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April 10, 2026
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"The multidimensionality of pain perception, involving sensory, emotional, and cognitive factors may in itself be the basis of conscious, painful experience, but it will remain difficult to attribute this to a fetus at any particular developmental age."
"BUT THE QUESTION of fetal pain is not irrelevant when applied to abortion. On April 4, 2004, Sunny Anand took the stand in a courtroom in Lincoln, Neb., to testify as an expert witness in the case of Carhart v. Ashcroft. This was one of three federal trials held to determine the constitutionality of the ban on a procedure called intact dilation and extraction by doctors and partial-birth abortion by anti-abortion groups. Anand was asked whether a fetus would feel pain during such a procedure. âIf the fetus is beyond 20 weeks of gestation, I would assume that there will be pain caused to the fetus,â he said. âAnd I believe it will be severe and excruciating pain.â After listening to Anandâs testimony and that of doctors opposing the law, Judge Richard G. Kopf declared in his opinion that it was impossible for him to decide whether a âfetus suffers pain as humans suffer pain.â He ruled the law unconstitutional on other grounds. But the ban was ultimately upheld by the U.S. Supreme Court, and Anandâs statements, which he repeated at the two other trials, helped clear the way for legislation aimed specifically at fetal pain. The following month, Sam Brownback, Republican of Kansas, presented to the Senate the Unborn Child Pain Awareness Act, requiring doctors to tell women seeking abortions at 20 weeks or later that their fetuses can feel pain and to offer anesthesia âadministered directly to the pain-capable unborn child.â The bill did not pass, but Brownback continues to introduce it each year. Anandâs testimony also inspired efforts at the state level. Over the past two years, similar bills have been introduced in 25 states, and in 5 â Arkansas, Georgia, Louisiana, Minnesota and Oklahoma â they have become law. In addition, state-issued abortion-counseling materials in Alaska, South Dakota and Texas now make mention of fetal pain."
"Twenty-five years ago, when Kanwaljeet Anand was a medical resident in a neonatal intensive care unit, his tiny patients, many of them preterm infants, were often wheeled out of the ward and into an operating room. He soon learned what to expect on their return. The babies came back in terrible shape: their skin was gray, their breathing shallow, their pulses weak. Anand spent hours stabilizing their vital signs, increasing their oxygen supply and administering insulin to balance their blood sugar. âWhatâs going on in there to make these babies so stressed?â Anand wondered. Breaking with hospital practice, he wrangled permission to follow his patients into the O.R. âThatâs when I discovered that the babies were not getting anesthesia,â he recalled recently. Infants undergoing major surgery were receiving only a paralytic to keep them still. Anandâs encounter with this practice occurred at John Radcliffe Hospital in Oxford, England, but it was common almost everywhere. Doctors were convinced that newbornsâ nervous systems were too immature to sense pain, and that the dangers of anesthesia exceeded any potential benefits. Anand resolved to find out if this was true. In a series of clinical trials, he demonstrated that operations performed under minimal or no anesthesia produced a âmassive stress responseâ in newborn babies, releasing a flood of fight-or-flight hormones like adrenaline and cortisol. Potent anesthesia, he found, could significantly reduce this reaction. Babies who were put under during an operation had lower stress-hormone levels, more stable breathing and blood-sugar readings and fewer postoperative complications. Anesthesia even made them more likely to survive. Anand showed that when pain relief was provided during and after heart operations on newborns, the mortality rate dropped from around 25 percent to less than 10 percent. These were extraordinary results, and they helped change the way medicine is practiced. Today, adequate pain relief for even the youngest infants is the standard of care, and the treatment that so concerned Anand two decades ago would now be considered a violation of medical ethics. But Anand was not through with making observations. As NICU technology improved, the preterm infants he cared for grew younger and younger â with gestational ages of 24 weeks, 23, 22 â and he noticed that even the most premature babies grimaced when pricked by a needle. âSo I said to myself, Could it be that this pain system is developed and functional before the baby is born?â"
"Whether the fetus feels pain is a question that matters to the doctor wielding the scalpel. And it matters, of course, for the practice of abortion. Over the past four years, anti-abortion groups have turned fetal pain into a new front in their battle to restrict or ban abortion. Anti-abortion politicians have drafted laws requiring doctors to tell patients seeking abortions that a fetus can feel pain and to offer the fetus anesthesia; such legislation has already passed in five states. Anand says he does not oppose abortion in all circumstances but says decisions should be made on a case-by-case basis. Nonetheless, much of the activistsâ and lawmakersâ most powerful rhetoric on fetal pain is borrowed from Anand himself."
