Showing posts with label ▷ 2013 Mar 16. Show all posts
Showing posts with label ▷ 2013 Mar 16. Show all posts

Saturday, March 16, 2013

Powered Exoskeleton

Powered Exoskeleton From Wikipedia, the free encyclopedia.


SSTattler
1) We will concentrate on the small company, Ekso Bionics, and partly the company involves in medical/stroke Powered Exoskeleton. There are more than a dozen companies does the same or similar things. We will cover as well University of Twente, ReWalk, Harvard University.
2) See "Lokomat Robotic Therapy" comes Apr/27/2013 on SSTattler; it is in Weekly Index as well.


A powered exoskeleton, also known as powered armor, or exoframe, is a powered mobile machine consisting primarily of an exoskeleton-like framework worn by a person and a power supply that supplies at least part of the activation-energy for limb movement. Powered exoskeletons are designed to assist and protect the wearer. They may be designed, for example, to assist and protect soldiers and construction workers, or to aid the survival of people in other dangerous environments. A wide medical market exists in the future of prosthetics to provide mobility assistance for aged and infirm people. Other possibilities include rescue work, such as in collapsed buildings, in which the device might allow a rescue worker to lift heavy debris, while simultaneously protecting the worker from falling rubble.

Working examples of powered exoskeletons have been constructed but are not currently widely deployed. Various problems remain to be solved, including suitable power supply. However three companies launched exoskeleton suits for people with disabilities in 2010.

A fictional mech is different from a powered exoskeleton in that the mecha is typically much larger than a normal human body, and does not directly enhance the motion or strength of the physical limbs. Instead the human operator occupies a cabin or pilot's control seat inside a small portion of the larger system. Within this cabin the human may wear a small lightweight exoskeleton that serves as a haptic control interface for the much larger exterior appendages.

History

The earliest exoskeleton-like device was a set of walking, jumping and running assisted apparatus developed in 1890 by a Russian named Nicholas Yagin. As a unit, the apparatus used compressed gas bags to store energy that would assist with movements, although it was passive in operation and required human power. In 1917, US inventor Leslie C. Kelley developed what he called a pedomotor, which operated on steam power with artificial ligaments acting in parallel to the wearers movements. With the pedomotor, energy could be generated apart from the user.

The first true exoskeleton in the sense of being a mobile machine integrated with human movements was co-developed by General Electric and the United States military in the 1960s. The suit was named Hardiman, and made lifting 250 pounds (110 kg) feel like lifting 10 pounds (4.5 kg). Powered by hydraulics and electricity, the suit allowed the wearer to amplify their strength by a factor of 25, so that lifting 25 pounds was as easy as lifting one pound without the suit. A feature dubbed force feedback enabled the wearer to feel the forces and objects being manipulated.

While the general idea sounded promising, the actual Hardiman had major limitations. It was impractical due to its 1,500-pound (680 kg) weight. Another issue was the fact it is a slave-master system, where the operator is in a master suit which is in turn inside the slave suit which responds to the master and takes care of the work load. This multiple physical layer type of operation may work fine, but takes longer than a single physical layer. When the goal is physical enhancement, response time matters. Its slow walking speed of 2.5 ft/s further limited practical uses. The project was not successful. Any attempt to use the full exoskeleton resulted in a violent uncontrolled motion, and as a result it was never tested with a human inside. Further research concentrated on one arm. Although it could lift its specified load of 750 pounds (340 kg), it weighed three quarters of a ton, just over twice the liftable load. Without getting all the components to work together the practical uses for the Hardiman project were limited.

Los Alamos Laboratories worked on an exoskeleton project in the 1960s called Project Pitman. In 1986, an exoskeleton prototype called the LIFESUIT was created by Monty Reed, a US Army Ranger who had broken his back in a parachute accident. While recovering in the hospital, he read Robert Heinlein's Starship Troopers and from Heinlein's description of Mobile Infantry Power Suits, he designed the LIFESUIT, and wrote letters to the military about his plans for the LIFESUIT. In 2001 LIFESUIT One (LSI) was built. In 2003 LS6 was able to record and play back a human gait. In 2005 LS12 was worn in a foot race known as the Saint Patrick's' Day Dash in Seattle, Washington. Monty Reed and LIFESUIT XII set the Land Speed Distance Record for walking in robot suits. LS12 completed the 3-mile race in 90 minutes. The current LIFESUIT prototype 14 can walk one mile on a full charge and lift 92 kg (200 lb) for the wearer.

In January 2007, Newsweek magazine reported that the Pentagon had granted development funds to The University of Texas at Dallas' nanotechnologist Ray Baughman to develop military-grade artificial electroactive polymers. These electrically-contractive fibers are intended to increase the strength-to-weight ratio of movement systems in military powered armor.

