flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

First look: University at Buffalo's downtown medical school by HOK

First look: University at Buffalo's downtown medical school by HOK

State-of-the-art medical school and integrated transit station will anchor vibrant mixed-use district


By HOK | April 10, 2013
A view of the new medical school from Main Street (Rendering by HOK)
A view of the new medical school from Main Street (Rendering by HOK)

The University at Buffalo (UB) has unveiled HOK's dramatic design for its new School of Medicine and Biomedical Sciences building on the Buffalo Niagara Medical Campus.

The seven-story medical school will bring 2,000 UB faculty, staff and students daily to downtown Buffalo and, at more than 500,000-square-feet, will be one of the largest buildings constructed in Buffalo in decades. HOK’s design features two L-shaped structures linked to create a six-story, light-filled glass atrium that includes connecting bridges and a stairway. Serving as the building’s main interior “avenue,” the atrium will be naturally illuminated by skylights and two glass walls, one along Washington Street and one at the terminus of Allen Street.

The building, which HOK is designing for LEED Gold certification, will have a facade clad with a high-performance terra-cotta rain-screen and a glass curtain wall system that brings daylight deep inside.

Incorporating the NFTA Allen Street transit hub into the medical school’s ground floor provides convenient mass transit access, furthering the development of a sustainable, vibrant community.

The new medical school will help the university achieve objectives critical to the UB 2020 strategic plan: creation of a world-class medical school, recruitment of outstanding faculty-physicians to the university and transformation of the region into a major destination for innovative medical care and research.

 

 

“The new design allows us to grow our class size from 140 to 180, educating more physicians, many of whom will practice in the region,” said Michael E. Cain, MD, vice president for health sciences at UB and dean of the medical school. “It allows UB to hire more talented faculty, bringing to this community much-needed clinical services and medical training programs.”

“HOK’s design for UB’s medical school creates the heart for the new Buffalo Niagara Medical Campus while integrating and connecting to the surrounding communities," said Kenneth Drucker, FAIA, design principal for the project and design director for HOK’s New York office. "The building’s atrium will be the focal point for bringing together clinical, basic sciences and educational uses fostering collaboration.”

The building’s first two floors will house multipurpose educational and community spaces for medical school and community outreach programs.

 

 

A second-floor bridge will link to the new John R. Oishei Children’s Hospital and the Conventus medical office building under construction along High Street adjacent to UB’s new medical school.

The third, fourth and fifth floors of the medical school will feature core research facilities and approximately 150,000 square feet of state-of-the art research laboratories.

“The new lab spaces will allow us to efficiently group faculty by thematic research areas," said Cain. "Because they are modular, we can change their size and configuration as needed."

The sixth floor will house some of the country's most advanced specialized medical education facilities, including an expanded patient care simulation center that will feature the Behling Simulation Center currently located on UB’s South Campus. It also will house a surgical simulation center where medical students can conduct surgeries in a simulated operating room. A robotic surgery simulation center will train students and physicians in remote control surgery technologies.

 

 

The medical school’s administrative offices and academic departments will be located on floors three through seven. The seventh floor will house gross anatomy facilities.

“From the new school’s active learning environments to the highly flexible research laboratories supporting multidisciplinary teams of investigators, the design supports a range of global trends for the design of academic and research facilities,” said Bill Odell, FAIA, HOK’s director of science and technology.

"The building layout brings together academia and research to foster collaboration and interdisciplinary patient care,” added Jim Berge, AIA, principal-in-charge for the project and HOK’s director of science and technology in New York. “There will be many opportunities for students, faculty, researchers, administrators and members of the local medical community to interact.”

The $375 million medical school is funded in part by NYSUNY 2020 legislation. Groundbreaking is scheduled for September 2013 and construction is expected to be complete in 2016.

 



HOK’s Science +Technology group has designed medical schools and research laboratories for Florida State University, the University of Alberta, Washington University in St. Louis and The Commonwealth Medical College in Scranton, Pa. The firm served as lead designer for The Francis Crick Institute's cardiovascular and cancer research center in central London and won an international competition to design the Ri.MED Biomedical Research and Biotechnology Center in Palermo, Sicily.