"Even as some research suggests that fetuses can feel pain as preterm babies do, other evidence indicates that they are anatomically, biochemically and psychologically distinct from babies in ways that make the experience of pain unlikely. The truth about fetal pain can seem as murky as an image on an ultrasound screen, a glimpse of a creature at once recognizably human and uncomfortably strange."
"We have considered whether the fetus, once its nociceptive pathways are complete, can feel pain in utero in a psychological manner akin to adult pain experience, and whether regardless of this the physiological responses to nociceptive input may lead to altered behavior later in life. We conclude that there is currently no strong evidence to suggest that the fetus is ever awake, even transiently; rather, it is actively kept asleep (and unconscious) by a variety of endogenous inhibitory factors."
"It never occurred to me to call 911 or my physician. [âŚ] As foolish as it may appear, you are, in a sense, a prisoner of the pain, which was intolerable. You're thinking, what could I do to relieve myself of it. If it becomes intense enough, you're perfectly willing to accept cardiac arrest as a possible way of getting rid of the pain."
"The conclusion suggested in the section above is further strengthened by consideration of the increasing body of evidence which shows that there are several suppressors in utero which act to inhibit neural activity in the fetus to a far greater degree than is seen postnatally in the infant. The uterus plays a key role in providing the chemical and physical factors that together help to keep the fetus continuously asleep. We propose that this is achieved, among other things, through the combined"
"Tell me your relation to pain, and I will tell you who you are!"
"In a universe of blind physical forces and genetic replication, some people are going to get hurt, other people are going to get lucky, and you wonât find any rhyme or reason in it, nor any justice."
"IF THE NOTION that newborns are incapable of feeling pain was once widespread among doctors, a comparable assumption about fetuses was even more entrenched. Nicholas Fisk is a fetal-medicine specialist and director of the University of Queensland Center for Clinical Research in Australia. For years, he says, âI would be doing a procedure to a fetus, and the mother would ask me, âDoes my baby feel pain?â The traditional, knee-jerk reaction was, âNo, of course not.ââ But research in Fiskâs laboratory (then at Imperial College in London) was making him uneasy about that answer. It showed that fetuses as young as 18 weeks react to an invasive procedure with a spike in stress hormones and a shunting of blood flow toward the brain â a strategy, also seen in infants and adults, to protect a vital organ from threat. Then Fisk carried out a study that closely resembled Anandâs pioneering research, using fetuses rather than newborns as his subjects. He selected 45 fetuses that required a potentially painful blood transfusion, giving one-third of them an injection of the potent painkiller fentanyl. As with Anandâs experiments, the results were striking: in fetuses that received the analgesic, the production of stress hormones was halved, and the pattern of blood flow remained normal. Fisk says he believes that his findings provide suggestive evidence of fetal pain â perhaps the best evidence weâll get. Pain, he notes, is a subjective phenomenon; in adults and older children, doctors measure it by asking patients to describe what they feel. (âOn a scale of 0 to 10, how would you rate your current level of pain?â) To be certain that his fetal patients feel pain, Fisk says, âI would need one of them to come up to me at the age of 6 or 7 and say, âExcuse me, Doctor, that bloody hurt, what you did to me!â â In the absence of such first-person testimony, he concludes, itâs âbetter to err on the safe sideâ and assume that the fetus can feel pain starting around 20 to 24 weeks."
