Showing posts with label SMARTPHONES. Show all posts
Showing posts with label SMARTPHONES. Show all posts

Saturday, July 18, 2015



Over the past decade, smartphones have radically changed many aspects of our everyday lives, from banking to shopping to entertainment. Medicine is next. With innovative digital technologies, cloud computing and machine learning, the medicalized smartphone is going to upend every aspect of health care. And the end result will be that you, the patient, are about to take center stage for the first time.



Continuous health monitoring requires hospitalization, which can become expensive and inconvenient choice for patient. The days are not far, the smartphones become our hospital with all sophisticated health monitoring systems. 

Imagine the days, where your smartphones continuously monitor your heart rates, blood pressure level, blood glucose level, stress level and sending reports to our doctor. The researchers are already gone far in this aspect. 

We have seen many patent applications from different smartphone manufactures on healthcare applications and technologies. The recent one is Body fat measurement techniques by Samsung. 
In this post, I will share some developments in smartphones towards health care. Initially I though it is an easy task. But when I initiated my research, I found the topic is so deep and very vast. This clearly indicates we are nearing towards an unimaginable world. 

To start with we will have some snap view on the new patent submitted by Samsung. 


Measuring body fat using smartphone

Samsung is coming up with new smartphone sensors to measure electrical impedance of your body fat level. The related applications use this data from sensors to calculate body fat level. The process is very simple. All you have to do is grab your phone in your hand like in the picture. The process is simple and very cheap and no need to wait for the results. 
Samsung Body fat measuring sensors for smart phones Image :WIPO

Another remarkable patent application is from the google

Googles wearable to zap cancer

Google's plans for a wearable that would zap harmful particles in the body are shaping up. In a recently issued patent application, Google provided details on a novel medical that would involve sending tiny magnetic particles into patients' bloodstreams. The magnetic particles, activated by a smart wristband, would attack cancer cells and pathogens linked to other diseases. 
Google's plan of new wearable to treat cancer by using magnetic particles. Image :appft.uspto.gov

There are plenty of applications and wearable available. This will work with any of the smartphone in a very simple way. How to choose wearable and applications is one important task to get accurate information. 

As of now the phone-based health sensors aren’t entirely accurate. But the data accuracy is not very far from reality. 

How the Biosensors will change our life?

What are biosensors?

“A device that uses a living organism or biological molecules, especially enzymes or antibodies, to detect the presence of chemicals or impulses” 

Any change in the body will results in a chemical or electrical change. Each imbalance in our body can be detected by identifying this level of change. This is the basic principle of Biosensors. (Read more about biosensors, read about biosensor products,) 

Now our main topic of discussion is about wearable biosensors and how they are going to change our life.

Wearable Biosensors Future perspective



Different types of wearable biosensors going to change the health care in the future
Imagine the day we are equipped with biosensors, which are continuously monitoring our health condition. The abrupt variation in our heart rate or our blood pressure will immediately texted to our physician. Detected the change in glucose level by nano sensors in our blood stream and sending necessary direction to kitchen. Monitoring our voice, retinal contractions, and online communication patterns and predicting our physiological situation.  All these are very simple and possible future of our life. 

New apps aim to quantify your state of mind by a composite of real-time data: tone and inflection of voice, facial expression, breathing pattern, heart rate, galvanic skin response, blood pressure, even the frequency and content of your emails and texts. 

Now there are researches at force to develop ingestible biosensors, which will run inside our blood stream. This type of sensors can monitor our blood on real time to generate reports on various conditions and communicate to related application. 

Recently I read about a biosensor named Abstar® by Gi-Logics for gastroenterology. Acoustic Gastro-Intestinal Surveillance (AGIS) biosensor monitors human digestion using acoustic signals, filling an unmet need in postoperative care and potentially saving significant time and money for patients and hospitals alike. 

NCBI recently published a report on a pilot research on real time mobile detection of drug use with wearable biosensors. Reliable detection of illicit drug use is paramount to the field of addiction, current methods involving self-report and urine drug screens have substantial limitations that hinder their utility. Wearable biosensors may fill a void by providing valuable objective data regarding the timing and contexts of drug use. A portable biosensor was placed on the inner wrist of each subject, to continuously measure electrodermal activity (EDA), skin temperature, and acceleration. Data were continuously recorded for at least 5 min prior to drug administration, during administration, and for at least 30 min afterward. Overall trends in biophysiometric parameters were assessed. Injection of opioids and cocaine use were associated with rises in EDA. Cocaine injection was also associated with a decrease in skin temperature. Opioid tolerance appeared to be associated with a blunted physiologic response as measured by the biosensor. Laterality may be an important factor, as magnitude of response varied between dominant and nondominant wrists in a single patient with bilateral wrist measurements. Changes in EDA and skin temperature are temporally associated with intravenous administration of opioids and cocaine; the intensity of response, however, may vary depending on history and extent of prior use. 

