Saturday, December 6, 2008

I Hate Yellow

I hate yellow. I hate any signs of spring. Don't you know I'm only happy when I'm depressed? Don't you know that I'm only happy when I'm wearing black? That I'm only happy at night. Yes, I'm a creature of the night.

--Karen Finley, Shock Treatment [text arrangement adapted from Dawn's]


Feeling Blue? Yellow is the New Black

NEW YORK (AP) _ Enough gloom and doom: There's a prediction from a leading color source that cheerful and sunny yellow will be the influential color of 2009.

Pantone, which provides color standards to design industries, specifically cites "mimosa," a vibrant shade of yellow illustrated by the flowers of some mimosa trees as well as the brunch-favorite cocktail, as its top shade of the new year. In general, Pantone expects the public to embrace many tones of optimistic yellow.

"I think it's just the most wonderful symbolic color of the future," says Leatrice Eiseman, executive director of the Pantone Color Institute. "It's invariably connected to warmth, sunshine and cheer — all the good things we're in dire need of right now."


So it's come to this: Orwellian color therapy to fix the financial crisis and calm the unsettled consumer masses...


Pantone Selects Color of the Year for 2009: PANTONE 14-0848 Mimosa

December 03, 2008 06:15 AM Eastern Time

Mimosa Embodies Hopefulness and Reassurance in a Climate of Change

CARLSTADT, N.J.--Pantone, an X-Rite company, and the global authority on color and provider of professional color standards for the design industries, today announced PANTONE® 14-0848 Mimosa, a warm, engaging yellow, as the color of the year for 2009. In a time of economic uncertainty and political change, optimism is paramount and no other color expresses hope and reassurance more than yellow.

“The color yellow exemplifies the warmth and nurturing quality of the sun, properties we as humans are naturally drawn to for reassurance,” explains Leatrice Eiseman, executive director of the Pantone Color Institute®. “Mimosa also speaks to enlightenment, as it is a hue that sparks imagination and innovation.”

Best illustrated by the abundant flowers of the Mimosa tree and the sparkle of the brilliantly hued cocktail, the 2009 color of the year represents the hopeful and radiant characteristics associated with the color yellow. Mimosa is a versatile shade that coordinates with any other color, has appeal for men and women, and translates to both fashion and interiors. Look for women’s accessories, home furnishings, active sportswear and men’s ties and shirts in this vibrant hue.

I see you coming into my neighborhood with your new teeth, and your solid pastel lime green puke green pale pink apricot shirt that goes together with everything, catching sales as you go, with the
as your mascot.






--Karen Finley, Shock Treatment [text arrangement adapted from Dawn's]

Friday, December 5, 2008

Neuroimaging Studies of Stroke Rehabilitation

OR: Why is the RSNA Makin' Stuff Up? (Part 2)

Here's the next erroneous press release from the Radiological Society of North America (RSNA):
Robotic Technology Improves Stroke Rehabilitation

CHICAGO — esearch [sic] scientists using a novel, hand-operated robotic device and functional MRI (fMRI) have found that chronic stroke patients can be rehabilitated, according to a study presented today at the annual meeting of the Radiological Society of North America (RSNA). This is the first study using fMRI to map the brain in order to track stroke rehabilitation.
No, not even close. Many published papers have used fMRI to map the brain in order to track stroke rehabilitation. Three recent review articles are listed in the References.
"We have shown that the brain has the ability to regain function through rehabilitative exercises following a stroke," said A. Aria Tzika, Ph.D., director of the NMR Surgical Laboratory at Massachusetts General Hospital (MGH) and Shriners Burn Institute and assistant professor in the Department of Surgery at Harvard Medical School in Boston. "We have learned that the brain is malleable, even six months or more after a stroke, which is a longer period of time than previously thought."
That's not true, either, because the literature on post-stroke recovery of function includes articles like the one by Liepert et al. (back in 2000) on constraint-induced movement therapy in patients with strokes 5 years earlier:
...CI therapy might produce its therapeutic effect through the induction of a use-dependent cortical reorganization that counteracts adverse brain function changes and enhances recovery-associated plastic changes that occur in the human brain after stroke.
Well, the robotic technology is cool, let's take a look at that.
For the study, the patients squeezed a special MR-compatible robotic device for an hour a day, three days per week for four weeks. fMRI exams were performed before, during, upon completion of training and after a non-training period to assess permanence of rehabilitation.

