Showing posts with label drowning. Show all posts
Showing posts with label drowning. Show all posts

Tuesday, October 27, 2015

Health News:Toxins remain in your clothes ♦ WHO: Eating processed meats increases chances of developing certain cancers ♦ Spotting the earliest signs of type 1 diabetic kidney disease

WHO: Eating processed meats increases chances of developing certain cancers After reviewing an assessment of the best available scientific evidence, the World Health Organization (WHO) has concluded that the consumption of processed meats can increase a person’s chances of developing certain cancers. WHO, the Geneva-based public health arm of the United Nations, was following a recommendation from its International Agency for Research on Cancer (IARC)
Depression too often reduced to a checklist of symptoms How can you tell if someone is depressed? The Diagnostic and Statistical Manual of Mental Disorders (DSM) -- the 'bible' of psychiatry -- diagnoses depression when patients tick off a certain number of symptoms on the DSM checklist. A large-scale quantitative study now shows that some symptoms play a much bigger role than others in driving depression, and that the symptoms listed in DSM may not be the most useful ones
Toxins remain in your clothes Thousands of chemicals are used in clothes manufacturing. Researchers have examined if there are chemicals in the clothes we buy as well. Several substances related to health risks were identified and not even organic cotton was a guarantee for non-toxic textiles
Spotting the earliest signs of type 1 diabetic kidney disease In an effort to pinpoint the earliest signs of diabetic kidney disease, researchers are leading a multi-institutional international effort dedicated to finding a new breed of disease indicators.
Blackouts and near drownings may signal sudden death risk Blackouts and near drowning events may signal an increased risk of sudden death, reveals new research. Such events point to long QT syndrome, a genetic heart condition that can be undetected or misdiagnosed as epilepsy or a panic attack.





