Sports
We know more about quarterbacks’ arms than ever. Can NFL teams take advantage?
When Buffalo Bills star Josh Allen comes across YouTube clips of himself throwing passes for the University of Wyoming, he swears he doesn’t recognize that guy.
“It’s night and day in terms of the type of thrower I am,” Allen said this summer. “Where I held the ball, where I released the ball — it looks like a different guy. It’s kind of gross to look at sometimes. But I don’t think it’s as gross anymore.”
Allen, like many other NFL quarterbacks, spends time each offseason tweaking details of his throwing motion, “just trying to be as efficient as possible,” he said. And efficiency is the specialty of biomechanics experts such as Chris Hess, the founder of the 3D motion analysis company Biometrek.
A quarterback is a “rotational athlete,” one who rotates the body in order to throw, swing or hit. Hess and other specialists in the private sector specifically focus on the kinetic sequence, the transfer of energy during that rotation from the base of the body up through the arm.
An efficient thrower’s accuracy increases, biomechanists say, because his energy travels in the correct sequence: from legs to pelvis to torso to arm, with each reaching peak rotational velocity as the next begins. More efficient throwers also put less stress on their arms over time because the body properly produces and transfers the energy required to throw.
“Accuracy isn’t voodoo,” Hess likes to say, “it’s biomechanical science.”
Allen has worked with Hess and his motion-capture software since 2020 and believes this has helped make him a more accurate, controlled thrower. There is some evidence to support this. Allen’s completion percentage jumped from 52.8 and 58.8 in 2018 and 2019 to 69.2 percent in 2020 and has not dipped below 63 percent since (even while playing through a partially torn ulnar collateral ligament in his right elbow in 2022).
A rising number of NFL quarterbacks rely on independent professionals like Hess to incorporate biomechanics and its corresponding technology into their offseason training. Young stars like Allen, C.J. Stroud, Caleb Williams, Anthony Richardson and Brock Purdy have consulted with Hess to gather vast pools of data that tell them everything about how efficiently or inefficiently they throw using motion-capture technology.
After collecting and interpreting the data, Hess collaborates with physical therapists such as Dr. Tom Gormley to help them make body adjustments while private quarterbacks coaches such as Will Hewlett, Jordan Palmer and Adam Dedeaux fine-tune mechanics and technique. They develop injury prevention and recovery plans, pre-throw and post-throw routines and more — all with the hope of maximizing a quarterback’s arm, the tool that can make or break his career.
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“It’s the most important position in all of sports, so you’re constantly evolving, trying to find ways to get mental reps, physical reps, without overdoing it,” said Bills GM Brandon Beane. “There is so much invested in that position that you are always looking for any area to improve to give your guys even the slightest advantage.”
Each spring, Hess travels the country to put quarterbacks through his motion capture programming at the request of their private coaches and occasionally NFL teams. His pack-and-go equipment, which uses high-resolution cameras to track movement rather than attaching sensors to the player, builds a perimeter of the cameras on a field like a super-sized imitation of a quarterback’s pocket.
The quarterback executes a range of spot throws from inside that pocket to establish a baseline. Once the system is calibrated, Hess has quarterbacks throw to receivers running a variety of routes. The quarterback can bootleg in and out of the perimeter of cameras, as the testing aims to simulate as many football movements as possible.
Streams of data emerge as the quarterback’s movement is translated by a computer into speed and energy outputs from every part of his body at each millisecond of every throw. Hess organizes the data into digestible pieces, including graphs and a visual display of the quarterback’s body as he throws — a skeleton frame with flashing colors that represent his energy transfer.
Hess and the physical therapists and private quarterbacks coaches he works with aren’t looking for massive issues. They emphasize the tiniest of adjustments that, over time, build the most efficient throwing motions possible.
“If you’re calling me, you’re ready for some granular information,” Hess said.
(Chris Hess / Biometrek)
For example, if a right-handed quarterback’s right leg extends even by a small degree before the pelvis starts to rotate — an issue common among throwers — that creates more forward momentum, not rotational momentum. Over time, such a movement puts more stress on the arm because the quarterback makes up for a lack of rotational energy by producing more effort with his shoulder/arm and tends to have less “feel” in his throw, which can turn into inaccuracy.
Once identified by Hess, the team of private specialists can introduce small, repetitive drills and exercises to correct the issue over weeks and months of offseason training.
“In 2020, when we first started working together, (Allen) felt like he had to rip every ball as hard as possible to get it to go where it was,” said Hess. “Whenever he had to throw something intermediate or short … he was kind of trying to de-accelerate his arm to slow the ball down to get touch. And it just made it so inconsistent.
