Wednesday, May 25, 2016

Two more skull pieces!


So right now I'm working on a block at home and a block at OMSI. The block at home was originally located close to the original skull, about 10 inches (25cm) away. It is a lovely little block with a whole cluster of centrum (backbones) at one end, plus most of a large neural arch with some ribs thrown in for good measure. I think there are 8 or 9 centrums. Although they look like they are articulated, they are not. They are different sizes and orientations so they came from different individuals or different parts of the backbone. Too bad. Anyway, I was going to keep the block pretty intact and leave it as an esthetic piece since we already have good single specimens of all these bones.


At the other end of the 'home block' there were initially two small fragments of bone glued back on. The way this works is that a smaller block is broken off a larger block so we can work on it, usually along natural fracture lines. The bones that cross the fracture surface are removed from the smaller block and glued back onto the other block, so that the bones are made whole again. So we started out with two small bone fragments separated by about 3 inches (7.5cm). Preparing these small pieces of bone did not immediately make clear what they were. But it did become clear that they were parts of the same bone. One side of the bone is now prepared, and it is another section of a skull centered around the pineal gland. I think this makes it the 5th specimen we have from this section of skull! And first measurements indicate that it is the largest to-date! It is amazing how a piece of bone 5.5 inches (14cm) can hide in a block of rock almost completely when the rock is only 7x10 inches!

So I'll have to remove this skull fragment from the block for scientific study. The other end with all the centrums can remain intact as a showpiece, unless something else comes up!




As for the other skull piece, it's at OMSI. I started on a new section of block 1 and uncovered the end of a strange item. I couldn't really tell if it was a piece of bone or a piece of coral. It was not as dark as normal bone, but had the correct internal structure. It did not power up black when touched by the air scribe - it was grey like coral. I decided to treat is as a bone . I'm glad I did since it turned out to be a nice limb bone.  There was a 'small spine' next to the limb bone that looked like a neural arch. 

When I got the limb bone undercut and ready to remove there were some small scraps of bone showing at the bottom of the cust. After knocking off the limb, I realized that I had broken completely through the lower end of the 'small spine". It is not a neural arch, as it is rapidly expanding into a big section of bone. It is a piece of skull, I think it is the middle along the centerline. We will tell more as we excavate more. Unfortunately, it will require practically cutting the big block completely in half as it is imbedded directly in the middle, pointing straight into the center!
Sincerely, Greg Carr




On the left we have the skull piece  - the reminder is still in the block. The right piece is the limb bone. 


Monday, May 23, 2016

Back in the Saddle Again - Recreating a full skeleton

I've taken off several months from writing the Blog since I had a lot of things to do this spring - doing taxes for H&R Block, refurbishing a rental house, letting my right hand rest from air-scribe work, etc. But I'm back and proceeding at full speed ahead! (to mix metaphors)






I've been working at recreating a full size skeleton of a Thalattosaur. As readers of this blog know these bones are scanned before being sent off to Alaska for study. I can scale them in X,Y or Z dimensions using the 3D printing software. I have now printed out a full set of backbones based on a well-preserved Centrum+Neural Arch  specimen from Bernie. I scaled them and numbered them based on a well-preserved Miodentosaurus Brevis skeleton from China. I then added some 1/4 inch (6mm) foam pads to mimic the disks between the vertebrae. The resultant skeleton is about 13 feet (390cm) long. I'm not too worried about the exact length - we have bones of animals from 2 feet to 30 feet (0.6 to 9 meters) so any animal in that length range would be representative of a proper Thalattosaur. There are some significant challenges to printing out a 30 ft skeleton, however!


Next most common bones are Ribs. I made up a full rib in cedar wood, again based on the Miodentosaurus, since all the ribs recovered here are broken. I then made a silicone mold and cast about 52 copies! Boy, that sure is a lot. These copies will be shortened to match the Mio... bones and then mated up to the appropriate body vertebrae. I have chosen to hook the ribs to the centrums with small supermagnets. That way the ribs are removable for transport or storage.



The centrums themselves are strung on steel rods passing through holes where the spinal cord ran in the original bone.The rods are slightly less than 4 feet (102cm)  long so they will fit in a 'standard' display cabinet. This way the skeleton can 'swim' through 4 sequential cabinets at rock shows. It also makes it much easier to transport.