HOK is a global design, architecture, engineering and planning firm. Through a network of 24 offices worldwide, HOK provides design excellence and innovation to create places that enrich people's lives and help clients succeed. In 2012, for the third consecutive year, DesignIntelligence ranked HOK as the #1 role model for sustainable and high-performance design.

Related Stories

Legislation | Nov 23, 2022

7 ways the Inflation Reduction Act will impact the building sector

HOK’s Anica Landreneau and Stephanie Miller and Smart Surfaces Coalition’s Greg Kats reveal multiple ways the IRA will benefit the built environment. 

Multifamily Housing | Nov 22, 2022

10 compelling multifamily developments debut in 2022

A smart home tech-focused apartment complex in North Phoenix, Ariz., and a factory conversion to lofts in St. Louis highlight the notable multifamily developments to debut recently.

Digital Twin | Nov 21, 2022

An inside look at the airport industry's plan to develop a digital twin guidebook

Zoë Fisher, AIA explores how design strategies are changing the way we deliver and design projects in the post-pandemic world.

Healthcare Facilities | Nov 17, 2022

Repetitive, hotel-like design gives wings to rehab hospital chain’s rapid growth

The prototype design for Everest Rehabilitation Hospitals had to be universal enough so it could be replicated to accommodate Everest’s expansion strategy.

Industrial Facilities | Nov 16, 2022

Industrial building sector construction, while healthy, might also be flattening

For all the hoopla about the ecommerce boom and “last mile” order fulfillment driving demand for more warehouse and manufacturing space, construction of industrial buildings actually declined over the past five years, albeit marginally by 2.1% to $27.3 billion in 2022, according to estimates by IBIS World. Still, construction in this sector remains buzzy.

Wood | Nov 16, 2022

5 steps to using mass timber in multifamily housing

A design-assist approach can provide the most effective delivery method for multifamily housing projects using mass timber as the primary building element.

Giants 400 | Nov 14, 2022

Top 55 Airport Terminal Architecture + AE Firms for 2022

Gensler, PGAL, Corgan, and HOK top the ranking of the nation's largest airport terminal architecture and architecture/engineering (AE) firms for 2022, as reported in Building Design+Construction's 2022 Giants 400 Report. 

Giants 400 | Nov 14, 2022

4 emerging trends from BD+C's 2022 Giants 400 Report

Regenerative design, cognitive health, and jobsite robotics highlight the top trends from the 519 design and construction firms that participated in BD+C's 2022 Giants 400 Report.

Green | Nov 13, 2022

NREL report: Using photovoltaic modules with longer lifetimes is a better option than recycling

A new report from the U.S. National Renewable Energy Laboratory (NREL) says PV module lifetime extensions should be prioritized over closed-loop recycling to reduce demand for new materials.

Green | Nov 13, 2022

Global building emissions reached record levels in 2021

Carbon-dioxide emissions from building construction and operations hit an all-time high in 2021, according to the most recent data compiled by the Global Alliance for Buildings and Construction.

boombox1
boombox2
native1

More In Category


Healthcare Facilities

Watch on-demand: Key Trends in the Healthcare Facilities Market for 2024-2025

Join the Building Design+Construction editorial team for this on-demand webinar on key trends, innovations, and opportunities in the $65 billion U.S. healthcare buildings market. A panel of healthcare design and construction experts present their latest projects, trends, innovations, opportunities, and data/research on key healthcare facilities sub-sectors. A 2024-2025 U.S. healthcare facilities market outlook is also presented.



halfpage1

Most Popular Content

  1. 2021 Giants 400 Report
  2. Top 150 Architecture Firms for 2019
  3. 13 projects that represent the future of affordable housing
  4. Sagrada Familia completion date pushed back due to coronavirus
  5. Top 160 Architecture Firms 2021