“We gave him the information and helped him understand how to become rotational. Once he knew that, now Josh can speed up and slow down the ball with his body — the hand is just out there guiding the ball.”
Much of the science informing Hess and others comes from over a decade of research and application of biomechanics in baseball and golf.
“Baseball is pretty much light years ahead of the NFL as far as the ability to integrate sports science and also be data-driven,” said Dr. Emily Ferree, a physical therapist, biomechanist and movement specialist who consults for Major League Baseball teams, private quarterback coaches and NFL and college football players.
Baseball was an early investor in biomechanical application. There are dozens of “arms” in a given MLB team’s farm system, so huge amounts of data can be collected and studied each year, and technology and methods advance quickly as a result. The sport is even built to help keep that data clean. Pitchers may use different types of throws, but the ball is always thrown a specific distance from a specific spot on the field.
“There is a very repeatable, very controllable movement that you can test and measure (in a lab) that is almost identical to the performance environment,” Ferree said.
A quarterback can go into a play with a specific plan for his throw, but anything can happen after the snap to change that plan. What are his body and arm doing when he is scrambling away from pressure or suddenly opting to throw a sidearm pass while on the move in order to thread the ball between two defenders?
“There are so many things that happen in an NFL game that change the way the quarterback moves that it’s hard to do a singular throwing evaluation,” said Ferree. “That doesn’t mean that I don’t think it’s worth it. It gives us their baseline movement pattern — this is how your arm works, this is how it connects to your torso, this is how you generally transfer energy from your lower extremities to your upper extremities, this is how efficient you are, this is how (in)-efficient you are.”
Biomechanics-specific motion capture technology has proven useful in injury prevention and recovery. Ferree often sees quarterbacks try to “protect their elbow” as they return to throwing after a significant arm surgery (such as the UCL repair Purdy underwent in 2023, when he worked with Gormley and Hewlett throughout the recovery process). Their rotation changes — which has a ripple effect on the rest of their body.
“They just really aren’t efficient in their throwing motion,” Ferree said, “Motion capture in the rehab process can be huge because it allows you to track their arm path and basically tailor their throwing program to make sure they’re coming back as efficiently and as well as possible.”
The technology can also help quantify fatigue. Biomechanics experts can now see exactly when a thrower begins to wear down because they can measure micro changes in their transfer of energy. From there, experts can plan the quarterback’s ideal workload through the course of a practice week.
(Chris Hess / Biometrek)
Many NFL strength and conditioning and medical staffs collaborate with quarterbacks using data gathered from private offseason specialists to formulate an overall plan for injury recovery, arm maintenance and workload management. But the investment in sports science, medical and conditioning staffs and technology varies among the 32 organizations.
Some owners are simply willing to spend more money in that area than others. Plus, the NFL can be a hard environment for experimenting with new data and technology — some teams feel there is not enough time or comfort to try new things while maintaining care for a 90-man offseason roster and 53-man in-season roster.
Some quarterbacks want more than teams can offer — or simply feel more comfortable working with specialists where they can receive niche programming. At times, there have been highly publicized rifts between a quarterback and his independent coaches on one side and the organization on the other (think Tom Brady and Alex Guerrero chafing against Bill Belichick in the mid-2010s) that have given owners pause when working with the private sector.
Bridging the gap between those specialists and an NFL team requires balance. NFL teams have to look at the entire roster when choosing which technologies they champion and which experts they employ. Certain quarterback-specific practices, for example, are of no use to the rest of the players on the roster. A sports performance director, and ultimately a team’s owner, decides whether an investment is worth it or not.
A team could hire a quarterback-focused biomechanist and invest in its own motion capture technology, similar to the model of many MLB teams, but what other role would that person hold in an NFL building? The work done by private specialists includes making tiny adjustments to how a player throws and his workload to maximize arm strength and preserve its health. Would that bump up against the work of NFL team’s quarterbacks coach? It might not matter — quarterbacks coaches in some buildings are more focused on game planning and play installation during the season and less on actual player development.
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Turnover also works against the full implementation of biomechanical data and training methods. Gathering enough data to turn into useful applications can take years. A lack of continuity at head coach and in the front office can sometimes mean the same in a team’s athletic training and sports medicine departments.
Some teams outsource biomechanical work, especially for quarterbacks. In that case communication with the quarterback about the data gathered from his offseason training — and an understanding of how to apply it from late July to February, when the player is with the team — is crucial.