Applications

One of the proposed main uses for an exoskeleton would be enabling a soldier to carry heavy objects (80–300 kg) while running or climbing stairs. Not only could a soldier potentially carry more weight, he could presumably wield heavier armor and weapons. Most models use a hydraulic system controlled by an on-board computer. They could be powered by an internal combustion engine, batteries or potentially fuel cells. Another area of application could be medical care, nursing in particular. Faced with the impending shortage of medical professionals and the increasing number of people in elderly care, several teams of Japanese engineers have developed exoskeletons designed to help nurses lift and carry patients.

Exoskeletons could also be applied in the area of rehabilitation of stroke or Spinal cord injury patients. Such exoskeletons are sometimes also called Step Rehabilitation Robots. An exo-skeleton could reduce the number of therapists needed by allowing even the most impaired patient to be trained by one therapist, whereas several are currently needed. Also training could be more uniform, easier to analyze retrospectively and can be specifically customized for each patient. At this time there are several projects designing training aids for rehabilitation centers (LOPES exoskeleton, Lokomat, ALTACRO and the gait trainer, Hal 5.)

Exoskeletons could also be regarded as wearable robots: A wearable robot is a mechatronic system that is designed around the shape and function of the human body, with segments and joints corresponding to those of the person it is externally coupled with. Teleoperation and power amplification were said to be the first applications, but after recent technological advances the range of application fields is said to have widened. Increasing recognition from the scientific community means that this technology is now employed in telemanipulation, man-amplification, neuromotor control research and rehabilitation, and to assist with impaired human motor control (Wearable Robots: Biomechatronic Exoskeletons).

Current Exoskeletons

  • Sarcos/Raytheon XOS Exoskeleton arms/legs. For use in the military and to "replace the wheelchair," weighs 68 kg (150 lb) and allows the wearer to lift 90 kg (200 lb) with little or no effort. Recently, the XOS 2 was unveiled, which featured more fluid movement, increase in power output and decrease in power input.
  • Ekso Bionics/Lockheed Martin HULC (Human Universal Load Carrier) legs, the primary competitor to Sarcos/Raytheon. Weighs 24 kg (53 lb) and allows the user to carry up to 91 kg (200 lb) on a backpack attached to the exoskeleton independent of the user.
  • Cyberdyne's HAL 5 arms/legs. Allows the wearer to lift 10 times as much as they normally could.
  • Honda Exoskeleton Legs. Weighs 6.5 kg (14 lb) and features a seat for the wearer.
  • M.I.T. Media Lab's Biomechatronics Group legs. Weighs 11.7 kg (26 lb).
  • Rex Bionics' Rex, Robotic Exoskeleton Legs. Weighs 38 kg (84 lb). Enables wheelchair users to stand up, walk, move sideways, turn around, go up and down steps as well as walk on flat hard surfaces including ramps and slopes. It is the only exoskeleton to be sold for personal use instead of renting like HAL exoskeleton or testing. It costs 150,000 NZD (based in New Zealand) and international sales started 2011; the price is expected to drop once demand increases. The FDA has yet to approve it for sale in the US as a personal device, though it is available to rehabilitation centres.
  • Activelink Co Ltd's PowerLoader Robot. Currently with its PLL (PowerLoader Light) version. Uses Mechanical Feedback and Force Sensors to power the user's legs motion.
  • Argo Medical Technologies ReWalk The ReWalk has two versions, ReWalk "I" for institutions to use for research or for ReWalking therapy. It is designed for use under the supervision of a healthcare professional, like a physical therapist. Many health benefits have been reported for paraplegics who stand erect, and in robotic devices that mechanically move their legs. These benefits and more are expected when a patient is ReWalking. The other version is the ReWalk "P" personal unit. The ReWalk P is intended for personal use by patients at home or in the community. The ReWalk I is now available for sale to rehab centers in Europe and USA. It is listed with the FDA. The ReWalk P has been submitted to the FDA, and clearance is pending. The ReWalk P is CE marked, and became available in Europe in 2012. The ReWalk P will not be available for sale in the US until it is cleared by the FDA.


See the full article Powered Exoskeleton From Wikipedia, the free encyclopedia.








Bionic Suits Aid Paraplegics

SEPTEMBER 12, 2012 
By Sean Patrick Farrell and Emily B. Hager

A new generation of bionic suits, or wearable robots, are being designed for the disabled as well as for industrial and military purposes.


