About | 3D Digitization (2024)

The 3D Program is a small group of technologists working within theSmithsonian Institution's Digitization Program Office. We focus on developing solutions to further the Smithsonian's mission of “the increase and diffusion of knowledge” through the use of three-dimensional scanning technology, analysis tools, and our distribution platform.

This work is already transforming core functions of our museums. Researchers in the field can now come back not only with specimens, but also 3D data documenting entire sites. Curators and educators are using 3D data as the basis for telling stories and sending students on quests of discovery. Conservators are using 3D data to track the condition of a collection item over time using 3D deviation analysis tools, showing exactly what changes have occurred to an object.

To say that we have a large job facing us is an understatement. The Smithsonian has more than 155 million unique artifacts and specimens; 3D scanning collections of these objects will be no small task. The challenges presented by these collections are many, from the variation in the shapes, sizes, textures and fragility of items, each of which presents its own issues, to changing scanning technologies and the ever increasing numbers of collection items, we are set up for some daunting opportunities. Even if we were to scan those items at the wildly unrealistic rate of one per minute, 24 hours a day, 365 days a year it would take us over 300 years.

We’ve been learning how to overcome these challenges by doing significant work to create and test scanning workflows. Over the past few years, we’ve progressed from doing one-off 3D scanning projects, to more complex single projects (such as the space Shuttle Discovery and Tyrannosaurus Rex), to small sets of items. Now we’re moving into a new phase: developing strategies and processes for high-throughput 3D digitization that can allow us to capture entire collections of objects.

About | 3D Digitization (1)

Leveraging the world's most advanced 3D scanning technology

Because of the scale of our challenge, we are partnering with the world's most advanced technology firms, collaborating on ambitious projects. Our hope is to help the Smithsonian share its collections with new audiences and find better ways to accomplish its mission, while giving our partners opportunities to develop new products and processes in automated, high-throughput, high-quality 3D scanning.

Currently, we are looking for partners to solve the following challenges:

  • finding ways to automate and scale parts of our process so that we can transition to a higher-throughput operation, while maintaining scanning quality and the highest level of safety for the objects and specimens being scanned;
  • creating an application program interface (API) that allows external platforms to connect to the Smithsonian content and seamlessly present it to their user base;
  • developing ways to manage, organize, and share the large amounts of 3D data and metadata (that is, data about the 3D data) that we collect, allowing viewers to understand where the models they are looking at came from and how best to interpret them;
  • enabling curators and other subject matter experts to enhance 3D models with annotations, creating stories around those models that enrich their educational content and blend effortlessly with the viewing experience;
  • creating an open source, web based 3D viewer that will allow users to appreciate the 3D models and data we create, regardless of what technology platform they use; and
  • building an open source community around the development and use of the applications we will create.

In a relatively short period of time, we have been honored to collaborate with colleagues across the Smithsonian Institution on projects as diverse as 3D scanning the Nation’s T. rex, the Apollo 11 Command Module Columbia, the Cosmic Buddha sculpture, President Abraham Lincoln’s life masks, the 1903 Wright Flyer, and many others. We have also partnered with some of the leading technology firms working in the field, including Autodesk and Google, to advance the state of the art in 3D scanning, VR and viewing technology. Ultimately, our hope is that the technology solutions we develop in collaboration with our partners will allow more meaningful interactions with the Smithsonian's collections for a far larger audience.

With only 1% of the Smithsonian's collections on display at any one time, digitization could allow us to bring the remaining 99% of the collection into the virtual light. These digital assets will allow not just the Smithsonian, but the world at large, to tell and share new stories about the familiar - and the unfamiliar - treasures in these collections.

About | 3D Digitization (2024)

FAQs

What is 3D digitization? ›

3D digitization is a term used to describe the process of scanning objects in three dimensions. It is the act of studying a real-world entity and collecting all of the data necessary to reconstruct its shape and look digitally.

What is digitization and why is it important? ›

Digitalization facilitates better collaboration and communication within organizations. Tools such as project management software, video conferencing, and real-time messaging apps break down siloes within organizations, fostering a culture of collaboration and boosting productivity.

What are the benefits of digitalization? ›

Benefits of digitisation
  • Access. ...
  • Generating income. ...
  • Brand. ...
  • Searchability. ...
  • Preservation. ...
  • Interaction. ...
  • Integration. ...
  • Disaster recovery.

What are the 3 steps of digitization? ›

A digitalization strategy – in three steps
  • Strategic analysis and setting targets. First, senior management should collaborate with middle management to come up with a digital vision and agenda. ...
  • Operationalizing the digitalization strategy. ...
  • Implementing the digitalization strategy.

How does 3D technology work? ›

3-D, motion-picture process that gives a three-dimensional quality to film images. It is based on the fact that humans perceive depth by viewing with both eyes. In the 3-D process, two cameras or a twin-lensed camera are used for filming, one representing the left eye and the other the right.

What is an example of digitization? ›

An example of digitization is the transfer of movies to DVD or the transfer of music from CD to MP3 format. It also includes the transfer of paper documents to digital documents, such as the transfer of invoices, contracts and other important documents to an electronic format.

How is digitization changing the world? ›

It has also brought the world closer together, allowing for the rapid exchange of information and ideas. Digital transformation has forced businesses to either adapt or perish. Traditional business models have been upended as companies embrace technology to stay competitive.

How does digitalization impact your life? ›

Digital technologies have advanced more rapidly than any innovation in our history – reaching around 50 per cent of the developing world's population in only two decades and transforming societies. By enhancing connectivity, financial inclusion, access to trade and public services, technology can be a great equaliser.

Is digitalisation good or bad? ›

One of the biggest advantages of digitalization is that it has helped businesses become more efficient and productive. With the help of digital tools and technologies, businesses can now automate their operations and reduce their dependence on manual labor. This has resulted in increased efficiency and productivity.

How to 3D scan a person? ›

3D Scanning the human body indoors with an even light is recommended for obtaining a colorful 3D model, keeping its textures natural. Try to avoid the light environment like with the imbalance of light and dark, or with straight sunlight. Indoors and outdoors are both available for 3D scanning a single-color 3D model.

How to create a 3D image? ›

With a pair of red-blue 3D glasses, a digital camera, and some photo editing software, you too can impress others with your very own three-dimensional photographs, also known as anaglyphs. To make these images, take two slightly spaced photos, strip each of specific colors, then layer them on top of one another.

What is the process of 3D scanning? ›

The 3D Scanning Process:

The shape of the object appears as millions of points called a “point cloud” on the computer monitor as the laser moves around capturing the entire surface shape of the object. The process is very fast, gathering up to 750,000 points per second and very precise (to ±. 0005″).

What is the difference between digitizing and digital? ›

While digitization focuses on converting and recording data, digitalization is all about developing processes and changing workflows to improve manual systems. An example of this would be using digitized customer data from different sources to automatically generate insights from their behaviour.

How do you do digitization? ›

Identification of Records to be digitized

An enterprise must identify the physical records that need to be digitized. They must first be sorted by various departments. For instance, Legal, HR, Finances, etc. Then, the different documents must be segregated under different categories as per the date, importance, etc.

What is digitization in radiography? ›

The radiographic image is converted into pixel values during the digitization process, which is used by the computer to build the digital image1,2,5,7.

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