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Rabies, Bites, and Policy Gaps: One Woman’s Humane Fight for Kerala’s Stray Dogs

In Kerala, a surge in stray dog attacks and rabies cases reveals deep policy gaps, despite the state’s high literacy rates. One woman—Ambili Purackal—leads a humane movement, highlighting the urgent need for compassionate, systemic solutions to an escalating public health issue.

Lakshmi Narayanan

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Ambili Purackal caring for rescued dogs. Image credit: Special arrangement

In Kerala, India’s most literate state, a paradox unfolds: despite high social indicators, the state grapples with a burgeoning stray dog population, estimated at 289,986 in 2019. With dog bite incidents soaring to 316,000 in 2024—a 133% rise from 135,000 in 2017—the crisis exposes a gap between education and effective policy. Amid this, the Daya Animal Welfare Organisation, founded by Ambili Purackal and Ramesh Pulickan in Muvattupuzha, a town in the southern state of Kerala, stands as a beacon of compassion, tackling the issue with rescue, rehabilitation, and advocacy.

The stray dog crisis in Kerala

Kerala’s stray dog population, last pegged at 289,986 in the 2019 Livestock Census, continues to grow due to unregulated breeding, poor waste management, and pet abandonment. In 2024, Thiruvananthapuram, Kerala’s capital city, alone reported 50,870 dog bite cases, followed by Kollam district with 37,618. The state recorded 26 rabies deaths, a threefold increase from eight in 2017. These figures underscore a public health challenge, with 96% of Kerala residents opposing stray dogs’ presence, according to a 2025 survey.

Image credit: Mathieu Vivier/Pixabay

The Animal Birth Control (ABC) programme, mandated by national law since 2001, aims to sterilize and vaccinate strays, returning them as less aggressive “community dogs.” However, its implementation falters. Despite a $5.7 million budget in 2024–25 for ABC, rabies vaccination, and the Rabies-Free Kerala project, activists like Ambili note that ineffective monitoring and inadequate training hamper progress. Only a few areas, like Kozhikode Corporation, show consistent effort. If executed properly, Ambili believes the stray dog issue could be resolved humanely within two to three years.

Pet abandonment exacerbates the problem. Many bred dogs, unaccustomed to street life, turn aggressive when abandoned. Enforcing pet licensing and microchipping could help, but the current system remains ineffective.

Image: By Special arrangement

Daya’s compassionate response

Founded in 2001 by Ambili Purackal and Ramesh Pulickan, Daya emerged from a shared empathy for animals. Ambili recalls, in a conversation with EdPublica, rescuing injured pets since childhood, while Ramesh, a skilled animal handler, leads rescue operations. Based in Muvattupuzha, Daya shelters 102 dogs across its centers, with 70 at its Valmeekam headquarters—80% rescued from streets. Unlike standard ABC protocols, Daya provides lifelong care for dogs unable to survive independently, supported by donors.

Daya’s work extends beyond rescue. Their rescue-relief-rehabilitation model includes medical care, shelter, and rehoming or release. They promote adoption, support indigenous breeds, and advocate for responsible pet ownership. Legal advocacy is central, with Daya challenging animal cruelty and pushing for stronger welfare laws. A notable case involved Ambili funding treatment for an injured baby elephant near Idamalayar Dam in Ernakulam by selling personal property when the forest department failed to act.

“We’ve shown what’s possible. Now, Kerala needs a constructive policy to match its reputation.”

In 2018, during Kerala’s devastating floods, Daya’s commitment shone. With Valmeekam submerged, Ambili and Ramesh stayed on their second-floor terrace with 23 dogs, refusing to abandon them. Today, Daya’s oldest resident, 17-year-old Sreekutti, thrives—a testament to their care. “People often view animal welfare as the concern of a few dog lovers. But rescuing a street dog, vaccinating it, and sterilizing it is a service to society. It’s about public health and urban harmony.”

Systemic challenges and advocacy

Kerala’s ABC programme faces structural hurdles. Local bodies are mandated to allocate budgets based on stray dog data, but most treat it as a formality. The 2023 ABC Rules, requiring veterinarians with 2,000 surgeries and advanced facilities, have slowed progress by limiting eligible centers. Only 37 ABC centers and 78 trained dog catchers serve the state, insufficient for mass sterilization or vaccination drives.

Image: By special arrangement

Ambili and Ramesh advocate systemic change: better training for municipal staff, public awareness campaigns, and corporate social responsibility (CSR) investments in animal welfare. They stress that sterilizing and vaccinating strays is a public health service, not just an act of compassion. “Rescuing a street dog benefits society,” Ambili says. “It’s about urban harmony.”