© 2013 The New York Times Company





Eythor Bender Demos Human Exoskeletons

Uploaded on Mar 24, 2011

Eythor Bender of Berkeley Bionics brings onstage two amazing exoskeletons, HULC and eLEGS -- robotic add-ons that could one day allow a human to carry 200 pounds without tiring, or allow a wheelchair user to stand and walk. It's a powerful onstage demo, with implications for human potential of all kinds.
hodgman - "Seriously, everyone: a soldier just walked onto the #TED stage wearing a functional exoskeleton." 
Ball - Yes, I love how that woman who "hasn't walked for 19 years" moved her leg of her own accord before even being in that exoskeleton. Very believable. 
Patti Pender - Seriously, LOOK at her upper body definition and the muscle wasting in her lower body. She quite OBVIOUSLY has no motor or sensory control below the waist. And listen to the girly giggles! She has also quite obviously not walked in years and she's positively giddy about it.


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Eythor Bender at TEDMED 2011

Uploaded on Nov 28, 2011

Eythor Bender's Ekso Bionics makes powered, wearable robots known as "exoskeletons" that boost human strength, endurance, and mobility. But can they help a paraplegic walk? Watch this incredible story.


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Eythor Bender - Q & A at TEDMED 2011

Uploaded on Nov 28, 2011

The CEO of Ekso Bionics, and a paralyzed man he helped, take questions about human exoskeletons - "wearable robots" - how they help paraplegics walk, and what lies ahead.


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TEDxSF - Berkeley Bionics 

       -- Merging Technology and the Human Body

Uploaded on Jun 11, 2011

More than anything else, Eythor Bender is a team builder. You want to be on his team. And that's good news for bionics, a nascent industry that Eythor has championed and grown, taking bionic prosthetics from unconventional approaches to sustainable, approved products that merge man and machine, and enhance individuals' participation in their community. Today and as CEO of Berkeley Bionics -- developer and maker of wearable robots - Eythor is leading his company's charge to boost everyone's potential through personal bionics.

This year, Berkeley Bionics is introducing two new exoskeletons to the market that augment mobility, strength and endurance: eLEGS powers wheelchair users up to get them standing and walking again; and HULCTM (Human Universal Load Carrier) enables users to carry up to 200 lbs. for hours and over all terrains, while reducing the likelihood of back-injuries.

Eythor is a native of Iceland, with a Masters in Business and Economics from Germany, where he began his career with Hewlett Packard in medical diagnostics and computer imaging. He went on to join Nordic-European Ossur, which pioneered the field of commercial bionics. Eythor led Ossur's Americas division, taking it from a start-up to a world leader in the field of wearable, non-invasive technologies designed for amputees, injury prevention, rehabilitation and pain relief. He lives in San Francisco and most recently spoke at TED2011 in Long Beach, California.

About TEDx, x = independently organized event.

In the spirit of ideas worth spreading, TEDx is a program of local, self-organized events that bring people together to share a TED-like experience. At a TEDx event, TEDTalks video and live speakers combine to spark deep discussion and connection in a small group. These local, self-organized events are branded TEDx, where x = independently organized TED event. The TED Conference provides general guidance for the TEDx program, but individual TEDx events are self-organized.* (*Subject to certain rules and regulations)


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Tedxdu Eythor Bender and Amanda Boxtel 

          -- Merging Technology and the Human Body

Uploaded on May 26, 2011

In a TED-like "all knowledge is connected" moment, TEDxDU speaker and Paralympic hopeful Lacey Jai Henderson introduces Eythor Bender, who was head of the company that developed the Cheetah foot, the gold standard in athletic prosthetics. Eythor's latest advancement is enabling wheelchair-bound people to walk again. Amanda Boxtel demonstrates Eythor's eLEGS technology and walks on stage to share her story.


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TEDxSanAntonio - Eythor Bender 

          -- eLEGS Merging Technology & the Human Body

Uploaded on Dec 27, 2010

Speaker: Eythor Bender

Title of talk: eLEGS: Merging Technology and the Human Body

About this talk: Blonde and athletic, Amanda Boxtel will tell you that she — like many other mobility-impaired people — never was meant to be sitting in a wheelchair after a skiing accident left her paralyzed 18 years ago. And so it was with childlike glee that Boxtel squealed: "I'm doing it!" as she walked across the stage of TEDxSanAntonio using eLEGS, an artificial exoskeleton designed for parapalegics by Berkeley Bionics.

About Eythor Bender: With extensive global experience in leading medical device, life science and bionic device companies — from concept to commercialization — Berkeley Bionic's new CEO has a personal passion for technologies that augment mobility. Prior to joining Berkeley Bionics, Eythor was the CEO of Rex Bionics and, before that, spent 13 years in executive management with Ossur, a global leader in the development, manufacturing and distribution of non-invasive orthopedic products: For more information on Bender: HYPERLINK "http://berkeleybionics.com".



