Tag Archives: brain

Detecting patients’ pain levels via their brain signals | MIT News

Researchers from MIT and elsewhere have developed a system that measures a patient’s pain level by analyzing brain activity from a portable neuroimaging device. The system could help doctors diagnose and treat pain in unconscious and noncommunicative patients, which could … Continue reading

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Theory INTRODUCTION TO INFRARED (IR) optics, physics, technology.(I.R. can penetrate the skin and bone and effect the brain/nanotechnology designed to receive it (Quantum dots)…

All objects with an absolute temperature over 0 K emit infrared (IR) radiation. Infrared radiant energy is determined by the temperature and emissivity of an object and is characterized by wavelengths ranging from 0.76 (the red edge of the visible range) to 1000 μm (beginning of microwaves range). The higher the temperature of an object, the higher the spectral radiant energy, or emittance, at all wavelengths and the shorter the peak wavelength of the emissions. Due to limitations on detector range, IR radiation is often divided into three smaller regions based on the response of various detectors

IR radiation has small energy when compared to Visibile or UV rays (energy is inversely proportional to wavelength), these detectors are cooled down to cryogenic temperatures in order to increase infrared detection efficiency/sensitivity. Cooling methods include Stirling cycle engines, liquid nitrogen and thermoelectric cooling (). Cooled thermal imaging cameras are the most sensitive type of cameras to small differences in scene temperature.
Quantum detectors react very quickly to changes in IR levels (response time order of μs), however they have response curves with detectivity that varies strongly with wavelength.
Cooled quantum detector materials include – InSb, – InGaAs, – PbS, – PbSe, – HgCdTe (MCT).

Short-wave infrared (0.9 to 1.7 µm): mainly InGaAs detectors cover this region
Mid-wave infrared (3 to 5 µm): covered by Indium antimonide (InSb), HgCdTe and partially by lead selenide (PbSe)
Long-wave infrared (8 to 14 µm): this region is covered by HgCdTe and microbolometers

COMMON INFRARED (IR) MATERIALS

Zinc Selenide (ZnSe)
Zinc Sulfide (ZnS)
Zinc Sulfide MultiSpectral (ZnS MS)
Germanium (Ge)
Gallium Arsenide (GaAs)
Silicon (Si)

OPTICAL COATINGS

ANTI-REFLECTIVE AR COATING

Anti-reflective (AR) coatings are thin films applied to surfaces to reduce their reflectivity through optical interference. An AR coating typically consists of a carefully constructed stack of thin layers with different refractive indices. The internal reflections of these layers interfere with each other so that a wave peak and a wave trough come together and extinction occurs, leading to an overall reflectance lower than that of the bare substrate surface. Anti-reflection coatings are included on most refractive optics and are used to maximize throughput and reduce ghosting. Perhaps the simplest, most common anti-reflective coating consists of a single layer of Magnesium Fluoride (MgF2), which has a very low refractive index (approx. 1.38 at 550 nm)

HARD CARBON ANTI-REFLECTIVE HCAR COATING

HCAR is an optical coating commonly applied to Silicon and Germanium designed to meet the needs of those applications with optical elements exposed to harsh environments, such as military vehicles and outdoor thermal cameras. This coating offers highly protective properties coupled with good anti-reflective performance, protecting the outer optical surfaces from high velocity airborne particles, seawater, engine fuel and oils, high humidity, improper handling, etc.. It offers great resistance to abrasion, salts, acids, alkalis, and oil. Continue reading

Posted in bio-nano brain control implantation technology & effects, biologically integrated organic semiconductors nanoscale photonic optical crystal meta-material RFID tracking and remote brain control in vivo implanted human genetic modifications, Coercive Technology 'non-lethal' weapons Microwave Mind Control, INFRARED (IR) OPTICS OPTOGENETICS NANOTECHNOLOGY AND THE BUILDING BLOCKS AND CONCEPTS TO UNDERSTAND PSYCHOTRONIC ELECTROMAGNETIC NON-KINETIC ENERGY BASED WEAPONS AND MIND CONTROL VIA REMOTE NEURAL MON | Tagged , , , , , , , , , , , , , , , , , , , , , , , , , , , , , | 1 Comment

Viral vectors are a key technology for neuroscience research, allowing delivery of genes into the brain to manipulate brain function- viruses can be delivered with spatial and temporal specificity, and can be engineered to produce cell-type specificity of expression. Importantly, viruses can also be used for genetic manipulation of species

Viral vectors are a key technology for neuroscience research, allowing delivery of genes into the brain to manipulate brain function.

In addition to their speed and cost advantages, viruses can be delivered with spatial and temporal specificity, and in some cases can be engineered to produce cell-type specificity of expression.

The viral gene transfer core was established in 2008 by the Picower Institute and the McGovern Institute to make viral vectors accessible to the MIT neuroscience community.
Directed by Rachael Neve, its overall goals are to provide the most advanced viral vector technologies, and to drive the development of new applications that will benefit neuroscience research.

The production of viruses requires special expertise, and given the range of vectors now available, it is not easy for individual labs to develop the necessary expertise to take full advantage of these technologies. Continue reading

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organic, nano-scale, biologically-integrated, self assembling electronics are here, functioning, and now inside of you and I

organic, nano-scale, biologically-integrated, self assembling electronics are here, functioning, and now inside of you and I Continue reading

Posted in and now inside of you and I, biologically-integrated, functioning, nano-scale, organic, organic nano-scale biologically-integrated self assembling electronics are here functioning and now inside of you and I, self assembling electronics are here | Tagged , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , | Leave a comment

makes children robotic, lethargic, depressed, “causes gross malfunctions in the brain of the child”

Ritalin is pharmacologically similar to cocaine with perhaps even worse brain damaging potential with … “a high potential for abuse which may lead to severe psychological or physical dependence.” It also increase the risk of sudden death by 500 percent, … Continue reading

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