The HealthPatch® family of biosensors is capable of capturing clinical-grade biometric measurements in a continuous, configurable and non-obtrusive manner using a small yet powerful patch worn on the chest. The HealthPatch biosensors have a unique set of features that enable an array of possibilities for their use like Single-Lead ECG, Heart Rate, Heart Rate Variability, Respiratory Rate, Skin Temperature, Body Posture including Fall Detection/Severity, Steps. 

Another biosensor called Helius® by Proteus is an ingestible biosensor which can be swallowed. The sensor get activated by stomach acid. Then it starts transmit signal wirelessly back to the smartphones. It monitors several factors like body posture, temperature, respiration, sleeping patterns and heart rate. 

Nanobiosym™ (NBS) is an innovative technology, engineering and biomedicine company who has introduced Gene-RADAR®, a tablet sized device that may revolutionize disease diagnosis. Through your genetic fingerprint, via a drop of blood or saliva, Gene-RADAR is able to diagnose various diseases and conditions. A real-time diagnosis at a price point, makers claim are 10 to 100 times cheaper than conventional tests.
Gene-RADAR -A tablet size equipment which can diagnosis many medical conditions fro a drop of blood or saliva 

JoyWing recently launched a gadget named Wishbone, its contact-free thermometer. Named for its “Y” shape, the smart device plugs into smartphone jacks and contains an infrared sensor that takes temperature readings in under two seconds from skin that’s less than five centimeters away.

WishBone is a 'Y'Shapped gadget which can connect to any smartphone to read temperature data . Image @Wishbone
The accompanying iPhone or Android app collects the data and can assign it to different profiles. This makes it easy to track your temperature, which is useful for sick children or women trying to conceive. According to JoyWing, the thermometer’s sensors work between 32 and 212 degrees Fahrenheit with an accuracy to plus or minus 0.36 degrees for body temperatures.

Infrared sensors of WishBone enables it to capture 'touch free' measurement of temperature. Image @WishBone
The Hexoskin Arctic biometric smart shirt is more or less a wearable precision lab, where it will offer its users with lab-quality metrics when performance truly matters. There will be a tiny Bluetooth device that will be connected to the fabric sensors, where it is placed in the shirt’s built-in side pocket during activity and sleep. The shirt will be extremely light, warm, comfortable, and users will be well equipped with measurements that they simply are unable to receive from regular fitness trackers.

Hexoskin is equipped with different sensors which can accurately measure our health conditions : Image @Hexoskin
                           
Mayo Clinic and Gentag, Inc. has signed a joint intellectual property (IP) agreement to develop the next generation of wearable biosensors designed to fight obesity and diabetes. Together, both parties plan to create a wireless, disposable wearable patch sensor about the size of a small bandage that communicates via a closed-loop diabetes management platform integrated with your smart phone. The integrated system will allow researchers to monitor movement and develop treatments for diabetes, obesity and related conditions. Suggested Read :  Bionic lens promises SUPERHUMAN sight three times better 

Tribogenics, Develops Smart Phone Sized Portable X-ray Machines which can be a gadget to capture X-ray of our body at home and process and share with your health care taker.
 

Tribogenics chief scientist, Carlos Camara, and the firm's miniature X-ray source. This device one day enable us to capture X-ray using our smartphones : Image @Tribogenics
                                

Similar kinds of miniature medical imaging devices are under development and some are in experimental use. These miniature devices help you to generate medical report at your home and share with your health care unit at the flip of your finger tip.

Now wearable gadgets which read and process our brain waves are getting popular. Mind controlled gadgets will allow us to send command and instructions to various terminals. They can convert our thoughts in to text or we can chat with our desired person just by thinking. The same device can act to monitor our behaviors and brain action to detect and warn us about the variation.

Suggested readings >>neurogadget


Virtual Humans and Human Behaviors


Virtual humans (VHs) that can develop intimacy with people are now becoming reality. Researchers have successfully incorporated social skills (e.g., active listening, mimicry, gestures) into VH systems

Users’ experiences can be better standardized with VHs than with human beings. VHs can also provide a ‘‘safe’’ environment, which could encourage learning or honest disclosure of important information.

