Dr. Meskill is a neurologist and sleep disorders specialist. He
completed his neurology residency at the Hofstra-North Shore Long Island
Jewish School of Medicine. The North Shore Long Island Jewish
healthcare system is the largest provider of patient care in New York
City, with 16 hospitals serving a population of 7 million people
spanning three boroughs of New York City and Long Island. The two
flagship hospitals of that system, North Shore University Hospital and
Long Island Jewish Medical Center, serve as the tertiary care centers
for the entire system. Training almost exclusively in those two
hospitals, Dr. Meskill was exposed to the full breadth of neurologic
disorders, ranging from critical care to outpatient cases, as well as
some of the rarest disease processes to common ailments.
After residency, Dr. Meskill switched coasts to continue his training at
Stanford University School of Medicine's Sleep Disorders fellowship
program. Founded by Dr. William Dement, Stanford's program is recognized
internationally as the birthplace of the field and is considered the
world's best academic sleep program. Dr. Meskill trained under many of
the most recognized innovators in sleep medicine, such as Dr. Dement,
considered the father of sleep medicine; Dr. Emmanuel Mignot, the
chairman of the program and the world authority on Narcolepsy; and Dr.
Christian Guilleminault, one of the world's most published authors in
the field of sleep and a major contributor to the discovery of the
physiologic mechanisms behind Obstructive Sleep Apnea. Due to Stanford's
international reputation and extensive clinical case diversity, Dr.
Meskill routinely evaluated and treated both common and rare sleep
disorders, ranging from Obstructive Sleep Apnea to Kleine-Levin
Syndrome.
Dr. Meskill treats a wide range of neurologic disorders, but like his
colleague and fellow Stanford graduate, Dr. Jerald Simmons, he spends
majority of his time evaluating and treating sleep disorders. This
includes the full spectrum of sleep-disordered breathing, from Upper
Airway Resistance Syndrome to Obstructive Sleep Apnea, as well as
nocturnal bruxism (teeth clenching/grinding), pediatric and adult
ADD/ADHD, Fibromyalgia, Chronic Fatigue Syndrome, TMJ/TMD, Narcolepsy,
Restless Legs Syndrome, Periodic Limb Movement Disorder, Epilepsy, and
many other disorders. Many of these disorders are related to or are
exacerbated by obstructive respirations during sleep. Like Dr. Simmons,
Dr. Meskill is trained in the implementation and interpretation of
esophageal manometry, which is considered the gold standard measure for
detecting sleep-disordered breathing events.
Dr. Meskill
is dedicated to improving the standard of care for sleep and neurologic
disorders in the Houston area, as well as promoting better
understanding of these fields through community education and
collaboration with primary care physicians, subspecialists, and
community dentists.
Dr. Meskill has recently published two articles in Huffington Post "Healthy Living": Episodic Excessive Sleepiness in Teens May Represent Kleine-Levin (April 09 2013) and Nocturnal Teeth Grinding May Suggest a Sleep Disorder (October 24 2013).
Information on the treatment of Snoring, Sleep Apnea, Excessive Daytime Sleepiness and other Sleep Disorders by Houston, Texas Neurologist and Sleep Medicine Specialist Jerald Simmons M.D. If you suffer from sleep problems, Dr. Simmons and his staff at CSMA can provide relief with three state of the art sleep medicine centers in the greater Houston area.
Saturday, October 26, 2013
New Study Shows That Sleep "Cleans the Brain".
A new study funded by the National Institute of Neurological Disorders and Stroke (NINDS) and published in Science shows that sleep increases the flow of cerebrospinal fluid in the brain which in turn flushes harmful waste proteins known as metabolites from the brain. Maiken Nedergaard, M.D., D.M.Sc. professor of neurosurgery at the University of Rochester and an author of the study discovered the cleaning process while studying the brains of sleeping mice: dubbed the glymphatic system, it pumps cerebral spinal fluid (CSF) through the spaces around the brain
cells, flushing waste into the circulatory system where it eventually
makes its way to the liver.
Researchers studied the system by injecting dye into the CSF of mice and then observing it as it flowed through the brain using two-photon microscopy- a new imaging technology that allows scientists to see deep inside living tissue- while simultaneously monitoring electrical brain activity. The dye flowed rapidly when the mice were either asleep or anesthetized but barely flowed at all when the same mice were awake.
The researchers also discovered that during sleep brain cells contract, increasing the space between the cells by as much as 60 percent and allowing the spinal fluid to wash more freely through the brain tissue.
One of the waste products of the brain is the protein amyloid-beta, which accumulates and forms plaques in the brains of Alzheimer’s patients. Researchers at Washington University in St. Louis had previously shown that levels of amyloid-beta in mice brains dropped during sleep because of a decrease in production of the protein.“That was an observation that inspired our work,” says Nedergaard. Research in humans has shown that levels of amyloid-beta decline during sleep, as it does in mice, but it’s not yet known if the mechanisms are the same as in mice.