"No pain, no gain."
"Here we consider one final issue: whether nociceptive inputs may have deleterious consequences even if the âendogenously anesthetizedâ fetus does not consciously perceive pain at the time of stimulation. Can exposure to noxious stimuli initiate a cascade of events that sensitize the nervous system, or can repeated pain exposure in preterm infants contribute to attention, learning, and behavior problems later in life? It is critical to appreciate that not only is most of"
"In the push to pass fetal-pain legislation, Anandâs name has been invoked at every turn; he has become a favorite expert of the anti-abortion movement precisely because of his credentials. âThis Oxford- and Harvard-trained neonatal pediatrician had some jarring testimony about the subject of fetal pain,â announced the Republican congressman Mike Pence to the House of Representatives in 2004, âand it is truly made more astonishing when one considers the fact that Dr. Anand is not a stereotypical Bible-thumping pro-lifer.â Anand maintains that doctors performing abortions at 20 weeks or later should take steps to prevent or relieve fetal pain. But it is clear that many of the anti-abortion activists who quote him have something more sweeping in mind: changing perceptions of the fetus. In several states, for example, information about fetal pain is provided to all women seeking abortions, including those whose fetuses are so immature that there is no evidence of the existence of even a stress response. âBy personifying the fetus, theyâre trying to steer the womanâs decision away from abortion,â says Elizabeth Nash, a public-policy associate at the Guttmacher Institute, a reproductive-rights group."
"Because pain perception probably does not function before the third trimester, discussions of fetal pain for abortions performed before the end of the second trimester should be noncompulsory. Fetal anesthesia or analgesia should not be recommended or routinely offered for abortion because current experimental techniques provide unknown fetal benefit and may increase risks for the woman. Instead, further research should focus on when pain-related thalamocortical pathways become functional in humans. If the fetus can feel pain, additional research may lead to effective fetal anesthesia or analgesia techniques that are also safe for women."
"Merkerâs much-discussed article was accompanied by more than two dozen commentaries by prominent researchers. Many noted that if Merker is correct, it could alter our understanding of how normal brains work and could change our treatment of those who are now believed to be insensible to pain because of an absent or damaged cortex. For example, the decision to end the life of a patient in a persistent vegetative state might be carried out with a fast-acting drug, suggested Marshall Devor, a biologist at the Center for Research on Pain at Hebrew University in Jerusalem. Devor wrote that such a course would be more humane than the weeks of potentially painful starvation that follows the disconnection of a feeding tube (though as a form of active euthanasia it would be illegal in the United States and most other countries). The possibility of consciousness without a cortex may also influence our opinion of what a fetus can feel. Like the subplate zone, the brain stem is active in the fetus far earlier than the cerebral cortex is, and if it can support consciousness, it can support the experience of pain. While Mark Rosen is skeptical, Anand praises Merkerâs work as a âmissing linkâ that could complete the case for fetal pain."
"But pain... seems to me an insufficient reason not to embrace life. Being dead is quite painless. Pain, like time, is going to come on regardless. Question is, what glorious moments can you win from life in addition to the pain?"
"Our understanding of when the fetus can experience pain has been largely shaped by neuroanatomy. However, completion of the cortical nociceptive connections just after mid-gestation is only one part of the story. In addition to critically reviewing evidence for whether the fetus is ever awake or aware, and thus able to truly experience pain, we examine the role of endogenous neuro-inhibitors, such as adenosine and pregnanolone, produced within the feto-placental unit that contribute to fetal sleep states, and thus mediate suppression of fetal awareness. The uncritical view that the nature of presumed fetal pain perception can be assessed by reference to the prematurely born infant is challenged. Rigorously controlled studies of invasive procedures and analgesia in the fetus are required to clarify the impact of fetal nociception on postnatal pain sensitivity and neural development, and the potential benefits or harm of using analgesia in this unique setting."