Thursday, May 21, 2015

Drowning Related to Underwater Breath-Holding Behaviors

Christopher Boyd1; Amanda Levy, MSPH1; Trevor McProud, MS1; Lilly Huang, PE1; Eli Raneses, MPH1; Carolyn Olson, MPH1
Drowning is an important cause of preventable injury and mortality, ranking fifth among leading causes of unintentional injury death in the United States. In 2011, two healthy young men died in a drowning incident at a New York City (NYC)–regulated swimming facility. The men became unconscious underwater after performing intentional hyperventilation before submersion. The phenomenon of healthy swimmers becoming unconscious underwater has been described elsewhere as hypoxic blackout.
Prompted by this incident, the NYC Department of Health and Mental Hygiene (DOHMH) in collaboration with the New York State Department of Health (SDOH) conducted a case review of New York state fatal and nonfatal drownings reported during 1988–2011 to investigate similar behaviors in other incidents. DOHMH identified 16 cases, three in NYC, with a consistent set of voluntary behaviors associated with unintentional drowning and designated this class of behaviors as "dangerous underwater breath-holding behaviors" (DUBBs). For this small sample, the frequency of different DUBBs varied by age and swimming level, and practicing more than one DUBB increased the risk for fatality.
This research contributes to the literature on drowning by focusing on contributing behaviors rather than drowning outcomes. NYC recently enacted public health education and regulations that discourage DUBBs; these interventions have the potential to effectively reduce unintentional drowning related to these behaviors and could be considered by other municipalities and jurisdictions.
Drownings associated with DUBBs can occur at any water depth and be caused by many disparate factors. A precise definition describes the condition as "breath-hold blackout," referring to the behavior rather than the outcome . . Hyperventilation or breath-holding before diving or swimming decreases the body's stores of CO2 and partial pressure of carbon dioxide (PCO2), delaying the cerebral response to come to the surface to breathe. The "blackout" is caused by the drop in partial pressure of oxygen (PO2) in arterial blood gas, resulting in hypoxia and loss of consciousness underwater.
To identify incidents for this case series, the following list of three DUBBs was generated through a review of the available literature, expert opinion, and behaviors documented in identified cases
1) intentional hyperventilation before or during submergence/swimming
2) static apnea (i.e., when a swimmer submerges and attempts breath-holding for as long as possible, including "breath-holding games" with a partner, often while staying motionless)
3) hypoxic training (i.e., prolonged underwater distance swimming or extended breath-hold intervals, which might be supervised or unsupervised).
Case information was developed by DOHMH from a review of incidents occurring at regulated swimming facilities using an SDOH database and available documentation from incident reports, lifeguard reports, police reports, inspection reports, emergency medical services reports, and hospital and medical examiner reports. Search terms used to identify fatal and nonfatal unintentional drowning cases based on the swimmer's behavior included "repeated breath-holding," "breath-holding games/competition," "prolonged/extended submersion," "under water distance swimming," and "hyperventilation."
DOHMH developed a case definition for DUBB-related incidents as those in which 1) fatal or nonfatal drowning followed one or more of the three DUBBs, and 2) the swimmer was otherwise not impaired and had no known preexisting health condition.
Six of 22 identified cases were excluded because of existing medical conditions or substance use, resulting in a case series of 16 DUBB-related drownings. Swimming ability was characterized as beginner, good, advanced, or unknown based on SDOH drowning investigation guidelines.
Behavior Types
The following cases illustrate each DUBB as a contributing cause of unintentional drowning injury.
Intentional hyperventilation. Two advanced-level, adult, male swimmers in good health were performing strenuous exercises to prepare for an advanced military fitness test. After alternating between push-ups and swimming laps, the swimmers began intentional hyperventilation and submersion breath-control exercises. Minutes later, both swimmers were found submerged underwater and not moving. Cardiopulmonary resuscitation was administered by lifeguards until emergency medical services personnel arrived. Both men were pronounced dead at the hospital.
Static apnea. A teenage, male swimmer in good health with unknown swimming experience was participating in breath-holding contests and horseplay with friends. The swimmer fell unconscious underwater and his friends alerted lifeguards. Lifeguards were able to resuscitate him.
Hypoxic training. An advanced-level, teenage, male swimmer with no preexisting health conditions and experience working as a lifeguard was training for his goal to join the U.S. Navy Seals. He was observed by pool staff performing breath-holding exercises and underwater lap swimming. He repeatedly submerged himself for extended periods of time, until it was noticed that he was unconscious. Efforts were made by the lifeguards and emergency medical services personnel to resuscitate him. He was pronounced dead at the hospital.
Summary of 16 cases
The 16 DUBB cases in New York State during 1988–2011 involved 16 persons, 15 incidents (one of which included two persons), and four fatalities. Swimmers were aged 7–47 years, with an average age of 17 years (Table). Similar to most recorded drowning cases nationwide, the majority of the persons involved were male (n = 13). The most commonly reported DUBB behavior was static apnea (n = six). Four cases were associated with hypoxic training, three cases with intentional hyperventilation, and two fatal cases had a combination of both intentional hyperventilation and hypoxic training behaviors. In all four fatalities, the decedents were aged 17–22 years, known to be advanced to expert swimmers, and engaged in intentional hyperventilation. As illustrated in the static apnea incident described previously, half of decedents engaged in a DUBB coactivity (multiple behaviors) with intentional hyperventilation and underwater lap swimming.
DUBBs differed by both swimming experience and age group. Swimming experience was known for 14 cases. All intentional hyperventilation cases and half of all DUBB incidents involved advanced-level swimmers. Among swimmers with known experience (all aged 7–24 years), more experienced swimmers (n = eight) engaged in hypoxic training, intentional hyperventilation or both, whereas less experienced swimmers engaged primarily in static apnea.
Of the 16 drownings, 15 occurred at a pool facility: seven outdoors, seven indoors, and one in a wave pool. The remaining incident occurred in a non regulated stream. More than half of all DUBB incidents occurred when more than one swimmer was in the pool with the affected swimmer at the time of the incident.
All but one of the incidents at the 15 regulated facilities occurred with a lifeguard on duty and involved a lifeguard rescue attempt. The exception was an incident during which a member of an advanced high school swimming program was practicing hypoxic behavior at his school's private facility before hours of operation.
This case series highlights a group of voluntary, dangerous behaviors that contributed to a number of unintentional drownings in New York State. The findings contribute to drowning prevention research by shifting focus from final outcomes to modifiable behavioral risk factors. DUBBs can lead to drowning in otherwise healthy persons, so incidence of this type of drowning can be prevented with interventions such as improved supervision, regulation, and public education.
Since 2014, the NYC Health Code requires the posting of prevention-focused signage at permitted bathing establishments, with warnings that intentional hyperventilation and competitive, repetitive, or prolonged underwater swimming or breath-holding can be dangerous. The code also requires that facilities post a pictorial warning sign aimed at younger swimmers, and it expands pool operator responsibilities to include discouraging such DUBBs and updating their site safety plans to prohibit DUBBs unless explicitly permitted under enhanced supervision. Future intervention activities will include educational efforts to inform parents, coaches, safety officials, and swimmers about the risks for DUBBs.
The findings in this report are subject to at least two limitations. First, because this study used incident reports as surveillance data, changes in definitions and coding conventions during the 20-year timeframe might have led to some missed cases. Second, cases might have been missed because behaviors leading to drownings are frequently underreported. Fifteen of the 16 incidents in this case study occurred at bathing facilities that require an operating permit from DOHMH, and all had witnesses who reported pre drowning behaviors. However, research suggests that more than half of drowning incidents are not witnessed A previous case study found that swimmers who engage in the most dangerous DUBB (intentional hyperventilation) might do so regularly suggesting the possibility of unobserved incidents.
1Division of Environmental Health, New York City Department of Health and Mental Hygiene.
Corresponding author: Amanda Levy, alevy3@health.nyc.gov, 347-396-6139.