Figure 4 (Tzika et al., 2008). Diagram illustrating the concept of on-line brain mapping using fMRI and a Magnetic Resonance Compatible Hand-Induced Robotic Device (MR_CHIROD).

The intensive rehabilitation regime produced an increase in the number of voxels activated when the patients were using MR_CHIROD in the scanner.


Figure 16 (Tzika et al., 2008). This fMRI image illustrates the area in the brain that corresponds with hand use of a patient before training (left), after eight weeks of training (middle), and one month after training was completed (right) at a 60percent effort level.

Earlier experiments have reported similar findings (e.g., Dong et al., 2007). In fact, the excellent review paper by Carey and Seitz (2007), which has 244 references, includes a table of 12 neuroimaging studies that specifically looked at rehabilitation of the upper limb in stroke patients.

So to conclude, this is not the first time fMRI has been used to track rehabilitation, and it's not news that the potential for cortical plasticity persists at six or more months post-stroke. Why would a professional society release false PR to promote their annual meeting?


References

1. Reviews

Carey LM, Seitz RJ. (2007). Functional neuroimaging in stroke recovery and neurorehabilitation: conceptual issues and perspectives. Int J Stroke 2:245-64.

Eliassen JC, Boespflug EL, Lamy M, Allendorfer J, Chu WJ, Szaflarski JP. (2008). Brain-mapping techniques for evaluating poststroke recovery and rehabilitation: a review. Top Stroke Rehabil. 15:427-50.

Brain-mapping techniques have proven to be vital in understanding the molecular, cellular, and functional mechanisms of recovery after stroke. This article briefly summarizes the current molecular and functional concepts of stroke recovery and addresses how various neuroimaging techniques can be used to observe these changes. The authors provide an overview of various techniques including DTI, MRS, ligand-based PET, SPECT, rCBF and rCMRglc PET and SPECT, fMRI, NIRS, EEG, MEG, and TMS. Discussion in the context of poststroke recovery research informs about the applications and limitations of the techniques in the area of rehabilitation research. The authors also provide suggestions on using these techniques in tandem to more thoroughly address the outstanding questions in the field.

Ward NS. (2007). Future perspectives in functional neuroimaging in stroke recovery. Eura Medicophys. 43:285-94.

Neurological damage and stroke in particular is the leading cause of long-term disability worldwide. Recovery of function after stroke is a consequence of many factors including resolution of oedema and survival of the ischaemic penumbra. In addition, there is a growing interest in how reorganisation of the surviving tissue might subserve the improvements in function that are commonly seen over weeks, months, and sometimes years after stroke. Noninvasive techniques such as functional magnetic resonance imaging, electroencephalography, magnetoencephalography and transcranial magnetic stimulation allow the study of this reorganisation in humans. Currently, results suggest that functionally relevant reorganisation does occur in cerebral networks in human stroke patients. This reorganisation can only occur in structurally and functionally intact brain regions. Because these vary depending on the location of the infarction, it is likely that different therapeutic strategies will be required to promote reorganisation depending on residual functional anatomy. This review maps out the attempts to describe functionally relevant adaptive changes in the human brain following focal damage. A greater understanding of how these changes are related to the recovery process will facilitate the development of novel therapeutic techniques designed to minimise impairment based on neurobiological principles and how to target these treatments to individual patients.

2. Primary articles

Dong Y, Winstein CJ, Albistegui-DuBois R, Dobkin BH. (2007). Evolution of FMRI activation in the perilesional primary motor cortex and cerebellum with rehabilitation training-related motor gains after stroke: a pilot study. Neurorehabil Neural Repair. 21:412-28.

Liepert J, Bauder H, Wolfgang HR, Miltner WH, Taub E, Weiller C. (2000). Treatment-induced cortical reorganization after stroke in humans. Stroke 31:1210-6.

