Bacteria entering blood stream,
Close-up view of microparticles and detailed structures.
Schematic diagram showing connections of microcontroller ESP32,
motion sensor gyroscope,
GPS module,
buzzer,
and power supply in a circuit.
Close-up view of an electronic circuit board.
Features microchips and other components prominently.
The design features intricate detailing and stands prominently against a soft background.
Use of warm lighting adds an elegant touch.
showcasing the anatomy and structure in a realistic manner.
It appears on rustic brown paper,
giving it an antique feel.
The background enhances the artwork,
suggesting a preserved,
old-world charm.
This illustration might be used in educational contexts or as an art piece in a healthcare setting.
Image of an activPAL mounted on a leg.
The device displays time and connectivity options.
3D illustration of a virus with pink and purple spikes.
Focus on viral structure and details against a dark background.
Design for an Sri Lanka ID card.
Elements for personal identification.
Security features included.
Microchip on a green circuit board with glowing green lights around it.
Use nanotechnology-based sensors for high sensitivity.
Support multi-biomarker detection and real-time data processing with wireless connectivity.
Ensure low power,
biocompatibility,
and durability for portable devices.
A central chip on a circuit board emits a warm glow among dark components.
Close-up view highlights technology.
Macro photograph of a green microcontroller board.
Various electronic components and connectors showcase in dark backdrop.
Schematic diagram highlights connections of microcontroller and sensors.
A macro photograph of a green microcontroller board showcasing various electronic components and connectors against a dark backdrop.
symbolizing love and commitment.
This image is a highly detailed 3D rendering depicting the interior of a blood vessel.
It shows a cross-section revealing the vessel's structure,
including the lining and surrounding tissues in vibrant reds and yellows.
The focus is on a dark,
almost spherical object within the vessel,
resembling blood cells or a clot formation,
highlighting biological complexity.
Close-up view of a glowing microchip on a circuit board.
Emphasize advanced technology.
The illustration depicts the intricate design of an intravascular stent.
It features a two-layer structure: the outer layer acts as an anchor,
while the inner layer contains the electrodes and sensors.
The drawing clearly distinguishes between the two layers and their connection points.
Fine details highlight the engineering behind the stent's functionality.
This visual serves an educational purpose in the field of biomedical engineering.
This digital illustration vividly depicts a human heart,
showcasing its complex structure with prominently detailed arteries and veins.
The use of bright red and blue colors emphasizes the circulatory system,
almost three-dimensional appearance.
The background remains neutral,
Board features various electronic components and connectors.
Close-up view of a CPU computer chip on a clean white motherboard.
Chip detailed with intricate gold pins connections.
Green chip color enhances against white background.
Various electronic components visible in background.
Demonstrates advanced design of computer hardware.
symbolizing a blend of emotion and faith.
create a scientific illustration of Deucravacitinib depicting cellular interactions with labeled elements
Illustrates signaling pathways involved in protecting retinal cells from oxidative stress.
Highlights key enzymes HO-1,
SOD,
CAT,
GSH-PX with apoptotic modulation.
Mainly focuses on antioxidant mechanisms.
The image presents a detailed cross-sectional view of a human artery,
illustrating the buildup of cholesterol plaque along the inner walls.
Blood cells can be seen traveling through the arterial passage,
conveying the process of atherosclerosis,
where plaque accumulation narrows the artery and restricts blood flow.
The visual effectively captures the medical concept in a vivid and clear manner.