Showing posts with label VISUAL GAME OF BASEBALL. Show all posts
Showing posts with label VISUAL GAME OF BASEBALL. Show all posts

Wednesday, April 25, 2018

Eye And Hand Dominance – Baseball Performance | Psyched Online

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Great article on an under-rated area for development of baseball performance.

from PsychedOnline.com
Eye And Hand Dominance – Baseball Performance | Psyched Online:

Eye And Hand Dominance – Baseball Performance

By Paul Schienberg, PhD
Introduction: Background And History
Except for a few isolated cases, such as the preference of the lobster, crab and rat to use the right claw or paw, and the preference of cats to use their left paw, most animals are said to be ambidextrous and do not display lateral preference.
Preference for the right hand occurs in 90-95% of the population. Left hand preference is close to 10%. Ambidexterity occurs in approximately 5%. Left handedness is more common in males and in mentally retarded individuals (so if you are a male and retarded…..which to many women is redundant…..you figure it out.
Ocular or eye dominance is an entirely different situation. The first written description of ocular dominance is credited to Giovanni Battista della Porta in 1593. It was not until the late 20th century that serious attention was focused on this matter.
It might be expected that the eye that sees best is the dominant eye. This is not, in fact, the case. The dominant eye is usually considered to be the preferred eye for sighting. Eye dominance, preference or superiority is different from handedness or motor dominance.
Handedness is concerned primarily with motor aspects of motor organs. The eye is a sensory organ and has no conscious pro-prioception. And vision is for each eye represented bilaterally and equally in the brain in the occipital lobes, for most binocular animals. We have no consciousness of having a right and left eye as one is conscious of having a left and right hand. One does not see the world from a right or left eye, but from a single so called “cyclopean eye” which combines information from both.
When an athlete is asked to perform sighting tests, the cyclopean eye often seems to be located behind or close to one eye or the other. Eye dominance seems to be genetically predetermined. It is said that lateral dominance of a field of vision corresponding to the dominant eye, and it is easier for directional scanning to occur toward the field on the dominant eye and field. If persons are divided into only right or left eye dominance, then about 65% of the population is right eyed dominant and 35% are left eye dominant.
An individual who is right handed and right “eyed” or left handed and left “eyed” is said to have an uncrossed pattern of eye-hand dominance. Right handed and left “eyed” or vice versa is called crossed eye-hand dominance. There is no correlation between handedness and eye dominance.
A Study Of Baseball Performance
The study was conducted by a person (JMP) whose greatest frustration in childhood was that he didn’t become a good enough baseball player to make the major leagues. He could pitch but he could not hit a lick. He tired switch hitting and found much better success. He is right handed and has right eye dominant, uncrossed eye-hand dominant. He consulted his father’s history who was more successful in baseball. He found that his father was crossed eye-hand dominant, right handed with a dominant left eye, and had been a very successful batter, while uncrossed JMP had been a relatively successful pitcher. His father also had difficulty, in contrast, in pitching. The study looked a college varsity baseball team.
All twenty five, male, varsity athletes from the University of Florida baseball team were examined. Visual acuity, stereoscopic vision, ocular motility and eye sight dominance and handedness were established. All athletes batted the same “hand” as they threw except for one “switch hitter” who was right handed but who batter left handed.
Athletic performance was measured by data obtained from the prior year’s statistics. The pitchers were evaluated by their earned run average (ERA) and the hitters were rated by their by their batting average (BA).
Let me review some of the results of this study. College varsity level baseball players are twice as likely as the general population to have crossed dominance. The incidence of central eye dominance is considerably higher than the general population. The best hitters were centrally eye dominant or crossed eye-hand dominant. The poorest hitters were uncrossed eye-hand dominant. The top four pitchers were either uncrossed or centrally ocular dominant. Three of the top six pitchers were centrally ocular dominant.
What conclusion were the researchers able to draw from the results? There is strong support for the idea that the pattern of eye-hand dominance is significant and related to athletic success in baseball. There seems to be high probability that central ocular dominance helps athletes succeed in this form of athletic endeavor. The central ocular dominance players (batters and pitchers), whether right or left handed, were consistently and distinctly in the forefront. The central ocular dominant subgroup had both the best BA and the best ERA. The crossed eye-hand dominance pattern seems to be of benefit only to the batters – may even be a handicap to the pitchers. An uncrossed eye-hand dominance pattern is an advantage to the pitcher and a disadvantage to the hitter, and a crossed eye-hand dominance pattern is an advantage to the hitter and a disadvantage to the pitcher.
The situation for baseball hitting is very different from pitching in that the sighting action is to the side of the athlete. The explanation might be that there is increased ability of the eyes to sweep in the direction of the field of the side of the dominant eye. Certainly that is what the batter does. The pitcher is to his left and as he watches the pitcher he must make rapid sweeps of his eye from the plate in front of him to the pitcher on the mound, waiting for the pitch and watching the ball as it proceeds toward him. Even as the ball approaches him it is still primarily in his left gaze field, not the right gaze field, which it enters only when it crosses the plate and caught by the catcher. The batter must initiate his swing based on his vision of the ball’s course when it is perhaps only halfway or so from the pitcher to the plate, so it is irrelevant that the ball finally crosses into his right visual field as it crosses the plate. It is for these reasons why the crossed eye-hand dominant player is at some advantage in the batting situation over the uncrossed dominant player. The best combination for a baseball player would be a left handed centrally ocular dominant, or if not centrally ocular dominant, a left handed crossed eye dominant person. Many successful players do not follow this formula however.
Conclusions
Among those athletes that possess the other necessary qualities (speed, fast reactions times, coordination, competitiveness, etc.) for success, it may be that ocular dominance and the pattern of eye-hand dominance is another variable that is measurable and predictable.
Eye hand dominance could serve as a factor in scouting athletes, or guiding a young player on whether to hit left or right handed or to switch hit. It may be possible to determine what sport to concentrate on, as knowledge grows concerning the relations between ocular dominance and patterns of eye-hand dominance in other sports. Tennis is a natural next sport for examination
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Wednesday, January 17, 2018

