Belthangady: Trapped leopard rescued, released in forest

[email protected] (CD Network)
November 13, 2014

Belthangady, Nov 13: A leopard that had its front paw trapped in a tree joint in an estate in Mucchiradka-Hemaje in Shishila village in Belthangady taluk from Tuesday night, returned to its habitat after being freed by forest department officials.

The eight-year-old male leopard had gotten its front paw trapped in a tree joint in the estate of Shivanna Gowda on Tuesday night. When the owner of the estate discovered the trapped leopard on Wednesday morning, he immediately informed the forest department officials.

Immediately, Uppinangady zonal forest officer Harsha arrived at the spot and controlled the people gathered.

Anesthetist Dr Vikranth and Dinesh were summoned to tranquilise the leopard. Having successfully tranquilised the leopard on the fourth attempt, it was freed from the joint and shifted to a cage with the assistance of Snake expert Snake Joy who also arrived at the scene.

Once it was safely inside the cage, the forest officials took the wild animal to the dense forest region near Gundya and set it free after it regained consciousness.

Chirate 2

Chirate 1

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coastaldigest.com news network
June 1,2020

Udupi, Jun 1: As many as 73 people have been tested positive for coronavirus in Udupi district today.

The district has registered a total of 260 positive cases so far. Majority of the positive cases in Udupi district have inter-state travel history to Maharashtra.

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News Network
July 26,2020

Bellary,  Jul 26: A 100-year-old woman resident of Huvina Hadagali town in Bellary district, Karnataka, recovered from COVID-19 after testing positive for the virus earlier this month.

"Doctors treated me well. Along with regular food, I was eating an apple a day. The doctors are giving me tablets and injection, and I am healthy now. COVID-19 is like a common cold," said Hallamma while speaking to news agency.

The woman's son, daughter-in-law, and grandson had also tested positive for the virus, and the family was treated at their home.

According to health department officials, her son works at a bank and had tested positive on July 3, after which Hallamma tested positive on July 16; the 100-year-old reported negative for the virus on July 22.

Meanwhile, the covid-19 death toll in the country rose to 32,063 with 705 fatalities being recorded in a day on Sunday. The number of tests for detection of covid-19 has crossed the 16-million mark in the country.

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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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