Jailed for 14 years in murder case, Karnataka man fulfills dream of becoming doctor

News Network
February 16, 2020

Kalaburagi, Feb 16: Fourteen years of life in jail has not deterred Subhash Patil from fulfilling his dream of becoming a doctor.

The 40-year-old man from Afzalpura in Karnataka's Kalaburagi was put behind bars in a murder case while doing MBBS in 1997.

Speaking to media, Patil said, "I joined MBBS in 1997. But, I was jailed in a murder case in 2002. I worked at the jail's OPD and was released in 2016 for good conduct. I completed my MBBS in 2019."

Earlier this month, Patil completed a one-year mandatory internship for getting the MBBS course degree.

Police arrested Patil in 2002 in a murder case when he was in his third year of MBBS course. A court sentenced him to life imprisonment in 2006.

He was put behind bars but he did not give up his childhood dream of becoming a doctor.

In 2016, police released Patil on Independence day for his good conduct.

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News Network
April 16,2020

Bengaluru, Apr 16: A 66-year old man from the city, became the thirteenth COVID-19 related fatality in Karnataka, Health Department officials said on Thursday.

The elderly patient from Bengaluru, who was coronavirus positive died on April 15 at Victoria Hospital in the city, officials said.

"He was referred from a private hospital and was admitted in Victoria Hospital and was on ventilator support since April 10," they added.

A 80-year old woman in Belagavi and a 65-year old man from Chikkaballapura had also died on Wednesday.

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News Network
May 13,2020

Bengaluru, May 13: 26 new covid-19 cases have been reported in Karnataka taking the total cases to 951. This includes 32 COVID deaths, one non-COVID death and 442 discharges.

The new cases include eleven cases from Bidar - all of whom are from the containment zone - , four from Hassan, two each from Davangere, Kalaburgi, Vijayapura and Uttara Kannada and one each from Bengaluru Urban, Ballari and Dakshina Kannada.

All the cases reported in Hassan and Vijayapura are with a travel history to Mumbai. In Bengaluru Urban, a nurse from a designated COVID hospital who was under quarantine has tested positive.

32nd death

The latest death reported was that of a 60-year-old man in Kalaburgi district. The deceased man from a containment zone was brought dead on May 11 to a designated hospital in Kalaburagi, and he has tested positive for COVID-19, it said.

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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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