BACKGROUND AND PURPOSE: Injury-induced cortical reorganization is a widely recognized phenomenon. In contrast, there is almost no information on treatment-induced plastic changes in the human brain. The aim of the present study was to evaluate reorganization in the motor cortex of stroke patients that was induced with an efficacious rehabilitation treatment. METHODS: We used focal transcranial magnetic stimulation to map the cortical motor output area of a hand muscle on both sides in 13 stroke patients in the chronic stage of their illness before and after a 12-day-period of constraint-induced movement therapy. RESULTS: Before treatment, the cortical representation area of the affected hand muscle was significantly smaller than the contralateral side. After treatment, the muscle output area size in the affected hemisphere was significantly enlarged, corresponding to a greatly improved motor performance of the paretic limb. Shifts of the center of the output map in the affected hemisphere suggested the recruitment of adjacent brain areas. In follow-up examinations up to 6 months after treatment, motor performance remained at a high level, whereas the cortical area sizes in the 2 hemispheres became almost identical, representing a return of the balance of excitability between the 2 hemispheres toward a normal condition. CONCLUSIONS: This is the first demonstration in humans of a long-term alteration in brain function associated with a therapy-induced improvement in the rehabilitation of movement after neurological injury.

Thursday, December 4, 2008

Deliberate self-harm by insertion of foreign bodies into the forearm

OR: Why is the RSNA Makin' Stuff Up?

First, we had the latest new scourge among teenage girls, as featured in yesterday's post:

Self-Embedding Disorder appears to be a newly-coined term described in a press release issued by the Radiological Society of North America (RSNA):
Radiologists Diagnose and Treat Self-Embedding Disorder in Teens

CHICAGO — Minimally invasive, image-guided treatment is a safe and precise method for removal of self-inflicted foreign objects from the body, according to the first report on "self-embedding disorder," or self-injury and self-inflicted foreign body insertion in adolescents. The findings will be presented today at the annual meeting of the Radiological Society of North America (RSNA).

A quick PubMed search shows that although "self-embedding disorder" resulted in zero hits, "self-harm, foreign" yielded 17 references, with the most relevant being:
Wraight WM, Belcher HJ, Critchley HD. (2008). Deliberate self-harm by insertion of foreign bodies into the forearm. J Plast Reconstr Aesthet Surg. 61:700-3. Epub 2007 Jun 20.

Deliberate self-harm is common. It is usually by drug overdose or ingestion of other noxious substances, but self-harm by cutting or burning often comes to the attention of plastic surgeons. We report three variant cases involving insertion of paperclips, a ballpoint pen cartridge and sewing needles into the forearm. We discuss the management considerations of each case and emphasise the importance of actively addressing the underlying psychiatric problems for all instances of deliberate self-harm.
OK, the case reports were from three adult women (not teen girls), but it's not exactly a new phenomenon. It's a form of self-injury, which has been widely reported in the literature (more broadly), and is well-known to clinicians.


Figure 2 (Wraight et al., 2008). Case A, dorso-palmar and lateral radiographs of left forearm.

Case A:
A 42-year-old woman with a history of depression, personality disorder and deliberate self-harm by drug overdose and cutting was referred for non-healing wounds of her left, non-dominant forearm (Fig. 1). Over the preceding five years the self-harm included subcutaneous insertion of straightened-out paperclips. Consequently, abscesses had formed intermittently and were managed by incision and drainage with removal of the causative paperclip. Nevertheless, numerous paperclips remained embedded in subcutaneous tissue (Fig. 2), engendering ferrous staining of the skin and overgranulating chronic ulcers. There was no functional deficit in the hand or forearm at the time of assessment.
Wraight and his colleagues are from Plastic Surgery and Psychiatry Departments (not Radiology Departments), so the emphasis of their short Case Report was different from that of the conference presentation by Young et al., and did not involve interventional radiology to assist in removal of the self-inflicted soft tissue foreign bodies. Nonetheless, their discussion notes that
Insertion of foreign bodies is an unusual form of deliberate self-harm. Most are inserted through existing orifices, and urologists, ENT surgeons and gastrointestinal endoscopists may be involved in their assessment, monitoring and removal. Breach of an epithelium is less common, but is reported with insertion of long thin objects through the nose into the brain, or through the urethra and bladder into the abdominal cavity. Foreign bodies may also be inserted directly through skin, for example into the orbit, breast and abdomen. The forearm is a common site of deliberate self-harm by cutting, but our report is the first to highlight the forearm as a site for foreign body insertion.
They also emphasize that medical management of these cases must take into account the underlying psychiatric problems, and ensure that the patients' emotional behavior doesn't compromise the standard of surgical care. The patients are often subject to stigmatization by health care providers, and psychiatry teams specializing in deliberate self-harm are recommended to improve the quality of care.