A model for change

Daya’s model—combining compassion, community involvement, and advocacy—inspires across Kerala. Their daily operations, from feeding 102 dogs to responding to hundreds of rescue calls, demonstrate what’s possible. Yet, they emphasize that systemic change requires government, civil society, and public coordination.

Kerala’s stray dog crisis reflects broader challenges in translating literacy into action. With 316,000 dog bites and 26 rabies deaths in 2024, the state must align its progressive image with effective policies. Daya’s work offers a roadmap, but as Ambili notes, “We’ve shown what’s possible. Now, Kerala needs a constructive policy to match its reputation.”

Lakshmi Narayanan is a seasoned journalist based in Kerala, India, covering topics such as gender issues, animal rights, sustainable practices, and more

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Earth

In ancient India, mushy earth made for perfume scent

Kannauj, a city in the Indian state of Uttar Pradesh, offers a sustainable alternative in producing perfumes using traditional modes of distillation.

Khushboo Agrahari

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Copper stills involved in dheg-bhakpa hydro-distillation | Photo Credit: By special arrangement

A sweet scent typically lingers around in the air at Kannauj, an ancient city in India’s most populous state of Uttar Pradesh. It’s an imprint of the countless occasions when it had rained, of roses that bloomed at dawn, and of sandalwood trees that once breathed centuries of calm.. Though mushy smells are not unique to Kannauj, the city utilized traditional distillation methods to make perfume out of these earthly scents.

Kannauj has had a longstanding tradition in perfume-making since four centuries ago. The city, colloquially known as the country’s ancient perfume capital, still uses rustic copper stills, wood-fired ovens, and bamboo pipes leading to sandalwood oil-filled vessels, or attar as it is colloquially known, to make their perfume. Though it gives a pre-industrial look, a closer peek would reveal an ecosystem of complex thermal regulation, plant chemistry, sustainability science, and hydro-distillation chemistry at work.

When synthetically-made but sustainable perfumes, and AI-generated ones share the spotlight today, Kannauj’s tryst with perfumes offer an alternative, sustainable model in traditional distillation, which is inherently low-carbon, zero-waste, and follow principles of a circular economy; all in alignment with sustainable development goals.

Traditional perfume-making is naturally sustainable

In industrial processing, hydro-distillation is a commonly done to separate substances with different boiling points. Heating the liquids produce vapors, which can later be liquefied in a separate chamber. Perfumers in Kannauj follow the same practice, except it promises to be more sustainable with the copper stills, a process colloquially known as dheg-bhakpa hydro-distillation.

There’s no alcohol or synthetic agents in use. Instead, they heat up raw botanicals – such as roses, vetiver roots, jasmine, or even sunbaked clay – to precise temperatures well short of burning, thereby producing fragrant vapor. The vapors are then guided into cooling chambers, where they condense and bond with a natural fixative, often sandalwood oil. Plant residue is the only byproduct, which finds use as organic compost to cultivate another generation of crops.

The setup for dheg-bhapka hydro-distillation to make perfume | Photo Credit: By special arrangement.

Trapping earthly scent to make perfume

In the past five years, Kannauj’s veteran perfumers noticed a quiet, but steady shift in their timely harvest and produce. Rose harvests have moved earlier by weeks. Vetiver roots grow shallower due to erratic rainfall. Jasmine yields are fluctuating wildly. The local Ganges river, which influences humidity levels essential for distillation timing, is no longer as predictable. For an entire natural aromatic economy built on seasonal synchrony, this uncertainty has rung alarm bells.

“The scent of a flower depends not just on the flower itself,” Vipin Dixit, a third-generation attar-maker whose family has distilled fragrance for decades, said to EdPublica.

“It depends on the weather the night before, on the heat at sunrise, on the moisture in the air. Even the soil has a scent-memory.”

Vipin Dixit, a third-generation attar-maker, whose family have distilled fragrance for decades | Photo Credit: By special arrangement.

As a result, perfumers in Kannauj have begun to adapt, applying traditional wisdom through a modern scientific lens. Local distillers are now working with botanists and environmental scientists to study soil microbiomes, measure scent compounds using chromatography, and develop community-based rainwater harvesting to ensure sustainable crop health.

One of the most surprising innovations is trapping petrichor — the scent of first rain — through earth attars. Clay is baked during extreme heat waves, mimicking summer conditions, then distilled to trap the scent of rain hitting dry soil. This aroma, called mitti attar, is one of the few scents in the world created from an environmental phenomenon; and not a flower.

