Point Cloud Processing

Point cloud processing is the computational analysis of three-dimensional data represented as collections of points with spatial coordinates, and it matters because these data capture the shape and location of anatomical structures. Processing pipelines typically remove noise and outliers, align multiple scans through registration, and segment points into meaningful regions before reconstructing or measuring surfaces. In medicine, point clouds generated from CT, MRI, or optical scanning can support anatomical visualization, quantitative assessment, surgical planning, and the development of patient-specific models. Reliable processing improves the extraction of geometric information from complex anatomy and supports more precise analysis in biomedical research and clinical workflows.

Point Cloud Processing - Related Videos

Research

JoVE Journal - Engineering
Free Sample

Knowledge Based Cloud FE Simulation of Sheet Metal Forming Processes

0 Views •

Cited by 10 •

2016

The following paper presents a novel FE simulation technique (KBC-FE), which reduces computational cost by performing simulations on a cloud computing environment, through the application of individual modules. Moreover, it establishes a seamless collaborative network between world leading scientists, enabling the integration of cutting edge knowledge modules into FE simulations.

Research

JoVE Journal - Environment
Free Sample

Collecting and Processing Drone-based Remotely Sensed Data for Use in Forest Recovery Monitoring

0 Views •

Cited by 1 •

2025

Recent advancements in remotely piloted aircraft systems (RPAS) allow sub-meter resolution, ideal for forest recovery monitoring. Integrating artificial intelligence (AI) enables deeper insights from large remotely sensed datasets. This protocol improves monitoring by supporting more efficient assessment and management of forested lands recovering from disturbance.

Education

JoVE Core - Physical Chemistry

Processes at Electrodes

0 Views •

2026

The electrode interacts with ions in the electrolyte solution at its interface. The rate of oxidation and reduction depends on the speed at which electrons can transfer through this interface. As ions attach to or leave the electrode surface, the electrode acquires a charge, and an electrical potential forms across the interface, making the process more difficult to reach equilibrium. The charge on the electrode affects the local ion concentrations in the solution, though thermal motion...

Isothermal Processes

0 Views •

2025

A thermodynamic process that occurs at constant temperature is called an isothermal process. Heat slowly flows into the system or out of the system to maintain thermal equilibrium. Processes involving phase changes like water evaporation into steam or freezing water into ice at a constant temperature are examples of Isothermal Processes. An ideal gas can also undergo isothermal expansion or compression. For example, consider 1 mole of an ideal gas inside an isolated cylinder at initial volume V...

Work Done in an Adiabatic Process

0 Views •

2025

Consider the adiabatic compression of an ideal gas in the cylinder of an automobile diesel engine. The gasoline vapor is injected into the cylinder of an automobile engine when the piston is in its expanded position. The temperature, pressure, and volume of the resulting gas-air mixture are 20 °C, 1.00 x 105 N/m2, and 240 cm3 , respectively. The mixture is then compressed adiabatically to a volume of 40 cm3. Note that, in the actual operation of an automobile engine, the compression is not...

View All Results

FAQs

Related Topics