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It appears that Prashant Kishor, a well-known Indian political strategist, has commented on the recent abuse row involving the Bharatiya Janata Party (BJP) and the Indian National Congress. He has alleged that the two parties are engaged in a “fixed match” and has questioned their silence on the issue of Biharis being insulted outside of Bihar. Here’s a summary of the article: Prashant Kishor, who has worked with several political parties including the BJP, Congress, and the Janata Dal (United), made these comments in response to the ongoing abuse row between the BJP and Congress. He suggested that the two parties are colluding with each other and that their public spat is merely a “fixed match” to distract from the real issues. Kishor specifically questioned the silence of the BJP and Congress on the issue of Biharis being insulted and abused outside of Bihar. He pointed out that while the two parties are quick to condemn abuses hurled at each other, they have failed to speak out against the mistreatment of Biharis in other parts of the country. Kishor’s comments have sparked a debate on social media, with many users questioning the motives of the two parties and their handling of the abuse row. The issue has also highlighted the sensitive topic of regional identity and the treatment of people from Bihar and other states in India. It’s worth noting that Prashant Kishor has been a vocal critic of the BJP and has worked with opposition parties to counter the saffron party’s electoral strategies. His comments on the abuse row are likely to be seen as a reflection of his own political leanings and his efforts to expose the alleged hypocrisy of the BJP and Congress.

Researchers have developed a device that can detect silent speech, also known as subvocal speech, without the need for an invasive brain implant. This technology uses electroencephalography (EEG) or other non-invasive methods to measure the electrical activity in the brain and decode the neural signals associated with speech. The device typically consists of a headset or a series of electrodes placed on the scalp, which capture the brain’s neural activity as the person thinks about speaking or forms words in their mind. The signals are then processed using machine learning algorithms to identify patterns and decode the intended speech. This technology has the potential to revolutionize the way people communicate, particularly for those who are unable to speak due to paralysis, ALS, or other motor disorders. It could also be used in various applications, such as speech recognition, voice control, and silent communication. Some of the benefits of this device include: * Non-invasiveness: The device does not require any surgical implantation, making it a more appealing option for those who are hesitant about invasive procedures. * Portability: The device is often small and portable, allowing users to take it with them wherever they go. * Ease of use: The device is relatively easy to use, with users simply needing to think about speaking or forming words in their mind. However, there are also some challenges and limitations to this technology, including: * Accuracy: The device’s accuracy can vary depending on the individual user and the complexity of the speech being decoded. * Speed: The device may not be able to decode speech in real-time, which can limit its usefulness in certain applications. * Noise interference: The device can be affected by noise interference, such as electrical noise from surrounding devices, which can impact its accuracy. Overall, the development of a device that can sense silent speech without an invasive brain implant is a significant breakthrough in the field of neurotechnology and has the potential to improve the lives of many individuals.

You’re referring to the latest advancements in brain-computer interface (BCI) technology. There have been significant developments in recent years, particularly with the emergence of neural implants and wearables that can read and write neural signals. These devices have the potential to revolutionize the way we interact with artificial intelligence (AI) and each other. One such example is the Neuralink device, developed by Elon Musk’s company Neuralink. This implantable device consists of a tiny chip that is inserted into the brain, where it can read and write neural signals. The goal is to enable people to control technology with their minds, effectively creating a symbiotic relationship between humans and AI. Another example is the BrainGate system, which uses an array of electrodes implanted in the brain to decode neural signals. This technology has been used to enable people with paralysis to control computer cursors and even robotic limbs with their thoughts. There are also non-invasive BCI devices, such as headsets that use electroencephalography (EEG) or functional near-infrared spectroscopy (fNIRS) to read brain activity. These devices can be used for a range of applications, from gaming and education to healthcare and communication. While these devices are not yet capable of true telepathy, they have the potential to significantly enhance human cognition and interaction. By enabling people to control technology with their minds, BCIs could revolutionize the way we live, work, and communicate. However, as with any emerging technology, there are also concerns about the potential risks and implications of BCIs. For example, there are questions about the privacy and security of neural data, as well as the potential for BCIs to be used for nefarious purposes. Overall, the development of BCIs is an exciting and rapidly evolving field that has the potential to transform the way we interact with technology and each other. As these devices continue to advance, we can expect to see new and innovative applications emerge, from entertainment and education to healthcare and beyond.