“We are in an unprecedented time with this steep curve of technology coming out so fast — more than we probably can ingest it, to be honest,” said Tyler Williams, the Minnesota Vikings’ VP of player health and performance. “That gets a little dangerous. You’re trying to figure out, ‘How do we filter out the noise’?”
Under Williams, the Vikings test certain technologies throughout the year, accumulating data in as real a football environment as possible and studying the results over a long time. The team puts accelerometers in its practice footballs to measure changes in velocity, rotation and distance. They match those changes with movement trackers that assess energy output and stress on the body and parse this in combination with motion capture software and practice film.
The idea is to see what patterns might emerge regarding how players expend energy, the effect of certain movements and drills on the body and more.
“You’re pairing biomechanical (study), motion capture, different variables. It gives you a way further granular picture of how the quarterback moves (and) what makes them successful,” Williams said.
“You’re building a picture with puzzle pieces. In 1985, we were using the little kid puzzles that had eight pieces. … Eventually, with mobile motion capture, accelerometers, on-field player tracking from RFID technologies, force plate technologies — all of these different types of entities — we can measure the athlete (with), now we’re probably playing with a picture that is like, a 500-piece puzzle.”
Rams QB Matthew Stafford flips a sidearm pass during the playoffs last season in Detroit. (David Reginek / USA Today)
Like the Vikings, the Rams’ sports science department — once led by Williams and now by Trent Frey, who spent the last six years in a similar role with the NHL’s Los Angeles Kings — places sensors in the practice footballs. The Rams also collect movement tracking data for the entire roster and can quantify energy output per movement, which helps when building workload management plans for players.
Frey and the Rams’ medical and strength and conditioning staff then work with coaches to script out practices and weight room periods. The idea is to get every player as individualized a plan as possible while keeping a team atmosphere intact. The quarterback will not have the same weight training and injury prevention programming as a receiver, who will not have the same programming as a defensive end and so on.
It wasn’t so long ago, said Rams director of strength and conditioning Justin Lovett, that NFL quarterbacks protested getting pulled off of “the main lift” (the group weight training session) in the interest of more specialized training.
“There was a little bit of a culture shock,” Lovett said. “The coaches and the quarterbacks would say, ‘I need my guys to see us work.’ … Sometimes that would cut at the grit or the culture that your head coach is trying to establish.”
Lovett wants to blend the months of independent offseason training and biomechanics work into a much tighter NFL ramp-up period in the spring. “It’s really accessing that network and then carrying where they left off,” he said.
When Hess works with quarterbacks, he runs them through a final motion capture session right before OTAs, and the player’s team receives the results. From there, Gormley or another specialist can explain what adjustments he and the player’s private coach made, what warmup and recovery exercises they implemented — and show exactly why using Hess’ data.
With the Rams, Gormley went a step further. Lovett hosted him for two days this spring at their practice facility in Thousand Oaks, Calif., to talk to the strength and conditioning and sports performance staff about biomechanics and the physical application of available technology.
Lovett believes the private sector has gotten so advanced that it can give an open-minded team an edge in building out its quarterback’s in-season training plan. External specialists and the quarterbacks they work with in the offseason have more information about a thrower’s arm than ever before.
As investments into the position increase by millions each year, figuring out how to best tap into that information year-round might be NFL teams’ next advantage.
(Illustration: Dan Goldfarb / The Athletic; photos: Robin Alam / ISI Photos, Brian Rothmuller / Icon Sportswire via Getty Images)
Sports
Winter Olympics venue near site of 20,000 dinosaur footprints, officials say
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A handful of Olympic participants will be competing where giants once roamed.
A wildlife photographer in Italy happened to come upon one of the oldest and largest known collection of dinosaur footprints at a national park near the 2026 Milan Cortina Winter Olympics venue of Bormio, officials said Tuesday. The entrance to the park, where the prints were discovered, is located about a mile from where the Men’s Alpine skiing will be held.
In this photograph taken in September 2025 and released Tuesday, Dec. 16, 2025, by Stelvio National Park, Late Triassic prosauropod footprints are seen on the slopes of the Fraeel Valley in northern Italy. (Elio Della Ferrera/Stelvio National Park via AP)
The estimated 20,000 footprints are believed to date back about 210 million years to the Triassic Period and made by long-necked bipedal herbivores that were 33 feet long, weighing up to four tons, similar to a Plateosaurus, Milan Natural History Museum paleontologist Cristiano Dal Sasso said.
“This time reality really surpasses fantasy,” Dal Sasso added.