So to conclude: "self-embedding disorder" is not a new phenomenon, just a new term for a variant of self-injurious behavior.

Next on the agenda: Stay tuned for another [more egregiously] false press release from the RSNA...

Reference

W WRAIGHT, H BELCHER, H CRITCHLEY (2008). Deliberate self-harm by insertion of foreign bodies into the forearm. Journal of Plastic, Reconstructive & Aesthetic Surgery, 61 (6), 700-703 DOI: 10.1016/j.bjps.2007.04.004.

Wednesday, December 3, 2008

We Won't Forget You

The famous amnesic patient H.M. has died. From Dr. Suzanne Corkin (MIT):
Henry G. Molaison, 82, of Windsor Locks, CT died on Tuesday. He is known in the medical and scientific literatures as "the amnesic patient, H.M." He was born in Manchester, CT and graduated from East Hartford High School. In 1953, he underwent an experimental brain operation at the Hartford Hospital to relieve his seizure disorder. Immediately after the operation, Mr. Molaison showed a profound amnesia, which became the topic of intense scientific study for more than five decades. From age 27 on, he was unable to establish new memories for events in his everyday life and to acquire general information about the world in which he lived. His memory impairment was "pure" and not accompanied by intellectual or personality disorders. For this reason, and because the operation has not been repeated, he is the most widely studied and famous case in the neuroscience literature of the 20th and 21st centuries. Mr. Molaison's contributions to knowledge about memory have been groundbreaking, and researchers worldwide are in his debt. Burial will be private.
via Dr. Vivienne Ming.

See Mind Hacks for more info about the significance of H.M.'s contribution to the neuropsychology of memory.


Figure 1 (Corkin, 2002). Multiplanar views of 18 averaged T1-weighted MRI volumes showing preserved structures in H.M.’s MTL. This magnetic resonance imaging (MRI) scan was obtained on 15 December 1998. The images are based on data averaged over 18 runs; images were motion corrected using the first scan (out of the 18 axials) as a reference. The asterisk marks the intersection of the three viewing planes, just caudal to the left medial temporal lobe (MTL) resection, seen best in the transaxial view. Top left, sagittal view; bottom left, coronal view; bottom right, transaxial view; top right, surface rendering showing locations of transaxial and coronal planes. Abbreviations: CS, collateral sulcus; EC, entorhinal cortex; H, hippocampus; L, left; PH, parahippocampal gyrus; R, right.


Coda (from Corkin, 2002):
Prospects

H.M. is now 75 years old. His mobility is markedly reduced because of osteoporosis, another side effect of phenytoin (Dilantin). Although he is in relatively good health, plans are in place for the post-mortem examination of his brain when he dies. He and his court-appointed conservator have both signed his brain donation form, ensuring that the final chapter in his lifelong contribution to science will include a precise description of his brain and documentation of his lesion. His wish to help other people will have been fulfilled. Sadly, however, he will remain unaware of his fame and of the impact that his participation in research has had on scientific and medical communities internationally.

Self-Embedding Disorder and Removal of Soft Tissue Foreign Bodies


Figure 1 (Young et al., 2008). This x-ray image illustrates 3 metal staples embedded in the hand of a teenage girl.

Self-Embedding Disorder appears to be a newly-coined term1 described in a press release issued by the Radiological Society of North America (RSNA):
Radiologists Diagnose and Treat Self-Embedding Disorder in Teens

CHICAGO — Minimally invasive, image-guided treatment is a safe and precise method for removal of self-inflicted foreign objects from the body, according to the first report on "self-embedding disorder," or self-injury and self-inflicted foreign body insertion in adolescents. The findings will be presented today at the annual meeting of the Radiological Society of North America (RSNA).

