The Limitation of Rules – Part 1

September 2, 2016

From the age of 10 to 20, my position as a baseball player was catcher. Sometime during that decade I was taught to return the ball to the pitcher with authority, with a snap throw from my ear, targeting the glove-side shoulder of the pitcher.

I caught every inning of every game, including doubleheaders. In those years, there was less concern than today for protecting the arms of pitchers, and there was no thought given to the throwing arms of catchers.

Today, the shoulder of my throwing arm is shot; I cannot throw a ball overhand with any force.

But here’s the thing. I didn’t ruin my throwing arm in youth and school baseball; I wrecked it as an adult doing silly things with a tennis ball on the beach with my teenage son. We had a blast for a summer afternoon, and I’ve paid for it the rest of my life.

The point of this brief baseball bio is to demonstrate an example of the limitations of rules.

We can identify dozens of risks to student-athletes and we can promulgate an equal number of rules to help them avoid injuries in our programs; but we cannot protect them against a lack of common sense in our programs or accidents in other aspects of their lives.

Even if we implement new rules to limit the number of pitches by a player, what good is that if, after reaching the limit, the pitcher and catcher switch positions? Do we need a rule to address that coaching decision too?

Do we need rules that prohibit large students from practicing against small, or experienced players from competing against inexperienced? How would we ever monitor or enforce such rules? Where do rules leave off and common sense take over?

Even if we put players in bubble wrap for sports, what do we do about their decisions away from sports, perhaps in vehicles, with their friends and their cell phones? Where do laws and rules stop, and personal responsibility start?

Rocket Science

January 5, 2015

I have always been fascinated by space exploration and in awe of all that is required and must go right to send a space vehicle atop a multi-stage booster rocket from a moving object like Earth, and land it softly on another moving object like the moon or Mars or most recently a massive rock, after a journey of many months and millions of miles. How can people figure that stuff out?
There cannot be a problem of school sports that is more complicated than those of space exploration, except for one feature – which is that our problems deal with people, who are far less predictable and dependable than the laws of physics.
Making matters worse is that we are working with people in a competitive arena, and in an emotional setting, where the objectivity which characterizes the scientific method of rocket scientists is generally if not universally absent.
As long as potential problem-solvers view potential solutions through the lens of what does or does not benefit them in terms of competitive edge, our efforts to make good changes will never launch or, if launched, will miss the target.