Wildlife photographer Elio Della Ferrera made the discovery at Stelvio National Park near the Swiss border in September. The spot is considered to be a prehistoric coastal area that has never previously yielded dinosaur tracks, according to experts.
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This photograph, taken in September 2025 and released Tuesday, Dec. 16, 2025, by Stelvio National Park, shows a Late Triassic prosauropod footprint discovered in the Fraele Valley in northern Italy. (Elio Della Ferrara/Stelvio National Park via AP)
The location is about 7,900-9,200 feet above sea level on a north-facing wall that is mostly in the shade. Dal Sasso said, adding that the footprints were a bit hard to spot without a very strong lens.
“The huge surprise was not so much in discovering the footprints, but in discovering such a huge quantity,’’ Della Ferrera said. “There are really tens of thousands of prints up there, more or less well-preserved.’’
Though there are no plans as of now to make the footprints accessible to the public, Lombardy regional governor Attilio Fontana hailed the discovery as a “gift for the Olympics.”
Lombardy region governor Attilio Fontana attends a press conference in Milan, Italy, Tuesday, Dec. 16, 2025, on a discovery of thousands of dinosaur tracks in Lombardy region. (AP Photo/Luca Bruno)
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The Winter Olympics are set to take place Feb. 6-22.
The Associated Press contributed to this report.
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Sports
High school basketball: Boys’ and girls’ scores from Tuesday, Dec. 16
HIGH SCHOOL BASKETBALL
TUESDAY’S RESULTS
BOYS
CITY SECTION
Downtown Magnets 103, Aspire Ollin 12
Sotomayor 67, Maywood CES 28
Stern 35, Rise Kohyang 33
Triumph Charter 68, LA Wilson 51
University Prep Value 66, Animo Venice 52
WISH Academy 79, Alliance Ted Tajima 16
SOUTHERN SECTION
AGBU 63, Newbury Park 51
Arcadia 82, Glendale 34
Baldwin Park 57, Pomona 23
Banning 90, Bethel Christian 26
Big Bear 89, University Prep 45
Calvary Baptist 58, Diamond Bar 57
Chino Hills 78, CSDR 31
Citrus Hill 76, San Gorgonio 30
Corona 58, Granite Hills 17
Crescenta Valley 73, Burbank Burroughs 43
Desert Chapel 69, Weaver 34
Desert Christian Academy 56, Nuview Bridge 19
Eastvale Roosevelt 53, Hesperia 52
Eisenhower 67, Bloomington 52
El Rancho 55, Sierra Vista 52
Elsinore 72, Tahquitz 36
Estancia 68, Lynwood 30
Entrepreneur 72, Crossroads Christian 41
Harvard-Westlake 86, Punahou 42
Hesperia Christian 59, AAE 39
La Palma Kennedy 41, Norwalk 34
Loara 67, Katella 41
Long Beach Cabrillo 74, Lakewood 55
Long Beach Wilson 75, Compton 64
NSLA 52, Cornerstone Christian 33
Oxford Academy 66, CAMS 42
Public Safety 54, Grove School 41
Rancho Alamitos 58, Century 28
Redlands 52, Sultana 51
Rio Hondo Prep 68, United Christian Academy 24
Riverside Notre Dame 55, Kaiser 50
San Bernardino 94, Norco 80
Shadow Hills 60, Yucaipa 52
Summit Leadership Academy 71, PAL Academy 9
Temecula Prep 77, San Jacinto Leadership Academy 43
Temescal Canyon 68, West Valley 52
Tesoro 57, Aliso Niguel 53
Valley Christian Academy 57, San Luis Obispo Classical 27
Viewpoint 74, Firebaugh 39
Villa Park 60, Brea Olinda 49
Webb 64, Santa Ana Valley 36
Western 61, El Modena 34
Westminster La Quinta 53, Santa Ana 39
YULA 61, San Diego Jewish Academy 26
INTERSECTIONAL
Brawley 66, Indio 46
Cathedral 60, Bravo 49
Los Alamitos 73, Torrey Pines 53
Santa Ana Calvary Chapel 53, Huntington Park 30
St. Pius X-St. Matthias Academy 65, LA Marshall 59
USC Hybrid 63, Legacy College Prep 13
GIRLS
CITY SECTION
Aspire Ollin 57, Downtown Magnets 12
Lakeview Charter 70, Valor Academy 10
Stern 34, Rise Kohyang 6
Washington 34, Crenshaw 33
SOUTHERN SECTION
Bolsa Grande 21, Capistrano Valley 26
Buena 62, Santa Barbara 20
California Military Institute 29, Santa Rosa Academy 12
Carter 65, Sultana 39
Cate 43, Laguna Blanca 29
Coastal Christian 45, Santa Maria 32
Colton 41, Arroyo Valley 26