References:
Maiken Nedergaard, M.D., D.M.Sc.
U.S. Department of Health and Human Services: The National Institutes of Health (NIH)
NPR: brains-sweep-themselves-clean-of-toxins-during-sleep
NBC News: good-nights-sleep-scrubs-your-brain-clean
Researchers studied the system by injecting dye into the CSF of mice and then observing it as it flowed through the brain using two-photon microscopy- a new imaging technology that allows scientists to see deep inside living tissue- while simultaneously monitoring electrical brain activity. The dye flowed rapidly when the mice were either asleep or anesthetized but barely flowed at all when the same mice were awake.
The researchers also discovered that during sleep brain cells contract, increasing the space between the cells by as much as 60 percent and allowing the spinal fluid to wash more freely through the brain tissue.
One of the waste products of the brain is the protein amyloid-beta, which accumulates and forms plaques in the brains of Alzheimer’s patients. Researchers at Washington University in St. Louis had previously shown that levels of amyloid-beta in mice brains dropped during sleep because of a decrease in production of the protein.“That was an observation that inspired our work,” says Nedergaard. Research in humans has shown that levels of amyloid-beta decline during sleep, as it does in mice, but it’s not yet known if the mechanisms are the same as in mice.
References:
Maiken Nedergaard, M.D., D.M.Sc.
U.S. Department of Health and Human Services: The National Institutes of Health (NIH)
NPR: brains-sweep-themselves-clean-of-toxins-during-sleep
NBC News: good-nights-sleep-scrubs-your-brain-clean
Monday, October 14, 2013
New study suggests that children without regular bedtimes have more behavioral problems.
Researchers from University College London recently completed a long-term study of babies born in the UK in 2000 to 2002, which regularly surveyed parents about sleep and behavioral problems. After analyzing data for over 10,000 children they discovered that children without a regular bedtime tended to
score worse on a measure of behavior problems such as acting unhappy,
getting into fights and being inconsiderate.
In three year olds, close to 20 percent of parents said their child sometimes or never went to bed at a consistent time. That fell to 9 percent among five year olds and 8 percent for seven year olds: at seven those without a regular bedtime scored an 8.5, on average, based on their mothers' reports. That compared to scores between 6.3 and 6.9 for kids who had a consistent bedtime before 9 p.m.
The assessment is scored from 0 to 40, with higher scores indicating more problems. Researchers said one to two points represents a small or moderate difference, but is "meaningful."
Children with attention-deficit/hyperactivity disorder or an autism spectrum disorder were not included in the study. Teachers of seven year olds were also asked to report on their, and gave worse scores to children who didn't have a regular bedtime. Although the researchers accounted for other parent characteristics and family habits, it's still possible kids' behavior problems weren't directly caused by irregular bedtimes.
Nonetheless, the effects that a regular sleep schedule have on your "biological clock" have been well documented. Yvonne Kelly, who led the study says that "If you are constantly changing the amounts of sleep you get or the different times you go to bed, it's likely to mess up your body clock. That has all sorts of impacts on how your body is able to work the following day."
Kids whose parents said they had non-regular bedtimes on every survey growing up had the most behavioral issues, but when children went from having a non-regular bedtime to a regular bedtime on the following survey their behavior scores improved.
References:
Pediatrics (online October 14, 2013)
Non-regular bedtimes tied to kids' behavior problems (Reuters)
In three year olds, close to 20 percent of parents said their child sometimes or never went to bed at a consistent time. That fell to 9 percent among five year olds and 8 percent for seven year olds: at seven those without a regular bedtime scored an 8.5, on average, based on their mothers' reports. That compared to scores between 6.3 and 6.9 for kids who had a consistent bedtime before 9 p.m.
The assessment is scored from 0 to 40, with higher scores indicating more problems. Researchers said one to two points represents a small or moderate difference, but is "meaningful."
Children with attention-deficit/hyperactivity disorder or an autism spectrum disorder were not included in the study. Teachers of seven year olds were also asked to report on their, and gave worse scores to children who didn't have a regular bedtime. Although the researchers accounted for other parent characteristics and family habits, it's still possible kids' behavior problems weren't directly caused by irregular bedtimes.
Nonetheless, the effects that a regular sleep schedule have on your "biological clock" have been well documented. Yvonne Kelly, who led the study says that "If you are constantly changing the amounts of sleep you get or the different times you go to bed, it's likely to mess up your body clock. That has all sorts of impacts on how your body is able to work the following day."
Kids whose parents said they had non-regular bedtimes on every survey growing up had the most behavioral issues, but when children went from having a non-regular bedtime to a regular bedtime on the following survey their behavior scores improved.
References:
Pediatrics (online October 14, 2013)
Non-regular bedtimes tied to kids' behavior problems (Reuters)
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