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Berkeley Bionics Human Exoskeleton

Uploaded on Mar 24, 2008

Berkeley Bionics™, designs and manufactures lower extremity exoskeletons to augment human strength and endurance during locomotion. Berkeley Bionics exoskeletons increase wearer's strength while decreasing their metabolic cost of walking. The company is also attacking the technological barriers to a practical, affordable exoskeleton for civilian and medical applications, particularly to assist patients with neurological or muscular mobility disorders. These powered human exoskeletons would allow their wearers to walk upright without the strain and muscular effort required by today's unpowered orthotic devices.


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The 1,000,000 Step Milestone

Published on Dec 21, 2012

With the holidays upon us and a new year on the horizon, it seems fitting to reflect on the achievement of another significant milestone for Ekso Bionics and the individuals our technology serves. To date, over one million steps have been taken that would not have been possible without Ekso.

When the Ekso team began developing this technology seven years ago, our vision was that one day robotic exoskeletons would be a viable and accessible option for the millions of wheelchair users who wanted the option to stand up and walk. Thanks to the dedication and passion of our employees, our Ekso Center partners, and the individuals who have imparted their trust in us, yesterday's vision is becoming today's reality.

But we aren't done yet. In fact, with so much opportunity before us, it feels like we're just getting started. My goal is that in 2022 -- ten years from our first shipment -- we'll be celebrating one million individuals having walked in Ekso.

Here's to the dawning of a new year and the achievement of many more milestones to come.

Happy holidays, Nathan Harding, Co-Founder and CEO


Standard YouTube License @ Ekso Bionics








2012 Ekso Project

Uploaded on Feb 21, 2012


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Exoskeleton Test Pilot Amar

Published on Mar 23, 2012

I could never imagine I would be in this shape. A lot of people think at 78 you're past your prime, that you can't do anything. I realized that age is just a number. What you feel inside is your real age."

Amar's attitude is all the more inspiring considering he was paralyzed after falling 20 feet off a tee box while at a golf course. Despite the setback, Amar is confident that the Ekso technology already getting him back on his feet will also get him back on the links soon. Watch his story here.


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eLEGS at Valley Medical Center

Uploaded on May 6, 2011

Rip Empson visits Valley Medical Center, where spinal cord injury patients are testing eLEGS.


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Robot Legs Help Stroke Survivors to Walk Again

Petra Hes was just 17 when she suffered a stroke. Now scientists at the University of Twente in the Netherlands are helping her walk again with the help of LOPES - the Lower Extremity Powered ExoSkeleton.

Petra Hes, stroke survivor saying: "I feel my knee is lifting, machine is lifting my knee and that's quite different then my usual walk, cause my knee is very stiff and my steps are not too high then, so I am walking very asymmetric and first time I walked into the LOPES, it was, we call it "A-Ha" moment - so that is how it feels when you walk normal again! I can't remember it,"

Hes told Reuters strapped to the robot. The robot is designed to help train the body and mind to remember how to walk again after a stroke or a spinal injury, says Edwin Van Asseldonk.

Edwin Van Asseldonk, University of Twente saying: "It's designed to aide physical therapist in providing task-specific and intensive training to neurological patients and those neurological patients can be stroke survivors, spinal injury subjects, maybe even people with multiple sclerosis or Parkinson disease."

LOPES can be adjusted depending on how much help a patient needs - and correct what they are doing wrong.

Edwin Van Asseldonk, University of Twente saying: "For walking it's also very important that you maintain your balance while walking and in maintaining balance pretty much what you need is to place your foot on appropriate spot to prevent falling over and by making that movement possible in this device it is also possible to train that balance control while you are walking."

In future researchers hope to use data from LOPES to develop a wearable exoskeleton which could help wheelchair users to walk again. Stuart McDill, Reuters.


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Exciting Robotic Technology

Uploaded on Aug 29, 2008

CHAN: For paralyzed people not being able to move around on their own is a difficult fact of life. But now one Israeli scientist is helping to change that with a new and exciting piece of robotic technology. Here's a closer look.

STORY: Paralyzed for the past twenty years ex-paratrooper Radi Kaiof enjoys a new sensation - walking.

[Radi Kaiof, Former Paratrooper]: "For me standing up and walking - I never even dreamt about it. I've been wounded for 20 years and I never dreamed I'd be able to walk."

Radi's dream has become a reality thanks to ReWalk, a remote-controlled suit developed by Argo Medical Technologies. Working somewhat like the exoskeleton of a crustacean, the system consists of motorized leg supports and body sensors. A computerized control box is carried in a backpack while crutches help with balance.

But for Dr. Amit Goffer who invented the device, the greatest benefit to the user is the psychological impact.