Crescenta Valley 55, Burbank Burroughs 47
CSDR 45, Norte Vista 21
Desert Christian Academy 89, Nuview Bridge 23
El Dorado 63, Placentia Valencia 20
El Rancho 40, Diamond Ranch 33
Elsinore 34, Tahquitz 20
Foothill Tech 37, Thacher 22
Garden Grove 46, Orange 32
Grove School 30, Public Safety 14
Harvard-Westlake 48, Campbell Hall 37
Hesperia Christian 51, AAE 21
Hillcrest 53, La Sierra 8
Kaiser 52, Pomona 0
Laguna Beach 52, Dana Hills 33
Long Beach Wilson 70, Compton 32
Lucerne Valley 44, Lakeview Leadership Academy 7
Marlborough 65, Alemany 43
Mayfair 34, Chadwick 32
Monrovia 36, Mayfield 20
North Torrance 59, Palos Verdes 57
Oak Hills 58, Beaumont 32
OCCA 31, Liberty Christian 16
Oxford Academy 50, Western 34
Oxnard 46, San Marcos 30
Redlands 61, Jurupa Hills 39
Rialto 86, Apple Valley 27
Ridgecrest Burroughs 68, Barstow 38
Santa Ana Valley 64, Glenn 6
Shadow Hills 55, Palm Springs 14
Silver Valley 45, Riverside Prep 22
Temecula Prep 45, San Jacinto Leadership Academy 43
Temescal Canyon 85, West Valley 17
University Prep 47, Big Bear 31
Viewpoint 60, Agoura 45
Vistamar 33, Wildwood 14
YULA 51, Milken 50
INTERSECTIONAL
Birmingham 55, Heritage Christian 44
Desert Mirage 46, Borrego Springs 19
SEED: LA 44, Animo Leadership 7
Sun Valley Poly 65, Westridge 9
USC Hybrid 45, Legacy College Prep 4
Whittier 52, Garfield 46
Sports
Trump support drove wedge between former Mets star teammates, says sports radio star Mike Francesa
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New York sports radio icon Mike Francesa claims differing views on President Donald Trump created a divide within the Mets clubhouse.
Francesa said on his podcast Tuesday that a feud between shortstop Francisco Lindor and outfielder Brandon Nimmo, who was recently traded to the Texas Rangers, was ignited by politics. Francesa did not disclose which player supported Trump and which didn’t.
“The Nimmo-Lindor thing, my understanding, was political, had to do with Trump,” Francesa said. “One side liked Trump, one side didn’t like Trump.”
New York Mets’ Francisco Lindor (12) gestures to teammates after hitting an RBI single during the fourth inning of a baseball game against the Los Angeles Angels Wednesday, July 23, 2025, in New York City. (Frank Franklin II/AP Photo)
Francesa added, “So, Trump splitting up between Nimmo and Lindor. That’s my understanding. It started over Trump… As crazy as that sounds, crazier things have happened.”
Fox News Digital has reached out to the Mets for a response.
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New York Mets’ Francisco Lindor (12) and Brandon Nimmo (9) celebrate after a baseball game against the Milwaukee Brewers on June 27, 2023, in New York City. The Mets won 7-2. (Frank Franklin II/AP Photo)
Nimmo was traded to the Rangers on Nov. 23 after waiving the no-trade clause in his 8-year, $162 million contract earlier that month.
The trade of Nimmo has been just one domino in a turbulent offseason for the Mets, which has also seen the departure of two other fan-favorites, first baseman Pete Alonso and closer Edwin Diaz.
All three players had been staples in the Mets’ last two playoff teams in 2022 and 2024, playing together as the team’s core dating back to 2020.
Brandon Nimmo #9 of the New York Mets celebrates an RBI single against the Philadelphia Phillies during the eighth inning in Game One of the Division Series at Citizens Bank Park on Oct. 5, 2024, in Philadelphia. (Heather Barry/Getty Images)
In return for Nimmo, the Rangers sent second baseman Marcus Semien to the Mets. Nimmo is 32 years old and is coming off a year that saw him hit a career-high in home runs with 25, while Semien is 35 and hit just 15 homers in 2025.
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Many of the MLB’s high-profile free agents have already signed this offseason. The remaining players available include Kyle Tucker, Cody Bellinger, Bo Bichette and Framber Valdez.
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