The Sixth Tool: Training Baseball Pitch Recognition - MIT Sloan Analytics Conference

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An objective tool to measure pitch recognition skill before the fact is HUGE in terms of both scouting and developing players. When the intangible becomes tangible, that's a huge leap, IMO. 

Subject: The Sixth Tool: Training Baseball Pitch Recognition - MIT Sloan Analytics Conference

The skill of pitch recognition, measured with metrics such as 0-Swing%, Line Drive %, and BB/K ratio, is so important that it's become a virtual sixth tool in baseball. But it's generally considered to be more a talent than a learned skill … and therefore not trainable. This talk describes and demonstrates a new approach that adapts the video-occlusion method developed in sport science research laboratories in order to both test and train this elusive perceptual-cognitive skill. Running on a laptop computer, video-occlusion can be used to measure the pitch recognition ability of prospects, diagnose pitch recognition problems, and systematically develop pitch recognition skill in high-performance baseball batters.
To see presentation slides click here
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Friday, January 22, 2016

Tweets from the Twitter-sphere. Get 'em while they are 140 characters or less


MLB Mindset (@MLBmindset)
Research shows that visualizing yourself executing the ideal mechanics will help you execute it physically. pic.twitter.com/RwYGXM1tTL

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I agree with this wholeheartedly BTW. I wish they had cited the research for those who do not believe this to be true, because it is compelling. That doesn't mean that people who do not believe would read it, but.....I'm just saying. 

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Is this tweet at least subtly racist, or am I missing something? Oh, I forgot, you can trash white folks until the cows come home, my bad. And we're supposed to have a conversation with folks who puke out shit like this? Please, spare me!!

Jeff Passan (@JeffPassan)
I don't know what's more amazing. The Hail Mary or the fact that Aaron Rodgers went 96 yards in 1:07 with two white guys playing receiver.

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Anytime you can start the day with a little dose of C.S. Lewis is probably going to be a pretty good day.

C. S. Lewis (@CSLewisDaily)
The choice of every lost soul can be expressed in the words "Better to reign in Hell than serve in Heaven."
#CSLewis | #TheGreatDivorce

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....or Margaret Thatcher.

IL Family Action (@ILfamilyaction)
"Socialists don't like ordinary people choosing. For they might not choose Socialism." ~Margaret Thatcher

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Friday, October 09, 2015

What's the secret to hitting a sharp-breaking curve ball?

