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.
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 |
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”Wearable Biosensors Future perspective
| Different types of wearable biosensors going to change the health care in the future |
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.
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| 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.
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| WishBone is a 'Y'Shapped gadget which can connect to any smartphone to read temperature data . Image @Wishbone |
| Hexoskin is equipped with different sensors which can accurately measure our health conditions : Image @Hexoskin |
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.
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| 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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