After the ribs I'll be working on tail chevrons and limbs. I will be attending a  National Federation of Rock Club show in late July, and Eric Meitz will be presenting at the SVP (Society of Vertebrate Paleontology) in October. I hope to have the skeleton, in whatever state it is, displayed at these shows.

I'm also preparing still more bones from the original matrix blocks. One of the original large blocks 200+ pounds (100+ Kg) is yielding another nice limb bone. I'm also working on a smaller block at home where I have a nice boom microscope. In a block about 10 inches (25cm) I have at least 8 centrums, two neural arches, two rib sections, and a very nice skull fragment at least 5 inches (12cm) long! And I have yet to expose all the bones in it! That will be for the next post (soon) I promise.
Sincerely, Greg Carr

Tuesday, January 19, 2016

Newest 'Unknown' bone identified - and does it have a story to tell!

The saga of Bernie the Thalattosaurs has now taken yet another twist of the tale. Or should I say Twist of the Tail?

My last post was about a new bone that has just been excavated. I thought it was a bone that hadn't been seen before, hoping that it may be an elusive mandible or the missing inter-clavicle. The bad news is that it isn't a new bone - we have seen them before. The GOOD news is that this bone opens up a whole new world of wonder to contemplate.

The new bone is a chevron - one of the tail bones making up the spinal column of the tail. Together, the neural arch, centrum and chevron shape the tail into a vertically flattened oval, perfect for swimming. Chevrons are common in reptiles, and are even found in some mammals like whales, porpoises and manatees. We have already found several of them. In thalattosaurs they are a delicate Y-shaped bone generally 5-8 cm long in these animals such as Bernie or Miodontosaur Brevis.
Here is a picture of a Mosasaur tail, clearly showing the neural arches, centrums and chevrons (from top to bottom). This particular animal was about 6 Meters (20 feet). long. This one suffered injury during life that let to bone pathology. Picture courtesy of "Oceans of Kansas". Note that the chevron in the middle is about 7 cm from the tip to the notch - there will be a test later.


This is a picture of a copy of the most complete chevron found to-date from Bernie - it is about 5.5 cm long, a little over 2 inches. From the notch to the tip it is about 3.5 cm.


OK, so what is so unusual about this new bone that you didn't immediately recognize it? These chevrons are quite distinct. In one word, the difference is HUGE!!!

This new chevron is 11 cm from the tip to notch!



This is three times larger than the other centrums we have found. Scaling from the very complete Miodontosaurus Brevis from China, this would be an animal 10 meters long (33 feet). Scaling from the mosasaur above (remember the 7 cm chevron?) this would also be an animal about 10 meters long. In other words, a real GIANT!!!

Here is a picture of the actual bone, a copy of the normal -sized chevron, and the chevron enlarged 3.0 x to match the new centrum. [Aside, this is one of the benefits of 3D printers - I love 'em]. The match is pretty good all things considered. 

Bernie is already among the largest thalattosaurs ever found, and the largest found to-date in North America. This new chevron, pushing the size of these animals to 10 meters or so, is mind-boggling.

There is the possibility that this bone is not from a Thalattosaur, although the slanted tip and grooved body are found on both bones. We will hold judgement on this until later. For now, just consider a 10m (33 foot) mama Thalattosaur looking over a whole colony of young animals only 1-3 meters long!

Sincerely, Greg Carr



Tuesday, January 12, 2016

Yet another new type of bone!

Things are progressing on the preparation end of things. I have removed and finished another limb bone, one we've seen before. probably one of the lower limb bones - like the tibia/fibia. This post is about another new bone, one not seen before!

Parts of it appeared during the latest limb bone extraction. The matrix around that limb bone was particularly nasty, consisting mostly of chert course sand in the limestone matrix. This type really gives me fits since it breaks and dulls the point of the air scribe very quickly. I have to sharpen the bit several times an hour in this stuff. However, the good old-fashioned hammer and chisel remove a lot of this material and I applied my 3 pound hammer and cold chisel liberally.