Our brains track moving objects by applying one of the algorithms your phoneโ€™s GPS uses, according to researchers at the University of Rochester. This same algorithm also explains why we are fooled by several motion-related optical illusions, including the sudden โ€œbreakโ€ of baseballโ€™s well known โ€œcurveball illusionโ€

This is what the curve looked like to me at times and I swung at where the ball was rather than where it was going to be. Good to know why I sucked at this though, my inner algorithm was off. Keeping the ball in the center of your visual field seems to be the key takeaway. Visual skills are important and trainable. 

from Daily Mall:


The secret to hitting a curveball: Scientists reveal how the sharp 'break' in the ball's movement is all in the mind

  • Our brains track moving objects using a similar algorithm to GPS
  • The algorithm estimates location based on its past position and speed
  • We do the same thing when perceiving position in our visual periphery
  • Knowing this can help us counteract the effect, the study claims
 Our brains track moving objects by applying one of the algorithms your phone's GPS uses, according to researchers at the University of Rochester. This same algorithm also explains why we are fooled by several motion-related optical illusions, including the sudden 'break' of baseball's well known 'curveball illusion'
Scientists at the University of Rochester say that our brains apply an algorithm, known as a Kalman filter, when tracking a baseball. 

In GPS devices, algorithms, including the Kalman filter, are used to estimate the location of your car based on its past position and speed.   
We see an object's position with great accuracy when it's in the center of our visual field. 
But the same can't be said for perceiving position when it shifts into our visual periphery.
Scientists reveal the secret of how to hit a curveball

When that happens, our brain gives greater emphasis to our perception of the object's motion.
'And, this is where we start seeing fascinating phenomena like the curveball illusion,' said Tadin. 

THE SCIENCE BEHIND THE ILLUSION 

We see an object's position with great accuracy when it's in the center of our visual field. 
But the same can't be said for perceiving position when it shifts into our visual periphery.

When that happens, our brain gives greater emphasis to our perception of the object's motion. 

When it is viewed in the visual periphery, the spin of the ball - the motion of the seam pattern - can make it appear to be in a different location than it really is.

So, when the ball enters your periphery, it appears to make an abrupt shift: The sudden 'break' of the curveball as it nears home plate. 

'We've found that the same algorithm that is used by GPS to track vehicles also explains why we perceive the curveball illusion.'

'A curveball pitch does indeed curve,' said the first author Oh-Sang Kwon, assistant professor at Ulsan National Institute of Science and Technology, South Korea.

'But when it is viewed in the visual periphery, the spin of the ball - the motion of the seam pattern - can make it appear to be in a different location than it really is.'

Here, the brain 'knows' that position estimates are unreliable in the periphery, so it relies more on other visual cues, which, in this case, is the motion; the spin of the ball.

So, when the ball enters your periphery, it appears to make an abrupt shift: The sudden 'break' of the curveball as it nears home plate.

The optimal solution that our brain comes up with belies the actual behavior - and trajectory - of the ball, and the result is an optical illusion.

This means you have a better chance of hitting a curveball by realising that our brains, like GPS, can lead us to 'see' changes in speed or direction that don't actually occur.

'These illusions should not be seen as evidence that our brains are poor at perceiving the world around us, though,' explained Tadin. 

'They are interesting side-effects of neural processes that, in most cases, are extremely efficient at processing 'noisy' visual information.' 
Curve ball


Tuesday, July 29, 2014

Contextual influences on baseball ball-strike d... [J Sports Sci. 2008] - PubMed - NCBI


I could have told them that umpires sometimes act in the interest of speeding up the game and saved them some time.....Just ask any umpire. The Quiet Eye Gaze is interesting and has application to expert hitters as well. 

Contextual influences on baseball ball-strike decisions in umpires, players, and controls.

Source

School of Human Movement, Recreation and Performance, and the Centre for Aging, Rehabilitation, Exercise and Sport, Victoria University, Melbourne, Victoria, Australia. clare.macmahon@vu.edu.au

Contextual influences on baseball ball-strike d... [J Sports Sci. 2008] - PubMed - NCBI:
Abstract

Baseball umpires, players, and control participants with no baseball experience were asked to call balls and strikes for video clips. In a basic judgement task, umpires and players were significantly better at calling pitches than controls. In a direct information task, borderline pitches were presented following clips of definite balls and definite strikes. Participants called target pitches closer to the strike end of the scale when viewed after definite balls than when they followed definite strikes. Similarly, when borderline pitches were shown in different pitch counts, participants called pitches more towards the strike end of the scale when there were three balls in the count (3-0, 3-2). These findings indicate that the standard for evaluation changes based on the context in which stimuli are processed. Moreover, the strength of the contextual factors is illustrated in that the effects were shown in observers with and without experience in the task. Overall, however, umpires had a greater tendency to call strikes, indicating that they may use a norm of "hastening the game".

