Infant suffocation: 1-year-old baby dies while eating ‘chakkuli’

coastaldigest.com news network
October 31, 2017

Mangaluru, Oct 31: In a heart-wrenching incident, a one-year-old child was suffocated to death while eating chakkuli at Gerukatte village in Belthangady taluk of Dakshina Kannada district.

The victim is Arush, son of Vittala, resident of Gerukatte village. The incident took place on Monday evening. Chakkuli or Chakli is a famous savoury snack in South India.

According to sources, the child put a piece of chakkuli in the mouth. It got stuck in his throat while swallowing. Though the parents immediately rushed Arush to a nearby clinic, he breathed his last.

Comments

Abdul Jaleel
 - 
Wednesday, 1 Nov 2017

RIP.. Inna lillahi wa inna ilaihi rajoon

Priyanka
 - 
Tuesday, 31 Oct 2017

so sad, parents responsible for the death of small kid.

jayaram
 - 
Tuesday, 31 Oct 2017

Really shocking news, after all one small chakuli how can kill a kid, need to get the doctor report for the clarification of the incident.

Mahesh
 - 
Tuesday, 31 Oct 2017

ohh very sad, parents should be more carefull with kids. anything can be harm them.

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News Network
May 27,2020

Mangaluru, May 27: The Dakshina Kannada PU College Principals' Association on Wednesday appealed to the authorities to postpone the evaluation of PUC II answer scripts, as the Novel Coronavirus was still active and there was all possibility of the infection spreading.

Speaking to reporters here, Association President Umesh Karkera said, ''It is our duty to evaluate the answer scripts. But amid the fear of COVID-19 and lockdown, evaluators are not able to reach the valuation Centre to take up the work.

''The department of pre-university education has asked the Deputy Chief Examiners and the Assistant Examiners to reach the venue on May 27 and 29, respectively, to take up the evaluation work.

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News Network
February 17,2020

Mandya, Feb 17: About 40 passengers were injured in a collision between a KSRTC bus and a tipper lorry near Srirangapatna in the district on Monday.

Police said that the incident occurred when the bus was stopped to allow passengers to alight when the tipper lorry rammed against the bus.

The victims have been admitted to the Taluk hospital and the severely injured have been shifted to a hospital in Mysuru.

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News Network
April 2,2020

The current physical distancing guidelines provided by the World Health Organisation (WHO) and by the US Centers for Disease Control and Prevention (CDC) may not be adequate to curb the coronavirus spread, according to a research which says the gas cloud from a cough or sneeze may help virus particles travel up to 8 metres. The research, published in the Journal of the American Medical Association, noted that the the current guidelines issued by the WHO and CDC are based on outdated models from the 1930s of how gas clouds from a cough, sneeze, or exhalation spread.

Study author, MIT associate professor Lydia Bourouiba, warned that droplets of all sizes can travel 23 to 27 feet, or 7-8 metres, carrying the pathogen.

According to Bourouiba, the current guidelines are based on "arbitrary" assumptions of droplet size, "overly simplified", and "may limit the effectiveness of the proposed interventions" against the deadly pandemic.

 She explained that the old guidelines assume droplets to be one of two categories, small or large, taking short-range semi-ballistic trajectories when a person exhales, coughs, or sneezes.

However based on more recent discoveries, the MIT scientist said, sneezes and coughs are made of a puff cloud that carries ambient air, transporting within it clusters of droplets of a wide range of sizes.

Bourouiba warned that this puff cloud, with ambient air entrapped in it, can offer the droplets moisture and warmth that can prevent it from evaporation in the outer environment.

"The locally moist and warm atmosphere within the turbulent gas cloud allows the contained droplets to evade evaporation for much longer than occurs with isolated droplets," she said.

"Under these conditions, the lifetime of a droplet could be considerably extended by a factor of up to 1000, from a fraction of a second to minutes," the researcher explained in the study.

The MIT scientist, who has researched the dynamics of coughs and sneezes for years, added that these droplets settle along the trajectory of a cough or sneeze contaminating surfaces, with their residues staying suspended in the air for hours.

"Even when maximum containment policies were enforced, the rapid international spread of COVID-19 suggests that using arbitrary droplet size cutoffs may not accurately reflect what actually occurs with respiratory emissions, possibly contributing to the ineffectiveness of some procedures used to limit the spread of respiratory disease," Bourouiba wrote in the study

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