition which causes the newborn baby's brain cells to die due to lack of oxygen supply, causing permanent brain damage.
Such asphyxia injuries include cerebral palsy and HIE (Hypoxic Ischemic Encephalopathy), both of which are brain injuries caused by a lack of oxygen to the fetus.
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