[Dr. Amit Goffer, 'ReWalk' Inventor]: "We shift the person, the moment the person is being shifted from a wheel chair user status to crutch user status it's... it's a whole world, it's a real revolution actually."

But joining the revolution isn't cheap. It's estimated the product will sell for around 20,000 U.S. dollars.

While expensive, it's a life-changing aid, allowing those who would otherwise be confined to wheelchairs a freedom to movement similar to able bodied people.

ReWalk is now in clinical trials and slated for commercial release in 2010.


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Robot Legs to Help Factory Workers

Uploaded on Nov 10, 2008

Take a look at this... bionic legs are made for walking.

Japan's second largest car maker thinks they can help their workers on the factory floor.

The walking assist device is what Honda is calling its experimental robot legs.

They are expected to help people who work standing or in a crouching position for a long periods of time.

[Jun Ashihara, Researcher]: "We're thinking more of using this device in the industrial field. There's demand from the factory floors to make it less tiring for workers that work standing up or crouching all day."

The gadget helps by redistributing body weight and lightening the burden on workers legs.


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Saturday Comics



For Better and For Worse
Lynn Johnston - 2007-12-20

"We're going to have a lovely time,..."
Dilbert
Scott Adams - 2013-03-12

"You have entered the territorial ... of Elbonia !"

Garfield
Jim Davis - 2013-03-12

"You're wearing booties !"

Betty
Delainey & Rasmussen - 2013-03-15

"BMI, waist circumference, DNI ?"






                       
*For Better and For Worse" is a serious topic of stroke but with a very nice cartoons. It is all about Grandpa Jim had a stroke and 88 further cartoon "strips" that happened to Grandpa Jim. (See as well 
 the author Lynn Johnston).
** I tried to get low or free price at the people http://www.UniversalUclick.com/ for the images for the cartoons. It was too high for Stroke Survivors Tattler i.e. we are not a regular newspaper and our budget is very low. Fortunately, you will have to do only 1-click more to see the cartoon image, it is legit and it is free using GoComics.com and Dilbert.com.
*** Changed from "Pickles" to "Betty" -- "Betty" is a excellent cartoon and Gary Delainey & Gerry Rasmussen are authors/artists/cartoon-strips and they live in Edmonton.

Eclectic Stuff & Articles

Definition: Eclectic(noun) a person who derives ideas, style, or taste from a broad and diverse range of sources.

Cyberdyne HAL Robotic Exoskeleton

Dean Reinke
Deans' Stroke Musing
Wednesday, January 2, 2013

Japan beats the US to it - Cyberdyne HAL robotic exoskeleton to help paralyzed. Not only could I see using this to help us walk but it could be used to get arm swinging working again as part of walking. I have no arm swing at all. 8 pictures at the link.

HAL stands for Hybrid Assistive Limb - Cyberdyne HAL robotic exoskeleton to help paralyzed. Japan beats the US to it - Cyberdyne Hal robotic exoskeleton to help paralyzed. The U.S. military has been trying to develop robotic exoskeletons for decades to help soldiers carry heavy loads or move at high speeds.

8 pictures at the link. I would have loved something like this, it would prevent my leg from swinging out and be a lot more useful than the Lokomat.

Compare this to:
Your therapist will know all about these. Hah!

See the original article Cyberdyne Hal Robotic Exoskeleton
                                  in Deans' Stroke Musing

Kickstart - New Technology to Help Stroke Survivors Walk.

Dean Reinke
Deans' Stroke Musing
Sunday, December 30, 2012

Kickstart 

 - New Technology to Help Stroke Survivors Walk


Something for you to discuss with your therapist. I know going to your doctor with your ideas on how to get better goes against the whole medical establishment. And mine dismissed my ideas/questions. But hell, stroke rehab is a complete failure, we can't do any worse. I know this showed up in Stroke Survivors Tattler this weekend  but it needs all the exposure it can get. Originally inspired by a horses leg; Technology was licensed to Cadence Biomedical:
Device Inspired By A Horse’s Leg Aims To Help People With Weak Hips Walk Confidently
The Kickstart orthosis is a new class of self-powered exoskeletons designed to enable walking and accelerate rehabilitation for those recovering from neurological injuries such as stroke, spinal cord injury, and traumatic brain injury, as well as degenerative diseases such as MS, muscular dystrophy, and ALS.  It’s designed to help users regain and maintain independence with less reliance on walkers, canes, and wheelchairs and without the expense of robotic devices.

See the original article Kickstart - New Technology to Help Stroke Survivors Walk
                                  in Deans' Stroke Musing

Hell Yes!

Peter G Levine
The Stroke Recovery Blog
Saturday, March 2, 2013

Can someone get better after they "plateaued?" Hell yes.