Saturday, May 24, 2014

Prevent Recreational Water Illness and Injury

Photo: Young girls playing in pool

Having fun while you swim this summer means knowing how to prevent recreational water illnesses (RWIs) and injuries. Learn how to stay healthy and safe while enjoying the water!
Swimming is one of the most popular sports activities in the United States1. Although swimming is a physical activity that offers many health benefits, pools and other recreational water venues are also places where germs can be spread and injuries can happen.

Prevent Illnesses

Recreational water illnesses (RWIs) are caused by germs spread by swallowing, breathing in mists or aerosols of, or having contact with contaminated water in swimming pools, hot tubs/spas, interactive fountains, lakes, rivers, or oceans.
Contrary to popular belief, chlorine and other disinfectants do not kill germs instantly. While most germs are killed within minutes, Crypto (short for Cryptosporidium) can live for days. Before they are killed, these germs can cause RWIs, such as gastrointestinal, skin, ear, respiratory, eye, neurologic, and wound infections. The most commonly reported RWI is diarrhea caused by germs such as Crypto, Giardia, Shigella, norovirus and E. coli O157:H7. Swallowing just a mouthful of water that contains these germs can make you sick.
We all share the water we swim in, and we each need to do our part to keep ourselves, our families, and our friends healthy. To help protect yourself and loved ones from germs, here are a few simple and effective steps all swimmers can take each time we swim:
Keep the poop, germs, and pee out of the water.
  • Don't swim when you have diarrhea.
  • Shower with soap before you start swimming.
    • Take a rinse shower before you get back into the water.
  • Take bathroom breaks every 60 minutes.
  • Wash your hands after using the toilet or changing diapers.
Check the free chlorine level and pH before getting into the water.
  • Pools: Proper chlorine (1–3 mg/L or parts per million [ppm]) and pH (7.2–7.8) levels maximize germ-killing power.
  • Hot tubs/spas: Proper disinfectant level (chlorine [2–4 parts per million or ppm]) or bromine [4–6 ppm]) and pH (7.2–7.8) maximize germ-killing power.
  • Most superstores, hardware stores, and pool-supply stores sell pool test strips.
    • Free pool test strips: Go to the Water Quality & Health Council (WQHC)'s Healthy Pools page to order and receive free test strips. (Please note that any questions regarding your order or the availability of test strips should be addressed to the WQHC,
    • Don't swallow the water you swim in.
Parents of young children should take a few extra steps:
  • Take children on bathroom breaks every 60 minutes or check diapers every 30–60 minutes.
    • Change diapers in the bathroom or diaper-changing area and not at poolside where germs can rinse into the water.
Visit CDC's Healthy Swimming website for more information. A variety of materials for the public, including infographics, brochures, posters, videos, podcasts, and fact sheets are available in the Health Promotion Materials section.

Prevent Drowning

Drowning is the leading cause of injury death among children 1–4 years old. Every day, 10 people die from drowning, and 2 of those 10 are children under the age of 15 years. Of drowning victims who survive and are treated in emergency rooms, more than half are hospitalized or transferred for further care. These individuals often experience brain damage, which can cause memory problems, learning disabilities, or permanent loss of basic functioning (or permanent vegetative state).
Keep swimmers safe in the water.
  • Make sure everyone knows how to swim.
  • Use life jackets appropriately.
  • Provide continuous, attentive supervision close to swimmers.
  • Know CPR (for older children and adults).
Prevent access to water when pool is not in use.
  • Install and maintain barriers like 4-sided fencing and weight-bearing pool covers.
  • Use locks/alarms for windows and doors.
Visit the Water-Related Injuries webpage for more information.

Prevent Pool Chemical Injuries

Pool chemicals are added to the water to kill germs and maximize disinfection. However, the same pool chemicals can also injure us if they're not handled and stored safely. Preventable injuries from pool chemicals led to nearly 5,000 emergency room visits in 2012. Nearly half of these preventable injuries were in children and teenagers and more than a third of these preventable injuries occurred at a home rather than a community pool.
Residential pool owners and public pool operators can follow these simple and effective steps to prevent pool chemical injuries:
  • Read and follow directions on product labels.
  • Wear appropriate safety equipment, such as goggles and masks, as directed, when handling pool chemicals.
  • Secure pool chemicals to protect people and animals.
    • Keep young children away when handling chemicals.
  • NEVER mix different pool chemicals with each other, especially chlorine products with acid.
  • Pre-dissolve pool chemicals ONLY when directed by product label.
    • Add pool chemical to water, NEVER water to any pool chemical.
Visit the Pool Chemical Safety page for more information, including free posters and a video on pool chemical safety.
Remember: Think Healthy. Swim Healthy. Be Healthy!