"In the context of abortion, fetal analgesia would be used solely for beneficence toward the fetus, assuming fetal pain exists. This interest must be considered in concert with maternal safety and fetal effectiveness of any proposed anesthetic or analgesic technique. For instance, general anesthesia increases abortion morbidity and mortality for women and substantially increases the cost of abortion. Although placental transfer of many opioids and sedative-hypnotics has been determined, the maternal dose required for fetal analgesia is unknown, as is the safety for women at such doses. Furthermore, no established protocols exist for administering anesthesia or analgesia directly to the fetus for minimally invasive fetal procedures or abortions. Experimental techniques, such as administration of fentanyl directly to the fetus and intra-amniotic injection of sufentanil in pregnant ewes, have not been shown to decrease fetal pain and are of unknown safety in humans."
"If everyone could feel everyone elseâs pain, who would torture?"
"Anesthetics and analgesics are commonly used to alleviate pain and discomfort. Despite ongoing debate regarding fetal capacity for pain, fetal anesthesia and analgesia are still warranted for surgical procedures undertaken to promote fetal health. When long-term fetal well-being is a central consideration, evidence of fetal pain is unnecessary to justify fetal anesthesia and analgesia because they serve other purposes unrelated to pain reduction, including (1) inhibiting fetal movement during a procedure; (2) achieving uterine atony to improve surgical access to the fetus and to prevent contractions and placental separation; (3) preventing hormonal stress responses associated with poor surgical outcomes in neonates; and (4) preventing possible adverse effects on long-term neurodevelopment and behavioral responses to pain. These objectives are not applicable to abortions. Instead, beneficence toward the fetus represents the chief justification for using fetal anesthesia or analgesia during abortionâto relieve suffering if fetal pain exists."
"In contrast to fetal surgery requiring regional or general anesthesia, minimally invasive fetal procedures do not involve maternal laparotomy or hysterotomy and instead use needles or endoscopy to access the fetus. For the sake of reducing pain, the increased risks of general anesthesia are unjustified for these procedures; adults typically undergo similar procedures with no analgesia or only local analgesia."
"Whether the fetus can truly experience pain, at least in some way analogous to how adults emotionally understand pain, has been debated extensively over recent years and is of importance given continuing advances in fetal surgical and diagnostic procedures. This question has considerable implications for the management of invasive fetal procedures, particularly as fetal analgesic and anaesthetic treatment is complex and not without risk for the fetus. Prevention and treatment of pain are basic human rights, regardless of age, and if fetal interventions are to progress, then a greater understanding of nociception and stress responses is required. The timing of the neuroanatomical maturation of the nociceptive system is now well understood, and the final critical cortico-thalamic connections appear to be present by 24â28 weeks of gestation. This suggests that the fetus could potentially be able to feel pain by the third trimester, at least in a rudimentary fashion. This concept is said to be supported by studies which show that nociceptive stimuli elicit physiological stress-like responses in the human fetus in utero. However, physiological processing of a nociceptive stimulus and perceiving a nociceptive stimulus as painful are not the same. There are both a physiological and an emotional or cognitive aspect to pain perception, and indeed a significant element of learning [56]. Certainly, processing can be independent of perception, as is demonstrated during surgery under general anesthesia, for example, where nociceptive stimuli can still elicit subcortically mediated physiological stress responses despite unconsciousness. Thus, to emotionally experience pain, we must be cognitively aware of the stimulus (a cortical process), and this in turn requires that we must be conscious. The key question then is not about the anatomic completion or functionality of nociceptive pathways in utero, but whether the fetus is ever conscious and thus aware. In general, discussion of fetal pain perception tends to treat the fetus as an unborn newborn; i.e., that responses of the newborn represent an adequate surrogate for the fetus. The assumption is thus made that if the newborn (including the preterm newborn) can experience wakefulness (and therefore consciousness), and apparently feels pain, then so too must the age-equivalent fetus. Furthermore, evidence for fetal wakefulness (and again therefore consciousness) has been based on how certain fetal responses âresembleâ newborn sleepâwake behaviors, rather than a true determination of fetal wakefulness per se. Given the complexities of studying the fetus, extrapolation from or to the newborn state is understandable. Systematic studies of fetal neurological function suggest, however, that there are major differences in the in utero environment and fetal neural state that make it likely that this assumption is substantially incorrect. This has important implications for our understanding of fetal pain perception. The current review critically evaluates the hypothesis that unlike the newborn, the fetus is actively maintained asleep (and unconscious) throughout gestation and cannot be woken by nociceptive stimuli. The evidence is examined with reference to fetal sleepâwake states, the role of cortico-thalamic gating in cortical arousal during sleep, and the unique contribution that certain inhibitory neuromodulators make in utero to cortical suppression. Finally, we briefly discuss the validity of the hypothesis that suggests that the nociceptive input may have long-lasting deleterious effects regardless of whether the fetus is asleep or not."