What is the plateau?

It's the point at which all of the neurons that were "stunned" by the stroke have come back online. Why were the neurons stunned in the first  place? The stunning of neurons is known as "cortical shock." Neurons, right after the stroke, are fighting a battle to survive. And while they're fighting this battle, they don't work. These neurons eventually come back online. They usually come back online between one week and three or four months after the stroke. This is known as the subacute phase. (Note: there is no "one size fits all" timeline for these events. Two stroke survivors can have radically different timelines.)

In any case, at some point these neurons come back online. Recovery is sometimes very rapid and relatively "easy" during this phase. This kind of recovery, stunned neurons coming back online, is known as natural recovery, or spontaneous recovery. In other words, "Not a lot of work, but a lot of recovery."

Eventually, all of the neurons that were stunned are back online. The survivor "plateaus" and the chronic phase of stroke begins. Once this happens there is a discernible reduction in the rate of recovery. The reduction is because there's no neurons to come back online and help the process along. But recovery can still happen.

It's just that recovery takes a different form. Now neurons from around the brain have to be recruited in order to make up for the neurons killed by the stroke. This makes recovery a much different (and effortful) process during the chronic phase, than during subacute phase.

But... you hear this all the time. I even hear this from therapists. They'll say something like, "We ended therapy with this guy, 14 months later he walks through the door and he can do stuff that he couldn't do when he was discharged!" This sort of recovery can then trigger more rehab. Remember, rehab ends when the person plateaus. (Its a managed care thing.) So if there are changes in the ability to move, therapy can be justified. So you could go through the cycle where you work your butt off to get a little bit better, which then triggers more therapy.

It's a beautiful cycle, and it can continue for decades.

See the original article Hell Yes! in The Stroke Recovery Blog

A Day at the Fair! (Book Fair, that is...)

Diane
The Pink House On The Corner
Monday, March 11, 2013

Every year, there is an Antiquarian Book Fair in our city. And every year, pre-stroke, Bob and I went to it. And I, especially, always looked forward to it, as I love 19th century poetry books and have a small collection of them at home in a bookcase.

We missed the last two years...

Two years ago, my mother offered to hire a caregiver to watch Bob so that I could go on my own.


Gateway to the "Tickerin" Book Fair!
But it didn't feel right. Going alone.

And it seemed too difficult to take Bob...

And then there is the money. I mean hard to spend money on frivolous things when Bob needs so much for his medical care. And we are living social security check to social security check....

Then this year, I saw the advertisements and thought.... what the heck.

Let's give it a go. I deserve a little break, right? And a bit of fun. And maybe a new/old book to add to my little collection.

 Though this decision was not without a lot of trepidation. I mean, what could go wrong with an incontinent guy in a wheelchair that I have to push through a crowded auditorium filled with expensive merchandise? ha!

This book was priced at $35.00.
I managed to get it for $20.
It's from 1882.
As this is not an ordinary book fair. This is an "Antiquarian Book Fair" filled with antique, rare, collectible books and it's the kind of place you go if you want to, say, drop $200,000 on a first edition, signed copy of The Great Gatsby.... or $950.00 for a "nice" early Yeats with fraying edges... I kid you not.

Yes, a bit out of our league.  Though, in the past, I usually managed to find something in the $20 range. And it's great fun, I think, looking at books which are worth more than our house!

A collection of love poems.
From 1881.
It was marked at $30, I got it for $24.
So yesterday, we went. You should have heard Bob trying to say the word "antiquarian"-- it kept coming out like "tickerin".  Ha! Heck, "antiquarian" is a hard word for even me to say right. And I sort of like that: The Tickerin Book Fair. Has a nice ring to it.

The place was packed. There were over 100 dealers from all over the country. And many of the booths were difficult to get the wheelchair into--some I could not get him in at all, and I had to leave Bob sitting in the aisle. And people were continually backing into us. Or blocking our path.

And the auditorium is old and the floors uneven and a few times the wheelchair started rolling away from me---once headed straight into a glass bookcase filled with "fore edge" books priced around $3000 each!

I tell you, I did some fancy foot-work with that wheelchair. It took a long time to get through the place, in fact, we missed the last entire last aisle because our transport was due to arrive...

But by the end of the afternoon, I had spent $44.00 and procured two very nice 19th century poetry volumes...

It was the first time since 2010 that I have spent that much money so frivolously! And it sure felt good.

When we got home, we were both utterly and completely exhausted. Bob immediately fell asleep. My legs were killing me.

But we were both happy, very happy, to have gone out and done something "normal".