"Radiologists are in a unique position to be the first to detect self-embedding disorder, make the appropriate diagnosis and mobilize the healthcare system for early and effective intervention and treatment," said the study's principal investigator, William E. Shiels II, D.O., chief of the Department of Radiology at Nationwide Children’s Hospital in Columbus, Ohio.

It's a form of self-injury, which has been widely reported in the literature (more broadly), and is well-known to clinicians.

As the press release explains:
Self-injury, or self-harm, refers to a variety of behaviors in which a person intentionally inflicts harm to his or her body without suicidal intent. It is a disturbing trend among U.S. adolescents, particularly girls. Prevalence is unknown because many cases go unreported, but recent studies have reported that 13 to 24 percent of high school students in the U.S. and Canada have practiced deliberate self-injury at least once. More common forms of self-injury include cutting of the skin, burning, bruising, hair pulling, breaking bones or swallowing toxic substances. In cases of self-embedding disorder, objects are used to puncture the skin or are embedded into the wound after cutting.

The interventional radiologists enter the scene (and intervene) when they use imaging to assist in the removal of self-inflicted soft tissue foreign bodies (STFBs). The abstract below (from an RNSA presentation on December 4, 2008) says it all...
Self-Mutilation in Adolescents: Radiological Management of Self-inflicted Soft Tissue Foreign Bodies

Adam Young, William Shiels, James Murakami, Brian Coley and Mark Hogan

PURPOSE

To evaluate the efficacy and clinical impact of image-guided foreign body removal (IGFBR) for treatment of self-inflicted soft tissue foreign bodies (STFBs).

METHOD AND MATERIALS

Four hundred patients underwent IGFBR with sonographic and/or fluoroscopic guidance. Self-mutilation was seen in 5 adolescent female patients (1.2%), representing 7 patient care encounters; 2 patients presented with self-inflicted STFBs on 2 separate occasions. Mean age 16.8 yr; (range 15-17 yr). Foreign body number, location, type and size as well as incision size, intraoperative imaging modality, type of surrounding reaction, and success or failure of removal were documented prospectively.

RESULTS

Twenty-five foreign bodies were inserted into the forearm or upper arm of the five patients. Referring services included Pediatric Surgery, Emergency Department, and Psychiatry. Number of STFBs per case ranged from 1-9; median=2. Foreign body types included metal (13), wood (5), graphite (3), plastic (2), crayon (1), and stone (1). STFB measurement (greatest dimension) ranged from 4.5-160 mm; mean=22.06 mm. During sonographic removal, hypoechoic halos representing purulent material surrounding the STFBs were defined in 2 cases. Mean incision = 4.67 mm; STFBs were removed with sonographic guidance in 3 cases, fluoroscopic guidance in 3 cases, and a combination of the two modalities in 1 case. IGFBR was successful in all 7 cases without fragmentation or complications.

CONCLUSION

Percutaneous radiological treatment of self-inflicted STFBs is safe, precise, and effective for radiopaque and non-radiopaque foreign bodies, including foreign bodies at risk for fragmentation during traditional operative removal techniques.

CLINICAL RELEVANCE/APPLICATION

Percutaneous IGFBR with sonography and/or fluoroscopy offers surgeons and emergency physicians a safe and effective alternative to operative foreign body removal in this unique high-risk population.


Figure 2 (Young et al., 2008). This x-ray image illustrates 8 metal pieces embedded in the left arm of a teenage girl.

Footnote

1 The term was not found in PubMed.


ADDENDUM: Psychologist Dr Lisa Boesky wants parents to understand that this is a very extreme disorder. "This is not new," she says. "I have been dealing with people who do this since 1995 in juvenile jails and prison. It's very rare in the public arena. Teens who embed typically have major mental health disorders and frequently have histories of severe sexual abuse or trauma."

-via Momlogic.