"Whether, and at what stage a fetus feels pain has been a matter of much debate. The RCOG 2022 report Fetal Awareness Evidence Review concluded that the âevidence indicates that the possibility of pain perception before 28 weeks of gestation is unlikelyâ. The BMA recommends that doctors should give due consideration to the appropriate measures for minimising the risk of pain, including assessment of the most recent evidence. The BMA suggests that even if there is no incontrovertible evidence that the fetus feels pain, the use of fetal analgesia when carrying out any procedure (whether an abortion or a therapeutic intervention) on the fetus in utero may go some way in relieving the anxiety of the woman and health professionals."
"Beauty is pain and there's beauty in everything, what's a little bit of hunger? I can go a little while longer."
"Pain is an emotional and psychological experience that requires conscious recognition of a noxious stimulus. Consequently, the capacity for conscious perception of pain can arise only after thalamocortical pathways begin to function, which may occur in the third trimester around 29 to 30 weeksâ gestational age, based on the limited data available. Small-scale histological studies of human fetuses have found that thalamocortical fibers begin to form between 23 and 30 weeksâ gestational age, but these studies did not specifically examine thalamocortical pathways active in pain perception. While the presence of thalamocortical fibers is necessary for pain perception, their mere presence is insufficientâthis pathway must also be functional. It has been proposed that transient, functional thalamocortical circuits may form via subplate neurons around midgestation, but no human study has demonstrated this early functionality. Instead, constant SEPs appear at 29 weeksâ PCA, and EEG patterns denoting wakefulness appear around 30 weeksâ PCA. Both of these tests of cortical function suggest that conscious perception of pain does not begin before the third trimester. Cutaneous withdrawal reflexes and hormonal stress responses present earlier in development are not explicit or sufficient evidence of pain perception because they are not specific to noxious stimuli and are not cortically mediated."
"Somatosensory evoked potentials (SEPs) may also provide evidence of pain processing in the somatosensory cortex, although they are not used clinically to test pain pathways. SEPs test the dorsal column tract of the spinal cord, which transmits visceral pain sensation to the somatosensory cortex via the thalamus. SEPs with distinct and constant N1 components of normal peak latency are present at 29 weeksâ PCA, indicating that thalamic connections with the somatosensory cortex are functional at that time."
"Although widely used to assess pain in neonates, withdrawal reflexes and facial movements do not necessarily represent conscious perception of pain. Full-term neonates exhibit a âcutaneous withdrawal reflexâ that is activated at a threshold much lower than that which would produce discomfort in a child or adult. This threshold increases with PCA, suggesting that the capacity of the neonate to distinguish between noxious and nonnoxious stimuli is maturing. Furthermore, flexion withdrawal from tactile stimuli is a noncortical spinal reflex exhibited by infants with anencephaly and by individuals in a persistent vegetative state who lack cortical function. Behavioral studies have also identified a distinct set of neonatal facial movements present during invasive procedures such as heel lancing but absent during noninvasive procedures. These facial movements, which are similar to those of adults experiencing pain, were evident in neonates at 28 to 30 weeksâ PCA but not at 25 to 27 weeksâ PCA. Facial movements may not necessarily be cortically controlled. One study found no difference in facial activity during heel lancing of neonates with and without significant cortical injury, suggesting that facial activity even around 32 weeksâ PCA may not represent conscious perception of pain."