The healthcare field, in particular, may benefit from this latter potential advantage of VHs: honest disclosure. Failure to provide fully honest responses in medical interviews can result in serious consequences for patient health. Therefore, much research has considered how to gain more detailed and honest medical histories, especially sensitive information, from patients.

We argue that VHs could be used to reduce these psychological barriers to honest responding (i.e., fear of self-disclosure, impression management). Additionally, VH-interviewers could lead patients to behave more openly in a clinical interview context.

In an article about Virtual Human doctor they mentioned the difference in people behavior with VHs. The results showed that people disclosed information more honestly and openly when they were told they were speaking exclusively to the computer. The participants also "reported significantly lower fear of self-disclosure" under those circumstances.

Interview with virtual human interviewer. In this study, all participants interacted with a virtual human during a semi-structured interview. Interviewees were told, by random assignment, either that the virtual human interviewer was teleo-operated by a human (like a puppet) or that it was fully-automated. @ science direct computers in human behavior


Conclusion


I know what I mentioned here is only the tip of an ice berg. This part of the research is growing rapidly and gaining more popularity. The world is very near, where the expensive medical devices are going out of hospitals. The world is getting smaller and smarter. The micro medical devices, nano biosensors, wearable sensors are going to rule the world.

The virtual doctors and health care applications are going to revolutionize the health care industry. Interestingly, all medical manufacturing companies are doing researches on developing miniature and portable devices. In future we will have a health care kit, which with all sensors, wearable, miniature medical devices and applications. Everyone’s home will be a multispecialty hospital with all sophisticated equipment.

Doctors will get very accurate report from health care applications. The quality and accuracy of diagnosis will be high. As we discussed, many of the time the information provided are incomplete. Like, we can mention our daily workout time is one hour. But with the help of wearable, doctor will get very accurate information. The biosensor inside our stomach will monitor our diet, the calorie value of it, acid level, micro biome and what not to mention. This information will help doctors to have an accurate diagnosis.

Present day our diagnostic results reflect about the status at the time of sampling only. With biosensors we will have a continuous real time information data base. In future biosensors may be cheap but storing those data will be costlier due to its huge volume. That may be a challenge in the future but can be sorted out by new storage techniques.


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Related Article.

Smartphones your future smart healthcare device will be an alternate for hospitals

Thursday, June 4, 2015

Why Android Pay Will Succeed Where Google Wallet Failed

Last week, when Google unveiled its new payments service , Android Pay, it was hard to understand what was so new.

Google already offered a payments service. It was called Google Wallet, and like Android Pay, it was a way of using your smartphone to pay for stuff both in stores and online. The name—Android Pay—was new. But as the company unveiled the service at its annual developer conference, even that had a familiar ring. It was an echo of Apple Pay, the payments service that arrived on the iPhone to much fanfare this past fall

To be sure, Android Pay will streamline Google Wallet in some ways, whether you’re tapping your phone to an NFC reader at a McDonald’s or ordering food from the GrubHub app. Google will offer tools that lets online banking apps plug into its payments service, perhaps easing the process of, say, getting your credit card onto your phone. And brands like Coca Cola are offering rewards programs. But these are relatively small changes.

The big difference—barely discussed at the Google I/O developer conference—is that AT&T, Verizon, and T-Mobile will preinstall Android Pay on phones when the service is ready later this year. According to Osama Bedier, the former PayPal exec who oversaw the creation of Google Wallet and now runs the payments startup Poynt, this is the big thing Google Wallet was missing—and the big thing that could make an Android-based payments service (and mobile payments in general) take off.

“That’s the headline here,” Bedir says, referring to how the big carriers have embraced Android Pay. “You have to have the wallet on board the phone. Otherwise, people have to download an app—and getting them to do that is much, much harder.”

Google said Android Pay will be accepted by more than 700,000 physical stores and over 1,000 mobile apps. Those are nice numbers. Digital wallets like Android Pay won’t be more than a niche unless merchants get on board. Many of those merchants—using terminals featuring near-field communication technology, or NFC—were behind Google Wallet. The carriers were not.

At least not until February, when Google announced its deal with all three. Google’s mobile payments service was still called Google Wallet back then. But the arrangement won’t take effect until the official arrival of Android Pay, sometime later in the year.