ADDENDUM #2: The spelling error in the title [formerly ...Soft Tissue Foreign Bodes] has been corrected, thanks to psychiatrist Dr. Eliot Gelwan, who also notes, "...there is no need for a new diagnosis. Indeed, self-injuriousness in general is not an illness, or a diagnosis, unto itself, but rather a symptom of a variety of diagnoses. A fortiori for a particular kind of self-injuriousness. This illustrates one of the epistemological confusions plaguing the system for diagnosing behavioral problems, and is a perfect example of the needless proliferation of diagnostic categories."

Sunday, November 30, 2008

Intersex (for lack of a better word)...

...is the title of a book by Thea Hillman, in which (according to a review by David S. Hall),
She speaks of her experiences as a young child, being diagnosed with Congenital Adrenal Hyperplasia, and what that experience meant to a four year old girl who was growing pubic hairs, a child who was poked and examined by many doctors, and had a total lack of personal privacy of her body. She comes back to this experience many times in the stories she tells of her life as a person who does not really know what gender she is.
Congential Adrenal Hyperplasia (CAH) is an autosomal recessive genetic disorder that...
is characterized by severe androgen excess beginning in the fetus. In about 95% of patients CAH is caused by a defect in the 21-hydroxylase gene (CYP21), leading to an impaired synthesis of cortisol ["stress hormone" produced by the adrenal gland] and aldosterone [hormone that causes the kidneys to retain sodium and water]. The low cortisol level triggers an increased production of adrenocorticotropic hormone, resulting in hyperplasia of the adrenal glands with increased synthesis of steroid precursors and elevation of androgen levels. The androgen excess is present from early embryogenesis, and causes in girls varying degrees of virilization of the external genitalia, depending on the degree of enzyme deficiency.
...as summarized in a new paper by Ciumas and colleagues (2008).

In Intersex (for lack of a better word),
[Hillman] speaks about her "outwardly simple though visually misleading, internally complicated gender."
Ciumas et al. wanted to investigate whether fetal testosterone exposure is the major underlying mechanism for sexual dimorphism in the human brain. In particular, sex differences in the anatomy and physiology of the hypothalamus and the amygdala were of interest. Thus, they turned to adult women with CAH, since
Certain rare conditions, so called experiments of nature, may here potentially offer unique information.
A review of the literature suggested that some "sex-atypical" traits and behaviors may occur with CAH, but not all studies have agreed.

Normal is a weapon of mass destruction.

What is “normal”? Hall's review of Intersex continues:
She speaks of her mother's prayers that she would be normal. She speaks of normal this way:

"I take the war on terror personally because the war on terror is really a war on difference, because my body strikes terror in the hearts of other Americans.

"My body and the bodies of the people I love are the most intimate sites of American imperialism. Because our sex anatomy isn't normal, they operate on us without our consent. Because who we have sex with isn't normal, they won't let us get married. Because our gender isn't normal, they don't give us jobs, health care, or housing. We work, we pay rent, we pay taxes, but because we're not normal, we don't get the same freedoms other Americans enjoy, the same freedoms American soldiers are murdering to protect."

The study, which was not conducted in America but in Sweden by Dr. Ivanka Savic Berglund's group1 at the prestigious Karolinska Institute, was a continuation of their work on sex hormones and olfaction. Previously (Savic et al., 2001), they demonstrated that heterosexual men (HeM) and heterosexual women (HeW) showed different hypothalamic responses to smelling the putative pheromones, androstadienone (AND) and estratetraenol (EST). Specifically they used PET (positron emission tomography) to measure changes in cerebral blood flow responses to inhaling various odorants, which included sex steroids, butanol, cedar oil, lavender oil, and eugenol (clove). EST induced activity in the hypothalamus of HeM but in olfactory regions of HeW. Conversely, AND induced activity in the hypothalamus of HeW but in olfactory regions of HeM, which is not too surprising if these substances are, in fact, pheromones. The opposite sex pheromone is not processed like a regular scent, whereas the same sex pheromone is.