'via Blog this'

==

Quiet eye gaze behavior of expert, and near-expert, baseball plate umpires.

Source

Department of Health, Physical Education, and Recreation, University of Minnesota Duluth, 1216 Ordean Court, Duluth, MN 55812, USA. dmillsla@d.umn.edu
Quiet eye gaze behavior of expert, and ne... [Percept Mot Skills. 2013] - PubMed - NCBI:

Abstract

The quiet eye gaze behavior of 4 near-expert and 4 expert baseball umpires who called balls and strikes in simulated pitch-hit situations was assessed with a mobile eye cornea tracker system. Statistical analyses of the umpires' gaze behavior (fixation/pursuit tracking, saccades, and blinks)--onset, duration, offset, and frequency--were performed between and within 4 stages (pitcher's preparation, pitcher's delivery, ball in flight, and umpire call) by umpire's skill level. The results indicated that the quiet eye of expert umpires at onset of the pitcher's release point occurred earlier and was longer in duration than near-expert umpires. Expert expert umpires. The area outside the pitcher's ball release point may be the key environment cue for the behind-the-plate umpire.

'via Blog this'

Science of Sports| gaze and peak performance, part I






image
Stadion Publishing Company | No-Nonsense Sports Traini...
Wed, 18 Jun 2014 11:52 by Thomas Kurz How athletes control their gaze affects their performance–because the control of gaze is the control of attention. F...
Preview by Yahoo

New article titled "Gaze and Peak Performance, Part I" is posted at

Here is an excerpt from the article:

"How athletes control their gaze affects their performance–because the
control of gaze is the control of attention. Focusing your eyes means
focusing your mind. Yes, your attention is where your gaze is, and as the
gaze focuses, so does your attention. When your eyes wander, so does your
mind. A steady gaze ("quiet eye") on your target means a quiet,
undistracted mind, and the quiet mind can direct the body to do the right
thing. Different sports actions have different targets and ways of
focusing on them that consistently produce peak performance. Knowing what
to focus the eyes on and when is a major factor in consistent high
performance--sports mastery...." Read more at
http://www.stadion.com/gaze-and-peak-performance-part-i/

Visit http://www.stadion.com for best info on training for sports and
martial arts.

Thursday, June 26, 2014

The Baseball Vision Of Barry Bonds

Barry Bonds homer

This article documents the predominant skill that all the great hitters -- from Babe Ruth to Ted Williams to Barry Bonds -- have and that is superior, off the charts  visual skills.

from Baseballnews.com:
The Baseball Vision Of Barry Bonds:

In almost 50 years of vision testing Major League hitters, Barry Bonds has no equal, according to Dr. Harrison.

Bonds may have had the greatest hitting specific vision of any batter in history the way he could stop from swinging at marginal pitches and go after pitches he could drive hard the vast majority of the time.

“I have a battery of tests which I have performed on Major League players going back to the early ’70s for a number of organizations,” said Dr. Harrison.

“In testing thousands of Major League hitters, Barry Bonds tested out with the highest vision readings of any baseball player we had ever worked with. I first saw him in 1986 during spring training as he came out of A ball after signing with the Pittsburgh Pirates’ organization after playing for Arizona State University. He was not considered a legitimate Major League prospect for the Pirates at the time."

'via Blog this'

more from the article...
“When I tested Barry Bonds, I gathered all the information on him and left the room. Barry is the only player who had achieved 100 percent in each of those categories and subsequently received a 100 percent in terms of high level binocularity. I then talked to Syd Thrift, general manager of the Pirates. I told Syd that the last player I saw (Bonds) was the most visually gifted of all the players I had evaluated since 1971, which was 15 years at the time. I had never seen a baseball player as gifted visually and mentally as this guy.
“Barry Bonds was in AAA for the Pirates’ organization that year. Around May, the Pirates’ AAA team was playing in Phoenix, and Syd Thrift asked me to watch and work with some of the players. I saw Barry in action for the first time, and he looked terrific. That evening, I called Syd and told him this guy really was phenomenal because he visually tracked every pitch, saw it deep and squaring the ball every time. Syd jumped on a plane the next morning for Phoenix.
“In the middle of the contest the next day, Syd called Bonds out of the game and asked the manager to get the young ball player on a plane to Pittsburgh immediately. And the rest was history.
“As I look back at evaluating many hitters on the professional, college and even high school levels close to 40 years now, Barry Bonds is still my gold standard. Barry had the whole picture when it came to all the aspects of vision I look for. He not only could he see pitches deep. But over time, he saw the ball early out of the hands of pitchers.
“All the great hitters I have been around, which include people such as Barry Bonds, George Brett, Tony Gwynn, Rod Carew, among many others, really bought into the idea of seeing the ball right out of the pitcher’s hand. The method of getting there can be variable. It will only happen if the hitter is highly visual. I refer to being highly visual as almost being out of the body as the hitter is totally unaware of what the body is doing. They let their body go on automatic pilot. Generally, it will only work if the athlete is totally thought free.
“So being totally free of thought, being totally unaware of the body and being able to turn the light switch on just as the pitcher releases the ball toward the catcher is vital. When they do that, these premiere hitters aren’t even aware of what the pitcher’s motion is or who the pitcher is a lot of times. Hitters who are really good at this aren’t concerned with a pitcher telegraphing a pitch.