2 comments:
March 11, 2013 at 1:20 PM cheri said... i'm glad you could have a sort of normal day of fun! 
March 11, 2013 at 10:18 PM J.L. Murphey said... Diane, WTG! It's the little things that you can do as "normal" people that make you appreciate it more. I remember just before my stroke I was planning a get away. The first in over ten years. My husband floored me withe the question, with him or without him. Although it would have been easier to do without him, I would spend all of my down time worrying about him so there was no question in my mind. 
You know what they say about best laid plans right? I had my stroke two weeks before my vacation getaway. I ended up taking a month away but not the way I wanted or needed. 
I'm glad you and Bob had a good day of it. For me, I wouldn't have left my hubby in the aisle. I'd be using the wheelchair as a battering ram and yelling, "Excuse me!" as I ran over other people's toes. I use my cane the same way.

See the original article  A Day at the Fair! (Book Fair, that is...) 
                                   in The Pink House On The Corner

Sunday Stroke Survival ~ Needs vs. Wants

Jo Murphey
The Murphey Saga
Sunday, March 10, 2013

Have you ever noticed how your focus changes in regards to your therapy workout? Some things you do regularly just because, while other things you do with more intensity? Ever wonder why that is?

It's your focus.

Somethings are more weighted than others. In the hospital my strongest focus was on just a couple of things rather than the whole program. My priorities were on coping with one handed strategies, walking, and speech. Everything else, my attitude fell into the it-would-be-nice-to-have-it-back-but category.

It's the old priority game of NEEDS vs.WANTS or would-be-nice categorizations. Nobody likes to make the list. We want all our wants in the needs pile. So here was my decision factors.
  • The therapist told me that fingers and hands were usually the last things to return after a stroke so that became a back burner issue. Not that I didn't NEED or WANT to have it back, but I realized that since it would take longer, my focus should be on the things that I could have restored quicker. That's not meaning I wouldn't still work at it.
  • I didn't WANT to place my husband in a nursing home or Hospice, so I NEEDED to improve the dexterity in my left hand to function as well as my right hand previously did like drawing up and administering injections, and monitoring vital signs..
  • Walking was a NEED issue. I live in an older home with smaller doors. Most will not allow access with a wheelchair. Although most of my house is level, some areas have a slight step like the marble step up into the bathrooms.
  • Talking was NEED because my husband is deaf and reads lips and if I can't form the words right he won't hear me. This meant working on facial muscles to restore the droop and forming words with my lips properly.

Although my aphasia and speech is still affected by the stroke, my cognitive function was moderately impaired. As an author this came as a hard blow once I realized how severe the deficit  was when I tried to go back to my normal life once I got home from the hospital.

I had the ability to remember two out of three words, and the higher cognitive function of decision making choices, but my attention span was fleeting, my memory was full of gaps, my English spelling and grammar was simplistic at best, forming and computing complex strategies, and my ability to multi-task is gone.

While for most people this would be good enough, it isn't for me. The reason I say moderately impaired is because I'm a writer and this is a huge loss.

But getting back to focus. See, my "dyslexic-ADD" kicked in again. My focus since being home has changed. I want to write again. I NEED to publish again. It reason is simple. It's added income. I NEED to get my aphasia and speech under control for my ministry for the same reason.

I WANT and NEED to supplement our income. With ever increasing drains on our finances, I can't wait for Social Security to kick in. That's even with cutting back on essentials, drugs, doctors, and paying a mountain of bills are counted essentials.

My focus now, while the others are still important, in therapy either a hospital-based or at-home is cognitive and my arm. While I still do all the other stuff for my leg, it's now taken a back seat to rebuilding my arm and my brain functioning right. Reading aloud this blog and my other one helps work through my aphasia issues, "playing" games is therapy work and my time spent on force-use of my right arm are helping to restore pathways in my brain. These are my focus areas.

Regaining my foot drop and inverted foot not so much because it functions with the AFO most times. I say most times because the clonus is distracting, and the inversion can be painful when it's fighting with the AFO. My leg will take me where I need to go when supported. It keeps me mobile which is an essential and a NEED.

Yes, there is painful muscle spasms, spascicity, high tone, and a lot of other things that go along with my stroke, but focusing on what NEEDS to be accomplished the soonest keeps me goal orientated and somewhat successful in my rehabilitation workout. Narrowing the goals and focus allow me to achieve that success. Success is a powerful motivator.

  • So separate your NEEDS from your WANTS
  • Make your goals changeable to your NEEDS
  • Focus on your NEEDS
  • Set goals based on NEEDS that are obtainable

Recovery is as much a state of mind as an actual accomplishment.

See the original article Sunday Stroke Survival ~ Needs vs. Wants
                                in The Murphey Saga

Which Human Body Part Increases To Ten Times ...