Riding the Existing Rails

Though digital wallets have been around for years—Google Wallet arrived in 2011—they’ve had minimal impact on the market. According to research outfit Forrester, mobile payments account for about $50 billion in sales, compared to total credit card payments estimated at $2.7 trillion. But Apple Pay has suddenly kickstarted the idea.

Many argue Apple didn’t do anything Google hadn’t already done. But it worked with MasterCard, Visa, and American Express so its system would dovetail securely with existing credit card networks. It worked with companieslike Stripe that help merchants build online services that can accept digital wallets and other payment methods. And it put Apple Pay on the iPhone, the world’s preeminent mobile device.

The way in which Apple Pay spread across merchants, carriers and phones was unprecedented, says Rich Stuppy. He’s the chief operating officer of Kount, which helps companies detect credit card fraud, including via mobile payments. “Companies have struggled in vain to get Apple’s level of adoption for years and sometimes decades,” he says.

Carriers had previously resisted selling phones with this type of payments system with an eye towards offering their own. But Isis, or Softcardas it was later known, never took off, and Apple and the iPhone had the leverage needed to pry the carriers open. Bedier believes its no coincidence that Google’s deal with the carriers followed shortly thereafter. “It’s similar to how the iPhone was a catalyst for Android as a whole,” he says.

As part of its deals with AT&T, Verizon, and T-Mobile, Google also acquired technology from the now defunct Softcard with an eye towards rolling it into Google Wallet—the thing that’s now called Android Pay.

Filling the Gaps

We’re still a long way from a world in which most people use phones to pay for things According to a study from Kount, just 23.7 percent of merchants accept payments from mobile wallets, a figure that includes merchants both online and off. But we’re reaching a point where widespread adoption is at least possible. Forrester says that mobile payments could expand to $142 billion by 2019.

It’s not just that Apple has greased the wheels. New rules require stores to offer hardware that can accept the new chip-and-PIN credit and debit cards. In upgrading to these card readers, merchants may be more likely to install NFC hardware that communicates with smartphones. And now Android Pay is on the way.

No, it’s not all that different from Google Wallet—or Apple Pay. But the carriers are on board. And Google’s Android operating system accounts for about 80 percent of smartphone market. In other words, a lot more people will find themselves with a mobile payments app on their phones, whether they wanted one or not. And at least some of them will use it. As Stuppy says: “Android Pay can help fill the gaps Apple Pay can’t fill.

The all new Android Pay

Tuesday, May 12, 2015

Micro SD Card Slot for Mobile ! Do you Really Need Them ?



Expandable storage on mobile phones

For a long time now, they’ve been a subject with staunch movements both for and against it. The recent removal of a microSD card slot on the Samsung Galaxy S6, as well as Xiaomi’s Hugo Barra’s statement explaining why there isn’t any expandable storage option on the new Mi 4i sparked another round of heated discussion among smartphone users.

So why do smartphone users want microSD card slots, and why are smartphone makers shying away from them? Let’s break it down.

FOR…


(Image: ZDNet)

If there’s one reason why consumers want expandable storage on their smartphones, it’s this: cost. MicroSD cards have been around since the days of feature phones, offering a cheaper alternative to store pictures, ringtones and yes, even contacts when your SIM card runs out of space. Remember those days?

Back then, offering smaller storage space with a microSD card slot means the retail price of the device is lower, too, as it pushes the cost of manufacturing down. Users can then choose to buy a microSD card of varying sizes based on their needs.

These days, with expandable storage cards getting ever cheaper, you can add significant amounts of storage to a smartphone for anywhere between RM15 to several hundred ringgit, depending on the storage size and class. Imagine, for about RM60 to RM70 you can double the storage of a 32GB smartphone. In contrast, Apple charges you RM424 more for a 64GB iPhone 6 compared to a 32GB one. Of course, there are technical differences between natively offering extra storage and expanding them via microSD, but try explaining that to the average consumer.


Take that, evil conglomerate. (Image: ephotozine.com)

It doesn’t help either that a lot of smartphones today only pack 8GB of internal storage, prompting the need for expandable storage. It is especially prevalent in lower-end smartphones – with only 8GB of storage, the actual usage storage amounts to only 4GB or less, as there are system files that also take up storage space.

A microSD card slot allows smartphones to store videos on top of pictures, songs and other files that can be downloaded or transferred to a smart device. This allows consumers to turn their smartphones into portable entertainment devices to kill time, adding convenience to an already important personal device. If a smartphone only comes with 8 or 16GB of internal storage, no problem – just get a 32GB or indulge in one of those 200GB ones that were just announced earlier this year.