Sunday, July 28, 2013

Keep Your Eye on the Ball - Curveballs, Knuckleballs, and Fallacies of Baseball




To piggy-back on my prior post about the importance of developing visual skills in order to develop better hitters, this book Keep Your Eye on The Ball: Curve Balls, Knuckleballs and Fallacies of Baseball by Robert Watts and Terry Bahill is about the best there is out there on the topic. 

This review touches on just some of the great pearls of wisdom contained on the book. Highly recommended and well worth the price. 


Keep Your Eye on The Ball: Curve Balls, Knuckleballs and Fallacies of Baseball:

Author: 
Robert Watts and Terry Bahill
Publisher: 
W.H. Freeman
Date Published: 
2000
ISBN: 
978-0716737179
A Book Review by: Paul Harris, OD  
This book was recommended to me by an attendee of the Sports Vision course and I found it extremely insightful into not just the visual aspects of baseball but anything that involves a ball of any sort.  The book helped to dissolve many of the misconceptions that have existed relative to curve balls or the possibility of a "rising" fastball.  The physics of curve balls and the paths they travel and the science of how a rotating ball, from baseballs to golf balls to soccer balls, was described in easy to understand concepts.  The flow of air around a baseball is much like the flow of air over and under a wing.  The rotation of the stitches creates differential points of where the flow shifts from laminar flow to turbulent flow.  The asymmetry in this creates lateral forces that act to move the ball away from the simple hyperbolic arcs that would exist secondary to gravity only.  It is these asymmetric forces that are the basis for these shifts and Watts and Bahill do a great job explaining them.
Here are some facts about an 80-mile an hour curve ball.  It moves 2.1 feet laterally during its 60 feet 6 inch path.  Only .52 feet of that occurs in the first half of the path to the plate.  •It moves 0.058 feet in the first 10 feet. •It moves 1.45 feet in the last 10 feet!  They also explain a little about knuckle balls.  Knuckle balls with very low spin rates, for example, 3 rpm, has typical lateral displacement of 2 feet. The distance a knuckle ball moves is independent of velocity.  Thus, it is better to throw a knuckle ball fast as it will still have all that lateral movement occurring in a shorter period of time.
•In discussing some of the earlier studies on eye movements to track baseball they cite work that suggested three increasingly more complex strategies for tracking the baseball:

  • Track the ball with only eye movements, and fall behind in the last 10 feet.
  • Track the ball with head movements and smooth pursuit eye movements and fall behind in the last 5 feet.
  • Track the ball over the first part of its trajectory with smooth pursuit eye movement, make a saccadic eye movement to a predicted point ahead of the ball, continue to follow it with peripheral vision, and finally, at the end of the ball's flight, resume smooth pursuit tracking with the ball's image on the fovea.

Here are a few interesting quotes from the text.
  • Batters do not use vergence eye movements.
  • Head movement: "The professional made tracking head movements between 10 and 20 degrees, which were probably small enough to go unnoticed by their coach.  What the batter does not want to do is to allow rotations of the body to drag the head along."
  • Coaches should say, "Don't let your body move your head, but it's okay to move your head to track the ball."

As Pete Rose used to say, "See the ball, hit the ball."  Well its not quite that easy! "Now, if the batter is to hit the ball, he must predict where it will be when it crosses the plate.  We say that he creates a mental model of the pitch.  The batter uses the mental model to predict the flight of the pitch."
And what about the rising fastball?  "The illusion of the rising fastball is the result of the batter's mistake in formulating his mental model.  It is most likely that the batter's perceived jump is the result of his perspective and his underestimation of the speed of the pitch for his mental model."
Watts and Bahill conceptualize three different phases involved in hitting a baseball.
  • •In the first third of the ball's flight the batter forms his mental model of the ball's trajectory.
  • •In the middle third, he observes differences between the actual trajectory and his mental model, updates his mental model, and finalizes his swing.
  • •In the last third, he observes errors in his mental model so that he can track the next pitch better.