Jackie Poff
Stroke Survivors Tattler
6th Grade Science

The 6th grade science teacher, Mrs. Parks, asked her class, 'Which human body part increases to ten times its size when stimulated?'

No one answered until little Mary stood up and said, 'You should not be asking sixth graders a question like that! I'm going to tell my parents, and they will go and tell the Principal, who will then fire you!'

Mrs. Parks ignored her and asked the question again, 'Which body part increases to 10 times its size when stimulated?'

Little Mary's mouth fell open. Then she said to those around her, 'Boy, is she going to get in big trouble!'

The teacher continued to ignore her and said to the class, 'Anybody?'

Finally, Billy stood up, looked around nervously, and said, 'The body part that increases 10 times its size when stimulated is the pupil of the eye.'

Mrs. Parks said, 'Very good, Billy,' then turned to Mary and continued. 'As for you, young lady, I have three things to say:
  • One:     You have a dirty mind. 
  • Two:    You didn't read your homework. 
  • Three: One day you are going to be very, VERY disappointed.'

Face à Face avec le Guépard!

Monty Becker
Stroke Survivors Tattler
Face à face avec le guépard!

   or 

Face to face to the Cheetah! 
(Thanks to Google translation)





TEDxTalks: Modern Art of Recovery

Published on Nov 1, 2012

Teresa Wong, Executive Director, REHAB Innovation Center: Teresa Wong leads a "think tank" created to facilitate innovative synergies between clinicians, scientists, and community partners locally, nationally and internationally. Fusing her 20 years of clinical expertise with her understanding of rapidly developing technologies, she challenges the premise of what physical rehabilitation ought to be. Teresa has written  numerous articles on stroke rehabilitation for various professional publications, and presented on topics such as integrating robotics into rehabilitation programs in the United States as well as Canada, Beijing, Singapore, Malaysia and Thailand.


Standard YouTube License @ TEDxTalks

Facts About Pediatric Stroke

Published on May 1, 2012

May is pediatric stroke awareness month.

Standard YouTube License @ janellemarie9203's channel

Feline Stroke Recovery

Published on Mar 5, 2013

On Saturday morning my cat was really ill, he seemed to have no eyesight, was walking slowly in circles and wanted to stick his head into any corner and would stay there for ages. The vet found no infection and organs working OK. It seemed he'd had a stroke. Sunday was much the same, but by Monday he was walking normally, although would walk around until he was too tired to continue. He wanted to explore everywhere. He seemed to be getting some eyesight back but lacking in sense of smell. This video is taken on Tuesday, his eyesight has improved and his movement is much more normal.

On Sunday I thought he would have to be put down, so if your cat seems to have had a stroke, let them have as much stimulation and exercise as they can safely and see if they improve.

Standard YouTube License @ Sheila Eskdale

Young Strokes: A Network for Survivors

from Vikki Hutton

For young stroke survivors, who have their whole life ahead of them, it can be especially difficult to adjust to life of sudden limitations. But in the internet era, social networking is helping to combat feelings of loneliness and frustration, gradually bridging the gap between the 38,000 people who will survive young stroke in the UK every year.

21-year-old Becky Beaumont is one of the biggest names in the young stroke community -- her blog about her recovery has received nearly a million hits since she suffered a stroke in 2011.

Josie Gray is from The Stroke Association, encouraging young survivors to share their story so they can connect and inspire in life after stroke.


Young strokes: A network for survivors from Vikki Hutton on Vimeo.

Brass Blast!

John C Anderson
Stroke Survivors Tattler
Mill Creek Colliery Band
presents
"Brass Blast!"

Sunday, Mar 17, 2013, 3 – 5 PM

Location: All Saints’ Anglican Cathedral 
          10035-103 Street
City:     Edmonton
Event:    Downtown
Details:  British-style brass band
Category: Concerts / Performances
Cost:     $18 for adults, $14 for students and seniors
Tickets:  www.tixonthesquare.ca
Phone:    780.420.1757
Contact:  780.431.2437

Edmonton's own 28-piece, British-style brass band will strut its finest in this brassy music spectacular. Selections include ‘An English Suite’ (Ball),  ‘Exaltation’ (Mackereth), ‘MacArthur Park’ (Webb/Sparke), ‘Scene No. 1 from Swan Lake’ (Tchaikovsky/Hirst) and ‘Pirates of the Caribbean’ (Badelt/Barry). Soloists include Cam Martin (soprano cornet) playing ‘Concerto’ (Bellini/Snell), Daniel Skepple (cornet) playing ‘Songs of Erin’ (Christmas) and Chris Diaper and Robert Johnson (euphonium) playing the duet ‘Sous le Dôme Epais’ (Delibes/Johnson). The band will be led by its principal conductor, David Hoyt.

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