Another plus point in favour of having microSD card slots is portability. With so many cloud syncing options these days, one might suggest that having a physical copy of your data is still useful, especially in areas where Internet penetration is low, or in countries where Internet data is expensive. In these places, it is far cheaper to just slot in a microSD card to store internal data; switching between devices is relatively painless too, as it just requires the user to remove the card from the old phone and into the new one.

AGAINST…



(Image: shopclues.com)

Just like the above, there’s a simple reason why smartphone makers are moving away from adding microSD card support: performance.

A slower-class card, like Class 4, will have slower read/write speeds compared to a newer Class 10 microSD card, which is also more expensive. Hence, unknowing consumers would be more likely to purchase a slower memory card without understanding the consequences of using one. It’s similar to USB 2.0 and USB 3.0 – the difference is telling, especially when microSD cards can also be used on Android devices to store apps.

And why does this matter to the smartphone maker? Let Xiaomi’s Hugo Barra explain:


You think you’re buying like a Kingston or a SanDisk but you’re actually not, and they’re extremely poor quality, they’re slow, they sometimes just stop working, and it gives people huge number of issues, apps crashing all the time, users losing data, a lot of basically complaints and customer frustration. It’s gonna be a while before you finally accept that maybe the reason why it’s not performing is because you put in an SD card, right? You’re gonna blame the phone, you’re gonna blame the manufacturer, you’re gonna shout and scream and try to get it fixed, so many different ways until you say, ‘Actually, let me just take the SD card out and see what happens.’



In other words, which company wants that kind of bad press?



On the other hand, there’s the matter of performance itself. Samsung’s Galaxy S6, for example, is fitted with a new UFS 2.0 flash memorythat’s said to be significantly faster than standard flash memory on smartphones, and closer in performance to solid-state drives (SSDs). With that levels of read/write speeds, even a Class 10 memory card would appear slow – and that of course, would lead to complaints about the device “slowing down” in future. Hence, it meant that Samsung had to remove one of its most practical features for the sake of maintaining the S6’s premium performance.

It is this same reason that Hugo Barra argues against the addition of a microSD card slot on its affordable Mi 4i smartphone. “For high performance devices, we are fundamentally against an SD card slot,” he said.



Finally, in the same vein as “portability” in the earlier segment, smartphone makers would argue that with so many cloud syncing options, there’s no need for a microSD card slot on a smartphone. These days, a smartphone can have automatic camera backups using Google Drive, Dropbox, Microsoft OneDrive, Box and many more. Android also automatically syncs app data to your Google account, so each time you use a new device, your apps would be downloaded immediately. Why worry about a flimsy and tiny card when you have the power of the cloud?

MOVING FORWARD…

(Image: noelmace.com)

This would also surprise some of you, but Google has also been against cheap memory expansion years before anyone made a big deal out of it. This report way back in 2011 details how Google began encouraging other phone makers to increase internal storage on their smartphones, and reduce dependency on expandable memory. Bits of Barra’s argument above echoes in the report, stating the failure rates of SD cards were a big reason to avoid supporting expandable memory altogether.

The feature that allows apps to be transferred to a memory card, called Apps2SD and introduced in Android 2.2 Froyo, was meant to be a stop-gap solution. However, it has endured four years on and many iterations of Android later, possibly signalling that consumers aren’t ready to let go of the cheap microSD card option just yet – or that phone makers are still offering abysmally small internal storage, propagating the need for external storage solutions.

Either way, something’s got to give.

Micro SD Slot for Mobile phones

Wednesday, March 18, 2015

Lollipope Memory Leak Fix


It seems one of the bugs that plagued Android 5.0 Lollipop is still haunting some users who recently updated to Android 5.1 Lollipop, the first major update to Android Lollipop.

Some users have reported a memory leak issue in the Android 5.1 update that causes apps to crash and even fills device's memory.

The "Memory leak still present on Android 5.1" issue was reported last week on the Android Open Source Project (AOSP) issue tracker by some users.

One of the users wrote on the issue tracker, "I woke up this morning and noticed that Gmail was laggy. I checked the RAM and it reported 800MB used. I cleared all open apps and it still the same. Restart [fixed] it of course. This was the only fix that I was looking forward to in the 5.1 update. So disappointed." The memory leak issue seems to be affecting limited devices such as Google Nexus 5 and Google Nexus 6, as can be seen on the issue tracker.