One big chip took off a flake the size of my palm about 1/2 inch thick (1 cm) and revealed the end to what I assumed was two ribs lying side-by-side. After I removed the limb bone I decided to work a bit on these two 'ribs'. However, after only a few minutes work it became apparent that these were the same bone, with two branches (bifurcation) that had been exposed. It is about 5 inches long, and I don't know how much is still hidden.





Another day's work revealed that this was a substantial bone - but what is it? Here is a picture of one of my better reference skeletons - Midontosaurus Brevis from China. Can you see a bone that looks like this new one? Two candidates come to mind - the interclavical or the lower jaw. However, neither one is a close fit. So we are left with the question - what is it?

I'm actively pursuing this and will be working on it tomorrow and Friday.

Sincerely, Greg Carr

Friday, December 4, 2015

Tail and WTF Bone - Redux!

This is an update on two parts of the project: Re-creating the tail of a Thalattosaur and preparing a very strange bone.

The tail is mostly finished - all the centrums+neural arches are printed and fastened to a mounting base. The 65 tailbones add up to just about 6 feet long (180 cm to those of you in the logical world). I am still missing the chevrons that go underneath the centrums, but I haven't printed any of them yet. It was an interesting exercise in modeling, printing with both 0.5 and 0.3mm nozzles, temperatures, etc. I ended up printing the 45 largest bones with a 0.5mm nozzle and 0.2mm layer thickness. The smallest 20 had to be done with the 0.3mm diameter nozzle at 0.1mm layer thickness to maintain sufficient resolution. The largest bone took about 4 hours to print: the smallest about 7 minutes! I really like how the tail gets blunt out toward the end, like a crocodile, rather than very thin like an iguana.


As for the very strange bone, it is almost finished - and I STILL DON"T KNOW what it is!

It looks like a limb bone. It doesn't look like any of the other thalattosaur limb bones. The bone is very convoluted, with a very prominent ridge down the side and two very deep hollows. The ends of the bones - the articulating surfaces - are different as well. Whereas the Thalattosaur limb bone ends are concave with conical depressions for the cartilage, this bone has rounded ends with only a hint of hollowness. I really suspect that is a humerus of a very different type of animal. Perhaps it's from one of the ancient marine amphibians that were still alive then, or a crocodile or turtle ancestor! Maybe Pat and Eric at the University of Alaska Fairbanks can figure it out






This shows how deep the hollow in the side is. My fingertip is sitting in it - about 3/4 inch (1.8cm) deep!
Anyway, If I don't write again before the Holidays have a great time!
Sincerely, Greg Carr

Sunday, November 15, 2015

WTF - "What's This Fossil" - Bone

So here we are again starting on a new block of rock containing a lot of bones. This block is what we call Block 3. In the original group of blocks it was a small block that crumbled between the larger blocks. In this photograph it's the one wrapped in foil to keep it together.


The reason it crumbles is because it's all full of bones. The largest Femur and the first Illium came out of this block and the ones next to it. I wanted to tackle something productive and new.

The first two bones are already not what I expected. The first on I expected to be a limb bone, and the second a small sector of a centrum. Big surprises on both of them!
Here is the one I first thought was a section of Centrum. However, a little excavation shows it is not a centrum, but is something else.

 After a little more preparation, a split or bifurcation starts to appear. Perhaps it's another skull bone!

 Maybe the back end of the skull, including a brain case and the arch going over to the quadrate.

More excavation reveals a bridge (concave) bone between these two sides. WTF?

A partial neural arch and centrum appear, tucked under the edge of the bone. Sometimes I feel like the bus driver who said "It's much easier to keep to the schedule when you don't stop to pick up passengers" In my case it's much easier to excavate bones when you don't have to work around other bones that you find!

 As we continue to excavate, it becomes apparent that the end of the bone is quite robust - not at all like a skull, much more like a limb. However, which limb bones have a very distinct C-shaped section?  We do have one such bone, which Eric & Pat have called an Ischium. A 3D printed copy is the brown plastic below.  This would be part of the Pelvic Girdle. However, this new bone is much more robust though not significantly wider.  
 One last picture as it stands at the moment. It certainly is a WTF (What's This Fossil). Once we get it out we'll be able to tell. The good part is that the other end of the bone is in the rest of the block, so we'll have it all eventually.