"The histological presence of thalamocortical fibers is insufficient to establish capacity for pain perception. These anatomical structures must also be functional. Although no electroencephalographic âpain patternâ exists, electroencephalography may be one way of assessing general cortical function because electroencephalograms (EEGs) measure summated synaptic potentials from cortical neurons."
"Hemodynamic and neuroendocrine changes in fetuses undergoing stressful procedures have also been used to infer pain perception. As early as 16 weeksâ gestational age, fetal cerebral blood flow increases during venipuncture and transfusions that access the fetal hepatic vein through the innervated fetal abdominal wall but not during venipuncture and transfusions involving the noninnervated umbilical cord. Increased cerebral blood flow is not necessarily indicative of pain, as this response is thought to constitute a âbrain sparingâ mechanism associated with hypoxia and intrauterine growth restriction."
"Other investigators measured increases in fetal plasma concentrations of cortisol, β-endorphin, and noradrenaline associated with intrauterine needling procedures, finding that increases during blood sampling from the hepatic vein were greater than those during sampling from the umbilical cord. However, these neuroendocrine responses do not constitute evidence of fetal pain, because the autonomic nervous system and hypothalamic-pituitary-adrenal axis mediate them without conscious cortical processing. Additionally, these responses are not specific for painful stimuli. Plasma noradrenaline concentrations may increase after umbilical cord transfusion, and plasma β-endorphin concentrations may increase after repeated cordocenteses. Plasma cortisol and β-endorphin concentrations increase during innocuous activities such as exercise. Moreover, in adults, neuroendocrine stress responses may persist despite well-controlled postoperative pain. Vital signs also have been used to assess neonatal pain."
"Despite this developmental role, no human study has shown that synapses between subplate and cortical plate neurons convey information about pain perception from the thalamus to the developing cortex."
"The processing of nociceptive stimuli requires peripheral sensory receptors, afferent and efferent sensory and motor pathways, and subcortical and cortical neural integration of the related impulse traffic. The development of nociceptive pathways has been extensively reviewed by others and is not the subject of this review. In brief, however, it is generally agreed that an integrated pathway exists by 24â28 weeks of gestation and that"
"We cannot soothe the pain we do not know."
"Douleur toujours nouvelle pour celui qui souffre et qui se banalise pour l'entourage."
"In his speeches about fetal pain, Senator Brownback often asks why a fetus undergoing surgery receives anesthesia but not a fetus âwho is undergoing the life-terminating surgery of an abortion.â Mark Rosen rejects the analogy. âFetal surgery is a different circumstance than abortion,â he says, pointing out that none of the objectives of anesthesia for fetal surgery â relaxing the uterus, for example â apply to the termination of pregnancy. That includes an objective identified just recently: preventing possible long-term damage. For the fetus that is to be aborted, there is no long term. And if there is no pain, as Rosen maintains, then there is no cause to put the womanâs health at risk."
"In this last context, food refusal, weight loss, commitment to exercise, and ability to tolerate bodily pain and exhaustion have become cultural metaphors for self-determination, will, and moral fortitude."
"According to the doctrine of informed consent, even when it is âfor the goodâ of the patient no one else-neither relative nor expert-may determine for the embodied subject that medical risks are worth taking, what procedures are minimally or excessively invasive, what pain is minor."
"Pain is temporary, glory is forever."
"Pain is weakness leaving the body."