At a time when the world is scrambling to save biodiversity, the humble attar may become a template for green chemistry — one that doesn’t just preserve scent, but also restores the relationship between science, nature, and soul.

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Society

How Scientists and Investigators Decode Air Crashes — The Black Box and Beyond

The final report may take months, but it will be critical in issuing safety directives or revising standard procedures.

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As rescue and recovery operations continue following the June 12, 2025, plane crash in Ahmedabad, aviation safety experts are now focusing on the technical investigation phase. With 241 lives lost, the search for the cause isn’t just about accountability—it’s about prevention.

The Black Box: Aviation’s Memory Keeper

1. What Is the Black Box?

Despite the name, the black box is actually orange — for visibility. It consists of two components:

  • Cockpit Voice Recorder (CVR): Captures conversations and audio from the flight deck.
  • Flight Data Recorder (FDR): Logs dozens to hundreds of parameters — speed, altitude, engine status, control inputs.

These devices are housed in titanium or steel and can withstand:

  • Temperatures above 1,000°C
  • Underwater pressures up to 20,000 feet
  • Crashes with up to 3,600 G-force

They also emit underwater locator beacons for up to 30 days.

2. Forensic Engineering & Flight Reconstruction

Beyond black boxes, investigators use:

  • Radar data and air traffic control logs
  • Wreckage analysis for structural failure clues
  • Satellite-based tracking systems like ADS-B
  • Weather data for turbulence or wind shear insights

Forensic teams often reconstruct the flight path virtually or even physically using recovered debris to determine failure points.

3. Human Factors & AI in Modern Investigation

New tools like machine learning and human factors analysis are used to identify procedural errors or lapses in judgement.

In many modern investigations, AI helps:

  • Filter large datasets (e.g., over 1,000 flight parameters per second)
  • Detect patterns missed by the human eye
  • Predict similar risk scenarios in future flights

What Happens Next in the Ahmedabad Crash?

Authorities, in coordination with the Directorate General of Civil Aviation (DGCA), are likely:

  • Retrieving and analyzing the black box
  • Interviewing air traffic controllers
  • Reconstructing the aircraft’s final seconds using both data and simulation

The final report may take months, but it will be critical in issuing safety directives or revising standard procedures.

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Society

Researchers Unveil Light-Speed AI Chip to Power Next-Gen Wireless and Edge Devices

This could transform the future of wireless communication and edge computing

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Credit: Sampson Wilcox, Research Laboratory of Electronics/MIT News

In a breakthrough that could transform the future of wireless communication and edge computing, engineers at MIT have developed a novel AI hardware accelerator capable of processing wireless signals at the speed of light. The new optical chip, built for signal classification, achieves nanosecond-level performance—up to 100 times faster than conventional digital processors—while consuming dramatically less energy.

With wireless spectrum under growing strain from billions of connected devices, from teleworking laptops to smart sensors, managing bandwidth has become a critical challenge. Artificial intelligence offers a path forward, but most existing AI models are too slow and power-hungry to operate in real time on wireless devices.

The MIT solution, known as MAFT-ONN (Multiplicative Analog Frequency Transform Optical Neural Network), could be a game-changer.

“There are many applications that would be enabled by edge devices that are capable of analyzing wireless signals,” said Prof. Dirk Englund, senior author of the study, in a media statement. “What we’ve presented in our paper could open up many possibilities for real-time and reliable AI inference. This work is the beginning of something that could be quite impactful.”

Published in Science Advances, the research describes how MAFT-ONN classifies signals in just 120 nanoseconds, using a compact optical chip that performs deep-learning tasks using light rather than electricity. Unlike traditional systems that convert signals to images before processing, the MIT design processes raw wireless data directly in the frequency domain—eliminating delays and reducing energy usage.

“We can fit 10,000 neurons onto a single device and compute the necessary multiplications in a single shot,” said Ronald Davis III, lead author and recent MIT PhD graduate.

The device achieved over 85% accuracy in a single shot, and with multiple measurements, it converges to above 99% accuracy, making it both fast and reliable.

Beyond wireless communications, the technology holds promise for edge AI in autonomous vehicles, smart medical devices, and future 6G networks, where real-time response is critical. By embedding ultra-fast AI directly into devices, this innovation could help cars react to hazards instantly or allow pacemakers to adapt to a patient’s heart rhythm in real-time.

Future work will focus on scaling the chip with multiplexing schemes and expanding its ability to handle more complex AI tasks, including transformer models and large language models (LLMs).

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