 In addition to this preparation, I've been printing out pseudo tail bones. I'm now up to 40 bones printed out of a total of 65. These last bones are getting small, so I'm going to try changing over to a smaller extruder nozzle (0.3mm instead of 0.5mm)  and printing in thinner layers (0.1mm instead of 0,2mm). Hopefully this will give us the needed detail. These will total up to be a tail over 5 feet long!
Sincerely, Greg Carr

Wednesday, October 7, 2015

Printing Lots of Bones

I've been getting ready for a big display about Bernie at the "Regional Show" here at the Washington county fairgrounds this weekend. This show consists of displays from 5 local clubs - lapidary, rock and fossils. We have this show every year at the Washington county fairgrounds in October. The NARG fossil club is one of the larger clubs exhibiting.

This year one of the advertised headlines for the show is Bernie "Older than Dinosaurs!". So I've been working to put together a good presentations. I'll have two display cases as well as bringing my 3D printer (and running it). I may also bring my 3D scanner as well, though we may be tight for desk space for it.

So for a good display I've been printing bones - Lots 'O Bones - though I haven't printed out all the bones we have prepared. For the bones that are centerline (brain cases, vertebra) I only have one of each. For the rest I've been printing out mirror images as well as the originals so as to recreate a full animal. Here is what I have to-date:
We have a full skull in white: the original half-skull below it. Skull roof pieces from two other skulls with their mirror images. Two premaxillas, one with a mirror image. Three braincases, and parts of a 4th and 5th. Some internal skull bones - probably related to the palate. Two humeri - we have other limb bones but I haven't printed them yet. A start of the tail - thirteen bones out of a total of 65 (see why I picked 65 later). These vertebra are 1,5,10 etc - the graduations between the adjacent vertebra are finer. And a 1/2 and 1/4 scale mason's hammer!

As you see, these bones are quite glossy. They are all printed in ABS and have been smoothed with hot acetone vapor. It is harder to print large pieces with ABS but the smoothing process makes it worthwhile. 

So here is the process I have followed to print out the graduated series of tailbones for a full size reproduction. 

1) Have a good bone to copy. In real life, a body vert is not like a neck vert is not like a tail vert. However, I have a really good centrum + neural process combination that I wanted to copy so I used that. Here's the picture taken during scanning: 
It is the best combo found to-date. 
2) Have a good know specimen to copy and get dimensions from. Since we don't have an articulated  specimen of Bernie, I have chosen to get dimensions from a wonderful specimen of Midentosaurus Brevis from China. This animal is about the same size as Bernie, the same age, and is wonderfully complete. Here is the reference article data: 

 Look at how complete this specimen is! This thing is 12 feet long!


Best of all, they have closeups of the tail so I can get accurate dimensions of all the tail verts! And they all have neural processes (probably to make a flattened tail to swim with) so my choice of a vert+centrum can be partially justified. Wait until I get the chevrons (the little Y-shaped bones under the verts) printed too. This animal had 13 neck verts, 25 body verts, 2 sacral verts and 65 tail verts (that's where the 65 comes from).


3) I took measurements of the length and diameter of the verts (minus the neural processes) and put them in a spreadsheet. I did a curve-fit on the data, and projected out the dimensions of each vert as a percent of the largest (number 1). My inner engineer is showing. 

4) A series of bones is then prepared in the Slic3r software. I can import the scanned bone:

Set it upright and duplicate it. My computer can only handle 6 copies at once, so I'll end up printing variations of this about 11 times. 

Now, each individual vert can be scaled according to the dimensions on the spreadsheet to gradually decrease in length and width as we go back the tail. The two dimensions do not scale at the same rate - the verts get smaller in diameter faster than they get shorter, so the verts become skinnier and skinnier. 

5) Last of all, the bones are printed, cleaned up and vapor-smoothed. I've printed up 13 but some will have to be done again as the initial scaling was incorrect. Overall they will be a tail about 50 inches long! 




This goes to show some of the real benefits of 3D scanning and printing instead of moulding and casting. Scaling objects and making mirror images is really easy using 3D digital techniques. 

Sincerely, Greg Carr