"Evidence Synthesis Pain perception requires conscious recognition or awareness of a noxious stimulus. Neither withdrawal reflexes nor hormonal stress responses to invasive procedures prove the existence of fetal pain, because they can be elicited by nonpainful stimuli and occur without conscious cortical processing. Fetal awareness of noxious stimuli requires functional thalamocortical connections. Thalamocortical fibers begin appearing between 23 to 30 weeksâ gestational age, while electroencephalography suggests the capacity for functional pain perception in preterm neonates probably does not exist before 29 or 30 weeks. For fetal surgery, women may receive general anesthesia and/or analgesics intended for placental transfer, and parenteral opioids may be administered to the fetus under direct or sonographic visualization. In these circumstances, administration of anesthesia and analgesia serves purposes unrelated to reduction of fetal pain, including inhibition of fetal movement, prevention of fetal hormonal stress responses, and induction of uterine atony. Conclusions Evidence regarding the capacity for fetal pain is limited but indicates that fetal perception of pain is unlikely before the third trimester. Little or no evidence addresses the effectiveness of direct fetal anesthetic or analgesic techniques. Similarly, limited or no data exist on the safety of such techniques for pregnant women in the context of abortion. Anesthetic techniques currently used during fetal surgery are not directly applicable to abortion procedures."
"[F]alling from the stars: Drenched in my pain again; becoming who we are."
"The sword of time will pierce our skin It doesn't hurt when it begins But as it works its way on in The pain grows stronger watch I bring That suicide is painless It brings so many changes And I can take or leave them if I please."
"You think your pain and your heartbreak are unprecedented in the history of the world, but then you read. It was Dostoevsky and Dickens who taught me that the things that tormented me most were the very things that connected me with all the people who were alive, or who ever had been alive. Only if we face these open wounds in ourselves can we understand them in other people."
"Pain is a subjective sensory and emotional experience that requires the presence of consciousness to permit recognition of a stimulus as unpleasant. Although pain is commonly associated with physical noxious stimuli, such as when one suffers a wound, pain is fundamentally a psychological construct that may exist even in the absence of physical stimuli, as seen in phantom limb pain. The psychological nature of pain also distinguishes it from nociception, which involves physical activation of nociceptive pathways without the subjective emotional experience of pain. For example, nociception without pain exists below the level of a spinal cord lesion, where reflex withdrawal from a noxious stimulus occurs without conscious perception of pain. Because pain is a psychological construct with emotional content, the experience of pain is modulated by changing emotional input and may need to be learned through life experience. Regardless of whether the emotional content of pain is acquired, the psychological nature of pain presupposes the presence of functional thalamocortical circuitry required for conscious perception, as discussed below."
"The pain was what it was. Beyond that there is nothing to say. Qualities of feeling are as incomparable as they are indescribable. They mark the limit of the capacity of language to communicate. If someone wanted to impart his physical pain, he would be forced to inflict it and thereby become a torturer himself."
"Sunny days wouldn't be special if it wasn't for rain; joy wouldn't feel so good if it wasn't for pain."
"Maybe life is good and everything is fine. Maybe take a breath; maybe do it twice. I know you're in pain, but that's a part of life."
"Nociception may be characterized by reflex movement in response to a noxious stimulus, without cortical involvement or conscious pain perception. Nociception involves peripheral sensory receptors whose afferent fibers synapse in the spinal cord on interneurons, which synapse on motor neurons that also reside in the spinal cord. These motor neurons trigger muscle contraction, causing limb flexion away from a stimulus. In contrast, pain perception requires cortical recognition of the stimulus as unpleasant. Peripheral sensory receptor afferents synapse on spinal cord neurons, the axons of which project to the thalamus, which sends afferents to the cerebral cortex, activating any number of cortical regions. Sensory receptors and spinal cord synapses required for nociception develop earlier than the thalamocortical pathways required for conscious perception of pain. No human studies have directly examined the development of thalamocortical circuits associated with pain perception. The developmental age at which thalamic pain fibers reach the cortex has been inferred from studies of other thalamocortical circuits, which may or may not develop at the same time as thalamic fibers mediating cortical perception of pain."
"Pain is universal. We all experience pain, loss, and death the same way"