And what are the qualities of a superstar? The success of the good players is due to faster smooth pursuit eye movements, a good ability to suppress the vestibulo-ocular reflex, and the occasional use of an anticipatory saccade.

There is a great deal more in this book that is of value.  I highly recommend it for those of you that are sports enthusiasts or who will work with athletes.


Giants Top Minor League Prospects

  • 1. Joey Bart 6-2, 215 C Power arm and a power bat, playing a premium defensive position. Good catch and throw skills.
  • 2. Heliot Ramos 6-2, 185 OF Potential high-ceiling player the Giants have been looking for. Great bat speed, early returns were impressive.
  • 3. Chris Shaw 6-3. 230 1B Lefty power bat, limited defensively to 1B, Matt Adams comp?
  • 4. Tyler Beede 6-4, 215 RHP from Vanderbilt projects as top of the rotation starter when he works out his command/control issues. When he misses, he misses by a bunch.
  • 5. Stephen Duggar 6-1, 170 CF Another toolsy, under-achieving OF in the Gary Brown mold, hoping for better results.
  • 6. Sandro Fabian 6-0, 180 OF Dominican signee from 2014, shows some pop in his bat. Below average arm and lack of speed should push him towards LF.
  • 7. Aramis Garcia 6-2, 220 C from Florida INTL projects as a good bat behind the dish with enough defensive skill to play there long-term
  • 8. Heath Quinn 6-2, 190 OF Strong hitter, makes contact with improving approach at the plate. Returns from hamate bone injury.
  • 9. Garrett Williams 6-1, 205 LHP Former Oklahoma standout, Giants prototype, low-ceiling, high-floor prospect.
  • 10. Shaun Anderson 6-4, 225 RHP Large frame, 3.36 K/BB rate. Can start or relieve
  • 11. Jacob Gonzalez 6-3, 190 3B Good pedigree, impressive bat for HS prospect.
  • 12. Seth Corry 6-2 195 LHP Highly regard HS pick. Was mentioned as possible chip in high profile trades.
  • 13. C.J. Hinojosa 5-10, 175 SS Scrappy IF prospect in the mold of Kelby Tomlinson, just gets it done.
  • 14. Garett Cave 6-4, 200 RHP He misses a lot of bats and at times, the plate. 13 K/9 an 5 B/9. Wild thing.

2019 MLB Draft - Top HS Draft Prospects

  • 1. Bobby Witt, Jr. 6-1,185 SS Colleyville Heritage HS (TX) Oklahoma commit. Outstanding defensive SS who can hit. 6.4 speed in 60 yd. Touched 97 on mound. Son of former major leaguer. Five tool potential.
  • 2. Riley Greene 6-2, 190 OF Haggerty HS (FL) Florida commit.Best HS hitting prospect. LH bat with good eye, plate discipline and developing power.
  • 3. C.J. Abrams 6-2, 180 SS Blessed Trinity HS (GA) High-ceiling athlete. 70 speed with plus arm. Hitting needs to develop as he matures. Alabama commit.
  • 4. Reece Hinds 6-4, 210 SS Niceville HS (FL) Power bat, committed to LSU. Plus arm, solid enough bat to move to 3B down the road. 98MPH arm.
  • 5. Daniel Espino 6-3, 200 RHP Georgia Premier Academy (GA) LSU commit. Touches 98 on FB with wipe out SL.

2019 MLB Draft - Top College Draft Prospects

  • 1. Adley Rutschman C Oregon State Plus defender with great arm. Excellent receiver plus a switch hitter with some pop in the bat.
  • 2. Shea Langliers C Baylor Excelent throw and catch skills with good pop time. Quick bat, uses all fields approach with some pop.
  • 3. Zack Thompson 6-2 LHP Kentucky Missed time with an elbow issue. FB up to 95 with plenty of secondary stuff.
  • 4. Matt Wallner 6-5 OF Southern Miss Run producing bat plus mid to upper 90's FB closer. Power bat from the left side, athletic for size.
  • 5. Nick Lodolo LHP TCU Tall LHP, 95MPH FB and solid breaking stuff.