Google in no time acknowledged the memory leak issue in Android 5.1 Lollipop, and aproject member said, "This has been fixed internally. We do not currently have a timeline for public release." We can expect another incremental update to the Android 5.1 (possibly Android 5.1.1) to be released in the coming days or weeks.

The memory leak issue in Android 5.0 Lollipop was first reported back in November last year and a Google project member in December marked the issue for 'Future Release'that seemingly confirmed that the company was unable to roll out a fix for this particular bug even with the Android 5.0.1 Lollipop update. Considering that users who recently updated to Android 5.1 Lollipop are still reporting the issue, it is confirmed that the memory leak issue still occurs.

Google starting last week announced the Android 5.1 Lollipop update that introduced some new features such as support for multiple SIM cards, Device Protection and HD voice on compatible devices with the update.


Android 5.1 Lollipop Memory Leak Issue Fixed Internally, Says Google

Friday, January 23, 2015


VIRTUAL ASSISTANTS, NEW WEB BROWSERS, SEAMLESS GAMING


With its new version of Windows, Microsoft has done the seemingly impossible: It skipped right over version 9 and straight to 10. Really, though, the maker of the world's most popular operating system dropped a lot of major announcements during its press event about Windows 10 on Wednesday. Here are the top five most interesting decisions by Microsoft for its next OS update—not including the holograms.

Windows 10 is free!


When was the last time you paid for an operating system? Because it might have been the last time... period. Just as Apple has begun making OS X free -- iOS, Android, and Windows Phone updates have always been free -- Windows has finally joined the gratis club. Well, mostly: Microsoft says it will let customers of Windows 7, 8.1, and Windows Phone 8.1 upgrade to Windows 10 for free for the first year of Windows 10's availability. (There is, unsurprisingly, some fine print.) Once you've upgraded, though, you're supported on Windows 10 for life.


"We think of Windows as a Service," wrote Terry Myerson, Microsoft's executive vice president of operating systems. It's clear that Microsoft wants to push its customers to Windows 10 as much as possible, which would mean fewer platforms for both the company and its developers to support. A low, low price tag helps make that happen.

Cortana



As rumored, the virtual assistant Cortana from Windows Phone will debut on the desktop in Windows 10. You mainly interact with Cortana via a search box next to the Start button, and it can retrieve information when prompted, either by typing or by vocalizing your search terms. Besides searching your computer and the Internet, Cortana can retrieve specific information about things like flight information, appointments, weather, and more; it even learns about what you're interested in so it can provide tailored results. Additionally, the assistant is seamless across devices, so what it learns on your Windows Phone, it also knows on your desktop PC.

Universal experience

Microsoft is trying hard to prove that Windows is the same Windowseverywhere. Case in point: No matter which platform you're talking about, it's just "Windows 10"; the "Windows Phone" moniker has bitten the dust. The company also redesigned its apps, music, photos, mail, calendar, messaging, and so on to look and work similarly across all of its devices. The company's goal is to keep a consistent experience between its mobile platforms and desktop PCs, allowing users to seamlessly transition between the two. It's even rolling out a universal version of Office apps for tablet, phone, and PC, in which it elevates touch interfaces to the level of traditional keyboard and mouse input. Some people may balk at creating an Excel spreadsheet with a touch of the finger, but once you learn it one place, you'll know how to do it everywhere.

Project Spartan





Microsoft has finally realized that its Internet Explorer web browser seriously lags behind the rest of the competition, so the company has issued a brand new browser that's code named Project Spartan. While Microsoft didn't delve too deep into its capabilities, it called out a few, such as an engine built on modern web technology; its support for annotation via keyboard or stylus; and an updated and simplified layout that puts the emphasis on the content itself. The company said Spartan will make it to Windows Phone, too, but wasn't ready to demo it today.

Xbox App




Xbox on Windows 10

Want to play your Xbox games on your PC? No problemo. Windows 10includes an Xbox app that lets you stream games from your Xbox One to your Windows 10-compatible tablets and PCs, capture gameplay footage on your PC with Game DVR, and—perhaps best of all—provides full interoperability with the Xbox Live service. The feature finally lets you play games on your PC against your friends on their Xbox One consoles, as well as message and chat

THE 5 MOST INTERESTING ANNOUNCEMENTS FROM MICROSOFT'S WINDOWS 10 EVENT

 
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