Furthermore, they also examined hypothalamic responses to these putative pheromones in gay men (Savic et al., 2005) and lesbians (Berglund et al., 2006). In the first experiment, the comparison of gay men, straight men, and straight women was pretty straightforward (so to speak). HeM and HeW scored as 0 on the Kinsey scale (exclusively heterosexual), and the gay male subjects scored as 6 (exclusively homosexual). The results were as expected: the hypothalami of gay men were activated by AND, not EST (which was treated like any other odor). The results from the second experiment were less than straightforward. The lesbian group (between 5 and 6) did not look "just like straight men." Instead,
...the lesbian subjects did not show a differentiated pattern of activation with AND and EST; they engaged the amygdala and the piriform and the insular cortices (the classical odor-processing circuits) when smelling both of these compounds.
As a consolation prize, however, the lesbians were unlike HeW (since AND didn't turn on their hypothalami) and somewhat like HeM (since EST activated one overlapping region of the hypothalamus at a lower statistical threshold). [For more info on this study, see Sweat, Urine, and Sexual Orientation and The PNAS Word.]

Note that I did not say anything about activity in specific hypothalamic nuclei [such as the so-called sexually dimorphic nucleus], because the PET method doesn't have the spatial resolution required to distinguish between them.

That brings us to the present experiment. As you might guess, the question was whether CAH women looked more like HeM than HeW when sniffing the steroids.

Is that what they found?
Despite the genetically verified diagnosis and parental reports about boy-typical play behavior during childhood, the pattern of activation in the presently investigated CAH women was remarkably similar to that of female controls, and different from the pattern of male controls. CAH women and HeW activated the anterior hypothalamus with AND, whereas HeM activated this region with EST. Furthermore, whilst the amygdala connectivity differed between the male and female controls, no difference was observed between control females and CAH females. Thus, both with respect to aspects of functional organization and functional activation of the limbic circuits CAH women showed a pattern congruent with their biological sex, and different from the opposite sex. Our hypothesis that these specific aspects of cerebral dimorphism would have masculine features in CAH women was thereby rejected.
So no, it was not what they found.


Figure 1 (Ciumas et al., 2008). Illustration of group-specific activations with putative pheromones and odors. The Sokoloff's color scale illustrates Z values reflecting the degree of activation. As the same brain section is chosen, the figures do not always illustrate maximal activation for each condition. Clusters of activated regions are superimposed on the standard brain MRI, midsagittal plane.

This failure to show a difference between CAH women and control women was obtained even though the two groups were not particularly well-matched for sexual orientation! [a glaring weakness that could have been rectified by recruiting a few bisexual control women]. Eight of the CAH women rated as Kinsey 0, but three others rated as 2, 4, and 5.2

At any rate, these results provide no support for the notion that exposure to high levels of fetal testosterone will result in the "masculinization" of sexually dimorphic limbic circuits. Why? What does this have to say about fetal testosterone and the "male brain" view of development (e.g., Christine Knickmeyer & Baron-Cohen, 2006)? Ciumus et al. were puzzled, but offered the following speculations:
Explanations to these discrepancies are not evident from the present data. We can only conclude that intrauterine virilization of genitalia is not necessarily paralleled by a masculinization of the limbic brain, at least not with respect to signal response to AND and EST, and the baseline amygdala connectivity, which are 2 indices of sex-dimorphism. It is theoretically possible that various sex dimorphic features are affected by fetal testosterone in a dose dependent manner. Whilst such a scenario could be attributed for the differences between HeM and HeW (with extremely high testosterone levels in male fetuses), it is less likely to explain the "male" like AND and EST activation and functional connectivity in lesbian women described in our previous studies. None of our lesbian participants in these studies had genital masculinization, which is expected already at moderate elevations of fetal testosterone. An alternative possibility is that various sex dimorphic features may have different etiological factors; in this respect recent studies by Arnolds group at UCLA are of particular interest as they indicate existence of early, and testosterone-independent chromosomal effects on the brain. Finally, several different etiological factors could contribute to a same sexually dimorphic cerebral feature, for example, psychosexual outcome. The 3 alternatives are not mutually exclusive. Although presently speculative, in the view of present results they all seem relevant to address in the near future.
So there's no neat conclusion, only ambiguity. The calls for future studies are issued. But where does it all fit, in the grand scientific scheme of things? In the less grandiose human scale of things, to be different and yet not-so-different? When talking about her participation in the Intersex and Transgender communities, Thea Hillman says:
"I fear that regardless of the fact that I've been hormonally altered since age six in order to achieve and maintain a mythical gender ideal, I can't safely talk about my concerns about hormones and surgery in our community for fear of being seen as anti-trans and anti-surgery."
Footnotes

1 In the recent past, The Neurocritic (and other neuropundits) have been critical of Savic's work on cerebral asymmetry and sexual orientation, but we'll put that aside for today.

2 Another potential source of variability was the severity of the condition, which ranged from 1 to 5 (least to most severe), with a mean value of 3.18 in the 11 participants. Only four of the CAH women rated a severity of 4 or 5, so this might have obscured potential group differences in the data.

References

Berglund H, Lindström P, Savic I. (2006). Brain response to putative pheromones in lesbian women. Proc Natl Acad Sci. 103:8269-74.

Christine Knickmeyer R, Baron-Cohen S. (2006). Fetal testosterone and sex differences. Early Hum Dev. 82:755-60.

Savic I, Berglund H, Gulyas B, Roland P. (2001). Smelling of odorous sex hormone-like compounds causes sex-differentiated hypothalamic activations in humans. Neuron 31:661-8.

Savic I, Berglund H, Lindström P. (2005). Brain response to putative pheromones in homosexual men. Proc Natl Acad Sci. 102:7356-61.

C. Ciumas, A. L. Hirschberg, I. Savic (2008). High Fetal Testosterone and Sexually Dimorphic Cerebral Networks in Females. Cerebral Cortex DOI: 10.1093/cercor/bhn160.

Active masculinization by fetal testosterone is believed to be a major factor behind sex differentiation of the brain. We tested this hypothesis in a 15O-H2O positron emission tomography study of 11 women with congenital adrenal hyperplasia (CAH), a condition with high fetal testosterone, and 26 controls. Two indices of cerebral dimorphism were measured—functional connectivity and cerebral activation by 2 putative pheromones (androstadienone [AND] and estratetraenol [EST]), previously reported to activate the hypothalamic networks in a sex-differentiated manner. Smelling of unscented air was the baseline condition, also used for measurements of functional connectivity from the amygdala. In CAH women and control women AND activated the anterior hypothalamus, and EST the amygdala, piriform, and anterior insular cortex. The pattern was reciprocal in the male controls. Also the functional connections were similar in CAH women and control women, but different in control men. Women displayed connections with the contralateral amygdala, cingulate, and the hypothalamus, men with the basal ganglia, the insular and the sensorimotor cortex. Furthermore, the connections were in CAH and control women more widespread from the left amygdala, in men from the right amygdala. Thus, we find no evidence for masculinization of the limbic circuits in women with high fetal testosterone.

"Normal is a weapon of mass destruction.
It's just as deadly, and just like those weapons,
it'll never be found."


-Thea Hillman, writer and intersex activist

Tuesday, November 25, 2008

The Embodied Encephalon



Encephalon #59 is hosted this fortnight by Michael Meadon at Ionian Enchantment. One highlight is a post at Neuroanthropology on embodied cognition and cultural evolution, which discusses a paper by Michael Wheeler and Andy Clark:
I must admit a certain morbid fascination with how one of my favorite streams of thought — embodied cognition — would fare combined with cultural evolution — an area of scholarship that, well, to put it nicely, is uneven (before you get all defensive, let me just stop you with one word: mimetics). It’s sort of like watching one of your good friends get hit on by a sleazy guy at a bar. She looks happy, but you’re sort of cringing at the chance that she might actually take him home. In spite of this instinctual cringe, this special edition of Philosophical Transactions has some really interesting work on cultural evolution, especially because many of the pieces focus tightly on the enormously problematic issue of cultural transmission.
And the result of this tawdry hook up is commendable, according to Greg:
...Wheeler and Clark map out a path toward reconciliation between evolutionary theory and interest in the brain that isn’t the same one — massive modularity, instinct, universal grammar, etc. — that seems now to be so out of step with both contemporary evolutionary theory and brain sciences. The result is really outstanding and thought provoking, and I can’t recommend the article highly enough if you can get your hands on it. [I couldn't.]
Go check it out, along with other great posts that include the Neurological Correlates of Poverty and the Neuropsychology of Paranormal Experiences and Belief.